dorsal/arxiv
View SchemaThe effect of increasing the rate of repetitions of classical reactions
| Authors | D. Bar |
|---|---|
| Categories | |
| ArXiv ID | physics/0112059 |
| URL | https://arxiv.org/abs/physics/0112059 |
| Journal | Int. J. Theor. Phys, 43, 1169-1190 (2004) |
Abstract
Using quantum theory operator methods we discuss the general reversible reactions $A_1+A_2+... A_r \leftrightarrow B_1+B_2+... +B_s$, where $r$ and $s$ are arbitrary natural positive numbers. We show that if either direction of the reaction is repeated a large number of times $N$ in a finite total time $T$ then in the limit of very large $N$, keeping $T$ constant, one remains with the initial reacting particles only. We also show that if the reaction evolves through different possible paths of evolution, each of them beginning at the same side of the reaction, proceeds through different intermediate consecutive reactions and ends at the other side, then one may ``realize'' any such path by performing in a dense manner the set of reactions along it. The same results are also numerically demonstrated for the specific reversible reaction $A+B \leftrightarrow A+C$. We note that similar results have been shown to hold also in the quantum regime.
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"abstract": "Using quantum theory operator methods we discuss the general reversible\nreactions $A_1+A_2+... A_r \\leftrightarrow B_1+B_2+... +B_s$, where $r$ and $s$\nare arbitrary natural positive numbers. We show that if either direction of the\nreaction is repeated a large number of times $N$ in a finite total time $T$\nthen in the limit of very large $N$, keeping $T$ constant, one remains with the\ninitial reacting particles only. We also show that if the reaction evolves\nthrough different possible paths of evolution, each of them beginning at the\nsame side of the reaction, proceeds through different intermediate consecutive\nreactions and ends at the other side, then one may ``realize\u0027\u0027 any such path by\nperforming in a dense manner the set of reactions along it. The same results\nare also numerically demonstrated for the specific reversible reaction $A+B\n\\leftrightarrow A+C$. We note that similar results have been shown to hold also\nin the quantum regime.",
"arxiv_id": "physics/0112059",
"authors": [
"D. Bar"
],
"categories": [
"physics.data-an",
"physics.comp-ph"
],
"journal_ref": "Int. J. Theor. Phys, 43, 1169-1190 (2004)",
"title": "The effect of increasing the rate of repetitions of classical reactions",
"url": "https://arxiv.org/abs/physics/0112059"
},
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