Part A How should you define the system for a problem involving thermal energy? Select everything that should be included in the system. Select all that apply. The laptop The rope The surface The air The entire earth Submit Request Answer Part B How much work does tension do on the laptop as it moves 2.0 m? Express your answer with the appropriate units. ▸ View Available Hint(s) μÀ WT = Value Submit Units ?

College Physics
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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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**Understanding Thermal Energy in a Moving System**

**Scenario Description:**
The image illustrates a scenario where a 1.5 kg laptop computer is being dragged up a 25° slope at a steady speed by a rope with a tension of 17 N. As the laptop and the slope undergo friction, both become warmer. The task is to determine the increase in thermal energy when the laptop is pulled 2.0 m.

**Diagram Explanation:**
- The diagram is labeled "Figure 1" and it shows a laptop being dragged up an inclined surface (25° slope).
- There are two arrows in the diagram:
  - A red arrow labeled \( \vec{T} \) represents the tension in the rope.
  - A blue arrow labeled \( \Delta \vec{r} \) indicates the direction of the laptop's movement.

**Part A: Defining the System for Thermal Energy**
You must choose the components that should be included in the system to analyze the problem involving thermal energy from the following options:
- The laptop
- The rope
- The surface
- The air
- The entire earth

**Part B: Calculating Work Done by Tension**
The task is to calculate how much work the tension does on the laptop as it moves 2.0 m. The answer should be expressed with appropriate units. A formula box is provided for inputting the value and units:
\[ W_T = \text{Value} \, \text{Units} \]
Transcribed Image Text:**Understanding Thermal Energy in a Moving System** **Scenario Description:** The image illustrates a scenario where a 1.5 kg laptop computer is being dragged up a 25° slope at a steady speed by a rope with a tension of 17 N. As the laptop and the slope undergo friction, both become warmer. The task is to determine the increase in thermal energy when the laptop is pulled 2.0 m. **Diagram Explanation:** - The diagram is labeled "Figure 1" and it shows a laptop being dragged up an inclined surface (25° slope). - There are two arrows in the diagram: - A red arrow labeled \( \vec{T} \) represents the tension in the rope. - A blue arrow labeled \( \Delta \vec{r} \) indicates the direction of the laptop's movement. **Part A: Defining the System for Thermal Energy** You must choose the components that should be included in the system to analyze the problem involving thermal energy from the following options: - The laptop - The rope - The surface - The air - The entire earth **Part B: Calculating Work Done by Tension** The task is to calculate how much work the tension does on the laptop as it moves 2.0 m. The answer should be expressed with appropriate units. A formula box is provided for inputting the value and units: \[ W_T = \text{Value} \, \text{Units} \]
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