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Adapted from Schroeder 5.32 (b): The density of ice is 91? kg/ma. In part (a) of the question, you are asked to use the ClausiusClapeyron

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Adapted from Schroeder 5.32 (b): The density of ice is 91? kg/ma. In part (a) of the question, you are asked to use the ClausiusClapeyron relation to explain why the slope of the phase boundary between water and ice is negative. You should make sure you can do this. (b) How much pressure would you have to put on an ice cube to make it melt at '1.5C? Give your answer in units of bar, within 5%. Note that you are computing the pressure in addition to atmospheric pressure. Adapted from Schroeder 5.32 (b): The density of ice is 917 kg/ma. In part (a) of the question, you are asked to use the ClausiusClapeyron relation to explain why the slope of the phase boundary between water and ice is negative. You should make sure you can do this. (b) How much pressure would you have to put on an ice cube to make it melt at 'l.5C? Give your answer in units of bar, within 5%. Note that you are computing the pressure in addition to atmospheric pressure. -135 bar

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