High School

We appreciate your visit to A soccer player kicks a soccer ball of mass 0 45 kg that is initially at rest The player s foot is in contact with. This page offers clear insights and highlights the essential aspects of the topic. Our goal is to provide a helpful and engaging learning experience. Explore the content and find the answers you need!

A soccer player kicks a soccer ball of mass 0.45 kg that is initially at rest. The player's foot is in contact with the ball for [tex]3.0 \times 10^{-3}[/tex] s.

What is the force of the kick?

A. Not provided
B. [tex]F = 150 \, \text{N}[/tex]
C. [tex]F = 50 \, \text{N}[/tex]
D. [tex]F = 450 \, \text{N}[/tex]

Answer :

Final answer:

Option a), to determine the force on a soccer ball and the required contact distance to triple its speed, use Newton's second law and kinematic equations.

Explanation:

Force on a Soccer Ball: To determine the resultant force, we need to calculate the mass of the soccer ball being kicked. Given the acceleration and mass, we can use Newton's second law, F = ma, to find the force. Therefore, to triple the ball's speed, the foot needs to be in contact with the ball over a specific distance, which can be calculated based on the given force and the desired speed increase.

Thanks for taking the time to read A soccer player kicks a soccer ball of mass 0 45 kg that is initially at rest The player s foot is in contact with. We hope the insights shared have been valuable and enhanced your understanding of the topic. Don�t hesitate to browse our website for more informative and engaging content!

Rewritten by : Barada