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Kaczmarek's Courses - Chemistry 20Assume no loss of heat to the surroundings, the density of the solution is equal to 1.00 g/mL and the specific heat capacity of the solution is 4.19

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Page 1: Kaczmarek's Courses - Chemistry 20Assume no loss of heat to the surroundings, the density of the solution is equal to 1.00 g/mL and the specific heat capacity of the solution is 4.19
Page 2: Kaczmarek's Courses - Chemistry 20Assume no loss of heat to the surroundings, the density of the solution is equal to 1.00 g/mL and the specific heat capacity of the solution is 4.19
Page 3: Kaczmarek's Courses - Chemistry 20Assume no loss of heat to the surroundings, the density of the solution is equal to 1.00 g/mL and the specific heat capacity of the solution is 4.19
Page 4: Kaczmarek's Courses - Chemistry 20Assume no loss of heat to the surroundings, the density of the solution is equal to 1.00 g/mL and the specific heat capacity of the solution is 4.19
Page 5: Kaczmarek's Courses - Chemistry 20Assume no loss of heat to the surroundings, the density of the solution is equal to 1.00 g/mL and the specific heat capacity of the solution is 4.19
Page 6: Kaczmarek's Courses - Chemistry 20Assume no loss of heat to the surroundings, the density of the solution is equal to 1.00 g/mL and the specific heat capacity of the solution is 4.19
Page 7: Kaczmarek's Courses - Chemistry 20Assume no loss of heat to the surroundings, the density of the solution is equal to 1.00 g/mL and the specific heat capacity of the solution is 4.19
Page 8: Kaczmarek's Courses - Chemistry 20Assume no loss of heat to the surroundings, the density of the solution is equal to 1.00 g/mL and the specific heat capacity of the solution is 4.19