To find the force exerted by the floor on the tennis ball, we can use Newton's second law of motion, which states that \( F = m \cdot a \), where \( F \) is the force, \( m \) is the mass, and \( a \) is the acceleration.
Given:
- Mass of the ball, \( m = 0.1 \) kg
- Acceleration due to the floor, \( a = 10 \) m/s²
Substituting the values into the formula:
\[ F = 0.1 , \text{kg} \cdot 10 , \text{m/s}^2 = 1 , \text{N} \]
Therefore, the force exerted by the floor on the ball is 1 N.
Final Answer: 1 N