A cubical box (equal side lengths) of mass 1.2 kg (outline shown in blue in the figure) is supported at an angle = 24 degrees relative to a horizontal surface. The cable supporting the box is at an angle perpendicular to the in-plane diagonal of the box (shown as a dotted line). What is the minimum coefficient of static friction between the box and the horizontal surface such that the box will not slide? cable 6+45° Ꮎ
A cubical box (equal side lengths) of mass 1.2 kg (outline shown in blue in the figure) is supported at an angle = 24 degrees relative to a horizontal surface. The cable supporting the box is at an angle perpendicular to the in-plane diagonal of the box (shown as a dotted line). What is the minimum coefficient of static friction between the box and the horizontal surface such that the box will not slide? cable 6+45° Ꮎ
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
Transcribed Image Text:A cubical box (equal side lengths) of mass 1.2 kg (outline shown in blue in the figure) is supported
at an angle = 24 degrees relative to a horizontal surface. The cable supporting the box is at an
angle perpendicular to the in-plane diagonal of the box (shown as a dotted line). What is the
minimum coefficient of static friction between the box and the horizontal surface such that the
box will not slide?
cable
6+45°
Ꮎ
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