A steel washer suspended from the top of a crate sliding down a ramp.

In summary, the question involves a steel washer suspended in an empty shipping crate on a ramp inclined at 36° above the horizontal. The crate has a mass of 156kg and a person sitting inside with a mass of 64kg. The washer is at rest with respect to the crate when the string makes an angle of 66° with the top of the crate. With the given information, we can use the equations of motion to solve for the acceleration (a) by first finding the angle of the string (φ) and plugging it into the equation. We are not given the coefficient of friction in this question, so we can assume it is not needed for this problem.
  • #1
gigazard332
1
0
Question:
A steel washer is suspended inside an empty shipping crate from a light string attached to the top of the crate. The crate slides down a long ramp that is inclined at an angle of 36^\circ above the horizontal. The crate has mass 156 {\rm kg}. You are sitting inside the crate (with a flashlight); your mass is 64 {\rm kg}. As the crate is sliding down the ramp, you find the washer is at rest with respect to the crate when the string makes an angle of 66^\circ with the top of the crate.

So far, I've just figured out:

y: n=mcrate+persongcos(theta)

x: fk-mcrate+persongsin(theta)=ma
u(mcrate+persongcos(theta))-mcrate+persongsin(theta)=ma
u=[a+gsin(theta)]/(gcos(theta))

so using that I got g=9.8m/s^2, theta=36, mcrate+person=220kg, but I don't know what a is...

my question is... Do we have to use the additional information (the washer) to find a? if so, how would we solve for a?
 
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  • #2
welcome to pf!

hi gigazard332! welcome to pf! :smile:

(have a degree: ° and a theta: θ and a phi: φ and try using the X2 tag just above the Reply box :wink:)

this question has deliberately given you a lot of information so as to test whether you can see what is relevant and what isn't …

so i won't spoil it by telling you! :biggrin:

notice that you haven't been given the coefficient of friction, and instead you've been given the angle of φ = 66° for the string …

assume that the acceleration is a, calculate φ, then put φ = 66° to get an equation for a …

what do you get? :smile:
 

Related to A steel washer suspended from the top of a crate sliding down a ramp.

1. What is the purpose of the steel washer in this scenario?

The steel washer serves as a weight in order to demonstrate the effects of gravity and friction on the crate as it slides down the ramp.

2. How does the angle of the ramp affect the movement of the crate?

The steeper the angle of the ramp, the faster the crate will slide down due to the increased force of gravity. However, a shallower angle may also result in less friction and therefore a faster slide.

3. Will the steel washer's weight affect the speed of the crate?

Yes, the weight of the steel washer will add to the overall weight of the crate and may slow down its descent due to increased friction.

4. How does the surface of the ramp impact the movement of the crate?

The surface of the ramp can affect the amount of friction between the ramp and the crate. A rough surface may result in more friction and a slower slide, while a smooth surface may allow for a faster slide.

5. What other factors may affect the movement of the crate on the ramp?

Other factors that may affect the movement of the crate include the weight and shape of the crate, as well as any external forces such as air resistance or wind. The smoothness and material of the ramp may also play a role in the crate's movement.

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