Question

A ballistic pendulum involves a spring-powered launcher which fires a small steel ball of mass 0.05...

A ballistic pendulum involves a spring-powered launcher which fires a small steel ball of mass 0.05 kg over a distance of 0.1 m with velocity 10 m/s into a pendulum of mass 0.2 kg.0.5 seconds pass between the launch of the ball and its inellastic collision with the pendulum.

What force does the ball have when it strikes the pendulum?

What force does the pendulum exert on the ball at the moment of impact?

How much work is done by the ball to travel from the launcher to the pendulum?

0 0
Add a comment Improve this question Transcribed image text
Know the answer?
Add Answer to:
A ballistic pendulum involves a spring-powered launcher which fires a small steel ball of mass 0.05...
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
  • I put the theory on first page. 7-Ballistic Pendulum Data Studio File: "Ballistie Pendlds" Equipment List...

    I put the theory on first page. 7-Ballistic Pendulum Data Studio File: "Ballistie Pendlds" Equipment List Qty Items PASCO Interface Rotary Motion Sensor Rod, 45 em Ballistic Pendulum 1Universal Table Clamp Introduction A ballistic pendulum is used to determine the muzzle velocity of a ball shot out of a Projectile Launcher. The laws of conservation of momentum and conservation of energy are used to derive the equation for the muzzle velocity. Theory The ballistic pendulum has historically been used to...

  • #14 Question 14 10 pts The Ballistic Pendulum, Part 1 A small, 0.1 kg ball of...

    #14 Question 14 10 pts The Ballistic Pendulum, Part 1 A small, 0.1 kg ball of clay (shown in the figure below as a rectangle) strikes a pendulum composed of 2 kg ball attached to a light chain of length L = 0.3 m (left). After it strikes the ball they stick together (right illustration), and the bob rises to a maximum angle of 30 degrees with respect to the vertical before stopping. The pendulum is under a uniform gravitational...

  • A steel ball of mass m = 1 kg and a cord of negligible mass and...

    A steel ball of mass m = 1 kg and a cord of negligible mass and length L = 2 m make up a simple pendulum that can pivot without friction about the point O (see below). This pendulum is released from rest in a horizontal position and when the ball is at its lowest point it strikes a block of mass m = 1 kg sitting at rest on a shelf. Assume that the collision is perfectly elastic and...

  • A small spring-loaded launcher is designed to fire steel ball bearings with masses of 0.3 kg...

    A small spring-loaded launcher is designed to fire steel ball bearings with masses of 0.3 kg . When setting the launcher, you compress the spring a distance of 14 cm . You then fire the launcher straight up and find that the projectiles reach a maximum height of 0.9 m above the point that they leave the launcher. You load another ball bearing, compress the spring a distance of 20 cm , and place it horizontally at the edge of...

  • A small spring-loaded launcher is designed to fire steel ball bearings with masses of 0.26 kg...

    A small spring-loaded launcher is designed to fire steel ball bearings with masses of 0.26 kg . When setting the launcher, you compress the spring a distance of 13 cm . You then fire the launcher straight up and find that the projectiles reach a maximum height of 1.2 m above the point that they leave the launcher. You load another ball bearing, compress the spring a distance of 16 cm , and place it horizontally at the edge of...

  • Part A A small spring-loaded launcher is designed to fire steel ball bearings with masses of...

    Part A A small spring-loaded launcher is designed to fire steel ball bearings with masses of 0.28 kg. When setting the launcher, you compress the spring a distance of 13 cm. You then fire the launcher straight up and find that the projectiles reach a maximum height of 1 m above the point that they leave the launcher. You load another ball bearing, compress the spring a distance of 19 cm, and place it horizontally at the edge of a...

  • A small spring-loaded launcher is designed to fire steel ball bearings with masses of 0.28 kg...

    A small spring-loaded launcher is designed to fire steel ball bearings with masses of 0.28 kg . When setting the launcher, you compress the spring a distance of 13 cm . You then fire the launcher straight up and find that the projectiles reach a maximum height of 1.3 mm above the point that they leave the launcher. You load another ball bearing, compress the spring a distance of 20 cm, and place it horizontally at the edge of a...

  • A small spring-loaded launcher is designed to fire steel ball bearings with masses of 0.26 kg...

    A small spring-loaded launcher is designed to fire steel ball bearings with masses of 0.26 kg . When setting the launcher, you compress the spring a distance of 15 cm. You then fire the launcher straight up and find that the projectiles reach a maximum height of 1.3 mm above the point that they leave the launcher. You load another ball bearing, compress the spring a distance of 20 cm, and place it horizontally at the edge of a table...

  • 1) a)You are asked to find the initial velocity of a steel ball from a spring...

    1) a)You are asked to find the initial velocity of a steel ball from a spring loaded launcher. You place the launcher on the edge of a table 1.0 meter above the floor and launch the projectile several times horizontally. If you find that the average distance the ball travels is 1.3 meters, what is the initial velocity of the ball? To solve a problem like this, use equations for the y-motion to find the time and then the x-motion...

  • A spring-loaded launcher is used to shoot a ball of mass 1.50 kg straight up in...

    A spring-loaded launcher is used to shoot a ball of mass 1.50 kg straight up in the air, as shown in (Figure 1). The spring has spring constant k 667 N/m. If the spring is compressed a distance of 25.0 centimeters from its equilibrium position y = 0 and then released, the ball reaches a maximum height hmax (measured from the equilibrium position of the spring). There is no air resistance, and the ball never touches the inside of the...

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