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Page 1: › ~mxchen › phys3441121 › Lec05.pdf · Cp cv + Nk cv + nR (ideal gas). (1.48) In other words, for each mole of an ideal gas, the heat capacity at constant pressure exceeds the
Page 2: › ~mxchen › phys3441121 › Lec05.pdf · Cp cv + Nk cv + nR (ideal gas). (1.48) In other words, for each mole of an ideal gas, the heat capacity at constant pressure exceeds the
Page 3: › ~mxchen › phys3441121 › Lec05.pdf · Cp cv + Nk cv + nR (ideal gas). (1.48) In other words, for each mole of an ideal gas, the heat capacity at constant pressure exceeds the
Page 4: › ~mxchen › phys3441121 › Lec05.pdf · Cp cv + Nk cv + nR (ideal gas). (1.48) In other words, for each mole of an ideal gas, the heat capacity at constant pressure exceeds the
Page 5: › ~mxchen › phys3441121 › Lec05.pdf · Cp cv + Nk cv + nR (ideal gas). (1.48) In other words, for each mole of an ideal gas, the heat capacity at constant pressure exceeds the
Page 6: › ~mxchen › phys3441121 › Lec05.pdf · Cp cv + Nk cv + nR (ideal gas). (1.48) In other words, for each mole of an ideal gas, the heat capacity at constant pressure exceeds the
Page 7: › ~mxchen › phys3441121 › Lec05.pdf · Cp cv + Nk cv + nR (ideal gas). (1.48) In other words, for each mole of an ideal gas, the heat capacity at constant pressure exceeds the
Page 8: › ~mxchen › phys3441121 › Lec05.pdf · Cp cv + Nk cv + nR (ideal gas). (1.48) In other words, for each mole of an ideal gas, the heat capacity at constant pressure exceeds the
Page 9: › ~mxchen › phys3441121 › Lec05.pdf · Cp cv + Nk cv + nR (ideal gas). (1.48) In other words, for each mole of an ideal gas, the heat capacity at constant pressure exceeds the