Zaloguj się

Force and momentum are intimately related. Force acting over time can change momentum, and Newton's second law of motion can be stated in its most broadly applicable form in terms of momentum. Momentum can be applied to systems where the mass is changing, such as rockets, as well as to systems of constant mass. Also, momentum continues to be a key concept in the study of atomic and subatomic particles in quantum mechanics. One can consider systems with varying mass in some detail; however, the relationship between momentum and force remains useful when mass is constant, such as in the following example.

During the 2007 French Open, Venus Williams hit the fastest recorded serve in a premier women's match, reaching a speed of 58 m/s (209 km/h). What is the average force exerted on the 0.057 kg tennis ball by Venus Williams'racquet, assuming that the ball's speed just after impact is 58 m/s, that the initial horizontal component of the velocity before impact is negligible, and that the ball remained in contact with the racquet for 5.0 ms (milliseconds)?

To determine the change in momentum, substitute the values for the initial and final velocities into the equation below:

Equation1

Now, the magnitude of the net external force can be determined by using

Equation2

where only two significant figures were retained in the final step.

  1. This text is adapted from Openstax, College Physics, Section 8.1: Linear Momentum and Force and Openstax, University Physics Volume 1, Section 9.1: Linear Momentum.
Tagi
ForceMomentumNewton s Second LawTennis BallVelocityImpactRacquetContact TimeExternal Force

Z rozdziału 9:

article

Now Playing

9.2 : Force and Momentum

Linear Momentum, Impulse and Collisions

11.8K Wyświetleń

article

9.1 : Pęd liniowy

Linear Momentum, Impulse and Collisions

13.0K Wyświetleń

article

9.3 : Impuls

Linear Momentum, Impulse and Collisions

14.9K Wyświetleń

article

9.4 : Twierdzenie o impulsie i pędzie

Linear Momentum, Impulse and Collisions

10.5K Wyświetleń

article

9.5 : Zasada zachowania pędu: Wprowadzenie

Linear Momentum, Impulse and Collisions

13.9K Wyświetleń

article

9.6 : Zasada zachowania pędu: rozwiązywanie problemów

Linear Momentum, Impulse and Collisions

9.3K Wyświetleń

article

9.7 : Rodzaje kolizji - I

Linear Momentum, Impulse and Collisions

6.1K Wyświetleń

article

9.8 : Rodzaje kolizji - II

Linear Momentum, Impulse and Collisions

6.4K Wyświetleń

article

9.9 : Zderzenia sprężyste: Wprowadzenie

Linear Momentum, Impulse and Collisions

8.9K Wyświetleń

article

9.10 : Zderzenia sprężyste: studium przypadku

Linear Momentum, Impulse and Collisions

9.8K Wyświetleń

article

9.11 : Kolizje w wielu wymiarach: Wprowadzenie

Linear Momentum, Impulse and Collisions

4.2K Wyświetleń

article

9.12 : Kolizje w wielu wymiarach: rozwiązywanie problemów

Linear Momentum, Impulse and Collisions

3.3K Wyświetleń

article

9.13 : Środek masy: Wprowadzenie

Linear Momentum, Impulse and Collisions

10.5K Wyświetleń

article

9.14 : Znaczenie środka masy

Linear Momentum, Impulse and Collisions

5.9K Wyświetleń

article

9.15 : Grawitacyjna energia potencjalna dla rozciągniętych obiektów

Linear Momentum, Impulse and Collisions

1.3K Wyświetleń

See More

JoVE Logo

Prywatność

Warunki Korzystania

Zasady

Badania

Edukacja

O JoVE

Copyright © 2025 MyJoVE Corporation. Wszelkie prawa zastrzeżone