A physics major is cooking breakfast when he notices that the frictional force between the steel spatula and the Dry Steel frying pan is only 0.200 N. Knowing the coefficient of kinetic friction between the two materials (0.3), he quickly calculates the normal force. What is it? N

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**Problem: Calculating Normal Force**

A physics major is cooking breakfast when he notices that the frictional force between the steel spatula and the dry steel frying pan is only 0.200 N. Knowing the coefficient of kinetic friction between the two materials (0.3), he quickly calculates the normal force. What is it?

[Input box] N

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In this problem, you are tasked with calculating the normal force exerted between the spatula and frying pan using the provided frictional force and the coefficient of kinetic friction. The normal force can be calculated using the formula:

\[ F_{\text{friction}} = \mu \cdot F_{\text{normal}} \]

Where:  
- \( F_{\text{friction}} \) is the frictional force (0.200 N).
- \( \mu \) is the coefficient of kinetic friction (0.3).
- \( F_{\text{normal}} \) is the normal force (what we need to find).

Rearrange to solve for the normal force:

\[ F_{\text{normal}} = \frac{F_{\text{friction}}}{\mu} \]
Transcribed Image Text:**Problem: Calculating Normal Force** A physics major is cooking breakfast when he notices that the frictional force between the steel spatula and the dry steel frying pan is only 0.200 N. Knowing the coefficient of kinetic friction between the two materials (0.3), he quickly calculates the normal force. What is it? [Input box] N --- In this problem, you are tasked with calculating the normal force exerted between the spatula and frying pan using the provided frictional force and the coefficient of kinetic friction. The normal force can be calculated using the formula: \[ F_{\text{friction}} = \mu \cdot F_{\text{normal}} \] Where: - \( F_{\text{friction}} \) is the frictional force (0.200 N). - \( \mu \) is the coefficient of kinetic friction (0.3). - \( F_{\text{normal}} \) is the normal force (what we need to find). Rearrange to solve for the normal force: \[ F_{\text{normal}} = \frac{F_{\text{friction}}}{\mu} \]
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