(b) A weight, as shown in figure Qlb-(a) has to move at constant velocity of 2 m/s on an inclined surface with a coefficient of friction of 0.27. The width of the block is 20 cm. V = 2 m/s F1 = ? 50 cm 45° 200 N 30 cm

Elements Of Electromagnetics
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A weight, as shown in figure Q1b-(a) has to move at constant velocity of 2 m/s on an
inclined surface with a coefficient of friction of 0.27. The width of the block is 20 cm.

Determine the force (F1) that needs to be applied in the horizontal direction

(b) A weight, as shown in figure Qlb-(a) has to move at constant velocity of 2 m/s on an
inclined surface with a coefficient of friction of 0.27. The width of the block is 20 cm.
V = 2 m/s
50 cm
F1 = ?
45°
200 N
30 cm
Transcribed Image Text:(b) A weight, as shown in figure Qlb-(a) has to move at constant velocity of 2 m/s on an inclined surface with a coefficient of friction of 0.27. The width of the block is 20 cm. V = 2 m/s 50 cm F1 = ? 45° 200 N 30 cm
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