Question

A hockey puck (mass = 2.5 kg) leaves the players stick with a speed of 25...

A hockey puck (mass = 2.5 kg) leaves the players stick with a speed of 25 m/s and slides on the ice for 90 meters before coming to rest.

A) What is the magnitude of the acceleration on the puck?
m/s2

Tries 0/2


B) What is the magnitude of the friction force exerted on the puck due to the ice?
N

Tries 0/2


C) What is the normal force on the puck?
N

Tries 0/2


D) What is the friction coefficient between the puck and the ice?
(unitless)

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

a)

vo = initial speed = 25 m/s

v = final speed = 0 m/s (since puck comes to a stop )

x = distance traveled before coming to stop = 90 m

a = acceleration of puck

Using the kinematics equation

v2 = vo2 + 2 a x

02 = 252 + 2 a (90)

0 = 625 + 180 a

a = - 625/180

a = - 3.5 m/s2

magnitude of acceleration : 3.5 m/s2

b)

f = magnitude of static friction

magnitude of static friction is given as

f = ma

f = (2.5) (3.5)

f = 8.75 N

c)

Normal force on the puck is given as

N = mg

N = (2.5) (9.8)

N = 24.5 N

d)

Coefficient of friction is given as

\mu = f/N

\mu = 8.75/24.5

\mu = 0.36

Add a comment
Know the answer?
Add Answer to:
A hockey puck (mass = 2.5 kg) leaves the players stick with a speed of 25...
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
  • A hockey puck (mass = 3.5 kg) leaves the players stick with a speed of 25...

    A hockey puck (mass = 3.5 kg) leaves the players stick with a speed of 25 m/s and slides on the ice for 50 meters before coming to rest. What is the magnitude of the acceleration on the puck? m/s2 What is the magnitude of the friction force exerted on the puck due to the ice? N What is the normal force on the puck? N What is the friction coefficient between the puck and the ice? (unitless)

  • A hockey puck (mass = 2 kg) leaves the players stick (moving to the left) with...

    A hockey puck (mass = 2 kg) leaves the players stick (moving to the left) with a speed of 10 m/s and slides on the ice before coming to rest. The coefficient of friction between the puck and the ice is 0.4 What is the normal force on the puck? Submit Answer Tries 0/2 What is the friction force exerted on the puck due to the ice? Submit Answer Tries 0/2 What is the magnitude of the acceleration of the...

  • A hockey puck (mass = 3 kg) leaves the players stick with a speed of 18...

    A hockey puck (mass = 3 kg) leaves the players stick with a speed of 18 m/s and slides on the ice before coming to rest. The coefficient of friction between the puck and the ice is 0.4. How far will the puck slide after leaving the players stick?

  • A hockey puck leaves a player's stick with a speed of 9.40 m/s and slides 34.0...

    A hockey puck leaves a player's stick with a speed of 9.40 m/s and slides 34.0 m before coming to rest. Find the coefficient of friction between the puck and the ice.

  • Two forces are acting on a 0.150-kg hockey puck as it slides along the ice. The...

    Two forces are acting on a 0.150-kg hockey puck as it slides along the ice. The first force has a magnitude of 0.405 N and points 35.0° north of east. The second force has a magnitude of 0.605 N and points 55.0° north of east. If these are the only two forces acting on the puck, what will be the magnitude and direction of the puck\'s acceleration? Enter the direction as an angle measured in degrees counterclockwise from due east....

  • A stationary hockey puck is struck by a player and is given a velocity of 35.0...

    A stationary hockey puck is struck by a player and is given a velocity of 35.0 m/s. The collision between the stick and the puck lasts for 5.0 milliseconds and the mass of the pack is 0.160 kg. Find the average force exerted on the puck during the collision. The puck gradually slows to a speed of 30.0 m/s over a time of 3.00 seconds. Find the value of the coefficient of kinetic friction between the puck and the ice.

  • A hockey puck slides on ice (looking down on the ice from above; blue arrows are...

    A hockey puck slides on ice (looking down on the ice from above; blue arrows are momentum, red line shows path); friction and air resistance are negligible. When the puck reaches location 2 it is struck hard by a hockey stick; the contact lasts a very short time. It then travels from 2 to 3 at nearly constant momentum. The magnitude of the puck's momentum is the same at locations 1 and 3. Which green arrow best indicates the direction of...

  • A hockey stick is in contact with a 165-g puck for22.4 ms; during this time, the...

    A hockey stick is in contact with a 165-g puck for22.4 ms; during this time, the force on the puck is given approximately by F(t)=a+bt+ct2,where  a = −25.0 N, b = 1.13 × 105 N/s, andc = −5.58 × 106 N/s2. A) Determine the speed of the puck after it leaves the stick. B) Determine how far the puck travels while its in contact with the stick.

  • Two forces are acting on a 0.150-kg hockey puck as it slides along the ice. The...

    Two forces are acting on a 0.150-kg hockey puck as it slides along the ice. The first force has a magnitude of 0.405 N and points 25.0° north of east. The second force has a magnitude of 0.525 N and points 55.0° north of east. If these are the only two forces acting on the puck, what will be the magnitude and direction of the puck's acceleration?

  • A hockey puck with an initial speed of 8.0 m/s coasts 45 m to a stop...

    A hockey puck with an initial speed of 8.0 m/s coasts 45 m to a stop across the ice. If the force of friction on the puck has a magnitude of 0.12 N, what is the puck’s mass?

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