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Cross-section Plant Stem under the microscope for classroom education.
plant Pine Stem C.S. under light mircoscope with white background
Isolated transparent physics atom, 3d rendering. 3D illustration.
corn stem micrograph with dye
Epidermis. Electron microscope micrograph showing a keratinocyte of spinous layer. The epithelial cell has a polygonal shape, central nucleus with nucleolus, cytoplasm full of keratin filament bundles, and numerous dark desmosomes crossing the intercellular spaces.
Digital background depicting innovative technologies in (AI) artificial systems, neural interfaces and internet machine learning technologies
plant cells under a microscope, stem section
Human embryonic stem cells
Host cells with spores (mold) are inside wood under the microscope for education.
Colorful seamless pattern with Crystal stones.
Leiden leaf c.s. under microscope
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.
Pine mature wood cross section. Light microscope slide with microsection of an evergreen conifer in the genus Pinus. Plant anatomy. Biology. Photo.
Future Technology Digital Transformation Innovation Advancement Futuristic Artificial Intelligence
3d illustration of cell membrane
Abstract gravity wave background. 3d rendered image.
microscopy micrograph plant tissue, stem of pumpkin, magnification 200X
Curly marble stone with fashion veins.
The study of plant tissues under the microscope in the laboratory.
A model of a strand of DNA. Isolated on black.
Cotton plant root, under the light microscope. Longitudinal section through the root of Gossypium hirsutum, upland or also Mexican cotton. Light micrograph at 20X magnification. Isolated, over white.
Microscopic image of Microscopic image of nymphaea of aqustio stem
Coloured transmission electron micrograph (TEM) of a small arteriole showing, from lumen: endothelium (magenta), discontinuous internal elastic lamina (blue), cross-sectioned smooth muscle fibers (cytoplasm, red, nucleus, light yellow) and connective tissue of adventitia (green).
Human embryonic stem cells
3D cartoon and Gaussian surface models, PDB 6rwb, white background
Phospholipid bilayer membrane structures that make up living cells and their contents. This is an image of membrane proteins in the membrane.\nThis image, which looks like a plastic model, evokes biology and biochemistry. It can be used as a cover for magazines, textbooks and presentation materials.\nThis image was not created by AI.
Lily leaf c.s. under microscope
Close-up shooting of a green agate stone mineral surface isolated on white background. Its a macro shot shows nature beautiful details with back lit. Agate is a kind of natural gemstone. Abstract pattern. Good for Wallpaper texture background. Turquoise, blue
3d : human cell or embryonic stem cell microscope background. 3d rendering
Intricate bubble texture macro in bright colors for abstract background. Liquid bubbles lit from below with colors injected into the liquid as a design or art abstract.
Free Images: "bestof:Morpholine-unit-cell-3D-vdW.png Space-filling model of the unit cell of morpholine C<sub>4</sub>H<sub>9</sub>NO X-ray crystallographic data from cite journal"
Instrumental Temperature Record bs.svg
Instrumental Temperature Record.svg
Pie chart of lung cancers.svg
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portugues-sexo_alemão-sex_ingles-sex_africano-seks_russo-секс_albanes-sex_chines-性別_bulgaro-секс_croata-spol_gales-rhyw_coreano-섹스_frances-sexe_japones-セックス_filandes-sukupuolesta_arabe-الجنس_prontos_ai_tens_em_15_linguas_a_p.jpg
portugues-sexo_alemão-sex_ingles-sex_africano-seks_russo-секс_albanes-sex_chines-性別_bulgaro-секс_croata-spol_gales-rhyw_coreano-섹스_frances-sexe_japones-セックス_filandes-sukupuolesta_arabe-الجنس_prontos_ai_tens_em_15_linguas_a_p.jpg
Morpholine-unit-cell-3D-vdW.png
Morpholine-unit-cell-3D-balls.png
Tin-tetraiodide-unit-cell-3D-vdW.png
InCp-unit-cell-3D-vdW.png
Piperazine-unit-cell-3D-balls.png
Potassium-cyanide-phase-I-unit-cell-3D-SF.png
Morpholine-from-xtal-3D-vdW-D.png
Morpholine-from-xtal-3D-vdW-C.png
Morpholine-from-xtal-3D-vdW-B.png
Morpholine-from-xtal-3D-vdW-A.png
Morpholine-xtal-3D-vdW.png
Piperazine-xtal-3D-vdW.png
Cotunnite-unit-cell-3D-balls-B.png
Potassium-thiocyanate-unit-cell-3D-balls-B.png
Tin-tetraiodide-unit-cell-3D-polyhedra.png
Potassium-thiocyanate-unit-cell-3D-balls-A.png
Tin-tetraiodide-unit-cell-3D-balls.png
Gold-trifluoride-unit-cell-3D-balls.png
InCp-unit-cell-3D-balls.png
Magnesium-hydride-unit-cell-3D-balls.png
Potassium-perchlorate-unit-cell-3D-balls-orthographic.png
Arsenic-pentoxide-unit-cell-3D-balls.png
Ammonium-perchlorate-unit-cell-3D-balls-B.png
Potassium-carbonate-unit-cell-3D-balls.png
Potassium-perchlorate-unit-cell-3D-balls-perspective.png
Potassium-permanganate-2004-unit-cell-3D-balls.png
Cyanogen-unit-cell-3D-vdW.png
Lead(II)-nitrate-unit-cell-3D-balls.png
YBCO-unit-cell-3D-balls.png
Sodium-thiosulfate-pentahydrate-unit-cell-3D-vdW.png
Aluminium-hydride-unit-cell-3D-vdW.png
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YBCO-unit-cell-CM-3D-balls.png
18-crown-6-potassium-chlorochromate-unit-cell-3D-vdW.png
Sodium-thiosulfate-two-thirds-hydrate-unit-cell-3D-vdW.png
Potassium-cyanide-phase-I-unit-cell-CM-3D-balls.png
Potassium-cyanide-phase-I-unit-cell-3D-balls.png
Morpholine-from-xtal-3D-balls-B.png
Morpholine-from-xtal-3D-balls-A.png
Morpholine-from-xtal-3D-balls-D.png
Morpholine-from-xtal-3D-balls-C.png
Biperiden-3D-vdW.png
Cimetidine-xtal-3D-vdW.png
Piperazine-xtal-3D-balls.png
Tetraborane-3D-balls.png
Triphenylphosphine-3D-vdW.png
Allylpalladium-chloride-dimer-3D-vdW.png
Triphenylarsine-3D-vdW.png
Hexaferrocenylbenzene-3D-vdW.png
Phenylthiourea-from-xtal-3D-vdW.png
Carbaryl-3D-vdW.png
Lead-tetraacetate-3D-vdW.png
Dimethyl-sulfoxide-3D-vdW-A.png
InCp-chain-3D-vdW.png
Biphenylene-from-xtal-3D-vdW.png
Phosphite-ion-from-xtal-3D-vdW.png
Benzocaine-from-xtal-3D-vdW.png
Gold-trifluoride-3D-vdW.png
Diketene-from-xtal-3D-vdW.png
1,3,5-trithiane-from-xtal-3D-vdW.png
Paracetamol-from-xtal-3D-vdW.png
Potassium-thiocyanate-xtal-3D-vdW-A.png
Potassium-graphite-xtal-3D-SF-A.png
Potassium-graphite-xtal-3D-SF-B.png
Potassium-graphite-xtal-3D-SF-C.png
Potassium-perchlorate-xtal-3D-SF.png
Amygdalin-from-xtal-3D-vdW.png
2,4-dinitrophenylhydrazine-from-xtal-3D-vdW.png
Ibuprofen-unit-cell-enantiomers-3D-vdW.png
Bromazepam-from-xtal-3D-vdW.png
Valdecoxib-from-xtal-3D-vdW.png
Epsilon-oxygen-xtal-3D-vdW.png
Azoxystrobin-from-xtal-3D-vdW.png
Silver-azide-high-T-single-layer-3D-vdW.png
Magnesium-hydride-xtal-3D-ionic-A.png
Magnesium-hydride-xtal-3D-ionic-B.png
Magnesium-hydride-xtal-3D-ionic-C.png
Haloperidol-from-xtal-3D-vdW.png
Diazepam-from-xtal-3D-vdW.png
Diphenyl-disulfide-from-xtal-3D-vdW.png
Potassium-carbonate-xtal-3D-SF.png
Phosphorus-trioxide-xtal-3D-vdW-A.png
Phosphorus-trioxide-xtal-3D-vdW-B.png
Potassium-permanganate-2004-xtal-3D-SF-A.png
Potassium-permanganate-2004-xtal-3D-SF-B.png
N-nitroso-N-methylurea-from-xtal-3D-vdW.png
Ebselen-3D-vdW.png
Octaoxygen-from-xtal-3D-vdW.png
Allyl-silatrane-from-xtal-3D-vdW.png
Potassium-thiocyanate-xtal-3D-vdW-B.png
Silver-azide-high-T-layer-stacking-3D-vdW.png
Benzenediazonium-chloride-xtal-3D-vdW.png
P-arsanilic-acid-from-xtal-3D-vdW.png
Phenylmercury(II)-acetate-from-xtal-3D-vdW.png
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