Work Required to Move 890 N Crate Along Floor Against 180 N Force

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Homework Statement


A 890 N crate rests on the floor.
How much work is required to move it at constant speed 5.6 m along the floor against a friction force of 180 N?
How much work is required to move it at constant speed 5.6 m vertically?

Homework Equations


KE = (1/2)mv^2


The Attempt at a Solution


(1/2)(890/9.8) = x?
 
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You don't know the velocity so kinetic energy won't help you. Any other equations you can think of?
 
Work force done = FaDcos(theta)
Where:
Fa = applied force
D = displacement
Cos(theta= I am not sure would it be pie/2
 
cos(pi/2) = 0, here your work is being done in the same direction as the motion so.

That equation gets you half way there, need one more equation.
 
I think cos(pi/2) = 1.?
Mhm is the other equation:
Work done by friction = FfD
Where Ff= friction force
D = displacement?
 
Actually I wasn't quite right all you need is the equation you just wrote sorry bout that. So just use the equation you just wrote, (W done by friction) = (F of friction)*d
Then just plug and chug.
 
Thanks I was able to answer part 1.
How about:
How much work is required to move it at constant speed 5.6 m vertically?

So here there is a gravitational component?
 
W=f*d, you know the distance. Can you calculate the force due to gravity?
 
The force due to gravity is just mg, (860)
W = 890*5.6?
 
there you go easy right? In general if you have an equation with n variables you need n-1 equations to solve for the one variable you're looking for.