Detailed balance

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Pythagoras0 (토론 | 기여)님의 2020년 12월 26일 (토) 05:25 판 (→‎메타데이터: 새 문단)
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  1. The principle of detailed balance was explicitly introduced for collisions by Ludwig Boltzmann.[1]
  2. In 1901, R. Wegscheider introduced the principle of detailed balance for chemical kinetics.[1]
  3. We develop a general framework for the discussion of detailed balance and analyse its microscopic background.[2]
  4. We briefly discuss examples of the violation of these rules and the corresponding violation of detailed balance.[2]
  5. The concept of detailed balance is central to the field of chemical kinetics and provides important constraints on relationships between equilibrium and rate constants.[3]
  6. The principle of detailed balance is shown to be a sufficient condition for the second law of thermodynamics in thermally equilibrated elementary chemical reactions.[4]
  7. For an elementary reaction, the principle of detailed balance relates the forward and the reverse rate constants through the reaction equilibrium constant.[4]
  8. As expected, this term vanishes when detailed balance holds and the current is zero (see Methods).[5]
  9. Transition rates between passive states obey local detailed balance: ω i,i+1 /ω i+1,i = eβFL, where L is the length of a single spatial jump.[5]
  10. The principle of detailed balance can be used in kinetic systems which are decomposed into elementary processes (collisions, or steps, or elementary reactions).[6]
  11. ⟶ A 1 {\displaystyle {\ce {A1->A2->\cdots ->A_{\mathit {n}}->A1}}} are impossible and found explicitly the relations between kinetic constants that follow from the principle of detailed balance.[6]
  12. Detailed balance for Boltzmann's equation requires PT-invariance of collisions' dynamics, not just T-invariance.[6]
  13. Detailed balance implies that, around any closed cycle of states, there is no net flow of probability.[6]
  14. According to the principle of detailed balance (Sect. 1.2), any reaction taking place within a thermal gas is exactly counterbalanced by its inverse reaction.[7]
  15. 1.4, detailed balance is used to derive the thermal distribution functions encountered in plasma spectroscopy.[7]
  16. As the principle of detailed balance is based on the reciprocity relation of the transition probabilities between quantum states, the validity of this latter relation is discussed in Sect. 1.5.[7]
  17. Detailed balance provides a technique to calculate the maximum efficiency of photovoltaic devices.[8]
  18. The calculations for detailed balance calculations involve calculating the particle flux for different configurations of the Plank’s equation.[8]
  19. We now show there are further problems in Feynman's treatment of detailed balance.[9]
  20. In order to design and understand this device correctly, the equations of detailed balance must be found.[9]
  21. In this Viewpoint, we developed a detailed balance analysis of PV windows in order to investigate the major design elements of PCE, VLT, SHGC, and color.[10]
  22. DOI: 10.1038/srep13536 20 Datas, A. ; Algora, C. Detailed balance analysis of solar thermophotovoltaic systems made up of single junction photovoltaic cells and broadband thermal emitters .[10]
  23. These are called the detailed balance equations.[11]
  24. In this study, we analyzed the nonradiative recombination impact of multiple exciton generation solar cells (MEGSCs) with a revised detailed balance (DB) limit.[12]
  25. Detailed balance is the balance of flows between any (and every) pair of states you care to define.[13]
  26. In fact, many common models of biochemistry exhbit "irreversible" steps - in which the reverse of some step never occurs - and could never satisfy detailed balance.[13]
  27. A Markov process preserves detailed balance if the ratio transition probability between any two states states is equal to the ratio of the probability of the states themselves.[14]
  28. The second test measures the detailed balance of the SidechainMover, which samples off-rotamer sidechain conformations.[14]
  29. Transitions between states obey a detailed balance in equilibrium, whereas imbalanced transitions point to nonequilibrium dynamics.[15]
  30. It is not true that MCMC fulfilling detailed balance always yield the stationary distribution.[16]
  31. AB - In this study, we analyzed the nonradiative recombination impact of multiple exciton generation solar cells (MEGSCs) with a revised detailed balance (DB) limit.[17]
  32. detailed balance condition is characterized by the property that this constant is identically zero.[18]
  33. We then give a second characterization of the dynamical detailed balance condition using a master equation rather than the microcurrents.[18]
  34. This is achieved using Markov chain transitions that satisfy the fixed point equation, but do not satisfy detailed balance.[19]
  35. We study an irreversible Markov chain Monte Carlo method based on a skew detailed balance condition for a one-dimensional Ising model.[20]

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