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3
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0039523002
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-
note
-
In this paper three kinds of heat capacity appear: an extensive variable, total heat capacity, and two intensive variables, heat capacity per unit volume and heat capacity per unit mass. We shall use the term heat capacity to mean heat capacity per unit volume in the theoretical discussion unless otherwise stated, since it appears naturally in the heat diffusion equation. On the other hand, experimental results are usually given in terms of specific heat capacity (heat capacity per gram). Following this convention, experimental data are presented in terms of specific heat capacity.
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Donth et al. in this issue.
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Of two assumptions, causality is naturally always satisfied while analyticity is not guaranteed to hold in every situation; nevertheless it seems that analyticity may be assumed to hold in most cases.
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19
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85086526900
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note
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0 + pV) in statistical mechanics. The thermodynamic quantity H of Eq. (1) is equal to 〈H〉 here.
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20
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0040708323
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note
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We shall use the angular frequency ω and the frequency f = ω/2π interchangeably.
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21
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85086527502
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p(ω).
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47
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note
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This is, of course, a crude approximation neglecting the heat transfer between the two media. In an experimental situation dealing with a liquid, however, this approximation is not as bad as it may appear. For example, the thermal decay lengths of substrate glass and potassium-calcium nitrate liquid differ by only 20%.
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Our method is called modified adiabatic, rather than adiabatic, calorimetry, since there is a heat flow from the sample to the shield. However, this heat flow is not a leak, but is used as a negative input power in a controlled fashion.
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56
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