Question

An outfielder throws a baseball to his catcher in an attempt to throw out a runner at home plate. The ball bounces once before reaching the catcher. Assume the angle at which the bounced ball leaves the ground is the same as the angle at which the outfielder threw it as shown in the figure, but that the ball's speed after the bounce is one-half of what it was before the bounce. D (a) Assuming the ball is always thrown with the same initial speed, at what angle $\theta$ should the fielder throw the ball to make it go the same distance $D$ with one bounce (blue path) as a ball thrown upward at 35.0° with no bounce (green path)? (b) Determine the ratio of the time interval for the one-bounce throw to the flight time for the no-bounce throw. $\frac{t_{one-bounce}}{t_{no-bounce}} = $

          An outfielder throws a baseball to his catcher in an attempt to throw out a runner at home plate. The ball bounces once before reaching the catcher. Assume the angle at which the bounced ball leaves the ground is the same as the angle at which the outfielder threw it as shown in the figure, but that the ball's speed after the bounce is one-half of what it was before the bounce.
D
(a) Assuming the ball is always thrown with the same initial speed, at what angle $\theta$ should the fielder throw the ball to make it go the same distance $D$ with one bounce (blue path) as a ball thrown upward at 35.0° with no bounce (green path)?
(b) Determine the ratio of the time interval for the one-bounce throw to the flight time for the no-bounce throw.
$\frac{t_{one-bounce}}{t_{no-bounce}} = $
        
Show more…
An outfielder throws a baseball to his catcher in an attempt to throw out a runner at home plate. The ball bounces once before reaching the catcher. Assume the angle at which the bounced ball leaves the ground is the same as the angle at which the outfielder threw it as shown in the figure, but that the ball's speed after the bounce is one-half of what it was before the bounce.
D
(a) Assuming the ball is always thrown with the same initial speed, at what angle θ should the fielder throw the ball to make it go the same distance D with one bounce (blue path) as a ball thrown upward at 35.0° with no bounce (green path)?
(b) Determine the ratio of the time interval for the one-bounce throw to the flight time for the no-bounce throw.
(tone-bounce)/(tno-bounce) =

Added by Scott R.

Close

University Physics with Modern Physics
University Physics with Modern Physics
Hugh D. Young 14th Edition
AceChat toggle button
Close icon
Ace pointing down

Please give Ace some feedback

Your feedback will help us improve your experience

Thumb up icon Thumb down icon
Thanks for your feedback!
Profile picture
the same as the angle at which the outfielder threw it as shown in the figure, but that the ball's speed after the bounce is one-half of what it was before the bounce. 35.0deg with no bounce (green path)? (b) Determine the ratio of the time interval for the one-bounce throw to the flight time for the no-bounce throw. (t_(one-bounce ))/(t_(no-bounce ))= Need Help? An outfielder throws a baseball to his catcher in an attempt to throw out a runner at home plate. The ball bounces once before reaching the catcher. Assume the angle at which the bounced ball leaves the ground is the same as the angle at which the outfielder threw it as shown in the figure, but that the ball's speed after the bounce is one-half of what it was before the bounce. (a Assuming the ball is always thrown with the same initial speed, at what angle should the fielder throw the ball to make it go the same distance D with one bounce (blue path) as a ball thrown upward at 35.0with no bounce(green path)? (b) Determine the ratio of the time interval for the one-bounce throw to the flight time for the no-bounce throw. one-bounce tno-bounce Need Help? Read It Submit Answer
Close icon
Play audio
Feedback
Powered by NumerAI
Kathleen Carty Jennifer Stoner
Danielle Fairburn verified

Penny Riley and 52 other subject Physics 101 Mechanics educators are ready to help you.

Ask a new question

*

Labs

-

Want to see this concept in action?

NEW

Explore this concept interactively to see how it behaves as you change inputs.

View Labs

*

Key Concepts

-
Key Concept
Premium Feature
Explore the core concept behind this problem.
Play button
Key Concept
Premium Feature
Explore the core concept behind this problem.
Your browser does not support the video tag.

*

Recommended Videos

-
an-outfielder-throws-a-baseball-to-his-catcher-in-an-attempt-to-throw-out-a-runner-at-home-plate-t-2-27211

An outfielder throws a baseball to his catcher in an attempt to throw out a runner at home plate. The ball bounces once before reaching the catcher. Assume the angle at which the bounced ball leaves the ground is the same as the angle at which the outfielder threw it as shown in Figure P4.58, but that the ball's speed after the bounce is one-half of what it was before the bounce. (a) Assume the ball is always thrown with the same initial speed and ignore air resistance. At what angle $ heta$ should the fielder throw the ball to make it go the same distance $D$ with one bounce (blue path) as a ball thrown upward at $45.0^{circ}$ with no bounce (green path)? (b) Determine the ratio of the time interval for the onebounce throw to the flight time for the no-bounce throw.

Penny R.

an-outfielder-throws-a-baseball-to-his-catcher-in-an-attempt-to-throw-out-a-runner-at-home-plate-t-3-14246

An outfielder throws a baseball to his catcher in an attempt to throw out a runner at home plate. The ball bounces once before reaching the catcher. Assume the angle at which the bounced ball leaves the ground is the same as the angle at which the outfielder threw it as shown in Figure $\mathrm{P} 3.50,$ but that the ball's speed after the bounce is one-half of what it was before the bounce. (a) Assume the ball is always thrown with the same initial speed and ignore air resistance. At what angle $\theta$ should the fielder throw the ball to make it go the same distance $D$ with one bounce (blue path) as a ball thrown upward at $45.0^{\circ}$ with no bounce (green path)? (b) Determine the ratio of the time interval for the onebounce throw to the flight time for the no-bounce throw.

Penny R.

an-outfielder-throws-a-baseball-to-his-catcher-in-an-attempt-to-throw-out-a-runner-at-home-plate-t-3

An outfielder throws a baseball to his catcher in an attempt to throw out a runner at home plate. The ball bounces once before reaching the catcher. Assume the angle at which the bounced ball leaves the ground is the same as the angle at which the outfielder threw it as shown in Figure $\mathrm{P} 3.50,$ but that the ball's speed after the bounce is one-half of what it was before the bounce. (a) Assume the ball is always thrown with the same initial speed and ignore air resistance. At what angle $\theta$ should the fielder throw the ball to make it go the same distance $D$ with one bounce (blue path) as a ball thrown upward at $45.0^{\circ}$ with no bounce (green path)? (b) Determine the ratio of the time interval for the onebounce throw to the flight time for the no-bounce throw.

Principles of Physics a Calculus Based Text


*

Recommended Textbooks

-
University Physics with Modern Physics

University Physics with Modern Physics

Hugh D. Young 14th Edition
achievement 1,127 solutions
Physics: Principles with Applications

Physics: Principles with Applications

Douglas C. Giancoli 7th Edition
achievement 1,054 solutions
Fundamentals of Physics

Fundamentals of Physics

David Halliday, Robert Resnick , Jearl Walker 10th Edition
achievement 1,669 solutions

*

Transcript

-
00:01 Assume the ball is always thrown with the same initial speed and ignore air resistance.
00:06 At what angle should the fielder throw the ball to make you go the same distance when one bounce as the ball thrown upward at 45 degrees with no bounds? okay.
00:20 So let's make one for our blue path.
00:23 For our blue path, our initial speed of the ball is u.
00:27 Our angle is theta.
00:29 The horizontal distance traveled is equal to u squared.
00:33 S .2 theta divided by g.
00:37 And the time it takes is equal to d1 divided by u, or u sine 2 theta divided by g.
00:45 Now, after the bounce, the horizontal distance is reduced to half.
00:51 So, then we get d2 is equal to u squared sine 2 theta divided by 4g...
Need help? Use Ace
Ace is your personal tutor. It breaks down any question with clear steps so you can learn.
Start Using Ace
Ace is your personal tutor for learning
Step-by-step explanations
Instant summaries
Summarize YouTube videos
Understand textbook images or PDFs
Study tools like quizzes and flashcards
Listen to your notes as a podcast
Continue solving this problem
Create a free account to:
  • View full step-by-step solution
  • Ask follow-up questions with Ace AI
  • Save progress and study later
Continue Free
Numerade

Get step-by-step video solution
from top educators

Continue with Clever
or



By creating an account, you agree to the Terms of Service and Privacy Policy
Already have an account? Log In

A free answer
just for you

Watch the video solution with this free unlock.

Numerade

Log in to watch this video
...and 100,000,000 more!


EMAIL

PASSWORD

OR
Continue with Clever