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Answer:
To determine what happens when a 50 N force is applied to a 200 kg refrigerator, we can use Newton's second law of motion, \( F = ma \), where \( F \) is the force applied, \( m \) is the mass of the object, and \( a \) is the acceleration produced.
Given:
- Force \( F = 50 \) N
- Mass \( m = 200 \) kg
We need to find the acceleration \( a \):
\[ a = \frac{F}{m} = \frac{50 \text{ N}}{200 \text{ kg}} = 0.25 \text{ m/s}^2 \]
Thus, the refrigerator would accelerate at \( 0.25 \text{ m/s}^2 \). If there is friction, this value would be lower, depending on the coefficient of friction between the refrigerator and the surface.
Explanation:
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