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首页> 外文期刊>Synthese: An International Journal for Epistemology, Methodology and Philosophy of Science >Stars and steam engines: To what extent do thermodynamics and statistical mechanics apply to self-gravitating systems?
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Stars and steam engines: To what extent do thermodynamics and statistical mechanics apply to self-gravitating systems?

机译:恒星和蒸汽发动机:热力学和统计机制在多大程度上适用于自我重力系统?

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摘要

Foundational puzzles surround (Newtonian) gravitational thermal physicsa realm in which stars are treated as akin to molecules in a gas. Whether such an enterprise is successful and the domain of thermal physics extends beyond our terrestrial sphere is disputed. There are successes (such as the collisionless Boltzmann equation) and paradoxical features (such as the gravothermal catastrophe'). Callender (Found Phys 41(6):960-981, 2011) advocates reconciling the two sides of the dispute by taking a broader view of thermodynamics. Here I argue for an alternative position: if we are careful in distinguishing statistical mechanics and thermodynamics, then no reconciliation is required. Both sides can live in harmony because whilst statistical mechanics applies, thermodynamics does not. This state of affairsthe applicability of statistical mechanics without the emergence of thermodynamic behaviourcan be explained in terms of an infamous infinite idealisation: the thermodynamic limit.
机译:基础难题环绕(牛顿)引力热物理域,其中恒星被视为类似气体中的分子。 这种企业是否成功,热物理领域延伸到我们的地面球体上是有争议的。 成功(例如碰撞Boltzmann方程)和矛盾的特征(例如引物灾难灾难)。 Callender(发现Phys 41(6):960-981,211)倡导通过参加更广泛的热力学观察争议的双方。 在这里,我争论了另一种位置:如果我们小心区分统计力学和热力学,那么不需要对和解。 双方都可以和谐地生活,因为虽然统计力学适用,但热力学没有。 这种有关状态的适用性统计力学而不出现热力学行为的出现,就是在臭臭臭臭臭臭虫的理想中解释:热力学限制。

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