What Are the Forces and Energy Involved in a Block Sliding Down a Ramp?

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Homework Help Overview

The problem involves a block sliding down a frictionless ramp, with specific questions regarding forces and energy at various points along its path. The context includes calculating forces at different points, determining speed at the end of the ramp, and analyzing projectile motion after the block leaves the ramp.

Discussion Character

  • Exploratory, Assumption checking, Problem interpretation

Approaches and Questions Raised

  • The original poster attempts to calculate forces at points A and B, questioning the effects of gravity and angles on the normal force. They also explore energy conservation to find speed and express uncertainty about projectile motion and launch angles. Other participants inquire about the reasoning behind the calculations and suggest revisiting the problem for clarity.

Discussion Status

Participants are actively discussing the problem, with some providing insights into parts A and B. There is a mix of attempts to clarify concepts and share past experiences, but no consensus has been reached on the specific calculations or assumptions made by the original poster.

Contextual Notes

The original poster expresses uncertainty about the launch angle for projectile motion and seeks confirmation on their previous answers, indicating a desire for collaborative understanding rather than direct solutions.

CaptainEvil
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1. Homework Statement

A block of mass m=1.62 kg slides down a frictionless surface (see below). The block
is released at a height h=3.91 m from the bottom of the loop. Assume the bottom of the
ramp indicated between the dashed lines in the diagram is a segment of a circle with R = 1.5m. Neglect air resistance.

a) What is the force of the inclined track on the block at the bottom (point A)?
b) What is the force of the track on the block at point B?
c) At what speed does the block leave the track?
d) How far away from point A does the block land on level ground?
e) Sketch the potential energy U(x) of the block. Indicate total energy on the sketch.


2. Homework Equations

Are explained below

3. The Attempt at a Solution

A) I think, it's just the opposite force to the blocks weight at point a, and with no angles, it's simply mg = 15.89 N

B) the normal force at point b now has to take into account the component of gravity in the y direction so would the force the track exert on the block be mgsin45? If so the answer is 10.32 N

C) the speed at the end of the ramp corresponds to the kinetic energy it gained, from the potential energy at the top = mgh. however h in this case = (h - distanceAB). with a little bit of algebra I worked out the distance from the top to point B in the y direction (so new h) is 3.55 m. so PE mgh = 56.36 J = 1/2mv2. rearranging yields v = 8.34 m/s

D) this is where I'm having problems. I know for a normal projectile question, if I'm given a projectile angle, distance from the ground and initial veloctiy I can calculate time in air, and eventually distance travelled. I have 2 of the 3, and cannot find a launch angle. Keep in mind this is not a straight ramp I'm dealing with, so I didn't think trig could help me. Do you think it is safe to just assume launching at a 45 degree angle? Please help if there is a way to do it.

E) I think the potential energy graph looks a lot like the ramp itself, except it starts at the origin and jumps up immediately after. Am I right here?

I only needed help on D) and E), but please even if I'm right and you know I am, confirm my other answers, it will help a lot for the learning process. Thanks in advance
 

Attachments

  • ramp2.jpg
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Hi captain Evil ^^

I faced this problem before and i kept the answer in my Computer ^^

Download it from here :

http://www.mediafire.com/download.php?zw11mdmj1kn

See Ya
 
Last edited by a moderator:
I don't have word. Can you just describe how you went about part a & b?
 
Wooo Wait friend I faced this problem maybe 2 years ago & actually forgot the whole concept of the problem. So please forgive me, try to read it & understand it by yourself & if U stuck In somewhere tell the Members to clear 4 U that part.

Sorry Again Captain.
 
I have attached the answers for parts A & B .
 

Attachments

  • Part A.jpg
    Part A.jpg
    26.3 KB · Views: 525
  • Part B.jpg
    Part B.jpg
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