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The [[second law of thermodynamics]] states that entropy will never decrease over time within a [[closed system]], defining a closed system as one in which neither matter nor energy may enter or leave.<ref>As first postulated by Lazare Carnot in 1803, entropy is the thermodynamic property which trends toward equilibrium.</ref>
 
The [[second law of thermodynamics]] states that entropy will never decrease over time within a [[closed system]], defining a closed system as one in which neither matter nor energy may enter or leave.<ref>As first postulated by Lazare Carnot in 1803, entropy is the thermodynamic property which trends toward equilibrium.</ref>
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Entropy is undeniable and yet creates perhaps insurmountable difficulties for many modern theories of physics.  For example, it renders time asymmetric, resulting in an [[arrow of time]] that is difficult to reconcile with the [[theory of relativity]].  Entropy casts doubt on whether physical laws or the speed of light are invariant and perpetual.   
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Entropy is undeniable and yet creates perhaps insurmountable difficulties for many modern theories of physics.  For example, it renders time asymmetric, resulting in an [[arrow of time]] that is impossible to reconcile with the [[theory of relativity]].  Entropy casts doubt on whether physical laws or the speed of light are invariant and perpetual. Increasing entropy renders the [[theory of evolution]] implausible, because that theory claims that order is increasing[[Liberal denial]] is thus common in ignoring the significance of the increase in disorder.
    
==Definitions==
 
==Definitions==
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