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Science background with molecule or atom
Fictitious molecule model inside red and blue pill isolated on white.
alien structure made of white spheres and flowing glass liquid, molecular, hi-tech concept, abstract design element
Inside protein molecule
Bacterial multidrug efflux pumps (E-CmeB) expel antibiotics  from inside the bacterium (bottom): ciprofloxacin (yellow), chloramphenicol (violet),  ampicillin (red).
Computer generated 3D render of ball and stick molecules.
3d Rendering Molecular Structure,Ozone,Hydrogen and oxygen
3D cartoon and Gaussian surface models, PDB 6h5i, white background
Artificial Intelligence: Simplified image of the principles of convolutional neural networks with input, hidden, output layers. It classifies geometric forms - in this case a cube
Abstract shape with particles on blue background. Digitally generated image.
Fruiting bodies (conidiophores) and hyphae of the fungus Aspergillus niger. A. niger is a widely distributed saprophyte which grows on household dust, soil, and decaying vegetable matter, including stale food. A. niger is one of the most common causes of fungal ear infections and may result in the serious lung disease aspergillosis in people with compromised immune function or other lung diseases. A. niger is used for waste management and biotransformation in addition to other industrial uses, such as production of citric acid and extracellular enzymes. Coloured scanning electron micrograph (SEM), magnified x415 when printed at 10cm wide.
nanotechnology and abstract graphene structures
Bacterial dehalogenases remove halogen atoms from organic compounds. The one shown here is a reductive dehalogenase from PDB entry 4ur0. It uses a cobamide cofactor (orange) and iron-sulfur clusters to reduce the substrate. Dehalogenases may be used as a way to clean up areas polluted with halogenated compounds.
A model of the phospholipid bilayer structure that makes up living cells and their contents. Its raw, beautiful appearance evokes images of biology and biochemistry. It can be used in magazines and textbooks and on the covers of presentations.\nThis image was not created by AI.
Plastic granules. Polymer pellets. Polymeric dye. Plastic pellets. Colorant for plastics. Pigment in the granules.
Trippy Abstract Shapes on white background
Spike glycoprotein homotrimer, a main target for neutralization antibody, to bind its receptor, and mediate membrane fusion and virus entry. Surface model, white background.
Futuristic technology
Isolated Lipid nanoparticleis containg RNA strand 3d rendering
Abstract Connected Spheres, Artificial Intelligence Technology Background. Digitally generated image.
Metal sphere render, isolated on white with clipping path
Freshness capsule
Biological protein and molecule, 3d rendering. 3D illustration.
Twril Fluids
3D cartoon and Gaussian surface models, PDB 1j7n, chain id color scheme, white background
In vitro bacterial culture
3D illustration molecular structure. Molecular chemistry, background with molecular element of the atom. Medical background. Genome at the molecular level.
Molecular structure of Hexane C6H14
Ferritin is an intracellular protein that stores iron an releases it when required. Iron enters plant ferritin through the hydrophilic 4-fold channel. Source: PDB entry 5yi5
Close-up shot of a petri dish for checking an antibiotic in the laboratory.
Free Images: "bestof:Lead(II)-nitrate-unit-cell-3D-balls.png Ball-and-stick model of the unit cell of lead II nitrate Pb NO<sub>3</sub> <sub>2</sub> X-ray crystallographic data from"
Design_Analysis_of_the_F6F-5_Hellcat.png
Lead(II)-nitrate-unit-cell-3D-balls.png
Lead(II)-nitrate-xtal-3D-balls-B.png
Lead(II)-nitrate-xtal-3D-balls-C.png
Lead(II)-nitrate-xtal-3D-balls-A.png
Cotunnite-unit-cell-3D-balls-B.png
Lead(II)-nitrate-xtal-NO3-coordination-3D-balls.png
Lead(II)-nitrate-xtal-Pb-coordination-3D-balls.png
Lead(II)-nitrate-xtal-3D-SF.png
Cotunnite-Pb-coordination-CM-3D-balls.png
Morpholine-unit-cell-3D-balls.png
InCp-unit-cell-3D-balls.png
Potassium-thiocyanate-unit-cell-3D-balls-B.png
Piperazine-unit-cell-3D-balls.png
Potassium-thiocyanate-unit-cell-3D-balls-A.png
Rutile-unit-cell-3D-balls.png
Tin-tetraiodide-unit-cell-3D-balls.png
Gold-trifluoride-unit-cell-3D-balls.png
Arsenic-pentoxide-unit-cell-3D-balls.png
Lead-tetraacetate-3D-balls.png
Ammonium-perchlorate-unit-cell-3D-balls-B.png
Magnesium-hydride-unit-cell-3D-balls.png
Strontium-iodide-unit-cell-3D-balls.png
Potassium-carbonate-unit-cell-3D-balls.png
Ga3Cl7-unit-cell-3D-balls.png
YBCO-unit-cell-3D-balls.png
Diammonium-hexafluorosilicate-unit-cell-3D-balls-A.png
Diammonium-hexafluorosilicate-unit-cell-3D-balls-B.png
Diammonium-hexafluorosilicate-unit-cell-3D-balls-E.png
Diammonium-hexafluorosilicate-unit-cell-3D-balls-C.png
Diammonium-hexafluorosilicate-unit-cell-3D-balls-F.png
Diammonium-hexafluorosilicate-unit-cell-3D-balls-H.png
Diammonium-hexafluorosilicate-unit-cell-3D-balls-G.png
Diammonium-hexafluorosilicate-unit-cell-3D-balls-D.png
Potassium-perchlorate-unit-cell-3D-balls-orthographic.png
Potassium-perchlorate-unit-cell-3D-balls-perspective.png
YBCO-unit-cell-CM-3D-balls.png
Potassium-permanganate-2004-unit-cell-3D-balls.png
Arsenic-pentachloride-unit-cell-CM-3D-balls.png
Boron-phosphide-unit-cell-1963-CM-3D-balls.png
Boron-arsenide-unit-cell-1963-CM-3D-balls.png
YBCO-unit-cell-CM-3D-balls-labelled.png
Tetraphenylphosphonium-chloride-dihydrate-unit-cell-3D-balls.png
Thallium-triiodide-unit-cell-CM-3D-balls-A.png
Thallium-triiodide-unit-cell-CM-3D-balls-B.png
Cotunnite-Cl-coordination-geometry-3D-balls.png
Potassium-cyanide-phase-I-unit-cell-3D-balls.png
Potassium-cyanide-phase-I-unit-cell-CM-3D-balls.png
Polonium-dichloride-xtal-2x2x2-1955-3D-balls.png
Hexaaquacobalt(II)-nitrate-xtal-1973-unit-cell-CM-3D-balls.png
Aspirin-unit-cell-3D-balls.png
Cyanogen-unit-cell-A-3D-balls.png
Cyanogen-unit-cell-B-3D-balls.png
Lead-tetraacetate-3D-vdW.png
Hydroxylammonium-sulfate-unit-cell-3D-balls.png
Potassium-chlorochromate-unit-cell-3D-balls.png
Aluminium-hydride-unit-cell-3D-balls.png
Zinc-pyrithione-unit-cell-3D-balls.png
Sertraline-hydrochloride-form-I-unit-cell-3D-balls.png
Sodium-thiosulfate-pentahydrate-unit-cell-3D-balls.png
Dppf-PtCl2-from-xtal-3D-balls-A.png
Dppf-PtCl2-from-xtal-3D-balls-B.png
Tin-tetraiodide-unit-cell-3D-polyhedra.png
Tin-tetraiodide-unit-cell-3D-vdW.png
Sodium-thiosulfate-two-thirds-hydrate-unit-cell-3D-balls.png
Mo(NCS)2(dppe)2-3D-balls.png
Diazepam-from-xtal-3D-balls.png
Allyl-butadiene-cyclopentadienyl-molybdenum-from-xtal-3D-balls.png
Pentaplumbide-anion-from-xtal-3D-balls.png
N-nitroso-N-methylurea-from-xtal-3D-balls.png
Sodium-gold(I)-thiosulfate-dihydrate-unit-cell-3D-balls.png
PdCl2(dppe)-3D-balls.png
Morpholine-unit-cell-3D-vdW.png
InCp-unit-cell-3D-vdW.png
Phenylmercury(II)-acetate-from-xtal-3D-balls.png
Iron(II)-chloride-xtal-3D-balls-A.png
Iron(II)-chloride-xtal-3D-balls-C.png
Mercury(II)-acetate-from-xtal-1973-3D-balls-A.png
Lead(IV)-chloride-from-xtal-2002-3D-balls.png
Ebselen-3D-balls.png
Claudetite-II-layer-3D-balls.png
Cu(H2edta)(H2O)-from-xtal-3D-balls.png
PdCl2(dppm)-from-xtal-3D-balls-A.png
PdCl2(dppm)-from-xtal-3D-balls-B.png
PdCl2(dppm)-from-xtal-3D-balls-C.png
PdCl2(dppm)-from-xtal-3D-balls-D.png
Potassium-nitrosodisulfonate-unit-cell-3D-balls.png
Nonaplumbide-anion-from-xtal-3D-balls.png
Mercury(II)-acetate-xtal-1973-3D-balls.png
Lead(IV)-chloride-xtal-2002-3D-balls.png
Diiodopenta(THF)samarium(II)-3D-balls.png
Claudetite-II-layers-3D-balls.png
Trans-dichlorobis(triphenylphosphine)platinum(II)-from-xtal-3D-balls.png
Trans-diiodobis(triphenylphosphine)palladium(II)-from-xtal-3D-balls.png
Dichlorobis(triphenylphosphine)iron(II)-from-xtal-3D-balls.png
Trans-dichlorobis(triphenylphosphine)palladium(II)-from-xtal-3D-balls.png
Trans-dibromobis(triphenylphosphine)palladium(II)-from-xtal-3D-balls.png
1,2-dichloroethane-from-xtal-3D-balls.png
Iron(II)-chloride-xtal-sheet-3D-balls-A.png
Iron(II)-chloride-xtal-sheet-3D-balls-B.png
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