In the figure below (pivot is at O), F2 12.0 N F₁ = 8.00 N 30.0° 2.00 m 3.00 m > I Answer in TWO decimal places What is the net torque assuming the beam is massless? Also, assume the beam is uniform. = Blank 1 Nm If we consider the mass of the beam, what is its mass (denoted by m) to achieve equilibrium? m = Blank 2 kg
In the figure below (pivot is at O), F2 12.0 N F₁ = 8.00 N 30.0° 2.00 m 3.00 m > I Answer in TWO decimal places What is the net torque assuming the beam is massless? Also, assume the beam is uniform. = Blank 1 Nm If we consider the mass of the beam, what is its mass (denoted by m) to achieve equilibrium? m = Blank 2 kg
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
Transcribed Image Text:In the figure below (pivot is at O),
F2
12.0 N
F₁ = 8.00 N
30.0°
2.00 m
3.00 m >
I
Answer in TWO decimal places
What is the net torque assuming the beam is massless? Also, assume the beam is uniform.
= Blank 1 Nm
If we consider the mass of the beam, what is its mass (denoted by m) to achieve equilibrium?
m = Blank 2 kg
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