Quantum Physics: A Beginner's GuideOneworld Publications, 27.10.2005 - 240 Seiten From quarks to computing, this fascinating introduction covers every element of the quantum world in clear and accessible language. Drawing on a wealth of expertise to explain just what a fascinating field quantum physics is, Rae points out that it is not simply a maze of technical jargon and philosophical ideas, but a reality which affects our daily lives. |
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Seite 27
... wave by I and the period by T. It follows that the frequency of the wave is f = 1 / T and the speed is given by c = L / T travelling waves and standing waves Waves such as those illustrated in Figure 2.2 are what are called ' travelling ...
... wave by I and the period by T. It follows that the frequency of the wave is f = 1 / T and the speed is given by c = L / T travelling waves and standing waves Waves such as those illustrated in Figure 2.2 are what are called ' travelling ...
Seite 29
... Standing waves play a similar role in all musical instruments : woodwind and brass set up standing waves in confined volumes of air , while the sound emitted by drums comes from the standing waves set up in the drum skins . The types of ...
... Standing waves play a similar role in all musical instruments : woodwind and brass set up standing waves in confined volumes of air , while the sound emitted by drums comes from the standing waves set up in the drum skins . The types of ...
Seite 59
A Beginner's Guide Alistair I. M. Rae. O Waves have the form of travelling waves or standing waves . Travelling waves move at a speed determined by the frequency and the wavelength . Because standing waves result from a wave being ...
A Beginner's Guide Alistair I. M. Rae. O Waves have the form of travelling waves or standing waves . Travelling waves move at a speed determined by the frequency and the wavelength . Because standing waves result from a wave being ...
Inhalt
nine | 9 |
Interference | 30 |
Matter waves | 36 |
Urheberrecht | |
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Alice Alice and Bob applied associated calculated carbon dioxide Chapter circuit classical consider contains Cooper pairs corresponding crystal current flow direction discussed distance drive a current Earth's elec electric current electromagnetic electron waves emitted emitter energy gap energy levels equal equation example excited Fermi energy fission flux frequency fusion holes hydrogen atoms illustrated in Figure impurities insulators interaction ions Josephson Josephson effect kinetic energy known large number light loop magnetic field mass Mathematical Box measure metal molecule momentum motion moving negatively charged neutrons nuclear nucleus number of electrons oscillator oxygen p-n junction p-type particle pass photon Planck's constant polarization positively charged potential energy principle quantized quantum computer quantum physics quarks qubits resistance result Schrödinger Schrödinger equation semiconductor silicon speed spin standing waves superconductivity superposition temperature thermal tion transistor travelling waves trons velocity vibration voltage wave function wave properties wave-particle duality wavelength whole number zero