Question

3. A box of mass m=15 kg at the packaging section of a factory comes to the top of a ramp (?=37°) with speed vo and slides down where it is picked up for shipment. In order to avoid damage to the box a spring is used with force constant k=100N/m and the maximum force Fmax=100N. The box slides a distance of l=4 m down the incline before it hits the spring as shown. The coefficient of kinetic friction between the box and entire ramp is 0.75. a) Find the work done by the gravity , normal force and friction force on the box until it hits the spring. b) Find the maximum speed of the box at the top of the ramp if the box is to be picked up when the spring is in maximum compression.

          3. A box of mass m=15 kg at the packaging section of a factory comes to the top of a ramp (?=37°) with speed vo and slides down where it is picked up for shipment. In order to avoid damage to the box a spring is used with force constant k=100N/m and the maximum force Fmax=100N. The box slides a distance of l=4 m down the incline before it hits the spring as shown. The coefficient of kinetic friction between the box and entire ramp is 0.75.
a) Find the work done by the gravity , normal force and friction force on the box until it hits the spring.
b) Find the maximum speed of the box at the top of the ramp if the box is to be picked up when the spring is in maximum compression.
        
Show more…
3. A box of mass m=15 kg at the packaging section of a factory comes to the top of a ramp (?=37°) with speed vo and slides down where it is picked up for shipment. In order to avoid damage to the box a spring is used with force constant k=100N/m and the maximum force Fmax=100N. The box slides a distance of l=4 m down the incline before it hits the spring as shown. The coefficient of kinetic friction between the box and entire ramp is 0.75.
a) Find the work done by the gravity , normal force and friction force on the box until it hits the spring.
b) Find the maximum speed of the box at the top of the ramp if the box is to be picked up when the spring is in maximum compression.

Added by Margaret A.

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
3. A box of mass m=15 kg at the packaging section of a factory comes to the top of a ramp (̸=37°) with speed vo and slides down where it is picked up for shipment. In order to avoid damage to the box a spring is used with force constant k=100N/m and the maximum force Fmax=100N. The box slides a distance of l=4 m down the incline before it hits the spring as shown. The coefficient of kinetic friction between the box and entire ramp is 0.75. a) Find the work done by the gravity , normal force and friction force on the box until it hits the spring. b) Find the maximum speed of the box at the top of the ramp if the box is to be picked up when the spring is in maximum compression.
Close icon
Play audio
Feedback
Powered by NumerAI
Ivan Kochetkov Kathleen Carty
David Collins verified

Sri K and 59 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

-
a-04-kg-box-is-at-rest-on-an-incline-it-is-a-vertical-height-of-125-m-above-the-floor-it-slides-275-m-down-the-incline-which-has-a-coefficient-of-friction-of-03-a-draw-a-free-body-diagram-fo-31448

A 0.4 kg box is at rest on an incline. It is a vertical height of 1.25 m above the floor. It slides 2.75 m down the incline, which has a coefficient of friction of μ = 0.3. a) Draw a free body diagram for the box while it is on the ramp. b) Use Newton's 2nd Law to find the acceleration of the box while it is on the ramp. c) Use conservation of energy to find the speed of the box when it has reached the bottom of the ramp. d) The box then slides 1.0 m across a frictionless floor and reaches a spring with constant k = 40 N/m. How far will the spring compress before the block stops momentarily?

Timothy J.

box-with-mass-m-0100-kg-is-at-rest-and-placed-against-compressed-spring-at-the-bottom-of-ramp-that-is-at-an-angle-0-450-degrees-above-the-horizontal-the-compressed-spring-has-elastic-potenti-45916

A box with mass m = 0.100 kg is at rest and placed against a compressed spring at the bottom of a ramp that is at an angle ̴̵̶̷̸̡̢̧̨̛̖̗̘̙̜̝̞̟̠̣̤̥̦̩̪̫̬̭̮̯̰̱̲̳̹̺̻̼͇͈͉͍͎̈́̃̆̇̈̉̑̒̓̔̽̾̿̀́͂̓̈́͆͊͋͌̕̚ͅ͏͓͔͕͖͙͚͐͑͒͗͛ͣͤͥͦͧͨͩͪͫͬͭͮͯ͘͜͟͢͝͞͠͡ͰͱͲͳʹ͵Ͷͷ͸͹ͺͻͼͽ;Ϳ΀΁΂΃΄΅Ά·ΈΉΊ΋Ό΍ΎΏΐΑΒΓΔΕΖΗΘΙΚΛΜΝΞΟΠΡ΢ΣΤΥΦΧΨΩΪΫάέήίΰαβγδεζηθ = 45.0 degrees above the horizontal. The compressed spring has elastic potential energy stored of Usp = 6.00 J. The spring is released, and the box moves up the incline. After the box has traveled a distance s = 3.00 m up the ramp, its speed is 4.00 m/s. What is the magnitude of the friction force that the ramp exerts on the box while the box is moving? *** You do not need to know μk ***

Ivan K.

a-box-slides-from-rest-down-a-frictionless-ramp-inclined-at-400-with-respect-to-the-horizontal-and-is-stopped-at-the-bottom-of-the-ramp-by-spring-with-spring-constant-of-k-150-104-nm-doml-ol-50744

A box slides from rest down a frictionless ramp inclined at 40.0° with respect to the horizontal and is stopped at the bottom of the ramp by a spring with a spring constant of k = 1.50 × 10^4 N/m. If the box has a mass of 12.0 kg and slides 3.00 m from the point of release to the point where it comes to rest against the spring, determine the compression (in m) of the spring when the box comes to rest.

Ashar T.


*

Recommended Textbooks

-
University Physics with Modern Physics

University Physics with Modern Physics

Hugh D. Young 14th Edition
achievement 1,520 solutions
Physics: Principles with Applications

Physics: Principles with Applications

Douglas C. Giancoli 7th Edition
achievement 1,472 solutions
Fundamentals of Physics

Fundamentals of Physics

David Halliday, Robert Resnick , Jearl Walker 10th Edition
achievement 1,313 solutions

*

Transcript

-
00:01 Hello everyone so here our car is speed up from 15 meter per second to 23 meter per second and during that it covers the distance 125 we need to calculate the time first of all we can calculate the acceleration so that should be b square minus u square equals to 2a d so the square of the 23 squared minus the 15 square over 2 times 125 so here this will be 1 is the 48 times if we take a subtraction that's 8 over 250 so for this 250 if we calculate the our acceleration that's 48 times so this acceleration is 1 .54 meter per second square and now we need a time.
01:12 So that should be v minus u over 8...
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