Category:Atomic physics
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English: Atomic physics is the field of physics that studies atoms as isolated systems composed of electrons and an atomic nucleus. It is primarily concerned with the arrangement of electrons around the nucleus and the processes by which these arrangements change. As with many scientific fields, strict delineation can be highly contrived and atomic physics is often considered in the wider context of atomic, molecular and optical physics. Physics research groups are usually so classified.
field of physics studying atoms | |||||
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Subcategories
This category has the following 36 subcategories, out of 36 total.
A
- Atom interferometry (2 F)
- Les Atomes (7 F)
- Atomic vapour cells (10 F)
- Aufbau principle (55 F)
- Auger emission (24 F)
C
E
F
G
- G-factor (physics) (3 F)
- Grotrian diagrams (9 F)
H
I
L
- Atomic Physics Laboratory (46 F)
M
- Magneto-optical trap (26 F)
N
O
- Optical lattice (11 F)
P
- Photon cross sections (20 F)
S
- Spontaneous emission (24 F)
- Stern-Gerlach experiment (29 F)
- Stimulated emission (14 F)
U
V
Z
- Zeeman slower (7 F)
Media in category "Atomic physics"
The following 185 files are in this category, out of 185 total.
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1-DIM-MOT.png 800 × 379; 24 KB
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3 1 1 isosurface examples.png 1,728 × 576; 156 KB
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3 1 1 wavefunction zslice yslice.png 864 × 432; 83 KB
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Absorption of Photon ru.svg 1,020 × 540; 68 KB
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Allowed and forbidden standing waves.png 1,000 × 711; 359 KB
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Aston 1933 S235.png 726 × 868; 408 KB
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Atom Circuit (5940984780).jpg 2,143 × 1,052; 962 KB
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Atom-atom collision.jpg 832 × 719; 54 KB
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Atombau 1922 p 364.png 535 × 556; 78 KB
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Atombau 1922 p 365.png 785 × 527; 215 KB
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Atombau 1922 p 366.png 786 × 368; 138 KB
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Atombau 1922 p 367.png 760 × 269; 72 KB
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Atomic collisons JBH.jpg 955 × 1,400; 51 KB
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Atomic Fountain.jpg 3,645 × 3,645; 2.68 MB
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Atomic radius as a function of atomic number.jpg 961 × 385; 48 KB
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Atomic rearrangement following an electron capture-2.png 605 × 711; 83 KB
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Atomic vs Ionic Radius.png 1,920 × 875; 519 KB
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AtomicLineInEm.png 583 × 437; 10 KB
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AtomicLineInEm.svg 340 × 250; 1 KB
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AtomicPhysics002.jpg 3,950 × 5,426; 14.72 MB
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Atommasse Genauigkeit 28Si 02.png 5,998 × 3,900; 218 KB
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ATOMO.jpg 194 × 200; 8 KB
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Atomoak mundu birtualean.png 1,084 × 778; 1.63 MB
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AtomsInLattice.png 10,417 × 8,449; 6.67 MB
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Atomspektrum einer Kalium-Gasentladung.jpg 2,685 × 291; 129 KB
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Atomspektrum einer Neon-Gasentladung.jpg 1,603 × 1,039; 158 KB
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Atomspektrum von Cadmium.jpg 1,268 × 188; 16 KB
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Autoionisation.svg 1,000 × 275; 44 KB
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Bremsstrahlung.png 572 × 710; 21 KB
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Characteristic radiation - scheme.svg 402 × 1,374; 220 KB
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Colliding Atoms SERF.svg 108 × 94; 22 KB
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Colliding Atoms.svg 108 × 94; 19 KB
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ColRevm576.tif 1,272 × 784; 849 KB
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ComputationeleChemie.PNG 417 × 274; 2 KB
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Copper K Rontgen.png 342 × 421; 19 KB
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Detec neutron.png 337 × 124; 4 KB
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Diag jab poziom.pdf 1,752 × 1,239; 63 KB
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Diamond Structure.png 885 × 460; 75 KB
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Die Röntgenbox.png 1,014 × 512; 929 KB
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Dmbraggreflection.jpg 1,048 × 506; 25 KB
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Dmedxrfschematic.jpg 1,063 × 349; 26 KB
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DmedxrfSiLiDetector.jpg 1,265 × 844; 58 KB
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DmwdxrfCurvedXtalMonochrom.jpg 1,293 × 870; 60 KB
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DmwdxrfFlatXtalMonochrom.jpg 1,292 × 548; 50 KB
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DmwdxrfFlowDetector.jpg 972 × 960; 65 KB
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Dmwdxrfschematic.jpg 1,207 × 335; 34 KB
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Doppler Broadening Example.png 720 × 576; 39 KB
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Doppler broadening.PNG 667 × 551; 14 KB
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Drawing Vacuum Rabi Splitting.svg 3,540 × 1,772; 40 KB
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Efecto pantalla.png 400 × 400; 32 KB
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Einsteinkoeffizienten.svg 400 × 360; 10 KB
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EIT schemes.jpg 420 × 339; 25 KB
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Electron binding energy vs Z.jpg 756 × 576; 71 KB
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Electron correlation-fr.png 761 × 469; 31 KB
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Electron correlation-fr.svg 512 × 341; 18 KB
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Electron EDM limits.png 1,076 × 770; 70 KB
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Electron wave doubling over.png 1,971 × 1,007; 441 KB
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Elektronenbindungsenergie01.png 5,998 × 4,498; 227 KB
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Elektroni ja aatomi põrkumine.jpg 884 × 379; 20 KB
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Elektroni rännak energeetilises ruumis.jpg 1,029 × 639; 56 KB
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Elektronlaviin.jpg 984 × 616; 40 KB
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Elements abundance-bars.svg 3,000 × 500; 49 KB
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Emisión espontánea.jpg 4,374 × 1,290; 290 KB
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Emisión espontánea.png 4,374 × 1,290; 250 KB
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Energie Bohr Radius 01.png 5,998 × 4,498; 228 KB
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Energie Bohr Radius 02.png 5,998 × 3,920; 218 KB
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Entangled spins.svg 740 × 267; 41 KB
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Epr.PNG 710 × 425; 38 KB
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Evolution of atomic models infographic.svg 1,779 × 505; 37 KB
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Experimental set up for the observation of the Vacuum Rabi splitting.jpg 1,427 × 1,024; 105 KB
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Experimental set up of the Vacuum Rabi splitting.jpg 1,427 × 1,024; 105 KB
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Fig 2 in The atomic theory (1914).png 1,643 × 1,617; 164 KB
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Fig 27 Kramer Holst 1923 01.png 1,119 × 734; 293 KB
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Fig1 iHydrogen 01C.jpg 1,304 × 1,059; 133 KB
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Fig2 iHelium 01B.jpg 680 × 553; 127 KB
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Fig3AB iCarbon 01C.jpg 1,335 × 927; 187 KB
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Fig4 iOxygen Bond 03A.jpg 1,512 × 1,078; 223 KB
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Fig5 iCrystal Matrix 01B.jpg 1,550 × 1,018; 270 KB
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Fig6ABC H2O 01B.jpg 747 × 549; 61 KB
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Fluorescent-lamp-atom.gif 399 × 394; 25 KB
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Gold foil exp conclusions.svg 230 × 380; 25 KB
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Gray Molasses Cooling Cycle.png 1,600 × 900; 196 KB
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Gray Molasses Raman Transition.png 1,600 × 900; 135 KB
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H-atom-4.jpg 967 × 712; 43 KB
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Heisenberg state changes.jpg 296 × 275; 51 KB
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Hydrogenphotonemissions.PNG 423 × 500; 16 KB
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Image-Ridged Mirror figureB.png 426 × 107; 8 KB
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Interaction rayonnement matiere incidence.png 727 × 285; 10 KB
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Interaction rayonnement matiere relaxation.png 582 × 146; 6 KB
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Interaction.jpg 2,265 × 1,950; 300 KB
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Isotope kl.jpg 716 × 600; 221 KB
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Jablonski Termschema.png 540 × 207; 36 KB
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Lattice mott.JPG 331 × 227; 12 KB
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Lattice superfluid.JPG 336 × 227; 12 KB
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Lin quad thompson ucalgary.JPG 720 × 480; 303 KB
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LZundel Cavity.pdf 993 × 760; 85 KB
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LZundel Rabi Splitting.pdf 1,275 × 1,633; 172 KB
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McCree-Kurve 1 DE.svg 815 × 505; 16 KB
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McCree-Kurve Beschattung durch Weizen DE.svg 615 × 380; 110 KB
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McCree-Kurve Hoover 1937 DE.svg 815 × 505; 13 KB
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McCree-Kurve Inada 1976 DE.svg 815 × 505; 14 KB
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McCree-Kurve Keramik-Metallhalogenid-Lampe DE.svg 615 × 380; 122 KB
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McCree-Kurve Quarz-Halogen-Lampe DE.svg 615 × 380; 107 KB
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McCree-Kurve Sonnenlicht klar DE.svg 815 × 505; 23 KB
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Mechanical Motion Used To 'Spin' Atoms in a Gas (5941046994).jpg 1,500 × 1,125; 348 KB
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MicroChipAtomicTrap00.jpg 890 × 976; 44 KB
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Model-atomu-Bohra.svg 1,658 × 1,589; 1.17 MB
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Molasses.gif 280 × 288; 18 KB
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Mollow triplet.pdf 1,654 × 1,239; 25 KB
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Moseley agaiNIST experimental DATA Kα x-ray Transitions.jpg 886 × 152; 66 KB
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Mott-Insulator Transition in a Two-Dimensional Atomic Bose Gas.jpg 600 × 238; 33 KB
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Nanoblackholes.jpg 171 × 113; 3 KB
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NIST Physicists Coax Six Atoms into Quantum 'Cat' State (5884514942).jpg 1,200 × 900; 447 KB
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Nitrogen-vacancy center.png 330 × 350; 178 KB
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Non-adiabatic atomic collision.svg 512 × 512; 4 KB
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Non-Paulian atomic transition.png 1,215 × 350; 24 KB
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NSDI in high-Up regime.pdf 1,275 × 1,650; 240 KB
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NSDI in low-Up regime.pdf 1,275 × 1,650; 479 KB
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NSDI through an autoionizing state.pdf 1,275 × 1,650; 28 KB
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NSDI through the ionic ground state.pdf 1,275 × 1,650; 28 KB
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NumberDensities.png 716 × 234; 13 KB
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NV-energy-levels.svg 501 × 563; 6 KB
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NV-transitions.svg 642 × 576; 8 KB
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Oelfleck1.jpg 1,920 × 2,560; 2.12 MB
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Oelfleck3.jpg 1,920 × 2,560; 2.21 MB
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Oelfleck4.jpg 1,920 × 2,560; 2.03 MB
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Oelfleck5.jpg 2,560 × 1,920; 2.32 MB
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Orbitals table.png 1,516 × 920; 296 KB
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Orbitals.PNG 1,467 × 950; 220 KB
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Orbitals3.JPG 1,448 × 295; 29 KB
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Pasted Graphic.tiff 745 × 388; 42 KB
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Penningtrajec.png 286 × 367; 4 KB
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Penningtrajec.svg 420 × 480; 893 bytes
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Physical picture.jpg 465 × 345; 26 KB
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Physics; Atoms (5940505157).jpg 504 × 755; 232 KB
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Potential changes in the dipole moments of a heteronuclear molecule.tif 925 × 581; 119 KB
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Precession (angular momentum).svg 319 × 390; 8 KB
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Principal quantum number nodes.png 2,000 × 576; 500 KB
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Quantum Physics; Nanoscale Assembly; Atomic Anchors (5887269111).jpg 1,600 × 2,584; 882 KB
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Quantum Physics; Paired Atoms; Untrapped Atom Pairs (5941065432).jpg 2,046 × 1,535; 563 KB
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Rabi-Methode.svg 979 × 356; 16 KB
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Radium Kramer Holst 1923.png 850 × 571; 212 KB
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RamanSidebandCoolingFr.png 500 × 224; 14 KB
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Rubidium85 laser cooling.png 444 × 393; 20 KB
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Rule w2.png 263 × 439; 15 KB
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Rydbergformula.jpg 244 × 144; 9 KB
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Self-consistent mean-field.svg 990 × 765; 72 KB
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Sensibilité de la photocathode.JPG 211 × 207; 5 KB
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Sensibilité effet photo electrique.JPG 241 × 166; 5 KB
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Sequential double ionization.pdf 1,275 × 1,650; 27 KB
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Simultaneous photo-detachment of two electrons.pdf 1,275 × 1,650; 26 KB
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Singlet Triplet.jpg 984 × 968; 48 KB
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Sodium Alternative (5941078178).jpg 2,100 × 1,927; 515 KB
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Spectral lines en.PNG 344 × 246; 8 KB
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Spektrum einer Quecksilber-Gasentladung.jpg 3,443 × 1,150; 565 KB
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Spektrum von Stickstoff.jpg 2,324 × 352; 46 KB
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Spin branching diagram.png 661 × 600; 53 KB
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Spin-orbit.png 278 × 181; 4 KB
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Spinnide väärtused.PNG 600 × 198; 10 KB
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Spontaneousemission.svg 596 × 226; 17 KB
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Staandanim.gif 959 × 719; 155 KB
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Staandanim2.gif 959 × 719; 155 KB
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Standing wave electron cloud.png 968 × 442; 144 KB
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Stark splitting-en.svg 2,186 × 1,633; 4 KB
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Stark splitting-ru.svg 2,186 × 1,633; 4 KB
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Stark splitting.png 1,024 × 674; 20 KB
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Stimulated emission.svg 600 × 330; 14 KB
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StoppingHinAlBethe.png 3,390 × 2,379; 62 KB
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Sõltuvus temperatuurist.JPG 597 × 378; 24 KB
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Tabela Russell Saunders.png 1,337 × 783; 420 KB
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Tavis-Cummings diagram.png 402 × 201; 39 KB
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The atomic theory (1914).djvu 2,742 × 4,576, 48 pages; 2.02 MB
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Three-step model of non-sequential double ionization.pdf 1,275 × 1,650; 126 KB
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ThreeStep.png 1,005 × 620; 62 KB
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Ts atomspectrum.svg 206 × 213; 29 KB
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Two negatively charged particles spinning in a magnetic field.png 2,099 × 1,577; 73 KB
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Two Photon Excitation Schema.png 932 × 810; 46 KB
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Vacuum rabi splitting experiment data.png 2,304 × 1,296; 265 KB
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Wasserstoff Aufspaltung-1.png 2,560 × 1,810; 195 KB
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Zeeman Effect.jpg 1,880 × 2,816; 1.85 MB
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Émission train d'onde.png 756 × 728; 44 KB
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Световой сдвиг.gif 502 × 322; 4 KB
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水素原子n=2でのシュタルク効果.png 465 × 205; 6 KB