Question

A tennis player serves a tennis ball such that it is moving horizontally when it leaves...

A tennis player serves a tennis ball such that it is moving horizontally when it leaves the racquet. When the ball travels a horizontal distance of 16 m, it has dropped 59 cm from its original height when it left the racquet. What was the initial speed, in m/s, of the tennis ball? (Neglect air resistance.)

1 0
Add a comment Improve this question Transcribed image text
✔ Recommended Answer
Answer #1

From vertical motion , y = 0.59m , a = 9.8m/s^2 and initial velocity It = 0

=) time t = (2y/a)^1/2 = ( 2×0.59/9.8)^0.5 = 0.347s

Now from horizontal motion , x = 16m and t = 0.347s

Hence Ux = 16/0.347 = 46.11m/s

Add a comment
Know the answer?
Add Answer to:
A tennis player serves a tennis ball such that it is moving horizontally when it leaves...
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Similar Homework Help Questions
  • During a tennis match, a player serves the ball at 24.8 m/s, with the center of...

    During a tennis match, a player serves the ball at 24.8 m/s, with the center of the ball leaving the racquet horizontally 2.36 m above the court surface. The net is 12 m away and 0.90 m high. (a) When the ball reaches the net, does the ball clear it? Yes No (b) What is the distance between the center of the ball and the top of the net? Suppose that, instead, the ball is served as before but now...

  • During a tennis match, a player serves the ball at 24.4 m/s, with the center of...

    During a tennis match, a player serves the ball at 24.4 m/s, with the center of the ball leaving the racquet horizontally 2.51 m above the court surface. The net is 12.0 m away and 0.900 m high. When the ball reaches the net, (a) what is the distance between the center of the ball and the top of the net? (b) Suppose that, instead, the ball is served as before but now it leaves the racquet at 5.00° below...

  • During a tennis match, a player serves the ball at 25.6 m/s, with the center of...

    During a tennis match, a player serves the ball at 25.6 m/s, with the center of the ball leaving the racquet horizontally 2.52 m above the court surface. The net is 12.0 m away and 0.900 m high. When the ball reaches the net, (a) what is the distance between the center of the ball and the top of the net? (b) Suppose that, instead, the ball is served as before but now it leaves the racquet at 5.00° below...

  • During a tennis match, a player serves the ball at 24.0 m/s, with the center of...

    During a tennis match, a player serves the ball at 24.0 m/s, with the center of the ball leaving the racquet horizontally 2.45 m above the court surface. The net is 12.0 m away and 0.900 m high. When the ball reaches the net, (a) what is the distance between the center of the ball and the top of the net? (b) Suppose that, instead, the ball is served as before but now it leaves the racquet at 5.00° below...

  • During a tennis match, a player serves the ball at 27.1 m/s, with the center of...

    During a tennis match, a player serves the ball at 27.1 m/s, with the center of the ball leaving the racquet horizontally 2.31 m above the court surface. The net is 120 mway and 0.900 m high. When the ball reaches the met, (a) what is the distance between the center of the ball and the top of the net? (b) Suppose that, instead, the ball is served as before but now it leaves the racqueta 5.00 below the horontal....

  • A tennis player hits a ball 2 0 m above the ground. The ball leaves his racquet with a speed of 22.0 m/s at an angle 4.5 above the horizontal.

    A tennis player hits a ball 2 0 m above the ground. The ball leaves his racquet with a speed of 22.0 m/s at an angle 4.5 above the horizontal. The horizontal distance to the net is 7.0 m, and the net is 1.0 m Part B By how much?  

  • 1. (25 points) The tennis player serves the ball at an angle of 0 = 4°...

    1. (25 points) The tennis player serves the ball at an angle of 0 = 4° degrees below horizontal as shown. The center of the ball clears the 0.9 m net by 150 mm. Neglecting air resistance and the effect of the ball spin, calculate: a) The initial velocity of the ball. b) The distances from the net to where the ball hits the court. 2.55 m 10.9 m -11.7 m

  • My Notes A tennis player receives a shot with the ball (0.060 0 kg) traveling horizontally...

    My Notes A tennis player receives a shot with the ball (0.060 0 kg) traveling horizontally at 55.0 m/s and returns the shot with the ball traveling horizontally at 39.5 m/s in the opposite direction. (Assume the initial direction of the ball is in the −x direction.) (a) What is the impulse delivered to the ball by the tennis racquet?___________________ î N · s (b) What work does the racquet do on the ball?______________________ J My Notes An estimated force–time...

  • A tennis player hits a ball 2.0 m above the ground.

    A tennis player hits a ball 2.0 m above the ground. The ball leaves the racquet with a speed of 20m/s at an angle of 10° above horizontal. If the net is 5.0 m away and 1.0 m high, does the ball clear the net It so, by how much?

  • A tennis player receives a shot with the ball (0.0600 kg) traveling horizontally at 52.0 m/s and returns the shot with...

    A tennis player receives a shot with the ball (0.0600 kg) traveling horizontally at 52.0 m/s and returns the shot with the ball traveling horizontally at 32.0 m/s in the opposite direction. (Assume the initial direction of the ball is in the -x direction.) (a) What is the impulse delivered to the ball by the racquet? ? (b) What work does the racquet do on the ball? How many Joules?

ADVERTISEMENT
Free Homework Help App
Download From Google Play
Scan Your Homework
to Get Instant Free Answers
Need Online Homework Help?
Ask a Question
Get Answers For Free
Most questions answered within 3 hours.
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT