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Atom Collection (page 6)

"Unveiling the Mysteries of the Atom: From Northern Lights to Quantum Leaps" In the ethereal dance of the Northern lights

Background imageAtom Collection: Carbon nanotube F007 / 9910

Carbon nanotube F007 / 9910
Buckytube. Molecular model of part of the cage structure of a bucky- or nanotube. The spheres represent carbon atoms. In this structure hundreds of atoms form hexagon shapes along a tube

Background imageAtom Collection: Immunoglobulin G antibody molecule F007 / 9901

Immunoglobulin G antibody molecule F007 / 9901
Immunoglobulin G antibody molecule. Computer model of the secondary structure of immunoglobulin G (IgG). This is the most abundant immunoglobulin and is found in all body fluids

Background imageAtom Collection: Caffeine drug molecule F007 / 9899

Caffeine drug molecule F007 / 9899
Caffeine. Computer model of a molecule of the alkaloid, stimulant and legal drug caffeine. Caffeine is most often consumed in drinks like tea and coffee

Background imageAtom Collection: Sarin nerve gas molecule F007 / 9933

Sarin nerve gas molecule F007 / 9933
Sarin nerve gas, molecular model. Atoms are represented as spheres and are colour-coded: carbon (grey), hydrogen (green), oxygen (red), phosphorous (orange) and fluorine (blue)

Background imageAtom Collection: Immunoglobulin G antibody molecule F007 / 9920

Immunoglobulin G antibody molecule F007 / 9920
Immunoglobulin G antibody molecule. Computer model of the secondary structure of immunoglobulin G (IgG). This is the most abundant immunoglobulin and is found in all body fluids

Background imageAtom Collection: Sarin nerve gas molecule F007 / 9938

Sarin nerve gas molecule F007 / 9938
Leucine, molecular model. Essential alpha-amino acid contained in eggs, soy protein, seaweed, turkey, chicken, lamb, cheese, and fish

Background imageAtom Collection: Immunoglobulin G antibody molecule F007 / 9889

Immunoglobulin G antibody molecule F007 / 9889
Immunoglobulin G antibody molecule. Computer model of the secondary structure of immunoglobulin G (IgG). This is the most abundant immunoglobulin and is found in all body fluids

Background imageAtom Collection: Sarin nerve gas molecule F007 / 9935

Sarin nerve gas molecule F007 / 9935
Sarin nerve gas, molecular model, The wire-frame map represents the electrostatic potential across the molecules surface. The atoms carbon, hydrogen, oxygen

Background imageAtom Collection: Nano ring, artwork F008 / 3363

Nano ring, artwork F008 / 3363
Nano ring, computer artwork

Background imageAtom Collection: Graphene sheets, artwork F008 / 3368

Graphene sheets, artwork F008 / 3368
Graphene sheets, computer artwork

Background imageAtom Collection: Buckyball, artwork F008 / 3355

Buckyball, artwork F008 / 3355
Buckyball, computer artwork

Background imageAtom Collection: Buckyball, artwork F008 / 3347

Buckyball, artwork F008 / 3347
Buckyball, computer artwork

Background imageAtom Collection: Buckyballs, artwork F008 / 3359

Buckyballs, artwork F008 / 3359
Buckyballs, computer artwork

Background imageAtom Collection: Buckyball, artwork F008 / 3344

Buckyball, artwork F008 / 3344
Buckyball, computer artwork

Background imageAtom Collection: Graphene sheets, artwork F008 / 3367

Graphene sheets, artwork F008 / 3367
Graphene sheets, computer artwork

Background imageAtom Collection: Buckyball, artwork F008 / 3358

Buckyball, artwork F008 / 3358
Buckyball, computer artwork

Background imageAtom Collection: Buckytube, artwork F008 / 3352

Buckytube, artwork F008 / 3352
Buckytube, computer artwork

Background imageAtom Collection: Nanomedicine, conceptual artwork F008 / 3361

Nanomedicine, conceptual artwork F008 / 3361
Nanomedicine, conceptual computer artwork

Background imageAtom Collection: Nanomedicine, conceptual artwork F008 / 3360

Nanomedicine, conceptual artwork F008 / 3360
Nanomedicine, conceptual computer artwork

Background imageAtom Collection: Buckyballs, artwork F008 / 3349

Buckyballs, artwork F008 / 3349
Buckyballs, computer artwork

Background imageAtom Collection: Nanostructures, artwork F008 / 3365

Nanostructures, artwork F008 / 3365
Nanostructures, computer artwork

Background imageAtom Collection: Buckyball, artwork F008 / 3354

Buckyball, artwork F008 / 3354
Buckyball, computer artwork

Background imageAtom Collection: Buckytube, artwork F008 / 3353

Buckytube, artwork F008 / 3353
Buckytube, computer artwork

Background imageAtom Collection: Nanomedicine, conceptual artwork F008 / 3362

Nanomedicine, conceptual artwork F008 / 3362
Nanomedicine, conceptual computer artwork

Background imageAtom Collection: Buckyball, artwork F008 / 3346

Buckyball, artwork F008 / 3346
Buckyball, computer artwork

Background imageAtom Collection: Graphene sheets, artwork F008 / 3369

Graphene sheets, artwork F008 / 3369
Graphene sheets, computer artwork

Background imageAtom Collection: Buckyball, artwork F008 / 3342

Buckyball, artwork F008 / 3342
Buckyball, artwork

Background imageAtom Collection: Differential nanogear, artwork F008 / 3373

Differential nanogear, artwork F008 / 3373
Differential nanogear, computer artwork

Background imageAtom Collection: Buckyball, artwork F008 / 3345

Buckyball, artwork F008 / 3345
Buckyball, computer artwork

Background imageAtom Collection: Buckyball, artwork F008 / 3348

Buckyball, artwork F008 / 3348
Buckyball, computer artwork

Background imageAtom Collection: Buckyball, artwork F008 / 3343

Buckyball, artwork F008 / 3343
Buckyball, computer artwork

Background imageAtom Collection: Buckyball, artwork F008 / 3351

Buckyball, artwork F008 / 3351
Buckyball, computer artwork

Background imageAtom Collection: Buckyballs, artwork F008 / 3350

Buckyballs, artwork F008 / 3350
Buckyballs, computer artwork

Background imageAtom Collection: Buckyball, artwork F008 / 3356

Buckyball, artwork F008 / 3356
Buckyball, computer artwork

Background imageAtom Collection: Buckyball, artwork F008 / 3341

Buckyball, artwork F008 / 3341
Buckyball, computer artwork

Background imageAtom Collection: Buckyball, artwork F008 / 3357

Buckyball, artwork F008 / 3357
Buckyball, computer artwork

Background imageAtom Collection: Nanotechnology, conceptual artwork F008 / 3364

Nanotechnology, conceptual artwork F008 / 3364
Nanotechnology, conceptual computer artwork

Background imageAtom Collection: Atom, artwork

Atom, artwork
Atom, computer artwork

Background imageAtom Collection: Buckyball molecule, artwork F005 / 0754

Buckyball molecule, artwork F005 / 0754
Buckyball molecule, computer artwork

Background imageAtom Collection: Nanoparticles, artwork F005 / 0769

Nanoparticles, artwork F005 / 0769
Nanoparticles, computer artwork

Background imageAtom Collection: Carbon nanotube, artwork F005 / 0736

Carbon nanotube, artwork F005 / 0736
Carbon nanotube. Computer artwork of the inside of a nanotube, or buckytube

Background imageAtom Collection: Carbon nanotube, artwork F005 / 0732

Carbon nanotube, artwork F005 / 0732
Carbon nanotube. Computer artwork of the inside of a nanotube, or buckytube

Background imageAtom Collection: Buckyball molecule, artwork F005 / 0753

Buckyball molecule, artwork F005 / 0753
Buckyball molecule, computer artwork

Background imageAtom Collection: Carbon nanotube, artwork F005 / 0738

Carbon nanotube, artwork F005 / 0738
Carbon nanotube. Computer artwork of the inside of a nanotube, or buckytube

Background imageAtom Collection: Buckyball molecule, artwork F005 / 0761

Buckyball molecule, artwork F005 / 0761
Buckyball molecule, computer artwork

Background imageAtom Collection: Buckyball molecule, artwork F005 / 0751

Buckyball molecule, artwork F005 / 0751
Buckyball molecule, computer artwork

Background imageAtom Collection: Human cloning, conceptual artwork F005 / 0397

Human cloning, conceptual artwork F005 / 0397
Human cloning, conceptual computer artwork

Background imageAtom Collection: Carbon nanotube, artwork F005 / 0741

Carbon nanotube, artwork F005 / 0741
Carbon nanotube. Computer artwork of the inside of a nanotube, or buckytube



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"Unveiling the Mysteries of the Atom: From Northern Lights to Quantum Leaps" In the ethereal dance of the Northern lights, nature showcases its own version of atomic beauty. Much like these mesmerizing lights, our understanding of atoms has evolved through groundbreaking scientific discoveries. One such milestone occurred in E. Rutherford's Cavendish Laboratory, where he unraveled the atom's structure and introduced us to its nucleus. This pivotal moment paved the way for Niels Bohr's caricatured quantum model, depicting electrons orbiting around a central core. The power within an atom is not limited to theory alone; it manifests itself in nuclear fission artwork that captures both its destructive force and potential energy release. Similarly, Britain's Ariel Atom embodies this dynamism with its sleek design and exhilarating speed. Delving deeper into atomic intricacies reveals Immunoglobulin G antibody molecule F007/9894 - a crucial defender against pathogens within our immune system. Its intricate structure mirrors the complexity hidden within every atom. Just as science progresses, so does technology - exemplified by Ariel Atom 500 and its cutting-edge engineering prowess. It pushes boundaries much like artists who depict atomic structures in captivating artworks or scientists who unveil quantized orbits resembling those found in celestial bodies' paths. Peering into helium atoms' electron structures unveils their unique properties while HIV reverse transcription enzyme sheds light on how viruses manipulate genetic material at an atomic level. Finally, we arrive at 2009 Ariel Atom - embodying innovation and evolution just as our understanding of atoms continues to expand exponentially. From enchanting natural phenomena like Northern lights to pioneering research conducted by brilliant minds like Rutherford and Bohr; from artistic interpretations capturing atomic wonders to technological marvels pushing limits – each hint represents a facet of humanity's ceaseless quest to unravel the enigmatic world of atoms.