1. Suppose that an infinitesimal crystal of ice is added to 10.0 g of supercooled liquid water at –10.0°C in an adiabatic container and the system reaches equilibrium at a fixed pressure of 1 atm. Given 79.7 cal/g as the latent heat of fusion of water, 1.00 cal/g·K as the specific heat of liquid water at constant pressure and 0.504 cal/g·K as the specific heat of solid water at constant pressure, calculate DH, DS, and DG for the process.

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1. Suppose that an infinitesimal crystal of ice is added to 10.0 g of
supercooled liquid water at -10.0°C in an adiabatic container and the
system reaches equilibrium at a fixed pressure of 1 atm. Given 79.7
cal/g as the latent heat of fusion of water, 1.00 cal/g K as the specific
heat of liquid water at constant pressure and 0.504 cal/g•K as the
specific heat of solid water at constant pressure, calculate DH, DS, and
DG for the process.
Transcribed Image Text:1. Suppose that an infinitesimal crystal of ice is added to 10.0 g of supercooled liquid water at -10.0°C in an adiabatic container and the system reaches equilibrium at a fixed pressure of 1 atm. Given 79.7 cal/g as the latent heat of fusion of water, 1.00 cal/g K as the specific heat of liquid water at constant pressure and 0.504 cal/g•K as the specific heat of solid water at constant pressure, calculate DH, DS, and DG for the process.
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