3.0 kg solid cylindrical wheel has a radius of 54 cm. Two forces are applied to it as shown in the figure. F, = 10 N and is applied at the edge. F2 = 25 N and is applied halfway between the axel and the edge. What is the magnitude of the angular acceleration of the wheel?

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A 3.0 kg solid cylindrical wheel has a radius of 54 cm. Two forces are applied to it as shown in the
figure. F, = 10 N and is applied at the edge. F2 = 25 N and is applied halfway between the axel
and the edge. What is the magnitude of the angular acceleration of the wheel?

The image shows a circle with two vectors placed at its edge. 

1. **Vector \(\vec{F_1}\):** This vector is located on the left side and points to the right. It appears to represent a force acting tangent to the circle's edge.

2. **Vector \(\vec{F_2}\):** This vector is on the right side and also points to the right. It represents another force acting outward along the horizontal axis.

Both vectors suggest forces acting on a rotating object, illustrating concepts such as torque or equilibrium in physics. The circle likely represents the cross-section of a spherical object or a wheel where forces are applied.
Transcribed Image Text:The image shows a circle with two vectors placed at its edge. 1. **Vector \(\vec{F_1}\):** This vector is located on the left side and points to the right. It appears to represent a force acting tangent to the circle's edge. 2. **Vector \(\vec{F_2}\):** This vector is on the right side and also points to the right. It represents another force acting outward along the horizontal axis. Both vectors suggest forces acting on a rotating object, illustrating concepts such as torque or equilibrium in physics. The circle likely represents the cross-section of a spherical object or a wheel where forces are applied.
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