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Leiden leaf c.s. under microscope
plant Flower bud of Lilium brownii var.viridulum T.S.\nunder light mircoscope with white background
White gooseneck loosestrife, Lysimachia clethroides, white flower spike in close up with a blurred background of leaves.
Early stage, two days, fertilized human eggs before transfer to the woman in an IVF procedure.
specimen of natural raw velvet malachite mineral cutout on white background
Yarrow (Achillea millefolium)
Pegmatite rock close up with many crystals.
Dicot plants stem show plant vascular tissue under light microscope view for botany education.
Golden Zebra print pattern leather cut as background textured and wallpaper. Rustic style
Small, rather slender Tree, with smooth silvery-gray Branches. Leaves pinnate, with 5-7 pairs of oblong toothed leaflets, green, hairy beneath. Flowers 8-10mm, in domes clusters.\nHabitat: Woodland, Hedgerows, Moors and Mountains to 2400m, mainly on light Soils. \nFlowering Season: May-June.\nDistribution: Western Europe, except the far North.\n\nThis is a common Species in the Netherlands. Also planted in Parks.
microscopic view of plant cells for botanic education and analysis
Spring Flowers Coming to Life Heavy Contrast Dark to Light. Life after Winter Ends.
Cassiterite tin oxide mineral isolated on white background
Surface photography of nature pattern Crystal shot for background.
Olivine, closeup of the gemstone cut out on a white background
Magnified close up of an igneous rock with metallic minerals in the cracks.
Mineral stone asbestos.   The six types of asbestos are chrysotile, crocidolite, amosite, anthophyllite asbestos, tremolite asbestos, and actinolite asbestos.
Untouched nature. When a small piece of cultivated land is left alone for a year during the summer, a remarkable transformation takes place. wildflowers begins to emerge, painting the landscape with vibrant hues. Native plants reclaim their territory and bring biodiversity back to the area. Buried seeds from seasons past awaken, shooting up.
specimen of natural raw green kyanite mineral cutout on white background
corn stem micrograph with dye
Labradorite of natural mineral from geological collection. Close up macro
White flowers
a blob of molten metal
Galena a mineral specimen of natural lead ore collected in the UK
Sample of biotite Schist, from the shear zone in the Beitbridge Complex in South Africa. Schist is metamorphic rock caused by pressure during medium grade metamorphism.
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
microscopic view of plant cells for botanic education and analysis
Number 20 Pattern Design on Banknote
Micrograph illustration of fungus most often found in the lungs.
Lumpy sedimentary rock close up.
Free Images: "bestof:Scandium(III)-sulfide-xtal-1964-unit-cell-CM-3D-SF-c.png Space-filling model of part of the crystal structure of scandium III sulfide Sc<sub>2</sub>S<sub>3</..."
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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
Scandium(III)-sulfide-xtal-1964-unit-cell-CM-3D-SF-a.png
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Scandium(III)-sulfide-xtal-1964-unit-cell-CM-3D-SF-c.png
Scandium-triflate-hydrate-xtal-293K-3D-SF.png
Scandium(III)-sulfide-xtal-1964-unit-cell-CM-3D-balls.png
Scandium-monosulfide-xtal-1964-unit-cell-CM-3D-SF.png
Scandium-triflate-hydrate-xtal-293K-Sc-coordination-3D-SF.png
Scandium-triflate-hydrate-xtal-293K-triflate-anion-3D-vdW.png
Calcium-sulfide-3D-ionic.png
Scandium-monosulfide-xtal-1964-unit-cell-CM-3D-balls.png
Scandium-triflate-hydrate-xtal-293K-Sc-coordination-3D-balls.png
Antimony(III)-oxide-valentinite-xtal-2004-3D-SF.png
Antimony(III)-oxide-senarmontite-xtal-2004-3D-SF.png
Chromium(III)-chloride-layers-stacking-from-monoclinic-xtal-3D-SF.png
Scandium-triflate-hydrate-xtal-293K-triflate-anion-3D-balls.png
Scandium(III)-triflate-triphenylphosphine-oxide-complex-from-xtal-3D-balls.png
Chromium(III)-chloride-sheet-from-monoclinic-xtal-3D-SF.png
Chromium(III)-chloride-sheet-from-monoclinic-xtal-3D-balls-SF-overlay.png
NaCp-xtal-3D-SF-B.png
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Gold-trifluoride-3D-vdW.png
Calcium-sulfide-3D-balls.png
Hydroxylammonium-nitrate-3D-vdW.png
Calaverite-xtal-3D-ionic.png
Aspirin-xtal-A-3D-vdW.png
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Chlorine-xtal-3D-vdW.png
Bromine-xtal-3D-vdW.png
Cyanogen-xtal-3D-vdW.png
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Calomel-xtal-3D-vdW.png
Morpholine-xtal-3D-vdW.png
Piperazine-xtal-3D-vdW.png
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YBCO-xtal-3D-SF.png
Propane-xtal-3D-vdW.png
Aniline-xtal-3D-vdW.png
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Diphenylsilanediol-xtal-3D-vdW.png
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Thiobenzophenone-xtal-3D-SF.png
Diphenylmercury-xtal-3D-SF-A.png
Acetylene-xtal-3D-vdW-A.png
Ruthenocene-xtal-3D-SF-B.png
Rubidium-oxide-xtal-3D-vdW-B.png
Rhenium-trioxide-3D-vdW.png
Phosphorus-pentabromide-xtal-3D-vdW-A.png
Magnesium-diboride-3D-vdW.png
Silver-subfluoride-3D-vdW.png
Phosphorus-pentabromide-xtal-3D-vdW-B.png
Copper(I)-iodide-3D-ionic.png
Mercury-fulminate-xtal-3D-vdW.png
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Bromine-xtal-layer-3D-vdW.png
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Benzenediazonium-chloride-xtal-3D-vdW.png
Potassium-carbonate-xtal-3D-SF.png
Phosphorus-pentoxide-xtal-3D-vdW.png
Domeykite-xtal-1965-3D-SF.png
Lithium-nitrate-xtal-3D-vdW-B.png
Thionyl-bromide-xtal-3D-vdW.png
Tetraphenylphosphonium-chloride-xtal-3D-SF.png
Ammonia-borane-xtal-3D-SF.png
Carbon-dioxide-crystal-3D-vdW.png
Vanadyl-sulfate-pentahydrate-3D-vdW.png
Thallium(I)-chloride-3D-SF-B.png
Lithium-nitrate-xtal-3D-vdW-A.png
Sodium-phosphide-xtal-3D-vdW.png
Hydroxylammonium-sulfate-xtal-3D-vdW.png
Potassium-chlorochromate-xtal-3D-ionic.png
Sodium-bifluoride-xtal-3D-vdW.png
Thallium(I)-chloride-3D-SF-A.png
Sodium-cyclamate-xtal-3D-SF.png
Sodium-fluoroacetate-xtal-3D-SF.png
Strontium-iodide-xtal-3D-SF.png
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