The (non-conservative) force propelling a 1.20 × 103-kg car up a mountain road does 7.90 x 106 J of work on the car. The car starts from rest at sea level and has a speed of 28.0 m/s at an altitude of 1.80 x 10² m above sea level. Obtain the work done on the car by the combined forces of friction and air resistance, both of which are non-conservative forces. Number T5.313E6 UnitsT) the tolerance is +/-2%

College Physics
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Chapter1: Units, Trigonometry. And Vectors
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### Chapter 06, Problem 55

#### Your answer is partially correct. Try again.

The (non-conservative) force propelling a 1.20 x 10^3-kg car up a mountain road does 7.90 x 10^6 J of work on the car. The car starts from rest at sea level and has a speed of 28.0 m/s at an altitude of 1.80 x 10^2 m above sea level. Obtain the work done on the car by the combined forces of friction and air resistance, both of which are non-conservative forces.

#### Submission Data:

- **Number:** 5.313E6
- **Units:** J (Joules)

**The tolerance is +/- 2%.**

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- Click if you would like to Show Work for this question: [Open Show Work](#)

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Transcribed Image Text:### Chapter 06, Problem 55 #### Your answer is partially correct. Try again. The (non-conservative) force propelling a 1.20 x 10^3-kg car up a mountain road does 7.90 x 10^6 J of work on the car. The car starts from rest at sea level and has a speed of 28.0 m/s at an altitude of 1.80 x 10^2 m above sea level. Obtain the work done on the car by the combined forces of friction and air resistance, both of which are non-conservative forces. #### Submission Data: - **Number:** 5.313E6 - **Units:** J (Joules) **The tolerance is +/- 2%.** --- #### Additional Options: - Click if you would like to Show Work for this question: [Open Show Work](#) --- **Question Attempts: 1 of 6 used** --- #### Action Buttons: - **Save for Later** - **Submit Answer**
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