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Stock Photos - MOLECULE (7,157 results)

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Stock Photo #4128R-10674, Sarin nerve gas molecule
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Sarin nerve gas molecule
Stock Photo #1647R-22697, Scientist Holding Molecule
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Scientist Holding Molecule
Stock Photo #4128R-484, Unzipped DNA molecule, artwork
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Unzipped DNA molecule, artwork
Stock Photo #4128R-10002, DNA molecules
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DNA molecules
Stock Photo #4128R-20156, DNA molecule. Molecular model of DNA deoxyribonucleic acid.
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DNA molecule. Molecular model of DNA deoxyribonucleic acid.
Stock Photo #4128R-9635, Buckyball molecules, artwork
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Buckyball molecules, artwork
Stock Photo #4128R-19732, Molecular model. Part of a bupivacaine anaesthetic molecule.
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Molecular model. Part of a bupivacaine anaesthetic molecule.
Stock Photo #4170R-5508, Boy and a girl sitting on a molecule structure
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Boy and a girl sitting on a molecule structure
Stock Photo #4128R-33792, Iron storage molecule. Molecular model of ferritin, a protein that acts as an iron store and is mainly found in the liver, kidneys and spleen.
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Iron storage molecule. Molecular model of ferritin, a protein that acts as an iron store and is mainly found in the liver, ki...
Iron storage molecule. Molecular model of ferritin, a protein that acts as an iron store and is mainly found in the liver, kidneys and spleen.
Stock Photo #824-96246, PARACETAMOL. Dafalgan. Active molecule : paracetamol. Therapeutic class : Antipyretic antalgic. This drug is recommanded in the treatment of fever and pain.
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PARACETAMOL. Dafalgan. Active molecule : paracetamol. Therapeutic class : Antipyretic antalgic. This drug is recommanded in t...
PARACETAMOL. Dafalgan. Active molecule : paracetamol. Therapeutic class : Antipyretic antalgic. This drug is recommanded in the treatment of fever and pain.
Stock Photo #4128R-16013, Adrenaline molecule. Atoms are represented as spheres and are colour_coded: carbon black, hydrogen white, nitrogen blue and oxygen red.
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Adrenaline molecule. Atoms are represented as spheres and are colour_coded: carbon black, hydrogen white, nitrogen blue and o...
Adrenaline molecule. Atoms are represented as spheres and are colour_coded: carbon black, hydrogen white, nitrogen blue and oxygen red.
Stock Photo #4128R-33743, Yeast DNA recognition. Computer model showing a GAL4 transcription activator protein bound to a yeast DNA (deoxyribonucleic acid) molecule (red and blue). A transcriptional activator is a protein that increases transcription of a gene or set of genes. Transcription is the first step of gene expression.
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Yeast DNA recognition. Computer model showing a GAL4 transcription activator protein bound to a yeast DNA (deoxyribonucleic a...
Yeast DNA recognition. Computer model showing a GAL4 transcription activator protein bound to a yeast DNA (deoxyribonucleic acid) molecule (red and blue). A transcriptional activator is a protein that increases transcription of a gene or set of genes. Transcription is the first step of gene expression.
Stock Photo #4128R-35400, DNA molecule, computer artwork.
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DNA molecule, computer artwork.
Stock Photo #4128R-3479, Buckminsterfullerene molecule
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Buckminsterfullerene molecule
Stock Photo #1647R-21285, Student Looking at Molecules
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Student Looking at Molecules
Stock Photo #1589R-145437, Mixed race scientist in hijab looking at molecule model
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Mixed race scientist in hijab looking at molecule model
Stock Photo #4128R-33796, Birch pollen allergen. Molecular model of Bet v 1l, the molecule responsible for allergic reactions to birch pollen. Here, Bet v 1l is shown in complex with two deoxycholate molecules (grey and red spheres), whose primary structure is shown. Individuals that are allergic to birch pollen, experience hayfever in March and May.
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Birch pollen allergen. Molecular model of Bet v 1l, the molecule responsible for allergic reactions to birch pollen. Here, Be...
Birch pollen allergen. Molecular model of Bet v 1l, the molecule responsible for allergic reactions to birch pollen. Here, Bet v 1l is shown in complex with two deoxycholate molecules (grey and red spheres), whose primary structure is shown. Individuals that are allergic to birch pollen, experience hayfever in March and May.
Stock Photo #1647R-132929, Scientist Holding Molecule
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Scientist Holding Molecule
Stock Photo #4128R-13902, Nitrofen herbicide, molecular model. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue, oxygen red and chlorine green.
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Nitrofen herbicide, molecular model. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitr...
Nitrofen herbicide, molecular model. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue, oxygen red and chlorine green.
Stock Photo #1538R-57541,
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Stock Photo #4128R-22304, DNA molecule, computer artwork.
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DNA molecule, computer artwork.
Stock Photo #1848-3870, Molecule Man on the river Spree in Berlin , Germany, Europe
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Molecule Man on the river Spree in Berlin , Germany, Europe
Stock Photo #4128R-18397, Chemical research, conceptual computer artwork.
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Chemical research, conceptual computer artwork.
Stock Photo #4378-3416, A molecular model of glutamine.
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A molecular model of glutamine.
Stock Photo #4128R-19444, Trifluoromethanesulfonic acid, molecular model. One of the strongest acids, mainly used in research as a catalyst for esterefication. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, fluorine cyan, oxygen red and sulfur
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Trifluoromethanesulfonic acid, molecular model. One of the strongest acids, mainly used in research as a catalyst for esteref...
Trifluoromethanesulfonic acid, molecular model. One of the strongest acids, mainly used in research as a catalyst for esterefication. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, fluorine cyan, oxygen red and sulfur
Stock Photo #4128R-33749, Human catalase, molecular model. This enzyme catalyses the break down of hydrogen peroxide to water and oxygen. Hydrogen peroxide is a highly toxic byproduct of a number of normal cellular processes.
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Human catalase, molecular model. This enzyme catalyses the break down of hydrogen peroxide to water and oxygen. Hydrogen pero...
Human catalase, molecular model. This enzyme catalyses the break down of hydrogen peroxide to water and oxygen. Hydrogen peroxide is a highly toxic byproduct of a number of normal cellular processes.
Stock Photo #4128R-19045, Gluconic acid, molecular model. Organic compound naturally occurring in fruit, honey, kombucha tea and wine. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and oxygen red.
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Gluconic acid, molecular model. Organic compound naturally occurring in fruit, honey, kombucha tea and wine. Atoms are repres...
Gluconic acid, molecular model. Organic compound naturally occurring in fruit, honey, kombucha tea and wine. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and oxygen red.
Stock Photo #4128R-30822, Genetic code, computer artwork.
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Genetic code, computer artwork.
Stock Photo #1566-0238442, Belgium, Brussels, Atomium.
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Belgium, Brussels, Atomium.
Stock Photo #1538R-57462, Montage illustration about antibiotics in meat containing pills, molecules, a cow and a steak
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Montage illustration about antibiotics in meat containing pills, molecules, a cow and a steak
Stock Photo #4128R-17481, Linezolid, molecular model. Synthetic antibiotic used for the treatment of serious infections resistant to several other antibiotics. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue, oxygen red and fluorin
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Linezolid, molecular model. Synthetic antibiotic used for the treatment of serious infections resistant to several other anti...
Linezolid, molecular model. Synthetic antibiotic used for the treatment of serious infections resistant to several other antibiotics. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue, oxygen red and fluorin
Stock Photo #1795R-72094, Digitally generated image of helix structure
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Digitally generated image of helix structure
Stock Photo #4128R-17821, Metaxalone, molecular model. Drug used as a muscle relaxant and for relieving pain caused by strains, sprains, and other musculoskeletal conditions. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue and oxyg
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Metaxalone, molecular model. Drug used as a muscle relaxant and for relieving pain caused by strains, sprains, and other musc...
Metaxalone, molecular model. Drug used as a muscle relaxant and for relieving pain caused by strains, sprains, and other musculoskeletal conditions. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue and oxyg
Stock Photo #4128R-18966, Uric acid, molecular model. Organic compound created when the body breaks down purine nucleotides. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue and oxygen red.
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Uric acid, molecular model. Organic compound created when the body breaks down purine nucleotides. Atoms are represented as s...
Uric acid, molecular model. Organic compound created when the body breaks down purine nucleotides. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue and oxygen red.
Stock Photo #4170R-4592, Various objects displayed against white background
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Various objects displayed against white background
Stock Photo #4128R-6457, DNA molecule, artwork
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DNA molecule, artwork
Stock Photo #4128R-18726, Toluene, molecular model. Aromatic hydrocarbon widely used as an industrial feedstock and as a solvent. Atoms are represented as spheres and are colour_coded: carbon grey and hydrogen white.
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Toluene, molecular model. Aromatic hydrocarbon widely used as an industrial feedstock and as a solvent. Atoms are represented...
Toluene, molecular model. Aromatic hydrocarbon widely used as an industrial feedstock and as a solvent. Atoms are represented as spheres and are colour_coded: carbon grey and hydrogen white.
Stock Photo #4128R-23132, DNA deoxyribonucleic acid, molecular model.
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DNA deoxyribonucleic acid, molecular model.
Stock Photo #4128R-18816, Picric acid, molecular model. Explosive organic component and one of the most acidic phenols. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue and oxygen red.
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Picric acid, molecular model. Explosive organic component and one of the most acidic phenols. Atoms are represented as sphere...
Picric acid, molecular model. Explosive organic component and one of the most acidic phenols. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue and oxygen red.
Stock Photo #1598R-76444, Laboratory specimen holder, close-up
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Laboratory specimen holder, close-up
Stock Photo #824-61079, TREATMENT FOR PAIN, WOMAN. Model. Active molecule : morphine sulfate , therapeutic class : analgesic. Sevredol is used in the treatment of intense pains or rebel to lower level analgesics , its action is quick but short.
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TREATMENT FOR PAIN, WOMAN. Model. Active molecule : morphine sulfate , therapeutic class : analgesic. Sevredol is used in the...
TREATMENT FOR PAIN, WOMAN. Model. Active molecule : morphine sulfate , therapeutic class : analgesic. Sevredol is used in the treatment of intense pains or rebel to lower level analgesics , its action is quick but short.
Stock Photo #4128R-34111, MscS ion channel protein structure. Molecular model of a mechanosensitive channel of small conductance (MscS) from an Escherichia coli bacterium. MscSs play a critical role in converting physical stress at the cell membrane into an electrochemical response. They respond to smaller pressures than the large conductance channels. In prokaryotes such as bacteria, such channels open in response to stretch forces in the membrane and help regulate osmotic pressure within the cell by controlling the pas
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MscS ion channel protein structure. Molecular model of a mechanosensitive channel of small conductance (MscS) from an Escheri...
MscS ion channel protein structure. Molecular model of a mechanosensitive channel of small conductance (MscS) from an Escherichia coli bacterium. MscSs play a critical role in converting physical stress at the cell membrane into an electrochemical response. They respond to smaller pressures than the large conductance channels. In prokaryotes such as bacteria, such channels open in response to stretch forces in the membrane and help regulate osmotic pressure within the cell by controlling the pas
Stock Photo #4128R-6770, DNA molecules, computer artwork
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DNA molecules, computer artwork
Stock Photo #1795R-4137, Scientist examining molecular structure
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Scientist examining molecular structure
Stock Photo #824R-4669, MOLECULE GLUCOSE
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MOLECULE GLUCOSE
Stock Photo #824-43711, ASPIRIN, MOLECULE
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ASPIRIN, MOLECULE
Stock Photo #824-37433, GYNECOLOGY CONSULTATION. Models. Day after pill Norlevo active molecule : levonorgestrel.
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GYNECOLOGY CONSULTATION. Models. Day after pill Norlevo active molecule : levonorgestrel.
Stock Photo #1491R-1048547, Molecular Model
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Molecular Model
Stock Photo #4128R-18191, Arsenic trioxide, molecular model. Precursor to arsenic compounds, including organoarsenic compounds. Atoms are represented as spheres and are colour_coded: arsenic violet and oxygen red.
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Arsenic trioxide, molecular model. Precursor to arsenic compounds, including organoarsenic compounds. Atoms are represented a...
Arsenic trioxide, molecular model. Precursor to arsenic compounds, including organoarsenic compounds. Atoms are represented as spheres and are colour_coded: arsenic violet and oxygen red.
Stock Photo #4128R-33844, Manganese catalase. Molecular model of the enzyme manganese catalase from the bacterium Lactobacillus plantarum. This enzyme catalyses the break down of hydrogen peroxide to water and oxygen. Hydrogen peroxide is a highly toxic byproduct of a number of normal cellular processes.
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Manganese catalase. Molecular model of the enzyme manganese catalase from the bacterium Lactobacillus plantarum. This enzyme ...
Manganese catalase. Molecular model of the enzyme manganese catalase from the bacterium Lactobacillus plantarum. This enzyme catalyses the break down of hydrogen peroxide to water and oxygen. Hydrogen peroxide is a highly toxic byproduct of a number of normal cellular processes.
Stock Photo #4297-1615, 3D computer graphic illustration of water molecules
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3D computer graphic illustration of water molecules
Stock Photo #4128R-19783, Digitoxin, molecular model. Cardiac glycoside with toxic effects. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and oxygen red.
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Digitoxin, molecular model. Cardiac glycoside with toxic effects. Atoms are represented as spheres and are colour_coded: carb...
Digitoxin, molecular model. Cardiac glycoside with toxic effects. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and oxygen red.
Stock Photo #1672R-19560, Computer generated
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Computer generated
Stock Photo #1657R-32978, Scientist thinking in a lab
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Scientist thinking in a lab
Stock Photo #4239R-8044, Stylized view of strands of human DNA or deoxyribonucleic acid.
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Stylized view of strands of human DNA or deoxyribonucleic acid.
Stock Photo #4128R-14272, Codeine drug molecule. Atoms are represented as spheres and are colour_coded: carbon black, hydrogen white, nitrogen blue and oxygen red.
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Codeine drug molecule. Atoms are represented as spheres and are colour_coded: carbon black, hydrogen white, nitrogen blue and...
Codeine drug molecule. Atoms are represented as spheres and are colour_coded: carbon black, hydrogen white, nitrogen blue and oxygen red.
Stock Photo #4128R-16699, Cyanuric acid, molecular model. This organic compound is a precursor or component of bleaches, disinfectants and herbicides. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and oxygen red.
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Cyanuric acid, molecular model. This organic compound is a precursor or component of bleaches, disinfectants and herbicides. ...
Cyanuric acid, molecular model. This organic compound is a precursor or component of bleaches, disinfectants and herbicides. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and oxygen red.
Stock Photo #4128R-16672, Vitamin C ascorbic acid, molecular model. Vitamin required for protecting the body against oxidative stress. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and oxygen red.
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Vitamin C ascorbic acid, molecular model. Vitamin required for protecting the body against oxidative stress. Atoms are repres...
Vitamin C ascorbic acid, molecular model. Vitamin required for protecting the body against oxidative stress. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and oxygen red.
Stock Photo #4128R-19642, Styrene, molecular model. Colourless oily liquid which is used as a precursor to polystyrene. Atoms are represented as spheres and are colour_coded: carbon grey and hydrogen white.
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Styrene, molecular model. Colourless oily liquid which is used as a precursor to polystyrene. Atoms are represented as sphere...
Styrene, molecular model. Colourless oily liquid which is used as a precursor to polystyrene. Atoms are represented as spheres and are colour_coded: carbon grey and hydrogen white.
Stock Photo #4128R-13331, DNA molecule. Molecular model of DNA deoxyribonucleic acid.
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DNA molecule. Molecular model of DNA deoxyribonucleic acid.
Stock Photo #4128R-17538, Pioglitazone, molecular model. Drug used for the treatment of diabetes mellitus type 2. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue, oxygen red and sulfur yellow.
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Pioglitazone, molecular model. Drug used for the treatment of diabetes mellitus type 2. Atoms are represented as spheres and ...
Pioglitazone, molecular model. Drug used for the treatment of diabetes mellitus type 2. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue, oxygen red and sulfur yellow.
Stock Photo #1589R-33259, Asian female scientist looking at chemical model
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Asian female scientist looking at chemical model
Stock Photo #4128R-18489, Dextropropoxyphene propoxyphene, molecular model. Mild pain kiler. It was taken off the market in Europe and the USA because of fatal overdoses and arrhythmias. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen b
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Dextropropoxyphene propoxyphene, molecular model. Mild pain kiler. It was taken off the market in Europe and the USA because ...
Dextropropoxyphene propoxyphene, molecular model. Mild pain kiler. It was taken off the market in Europe and the USA because of fatal overdoses and arrhythmias. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen b
Stock Photo #1598R-9939117, Female scientist examining molecular structure
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Female scientist examining molecular structure
Stock Photo #4128R-16655, Edetic acid ethylenediaminetetraacetic acid, molecular model. Polyamino carboxylic acid widely used to dissolve limescale. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue and oxygen red.
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Edetic acid ethylenediaminetetraacetic acid, molecular model. Polyamino carboxylic acid widely used to dissolve limescale. At...
Edetic acid ethylenediaminetetraacetic acid, molecular model. Polyamino carboxylic acid widely used to dissolve limescale. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue and oxygen red.
Stock Photo #4128R-17135, Levofloxacin, molecular model. Synthetic chemotherapeutic antibiotic used to treat severe or life_threatening bacterial infections. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue, oxygen red and fluorine
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Levofloxacin, molecular model. Synthetic chemotherapeutic antibiotic used to treat severe or life_threatening bacterial infec...
Levofloxacin, molecular model. Synthetic chemotherapeutic antibiotic used to treat severe or life_threatening bacterial infections. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue, oxygen red and fluorine
Stock Photo #4128R-16484, Lactose enzyme, molecular model.
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Lactose enzyme, molecular model.
Stock Photo #1436R-318871, Molecular Image
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Molecular Image
Stock Photo #4128R-13396, Viral infection, conceptual computer artwork.
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Viral infection, conceptual computer artwork.
Stock Photo #4128R-19215, Estrone, molecular model. Sex hormone, one of the three main estrogens produced by the human body estradiol, estriol and estrone. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and oxygen red.
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Estrone, molecular model. Sex hormone, one of the three main estrogens produced by the human body estradiol, estriol and estr...
Estrone, molecular model. Sex hormone, one of the three main estrogens produced by the human body estradiol, estriol and estrone. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and oxygen red.
Stock Photo #4128R-33847, Early endosome antigen 1 (EEA1), molecular model. This protein is involved in the fusion and sorting of endosomes (membrane-bound compartments used to transport molecules).
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Early endosome antigen 1 (EEA1), molecular model. This protein is involved in the fusion and sorting of endosomes (membrane-b...
Early endosome antigen 1 (EEA1), molecular model. This protein is involved in the fusion and sorting of endosomes (membrane-bound compartments used to transport molecules).
Stock Photo #4128R-23196, MicroRNA miRNA precursor, molecular model. This miRNA micro ribonucleic acid precursor will be further processed into an even shorter mature miRNA oligonucleotide that can regulate the expression of a target gene. The precursor shown here is the human miR_17 stem_loop hsa_mir_17, which is believed to play a role in several types of breast cancer.
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MicroRNA miRNA precursor, molecular model. This miRNA micro ribonucleic acid precursor will be further processed into an even...
MicroRNA miRNA precursor, molecular model. This miRNA micro ribonucleic acid precursor will be further processed into an even shorter mature miRNA oligonucleotide that can regulate the expression of a target gene. The precursor shown here is the human miR_17 stem_loop hsa_mir_17, which is believed to play a role in several types of breast cancer.
Stock Photo #4128R-20184, Lopinavir, molecular model. Antiretroviral drug of the protease inhibitor class. Used together with ritonavir to treat HIV. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue and oxygen red.
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Lopinavir, molecular model. Antiretroviral drug of the protease inhibitor class. Used together with ritonavir to treat HIV. A...
Lopinavir, molecular model. Antiretroviral drug of the protease inhibitor class. Used together with ritonavir to treat HIV. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue and oxygen red.
Stock Photo #1589-170830, Teacher explaining chemistry model to classroom
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Teacher explaining chemistry model to classroom
Stock Photo #4128R-20388, Buckyball molecule, artwork
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Buckyball molecule, artwork
Stock Photo #4128R-18054, DNA molecule. Molecular model of DNA deoxyribonucleic acid.
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DNA molecule. Molecular model of DNA deoxyribonucleic acid.
Stock Photo #824R-3451, NANOTECHNOLOGY
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NANOTECHNOLOGY
Stock Photo #4297-1286, Computer generated three-dimensional molecular model of Carbon dioxide
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Computer generated three-dimensional molecular model of Carbon dioxide
Stock Photo #4128R-33788, Bacteriorhodopsin protein. Molecular model showing the structure of bacteriorhodopsin (bR), a protein found in primitive micro-organisms known as Archaea. This protein acts as a proton pump. It harnesses the energy of light to drive cellular ATP synthesis.
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Bacteriorhodopsin protein. Molecular model showing the structure of bacteriorhodopsin (bR), a protein found in primitive micr...
Bacteriorhodopsin protein. Molecular model showing the structure of bacteriorhodopsin (bR), a protein found in primitive micro-organisms known as Archaea. This protein acts as a proton pump. It harnesses the energy of light to drive cellular ATP synthesis.
Stock Photo #1824R-62475, Smiling man holds a molecular model
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Smiling man holds a molecular model
Stock Photo #4128R-10627, Human cloning, conceptual artwork
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Human cloning, conceptual artwork
Stock Photo #1657R-32809, Scientists at work on a problem
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Scientists at work on a problem
Stock Photo #4128R-33689, Alcohol dehydrogenase, molecular model. Alcohol dehydrogenase (ADH) is an enzyme that facilitates the break-down of alcohols in the body, which could otherwise be toxic.
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Alcohol dehydrogenase, molecular model. Alcohol dehydrogenase (ADH) is an enzyme that facilitates the break-down of alcohols ...
Alcohol dehydrogenase, molecular model. Alcohol dehydrogenase (ADH) is an enzyme that facilitates the break-down of alcohols in the body, which could otherwise be toxic.
Stock Photo #4128R-17892, Streptolydigin, molecular model. Antibiotic acting by blocking nucleic acid chain elongation by binding to the polymerase and used to treat infections by gram positive bacteria. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen
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Streptolydigin, molecular model. Antibiotic acting by blocking nucleic acid chain elongation by binding to the polymerase and...
Streptolydigin, molecular model. Antibiotic acting by blocking nucleic acid chain elongation by binding to the polymerase and used to treat infections by gram positive bacteria. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen
Stock Photo #1775R-26084, Scientist with molecular model in lab
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Scientist with molecular model in lab
Stock Photo #4128R-19118, Desflurane, molecular model. Highly fluorinated methyl ethyl ester used for general anaesthesia. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, oxygen red and fluorine cyan.
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Desflurane, molecular model. Highly fluorinated methyl ethyl ester used for general anaesthesia. Atoms are represented as sph...
Desflurane, molecular model. Highly fluorinated methyl ethyl ester used for general anaesthesia. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, oxygen red and fluorine cyan.
Stock Photo #4128R-22406, DNA molecule, computer artwork.
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DNA molecule, computer artwork.
Stock Photo #4128R-16614, Theobromine, molecular model. Bitter alkaloid of the cacao plant found in cocoa and chocolate. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue and oxygen red.
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Theobromine, molecular model. Bitter alkaloid of the cacao plant found in cocoa and chocolate. Atoms are represented as spher...
Theobromine, molecular model. Bitter alkaloid of the cacao plant found in cocoa and chocolate. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue and oxygen red.
Stock Photo #4128R-15446, CFC molecule. Model of a molecule of dichlorodifluoromethane, also known as Freon_12. Atoms are represented as spheres and are colour_coded: carbon black, chlorine dark green and fluorine light green.
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CFC molecule. Model of a molecule of dichlorodifluoromethane, also known as Freon_12. Atoms are represented as spheres and ar...
CFC molecule. Model of a molecule of dichlorodifluoromethane, also known as Freon_12. Atoms are represented as spheres and are colour_coded: carbon black, chlorine dark green and fluorine light green.
Stock Photo #1589R-54844, Asian female scientist holding molecule model
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Asian female scientist holding molecule model
Stock Photo #1589-173444, Caucasian students working in classroom
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Caucasian students working in classroom
Stock Photo #4128R-18518, Medroxyprogesterone, molecular model. Drug acting as a progestin. Used to regulate irregular periods in a women´s menstrual cycle. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and oxygen red.
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Medroxyprogesterone, molecular model. Drug acting as a progestin. Used to regulate irregular periods in a women´s menstrual c...
Medroxyprogesterone, molecular model. Drug acting as a progestin. Used to regulate irregular periods in a women´s menstrual cycle. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and oxygen red.
Stock Photo #4128R-16152, Adenosine monophosphate AMP, molecular model. Nucleotide used as a monomer in RNA. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue, oxygen red and phosphorus yellow.
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Adenosine monophosphate AMP, molecular model. Nucleotide used as a monomer in RNA. Atoms are represented as spheres and are c...
Adenosine monophosphate AMP, molecular model. Nucleotide used as a monomer in RNA. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue, oxygen red and phosphorus yellow.
Stock Photo #4128R-20101, Polyvinyl chloride PVC, molecular model. Synthetic polymer consisting of long chains of the monomer vinyl chloride. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and chlorine green.
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Polyvinyl chloride PVC, molecular model. Synthetic polymer consisting of long chains of the monomer vinyl chloride. Atoms are...
Polyvinyl chloride PVC, molecular model. Synthetic polymer consisting of long chains of the monomer vinyl chloride. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and chlorine green.
Stock Photo #4128R-16221, Amoxicillin, molecular model. Antibiotic used for the treatment of bacterial infections. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue, oxygen red and sulfur yellow.
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Amoxicillin, molecular model. Antibiotic used for the treatment of bacterial infections. Atoms are represented as spheres and...
Amoxicillin, molecular model. Antibiotic used for the treatment of bacterial infections. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue, oxygen red and sulfur yellow.
Stock Photo #4128R-33975, Transducin protein beta-gamma complex. Molecular model of the beta-gamma dimer of the heterotrimeric G protein transducin. This complex consists of two of the protein's three subunits, the beta subunit and the gamma subunit. Transducin is one of the key proteins in the retina, forming part of visual phototransduction, where light hitting the retina is converted to electrical signals.
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Transducin protein beta-gamma complex. Molecular model of the beta-gamma dimer of the heterotrimeric G protein transducin. Th...
Transducin protein beta-gamma complex. Molecular model of the beta-gamma dimer of the heterotrimeric G protein transducin. This complex consists of two of the protein's three subunits, the beta subunit and the gamma subunit. Transducin is one of the key proteins in the retina, forming part of visual phototransduction, where light hitting the retina is converted to electrical signals.
Stock Photo #1795R-4078, Hands holding DNA in beaker
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Hands holding DNA in beaker
Stock Photo #4128R-21270, Carbon nanotube, artwork
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Carbon nanotube, artwork
Stock Photo #4378-3016, Molecular model showing the chemical structure of nicotine.
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Molecular model showing the chemical structure of nicotine.
Stock Photo #4128R-28301, THC drug, molecular model. Atoms are represented as spheres and are colour-coded: carbon (grey), hydrogen (blue-green) and oxygen (red).
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THC drug, molecular model. Atoms are represented as spheres and are colour-coded: carbon (grey), hydrogen (blue-green) and ox...
THC drug, molecular model. Atoms are represented as spheres and are colour-coded: carbon (grey), hydrogen (blue-green) and oxygen (red).
Stock Photo #1589R-50683, Multi-ethnic teenagers in science class
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Multi-ethnic teenagers in science class
Stock Photo #4128R-19083, Chlorous acid, molecular model. Weak acid and powerful oxidizing agent. Atoms are represented as spheres and are colour_coded: hydrogen white, oxygen red and chlorine green.
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Chlorous acid, molecular model. Weak acid and powerful oxidizing agent. Atoms are represented as spheres and are colour_coded...
Chlorous acid, molecular model. Weak acid and powerful oxidizing agent. Atoms are represented as spheres and are colour_coded: hydrogen white, oxygen red and chlorine green.
Stock Photo #4297-1297, Computer generated three-dimensional model of Gamma-hydroxybutyric acid (GHB)
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Computer generated three-dimensional model of Gamma-hydroxybutyric acid (GHB)
Stock Photo #4128R-16138, Abacavir, molecular model. Reverse transcriptase inhibitor used for HIV and AIDS treatment. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue and oxygen red.
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Abacavir, molecular model. Reverse transcriptase inhibitor used for HIV and AIDS treatment. Atoms are represented as spheres ...
Abacavir, molecular model. Reverse transcriptase inhibitor used for HIV and AIDS treatment. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue and oxygen red.
Stock Photo #4128R-33696, Nucleosome, molecular model. A nucleosome is a subunit of chromatin, the substance that forms chromosomes. It consists of a short length of DNA (deoxyribonucleic acid, red and blue helix) wrapped around a core of eight histone proteins (centre). Here the secondary structure of the proteins is shown. The structure of the nucleosome allows large quantities of DNA, the genetic material, to be packaged into a cell's nucleus.
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Nucleosome, molecular model. A nucleosome is a subunit of chromatin, the substance that forms chromosomes. It consists of a s...
Nucleosome, molecular model. A nucleosome is a subunit of chromatin, the substance that forms chromosomes. It consists of a short length of DNA (deoxyribonucleic acid, red and blue helix) wrapped around a core of eight histone proteins (centre). Here the secondary structure of the proteins is shown. The structure of the nucleosome allows large quantities of DNA, the genetic material, to be packaged into a cell's nucleus.
Stock Photo #4292-76690, Chromosome and dna
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Chromosome and dna
Stock Photo #4128R-31278, Antibody molecule. Crystal structure of a monoclonal immunoglobulin (IgG2a). IgG antibodies are composed of 2 long heavy chains and 2 shorter light chains. This antibody adopts a T-shape: the arms of the T make up the Fab or antigen binding region, while the base part or Fc region plays a role in interacting with the immune system. Atoms are represented as spheres; the light chains are shown in brown while the heavy chains are red shaded.
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Antibody molecule. Crystal structure of a monoclonal immunoglobulin (IgG2a). IgG antibodies are composed of 2 long heavy chai...
Antibody molecule. Crystal structure of a monoclonal immunoglobulin (IgG2a). IgG antibodies are composed of 2 long heavy chains and 2 shorter light chains. This antibody adopts a T-shape: the arms of the T make up the Fab or antigen binding region, while the base part or Fc region plays a role in interacting with the immune system. Atoms are represented as spheres; the light chains are shown in brown while the heavy chains are red shaded.
Stock Photo #4128R-20098, Perchloric acid, molecular model. Strong acid and powerful oxidizer. Mainly used as a precursor to ammonium perchlorate, a rocket fuel. Atoms are represented as spheres and are colour_coded: hydrogen white, oxygen red and chlorine green.
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Perchloric acid, molecular model. Strong acid and powerful oxidizer. Mainly used as a precursor to ammonium perchlorate, a ro...
Perchloric acid, molecular model. Strong acid and powerful oxidizer. Mainly used as a precursor to ammonium perchlorate, a rocket fuel. Atoms are represented as spheres and are colour_coded: hydrogen white, oxygen red and chlorine green.
Stock Photo #824-16044, METHANE MOLECULE. METHANE MOLECULE Molecular model of methane. Methane molecule CH4 is composed of an atom of carbon black linked to four atoms of hydrogens blue.
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METHANE MOLECULE. METHANE MOLECULE Molecular model of methane. Methane molecule CH4 is composed of an atom of carbon black li...
METHANE MOLECULE. METHANE MOLECULE Molecular model of methane. Methane molecule CH4 is composed of an atom of carbon black linked to four atoms of hydrogens blue.
Stock Photo #4128R-33997, Bacteriophage ATPase. Molecular model of an ATP synthase (ATPase) molecule from the phi 12 bacteriophage. ATPase is an important enzyme that provides energy for cells through the synthesis of adenosine triphosphate (ATP) from adenosine diphosphate (ADP) and inorganic phosphate.
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Bacteriophage ATPase. Molecular model of an ATP synthase (ATPase) molecule from the phi 12 bacteriophage. ATPase is an import...
Bacteriophage ATPase. Molecular model of an ATP synthase (ATPase) molecule from the phi 12 bacteriophage. ATPase is an important enzyme that provides energy for cells through the synthesis of adenosine triphosphate (ATP) from adenosine diphosphate (ADP) and inorganic phosphate.
Stock Photo #4128R-19418, Testosterone, molecular model. Steroid hormone found in most vertebrates. It plays a key role in the development of male reproductive tissues such as testis and prostrate. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white
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Testosterone, molecular model. Steroid hormone found in most vertebrates. It plays a key role in the development of male repr...
Testosterone, molecular model. Steroid hormone found in most vertebrates. It plays a key role in the development of male reproductive tissues such as testis and prostrate. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white
Stock Photo #4128R-16688, Melatonin, molecular model. Naturally occurring compound found in animals, plants and microbes. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue and oxygen red.
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Melatonin, molecular model. Naturally occurring compound found in animals, plants and microbes. Atoms are represented as sphe...
Melatonin, molecular model. Naturally occurring compound found in animals, plants and microbes. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue and oxygen red.
Stock Photo #1848-115292, Water
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Water
Stock Photo #1848-748717, Elderly man with a chemical formula written on his hand
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Elderly man with a chemical formula written on his hand
Stock Photo #4128R-13781, Bupropion, molecular model. This antidepressant and smoking cessation aid is sold under the brand names Zyban, Buproban and Wellbutrin. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, oxygen red, nitrogen blue and chlor
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Bupropion, molecular model. This antidepressant and smoking cessation aid is sold under the brand names Zyban, Buproban and W...
Bupropion, molecular model. This antidepressant and smoking cessation aid is sold under the brand names Zyban, Buproban and Wellbutrin. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, oxygen red, nitrogen blue and chlor
Stock Photo #4128R-16311, Amitriptyline, molecular model. Used as an antidepressant. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and nitrogen blue.
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Amitriptyline, molecular model. Used as an antidepressant. Atoms are represented as spheres and are colour_coded: carbon grey...
Amitriptyline, molecular model. Used as an antidepressant. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and nitrogen blue.
Stock Photo #4128R-34042, Insulin receptor, molecular model. The insulin receptor is a transmembrane protein, that is it spans the cellular membrane. The part of the receptor that sits on the outside of the cell, the ectodomain, is seen here, complexed with the antigen-binding fragment (Fab) of an antibody. Binding of insulin to the extracellular part of the protein activates a number of changes inside the cell that lead to the uptake of glucose, the synthesis of glycogen and fatty acids and glycolysis, the production of
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Insulin receptor, molecular model. The insulin receptor is a transmembrane protein, that is it spans the cellular membrane. T...
Insulin receptor, molecular model. The insulin receptor is a transmembrane protein, that is it spans the cellular membrane. The part of the receptor that sits on the outside of the cell, the ectodomain, is seen here, complexed with the antigen-binding fragment (Fab) of an antibody. Binding of insulin to the extracellular part of the protein activates a number of changes inside the cell that lead to the uptake of glucose, the synthesis of glycogen and fatty acids and glycolysis, the production of
Stock Photo #4128R-34110, Integrin and fibrinogen complex. Molecular model of integrin alpha-II beta-3 complexed with fibrinogen. Integrin alpha-II beta-3 is a transmembrane protein found on platelets. Fibrinogen (factor I) is a blood clotting glycoprotein. The binding of these two proteins results in platelet aggregation.
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Integrin and fibrinogen complex. Molecular model of integrin alpha-II beta-3 complexed with fibrinogen. Integrin alpha-II bet...
Integrin and fibrinogen complex. Molecular model of integrin alpha-II beta-3 complexed with fibrinogen. Integrin alpha-II beta-3 is a transmembrane protein found on platelets. Fibrinogen (factor I) is a blood clotting glycoprotein. The binding of these two proteins results in platelet aggregation.
Stock Photo #1848-43916, Bio technology in a bio laboratory, analysis of chemical an biological processes, analysis of DNS and molecules, conditioning for researches and eperiments, conditioning of cell cultures, Germany
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Bio technology in a bio laboratory, analysis of chemical an biological processes, analysis of DNS and molecules, conditioning...
Bio technology in a bio laboratory, analysis of chemical an biological processes, analysis of DNS and molecules, conditioning for researches and eperiments, conditioning of cell cultures, Germany
Stock Photo #1598R-205671, Scientist with Model
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Scientist with Model
Stock Photo #4128R-17745, Cymene, molecular model. Aromatic organic compound, constituent of many essential oils. Atoms are represented as spheres and are colour_coded: carbon grey and hydrogen white.
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Cymene, molecular model. Aromatic organic compound, constituent of many essential oils. Atoms are represented as spheres and ...
Cymene, molecular model. Aromatic organic compound, constituent of many essential oils. Atoms are represented as spheres and are colour_coded: carbon grey and hydrogen white.
Stock Photo #4128R-17244, Ethylene oxide antimicrobial agent, molecular model.
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Ethylene oxide antimicrobial agent, molecular model.
Stock Photo #1647R-128705, High School Student Making Presentation
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High School Student Making Presentation
Stock Photo #4128R-16255, Alpha_Amanitin, molecular model. Deadly amatoxin poison found in mushrooms e. g. death cap. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue, oxygen red and sulfur yellow.
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Alpha_Amanitin, molecular model. Deadly amatoxin poison found in mushrooms e. g. death cap. Atoms are represented as spheres ...
Alpha_Amanitin, molecular model. Deadly amatoxin poison found in mushrooms e. g. death cap. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue, oxygen red and sulfur yellow.
Stock Photo #4128R-19899, Ecdysterone 20_hydoxyecdysone, 20E, molecular model. Major steroidal insect moulting hormone. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and oxygen red.
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Ecdysterone 20_hydoxyecdysone, 20E, molecular model. Major steroidal insect moulting hormone. Atoms are represented as sphere...
Ecdysterone 20_hydoxyecdysone, 20E, molecular model. Major steroidal insect moulting hormone. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and oxygen red.
Stock Photo #1832R-9625, DNA structure
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DNA structure
Stock Photo #4128R-19372, Tretinoin, molecular model. Acid form of vitamin A commonly used to treat acne and hair loss. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and oxygen red.
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Tretinoin, molecular model. Acid form of vitamin A commonly used to treat acne and hair loss. Atoms are represented as sphere...
Tretinoin, molecular model. Acid form of vitamin A commonly used to treat acne and hair loss. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and oxygen red.
Stock Photo #4128R-28287, Serotonin, molecular model. Monoamine neurotransmitter popularly thought to be a contributor to feelings of well-being and happiness. Atoms are represented as spheres and are colour-coded: carbon (grey), hydrogen (blue-green), nitrogen (blue) and oxygen (red).
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Serotonin, molecular model. Monoamine neurotransmitter popularly thought to be a contributor to feelings of well-being and ha...
Serotonin, molecular model. Monoamine neurotransmitter popularly thought to be a contributor to feelings of well-being and happiness. Atoms are represented as spheres and are colour-coded: carbon (grey), hydrogen (blue-green), nitrogen (blue) and oxygen (red).
Stock Photo #4128R-2395, DNA molecule, computer artwork
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DNA molecule, computer artwork
Stock Photo #4128R-18644, Vitamin B12 cobalamin, molecular model. Vitamin playing a key role in the normal functioning of the brain and nervous system. Atoms are represented as spheres and are colour_coded: cobalt pink, carbon grey, hydrogen white, nitrogen blue, oxygen red and ph
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Vitamin B12 cobalamin, molecular model. Vitamin playing a key role in the normal functioning of the brain and nervous system....
Vitamin B12 cobalamin, molecular model. Vitamin playing a key role in the normal functioning of the brain and nervous system. Atoms are represented as spheres and are colour_coded: cobalt pink, carbon grey, hydrogen white, nitrogen blue, oxygen red and ph
Stock Photo #4128R-17269, Prednisone, molecular model. Glutocorticoid prodrug used to treat many different diseases from allergies to cancer. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and oxygen red.
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Prednisone, molecular model. Glutocorticoid prodrug used to treat many different diseases from allergies to cancer. Atoms are...
Prednisone, molecular model. Glutocorticoid prodrug used to treat many different diseases from allergies to cancer. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and oxygen red.
Stock Photo #4128R-18137, DNA molecule. Molecular model of DNA deoxyribonucleic acid.
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DNA molecule. Molecular model of DNA deoxyribonucleic acid.
Stock Photo #4128R-20180, Ecdysterone 20_hydoxyecdysone, 20E, molecular model. Major steroidal insect moulting hormone. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and oxygen red.
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Ecdysterone 20_hydoxyecdysone, 20E, molecular model. Major steroidal insect moulting hormone. Atoms are represented as sphere...
Ecdysterone 20_hydoxyecdysone, 20E, molecular model. Major steroidal insect moulting hormone. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and oxygen red.
Stock Photo #4128R-31271, Afamelanotide skin pigmentation drug, molecular model. Afamelanotide is an analogue of alpha-melanocyte stimulating hormone (a-MSH). It is approved for the treatment of erythropoietic protoporphyria (EPP) but is also used for skin tanning. Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey), oxygen (red) and nitrogen (blue).
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Afamelanotide skin pigmentation drug, molecular model. Afamelanotide is an analogue of alpha-melanocyte stimulating hormone (...
Afamelanotide skin pigmentation drug, molecular model. Afamelanotide is an analogue of alpha-melanocyte stimulating hormone (a-MSH). It is approved for the treatment of erythropoietic protoporphyria (EPP) but is also used for skin tanning. Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey), oxygen (red) and nitrogen (blue).
Stock Photo #4128R-17601, Dextromethorphan, molecular model. Antitussive drug. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue and oxygen red.
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Dextromethorphan, molecular model. Antitussive drug. Atoms are represented as spheres and are colour_coded: carbon grey, hydr...
Dextromethorphan, molecular model. Antitussive drug. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue and oxygen red.
Stock Photo #4128R-33706, Myosin fragment. Molecular molecule of a fragment of striated muscle myosin complexed with ADP (adenosine diphosphate). Myosins are a large family of motor proteins that are responsible for muscle contraction in eukaryotic tissues.
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Myosin fragment. Molecular molecule of a fragment of striated muscle myosin complexed with ADP (adenosine diphosphate). Myosi...
Myosin fragment. Molecular molecule of a fragment of striated muscle myosin complexed with ADP (adenosine diphosphate). Myosins are a large family of motor proteins that are responsible for muscle contraction in eukaryotic tissues.
Stock Photo #4128R-27372, Space-centred cubic crystal structure, computer artwork.
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Space-centred cubic crystal structure, computer artwork.
Stock Photo #4445R-5308, Asian people engaging in nurturing research
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Asian people engaging in nurturing research
Stock Photo #4128R-13790, Digitoxin, molecular model. This heart drug is obtained from the foxglove plant. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and oxygen red.
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Digitoxin, molecular model. This heart drug is obtained from the foxglove plant. Atoms are represented as spheres and are col...
Digitoxin, molecular model. This heart drug is obtained from the foxglove plant. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and oxygen red.
Stock Photo #4128R-18784, Methamphetamine, molecular model. Psychostimulant of the phenethylamine and amphetamine class. High potential for abuse and addiction. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and nitrogen blue.
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Methamphetamine, molecular model. Psychostimulant of the phenethylamine and amphetamine class. High potential for abuse and a...
Methamphetamine, molecular model. Psychostimulant of the phenethylamine and amphetamine class. High potential for abuse and addiction. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and nitrogen blue.
Stock Photo #4128R-18151, Cocaine, molecular model. Alkaloid obtained from coca plant leaves. Serotonin_norepinephrine_dopamine reuptake inhibitor, powerful nervous system stimulant. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue
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Cocaine, molecular model. Alkaloid obtained from coca plant leaves. Serotonin_norepinephrine_dopamine reuptake inhibitor, pow...
Cocaine, molecular model. Alkaloid obtained from coca plant leaves. Serotonin_norepinephrine_dopamine reuptake inhibitor, powerful nervous system stimulant. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue
Stock Photo #4378-3993, Caffeine molecular model. Caffeine acts as a central nervous system stimulant.
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Caffeine molecular model. Caffeine acts as a central nervous system stimulant.
Stock Photo #4128R-34119, Bacterial biofilm enzyme. Molecular model of the enzyme glucansucrase from the bacterium Streptococcus mutans. This enzyme is used to form bacterial biofilms on teeth that cause dental caries (cavities).
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Bacterial biofilm enzyme. Molecular model of the enzyme glucansucrase from the bacterium Streptococcus mutans. This enzyme is...
Bacterial biofilm enzyme. Molecular model of the enzyme glucansucrase from the bacterium Streptococcus mutans. This enzyme is used to form bacterial biofilms on teeth that cause dental caries (cavities).
Stock Photo #4128R-17203, Vitamin B6 pyridoxamine, molecular model. Vitamin converted to pyridoxal phosphate to become biologically active. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue and oxygen red.
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Vitamin B6 pyridoxamine, molecular model. Vitamin converted to pyridoxal phosphate to become biologically active. Atoms are r...
Vitamin B6 pyridoxamine, molecular model. Vitamin converted to pyridoxal phosphate to become biologically active. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue and oxygen red.
Stock Photo #4128R-33825, Bacterial cell wall enzyme. Molecular model of D-alanyl-D-alanine carboxypeptidase, a transpeptidase. This enzyme cross-links peptidoglycan chains in bacterial cell walls, making them rigid. It is the target of the drug penicillin.
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Bacterial cell wall enzyme. Molecular model of D-alanyl-D-alanine carboxypeptidase, a transpeptidase. This enzyme cross-links...
Bacterial cell wall enzyme. Molecular model of D-alanyl-D-alanine carboxypeptidase, a transpeptidase. This enzyme cross-links peptidoglycan chains in bacterial cell walls, making them rigid. It is the target of the drug penicillin.
Stock Photo #4128R-33742, Sex hormone-binding globulin. Molecular model of the sex hormone-binding globulin (SHBG) protein complexed with the male sex hormone dihydrotestosterone. SHBG transports steroid sex hormones in blood and regulates their access to target tissues.
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Sex hormone-binding globulin. Molecular model of the sex hormone-binding globulin (SHBG) protein complexed with the male sex ...
Sex hormone-binding globulin. Molecular model of the sex hormone-binding globulin (SHBG) protein complexed with the male sex hormone dihydrotestosterone. SHBG transports steroid sex hormones in blood and regulates their access to target tissues.
Stock Photo #1846-16482, Molecular Structure hanging on a tree, UV Bar, Anjuna Beach, Anjuna, Bardez, North Goa, Goa, India
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Molecular Structure hanging on a tree, UV Bar, Anjuna Beach, Anjuna, Bardez, North Goa, Goa, India
Stock Photo #4128R-16839, Ivermectin, molecular model. Drug used as a broad_spectrum antiparasitic agent. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and oxygen red.
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Ivermectin, molecular model. Drug used as a broad_spectrum antiparasitic agent. Atoms are represented as spheres and are colo...
Ivermectin, molecular model. Drug used as a broad_spectrum antiparasitic agent. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and oxygen red.
Stock Photo #1672R-8896, Man building molecule
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Man building molecule
Stock Photo #4128R-19905, Sumatriptan, molecular model. Triptan sulfa drug used for the treatment of migraine headaches. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue, oxygen red and sulfur yellow.
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Sumatriptan, molecular model. Triptan sulfa drug used for the treatment of migraine headaches. Atoms are represented as spher...
Sumatriptan, molecular model. Triptan sulfa drug used for the treatment of migraine headaches. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue, oxygen red and sulfur yellow.
Stock Photo #4128R-17547, Pioglitazone, molecular model. Drug used for the treatment of diabetes mellitus type 2. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue, oxygen red and sulfur yellow.
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Pioglitazone, molecular model. Drug used for the treatment of diabetes mellitus type 2. Atoms are represented as spheres and ...
Pioglitazone, molecular model. Drug used for the treatment of diabetes mellitus type 2. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue, oxygen red and sulfur yellow.
Stock Photo #4094-24436, A model of a molecular structure.
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A model of a molecular structure.
Stock Photo #4128R-18733, Podophyllotoxin podofilox, molecular model. Organic compound extracted from the roots and rhizomes of Podophyllum species. Used to treat external genital warts. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and oxygen
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Podophyllotoxin podofilox, molecular model. Organic compound extracted from the roots and rhizomes of Podophyllum species. Us...
Podophyllotoxin podofilox, molecular model. Organic compound extracted from the roots and rhizomes of Podophyllum species. Used to treat external genital warts. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and oxygen
Stock Photo #4128R-33944, Androgen receptor. Molecular model of the DNA-binding region of an androgen receptor (pink and yellow) complexed with DNA (deoxyribonucleic acid, blue and red). Androgen receptors are nuclear receptors that are activated by binding of either of the androgenic (male sex) hormones testosterone or dihydrotestosterone. Binding of the hormones to the androgen receptor translocates it to the nucleus where it binds DNA to switch on genes that code for the development of male reproductive organs and sec
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Androgen receptor. Molecular model of the DNA-binding region of an androgen receptor (pink and yellow) complexed with DNA (de...
Androgen receptor. Molecular model of the DNA-binding region of an androgen receptor (pink and yellow) complexed with DNA (deoxyribonucleic acid, blue and red). Androgen receptors are nuclear receptors that are activated by binding of either of the androgenic (male sex) hormones testosterone or dihydrotestosterone. Binding of the hormones to the androgen receptor translocates it to the nucleus where it binds DNA to switch on genes that code for the development of male reproductive organs and sec
Stock Photo #1598R-10010786, Molecular model of cholesterol
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Molecular model of cholesterol
Stock Photo #4128R-16894, Procaine novocaine, molecular model. Local aesthetic drug acting as a sodium channel blocker. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue and oxygen red.
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Procaine novocaine, molecular model. Local aesthetic drug acting as a sodium channel blocker. Atoms are represented as sphere...
Procaine novocaine, molecular model. Local aesthetic drug acting as a sodium channel blocker. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue and oxygen red.
Stock Photo #4128R-16213, Alpha_Linolenic acid, molecular model. Omega_3 fatty acid found in vegetable oils. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and oxygen red.
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Alpha_Linolenic acid, molecular model. Omega_3 fatty acid found in vegetable oils. Atoms are represented as spheres and are c...
Alpha_Linolenic acid, molecular model. Omega_3 fatty acid found in vegetable oils. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and oxygen red.
Stock Photo #824-111153, NICOTINE MOLECULE. NICOTINE MOLECULE Worldwide distribution except for United Kingdom and Germany. Nicotine, also known as 3-(1-methyl-2-pyrrolidinyl)pyridine, is an alkaloid with an empirical formula of C10H14N2.
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NICOTINE MOLECULE. NICOTINE MOLECULE Worldwide distribution except for United Kingdom and Germany. Nicotine, also known as 3-...
NICOTINE MOLECULE. NICOTINE MOLECULE Worldwide distribution except for United Kingdom and Germany. Nicotine, also known as 3-(1-methyl-2-pyrrolidinyl)pyridine, is an alkaloid with an empirical formula of C10H14N2.
Stock Photo #1598R-10076950, petri dish with clear white and blue gel inside
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petri dish with clear white and blue gel inside
Stock Photo #1555R-331783, Molecular grid
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Molecular grid
Stock Photo #4128R-12448, DNA structure
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DNA structure
Stock Photo #4128R-17196, Galactose, molecular model. Organic compound, type of sugar less sweet than glucose. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and oxygen red.
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Galactose, molecular model. Organic compound, type of sugar less sweet than glucose. Atoms are represented as spheres and are...
Galactose, molecular model. Organic compound, type of sugar less sweet than glucose. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and oxygen red.
Stock Photo #1647R-169682, Sweets in Carmel Market
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Sweets in Carmel Market
Stock Photo #1829-69785, Girls Looking at Molecular Model
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Girls Looking at Molecular Model
Stock Photo #4128R-34100, E. coli virulence factor. Molecular model of the beta-domain of the EspP autotransporter protein from the bacterium Escherichia coli. This virulence factor sits in the bacterium's outer membrane and facilitates the secretion of serine proteases.
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E. coli virulence factor. Molecular model of the beta-domain of the EspP autotransporter protein from the bacterium Escherich...
E. coli virulence factor. Molecular model of the beta-domain of the EspP autotransporter protein from the bacterium Escherichia coli. This virulence factor sits in the bacterium's outer membrane and facilitates the secretion of serine proteases.
Stock Photo #4128R-33951, Rhinovirus capsid, molecular model. This is human rhinovirus. The rhinovirus infects the upper respiratory tract and is the cause of the common cold. It is spread by coughs and sneezes. In viruses, the capsid is the protein shell that encloses the genetic material. A capsid's subunits are capsomeres that self-assemble to form the shell seen here. Here, this shell, approximately spherical in shape, has icosahedral symmetry. One of the functions of the capsid is to aid the transmission of the vira
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Rhinovirus capsid, molecular model. This is human rhinovirus. The rhinovirus infects the upper respiratory tract and is the c...
Rhinovirus capsid, molecular model. This is human rhinovirus. The rhinovirus infects the upper respiratory tract and is the cause of the common cold. It is spread by coughs and sneezes. In viruses, the capsid is the protein shell that encloses the genetic material. A capsid's subunits are capsomeres that self-assemble to form the shell seen here. Here, this shell, approximately spherical in shape, has icosahedral symmetry. One of the functions of the capsid is to aid the transmission of the vira
Stock Photo #4297-1124, Computer generated three-dimensional ball and stick model of the amino acid, Carbon atoms are shown in light blue, nitrogen in dark blue, hydrogen in grey, and oxygen in white
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Computer generated three-dimensional ball and stick model of the amino acid, Carbon atoms are shown in light blue, nitrogen i...
Computer generated three-dimensional ball and stick model of the amino acid, Carbon atoms are shown in light blue, nitrogen in dark blue, hydrogen in grey, and oxygen in white
Stock Photo #1436R-443309, DNA Double Helix Model on black background - 3D render - Concept image
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DNA Double Helix Model on black background - 3D render - Concept image
Stock Photo #4128R-16489, Atenolol, molecular model. Beta blocker used in the treatment of hypertension. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue and oxygen red.
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Atenolol, molecular model. Beta blocker used in the treatment of hypertension. Atoms are represented as spheres and are colou...
Atenolol, molecular model. Beta blocker used in the treatment of hypertension. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue and oxygen red.
Stock Photo #4128R-16640, Tetrodotoxin TTX, molecular model. Potent neurotoxin without antidote occurring in several marine species, among them the pufferfish. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue and oxygen red.
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Tetrodotoxin TTX, molecular model. Potent neurotoxin without antidote occurring in several marine species, among them the puf...
Tetrodotoxin TTX, molecular model. Potent neurotoxin without antidote occurring in several marine species, among them the pufferfish. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue and oxygen red.
Stock Photo #1566-05635,
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Stock Photo #1848-560699, Biotechnology, fluorescence microscope, a special version of a light microscope that can visualise fluorescent labelled molecules within a cell, Centre for Medical Biotechnology of the University Duisburg_Essen, North Rhine_Westfalia, Germany, Europe
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Biotechnology, fluorescence microscope, a special version of a light microscope that can visualise fluorescent labelled molec...
Biotechnology, fluorescence microscope, a special version of a light microscope that can visualise fluorescent labelled molecules within a cell, Centre for Medical Biotechnology of the University Duisburg_Essen, North Rhine_Westfalia, Germany, Europe
Stock Photo #1848-7872, Nitrous oxide
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Nitrous oxide
Stock Photo #4128R-18872, Etoposide, molecular model. Topoisomerase inhibitor used in chemotherapy for cancers as Ewing´s sarcoma, lung cancer, testicular cancer, lymphoma, and lymphocytic leukaemia. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen whit
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Etoposide, molecular model. Topoisomerase inhibitor used in chemotherapy for cancers as Ewing´s sarcoma, lung cancer, testicu...
Etoposide, molecular model. Topoisomerase inhibitor used in chemotherapy for cancers as Ewing´s sarcoma, lung cancer, testicular cancer, lymphoma, and lymphocytic leukaemia. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen whit
Stock Photo #4128R-19370, Phtalic acid, molecular model. Aromatic dicarboxylic acid. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and oxygen red.
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Phtalic acid, molecular model. Aromatic dicarboxylic acid. Atoms are represented as spheres and are colour_coded: carbon grey...
Phtalic acid, molecular model. Aromatic dicarboxylic acid. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and oxygen red.
Stock Photo #824-40012, GENETICS, DNA
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GENETICS, DNA
Stock Photo #824-37162, VIAGRA. Viagra. Active molecule : sidenafil , therapeutic class : inhibiteur de la phosphodiestérase de type 5 inhibiteur de la PDE_5. Le viagra is recommanded in the treatment of erection disorders. phosphodiesterase type 5 destroys the GMPc in the corpus cavernosum. Although the GMPc enables the relaxation of the smooth muscular fibers of the corpus cavernosa then leading to the erection. The sildenafil preventing the destruction of GMPc with the phosphodiesterase type 5 will enable the reacti
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VIAGRA. Viagra. Active molecule : sidenafil , therapeutic class : inhibiteur de la phosphodiestérase de type 5 inhibiteur de ...
VIAGRA. Viagra. Active molecule : sidenafil , therapeutic class : inhibiteur de la phosphodiestérase de type 5 inhibiteur de la PDE_5. Le viagra is recommanded in the treatment of erection disorders. phosphodiesterase type 5 destroys the GMPc in the corpus cavernosum. Although the GMPc enables the relaxation of the smooth muscular fibers of the corpus cavernosa then leading to the erection. The sildenafil preventing the destruction of GMPc with the phosphodiesterase type 5 will enable the reacti
Stock Photo #4128R-14877, Water molecule. Atoms are represented as spheres and are colour_coded: oxygen red and hydrogen white.
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Water molecule. Atoms are represented as spheres and are colour_coded: oxygen red and hydrogen white.
Stock Photo #1598R-186736, Close-Up of Molecular Structure Diagrams
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Close-Up of Molecular Structure Diagrams
Stock Photo #1848-459157, Atomium, built from steel and aluminum for the World Exhibition in 1958, iron molecule magnified 165 billion times, Brussels, Belgium, Europe
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Atomium, built from steel and aluminum for the World Exhibition in 1958, iron molecule magnified 165 billion times, Brussels,...
Atomium, built from steel and aluminum for the World Exhibition in 1958, iron molecule magnified 165 billion times, Brussels, Belgium, Europe
Stock Photo #4128R-20317, Strychnine, molecular model. Highly toxic colourless crystalline alkaloid used as a pesticide, particularly for killing rodents. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue and oxygen red.
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Strychnine, molecular model. Highly toxic colourless crystalline alkaloid used as a pesticide, particularly for killing roden...
Strychnine, molecular model. Highly toxic colourless crystalline alkaloid used as a pesticide, particularly for killing rodents. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue and oxygen red.
Stock Photo #1895-14576, Sperm Whale myoglobin, ball and spoke model, c 1972.
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Sperm Whale myoglobin, ball and spoke model, c 1972.
Stock Photo #4128R-19133, Tretinoin, molecular model. Acid form of vitamin A commonly used to treat acne and hair loss. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and oxygen red.
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Tretinoin, molecular model. Acid form of vitamin A commonly used to treat acne and hair loss. Atoms are represented as sphere...
Tretinoin, molecular model. Acid form of vitamin A commonly used to treat acne and hair loss. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and oxygen red.
Stock Photo #4128R-19035, Vitamin E, molecular model. Vitamin whose deficiency leads to neuromuscular problems. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and oxygen red.
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Vitamin E, molecular model. Vitamin whose deficiency leads to neuromuscular problems. Atoms are represented as spheres and ar...
Vitamin E, molecular model. Vitamin whose deficiency leads to neuromuscular problems. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and oxygen red.
Stock Photo #4128R-13809, Hydrogen cyanide, molecular model. This poisonous chemical is used in the production of explosives and in tempering steel. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and nitrogen blue.
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Hydrogen cyanide, molecular model. This poisonous chemical is used in the production of explosives and in tempering steel. At...
Hydrogen cyanide, molecular model. This poisonous chemical is used in the production of explosives and in tempering steel. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and nitrogen blue.
Stock Photo #4128R-34096, Poly(A) polymerase and RNA. Molecular model of poly(A) polymerase complexed with RNA (ribonucleic acid) and ATP (adenosine triphosphate). Poly(A) polymerase is an enzyme that adds a poly(A) tail to an RNA molecule.
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Poly(A) polymerase and RNA. Molecular model of poly(A) polymerase complexed with RNA (ribonucleic acid) and ATP (adenosine tr...
Poly(A) polymerase and RNA. Molecular model of poly(A) polymerase complexed with RNA (ribonucleic acid) and ATP (adenosine triphosphate). Poly(A) polymerase is an enzyme that adds a poly(A) tail to an RNA molecule.
Stock Photo #4128R-16583, Benzonitrile, molecular model. Aromatic organic compound, precursor to many derivatives. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and nitrogen blue.
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Benzonitrile, molecular model. Aromatic organic compound, precursor to many derivatives. Atoms are represented as spheres and...
Benzonitrile, molecular model. Aromatic organic compound, precursor to many derivatives. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and nitrogen blue.
Stock Photo #4128R-31343, Omacetaxine mepesuccinate leukemia drug, molecular model. This drug inhibits protein synthesis and is used in the treatment of chronic myelogenous leukemia (CML). Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey), oxygen (red) and nitrogen (blue).
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Omacetaxine mepesuccinate leukemia drug, molecular model. This drug inhibits protein synthesis and is used in the treatment o...
Omacetaxine mepesuccinate leukemia drug, molecular model. This drug inhibits protein synthesis and is used in the treatment of chronic myelogenous leukemia (CML). Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey), oxygen (red) and nitrogen (blue).
Stock Photo #4128R-19744, Hydroiodic acid, molecular model. Strong acid used in organic and inorganic synthesis as a primary source of iodine. Atoms are represented as spheres and are colour_coded: iodine violet and hydrogen white.
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Hydroiodic acid, molecular model. Strong acid used in organic and inorganic synthesis as a primary source of iodine. Atoms ar...
Hydroiodic acid, molecular model. Strong acid used in organic and inorganic synthesis as a primary source of iodine. Atoms are represented as spheres and are colour_coded: iodine violet and hydrogen white.
Stock Photo #4128R-17021, Myristicin, molecular model. Natural organic compound found in the essential oil of nutmeg. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and oxygen red.
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Myristicin, molecular model. Natural organic compound found in the essential oil of nutmeg. Atoms are represented as spheres ...
Myristicin, molecular model. Natural organic compound found in the essential oil of nutmeg. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and oxygen red.
Stock Photo #824-20871, GENETICS, DNA
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GENETICS, DNA
Stock Photo #1895-6263, Model to demonstrate random vibrations of atoms in a crystal, c 1981.
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Model to demonstrate random vibrations of atoms in a crystal, c 1981.
Stock Photo #4128R-19307, Cellulose, molecular model. Polysaccharide consisting of a linear chain of D_glucose units. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and oxygen red.
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Cellulose, molecular model. Polysaccharide consisting of a linear chain of D_glucose units. Atoms are represented as spheres ...
Cellulose, molecular model. Polysaccharide consisting of a linear chain of D_glucose units. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and oxygen red.
Stock Photo #4128R-19017, Heroin, molecular model.
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Heroin, molecular model.
Stock Photo #824-40482, VARENICLINE. Champix active molecule : Varenicline is a drug recommended in the framework of tobacco withdrawal date of authorization of commercialization : September 2006, commercialized in France beginning of 2007. It acts as a partial agonist of nicotinic receptors. Here, conditionning of the beginning of treatment : a week of tablets of 0,5 mg of varenicline white on blue background, once then twice a day then a week of tablets of 1 mg of varenicline light blue on green background.
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VARENICLINE. Champix active molecule : Varenicline is a drug recommended in the framework of tobacco withdrawal date of autho...
VARENICLINE. Champix active molecule : Varenicline is a drug recommended in the framework of tobacco withdrawal date of authorization of commercialization : September 2006, commercialized in France beginning of 2007. It acts as a partial agonist of nicotinic receptors. Here, conditionning of the beginning of treatment : a week of tablets of 0,5 mg of varenicline white on blue background, once then twice a day then a week of tablets of 1 mg of varenicline light blue on green background.
Stock Photo #4128R-33699, Aspartyl-tRNA synthetase protein molecule. Molecular model showing bacterial aspartyl-tRNA synthetase complexed with aspartyl tRNA (transfer ribonucleic acid). Aspartyl-tRNA synthetase attaches the correct amino acid, in this case aspartyl, onto the corresponding tRNA molecule during protein translation.
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Aspartyl-tRNA synthetase protein molecule. Molecular model showing bacterial aspartyl-tRNA synthetase complexed with aspartyl...
Aspartyl-tRNA synthetase protein molecule. Molecular model showing bacterial aspartyl-tRNA synthetase complexed with aspartyl tRNA (transfer ribonucleic acid). Aspartyl-tRNA synthetase attaches the correct amino acid, in this case aspartyl, onto the corresponding tRNA molecule during protein translation.
Stock Photo #4029R-131071, close-up, health, healthcare
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close-up, health, healthcare
Stock Photo #4128R-1815, DNA molecule, artwork
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DNA molecule, artwork
Stock Photo #4128R-17412, Phenol carbolic acid, molecular model. Organic compound used for building polycarbonates, epoxies, Bakelite, nylon, detergents and a large collection of drugs. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and oxygen r
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Phenol carbolic acid, molecular model. Organic compound used for building polycarbonates, epoxies, Bakelite, nylon, detergent...
Phenol carbolic acid, molecular model. Organic compound used for building polycarbonates, epoxies, Bakelite, nylon, detergents and a large collection of drugs. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white and oxygen r
Stock Photo #4128R-18446, Norepinephrine, molecular model. Catecholamine acting also as a hormone and a neurotransmitter. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue and oxygen red.
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Norepinephrine, molecular model. Catecholamine acting also as a hormone and a neurotransmitter. Atoms are represented as sphe...
Norepinephrine, molecular model. Catecholamine acting also as a hormone and a neurotransmitter. Atoms are represented as spheres and are colour_coded: carbon grey, hydrogen white, nitrogen blue and oxygen red.

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