Question

A circus performer stands on a platform and throws an apple from a height of 30...

A circus performer stands on a platform and throws an apple from a height of 30 m above the ground with an initial velocity v0 as shown in the figure below. A second, blindfolded performer must catch the apple. If v0 = 22 m/s, how far from the end of the platform should the second performer stand? (Assume θ = 40°.)

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

please give an upvote if you like

Add a comment
Know the answer?
Add Answer to:
A circus performer stands on a platform and throws an apple from a height of 30...
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for? Ask your own homework help question. Our experts will answer your question WITHIN MINUTES for Free.
Similar Homework Help Questions
  • Physics homework

    A circus performer stands on a platform and throws an apple from a height of 38.0 m above the ground with an initial velocity v0 as shown in the figure below. A second, blindfolded performer must catch the apple. If v0 = 27.0 m/s, how far from the end of the platform should the second performer stand? (Assume θ = 30.0°.) m

  • EXAM Kinematics, Vectors Problem 1. Let's go to the circus! An UniverSoul Circus acrobat is fired...

    EXAM Kinematics, Vectors Problem 1. Let's go to the circus! An UniverSoul Circus acrobat is fired by a cannon at an initial speed of 15 meters per second (m/s) at an angle of 0 40° above the horizontal as shown in the figure (not to scale) below At a distance of 20 meters away, her partner is standing on a platform at a height of h meters. At the instant that the acrobat is launched, her partner throws a basketball...

  • A circus act consists of a performer (a "human cannonball") being launched from a cannon into...

    A circus act consists of a performer (a "human cannonball") being launched from a cannon into a net at the other end of the stage. The performer (mass 60 kg) leaves the cannon at a speed of 25 m/s at an angle of 30o above horizontal. She comes out of the cannon at a height of 2 meters above the ground and lands in the net at a horizontal distance of 45 meters away from the launch point. 1. How...

  • A circus act consists of a performer (a "human cannonball") being launched from a cannon into...

    A circus act consists of a performer (a "human cannonball") being launched from a cannon into a net at the other end of the stage. The performer (mass 60 kg) leaves the cannon at a speed of 25 m/s at an angle of 30o above horizontal. She comes out of the cannon at a height of 2 meters above the ground and lands in the net at a horizontal distance of 45 meters away from the launch point. Let +x...

  • A man stands on the roof of a building of height 16.3 m and throws a...

    A man stands on the roof of a building of height 16.3 m and throws a rock with a velocity of magnitude 25.8 m/s at an angle of 27.6 ∘ above the horizontal. You can ignore air resistance. Calculate the magnitude of the velocity of the rock just before it strikes the ground. Calculate the horizontal distance from the base of the building to the point where the rock strikes the ground.

  • A man stands on the roof of a building of height 17.0 m and throws a...

    A man stands on the roof of a building of height 17.0 m and throws a rock with a velocity of magnitude 29.2 m/s at an angle of 33.3 ∘ above the horizontal. You can ignore air resistance. a. Calculate the maximum height above the roof reached by the rock. b. Calculate the magnitude of the velocity of the rock just before it strikes the ground. c. Calculate the horizontal distance from the base of the building to the point...

  • A man stands at the edge of a cliff and throws a rock horizontally over the...

    A man stands at the edge of a cliff and throws a rock horizontally over the edge with a speed of v0 = 15.5 m/s. The rock leaves his hand at a height of h = 46.0 m above level ground at the bottom of the cliff, as shown in the figure. Note the coordinate system in the figure, where the origin is at the bottom of the cliff, directly below where the rock leaves the hand m How long...

  • A man stands on the roof of a building of height 15.1 m and throws a rock with...

    A man stands on the roof of a building of height 15.1 m and throws a rock with a velocity of magnitude 31.4 m/s at an angle of 31.4 ∘ above the horizontal. You can ignore air resistance. Calculate the horizontal distance from the base of the building to the point where the rock strikes the ground.

  • A mischievous SUOC student has climbed on the roof of a snow-covered building and is trying to hit her friend with snowballs as he walks through the Quad. She throws them at an angle of 20◦ above the...

    A mischievous SUOC student has climbed on the roof of a snow-covered building and is trying to hit her friend with snowballs as he walks through the Quad. She throws them at an angle of 20◦ above the horizontal at a speed of v0 = 5 m/s. The building has a height h = 6 m. He decides to throw a snowball back at her. He’s standing a distance d from the side of the building, and throws a snowball...

  • A student throws a water balloon with speed vo from a height h = 1.52 m at an angle θ=39° above the horizontal toward a target on the ground.

    A student throws a water balloon with speed vo from a height h = 1.52 m at an angle θ=39° above the horizontal toward a target on the ground. The target is located a horizontal distance d = 7.5 m from the student's feet. Assume that the balloon moves without air resistance. Use a Cartesian coordinate system with the origin at the balloon's initial position. Part (a) what is the position vector, Rtarget that originates from the balloon's original position and...

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