The specific heat of ice is 2.10 kJ/kg °C, the heat of fusion for ice at 0°C is 333.7 kJ/kg, the specific heat of water 4.186 kJ/kg °C, and the heat of vaporization of water at 100 °C is 2,256 kJ/kg. What is the final equilibrium temperature when 30.0 grams of ice at –15.0 °C is mixed with 8.00 grams of steam at 100 °C? Multiple Choice 65.6 °C 60.2 °C 56.2 °C 50.1 °C 45.2 °C

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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### Problem Statement

The specific heat of ice is 2.10 kJ/kg °C, the heat of fusion for ice at 0°C is 333.7 kJ/kg, the specific heat of water is 4.186 kJ/kg °C, and the heat of vaporization of water at 100°C is 2,256 kJ/kg. What is the final equilibrium temperature when 30.0 grams of ice at –15.0°C is mixed with 8.00 grams of steam at 100°C?

### Answer Options

- **65.6 °C**
- **60.2 °C**
- **56.2 °C**
- **50.1 °C**
- **45.2 °C** (Selected)

### Explanation

This is a physics problem involving heat transfer where the aim is to calculate the final equilibrium temperature when a certain mass of ice is mixed with steam. The question provides specific heats and phase change energies necessary to solve the problem. The selected answer, **45.2 °C**, indicates the calculated final temperature once thermal equilibrium is reached.
Transcribed Image Text:### Problem Statement The specific heat of ice is 2.10 kJ/kg °C, the heat of fusion for ice at 0°C is 333.7 kJ/kg, the specific heat of water is 4.186 kJ/kg °C, and the heat of vaporization of water at 100°C is 2,256 kJ/kg. What is the final equilibrium temperature when 30.0 grams of ice at –15.0°C is mixed with 8.00 grams of steam at 100°C? ### Answer Options - **65.6 °C** - **60.2 °C** - **56.2 °C** - **50.1 °C** - **45.2 °C** (Selected) ### Explanation This is a physics problem involving heat transfer where the aim is to calculate the final equilibrium temperature when a certain mass of ice is mixed with steam. The question provides specific heats and phase change energies necessary to solve the problem. The selected answer, **45.2 °C**, indicates the calculated final temperature once thermal equilibrium is reached.
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