At a certain instant, the 40 kg crate, shown in Figure 6, has a velocity of 10 m/s up the 20'incline. Calculate the time t required for the crate to come to rest and the corresponding distance d travelled. Also, determine the distance d travelled when the crate speed has been reduced to 5 m/s. % = 10 m/s 40 kg Figure 6 20° H₂=0.40 Hk = 0.25

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
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please show what my mg values should be.

At a certain instant, the 40 kg crate, shown in Figure 6, has a velocity of 10 m/s up
the 20'incline. Calculate the time t required for the crate to come to rest and the
corresponding distance d travelled. Also, determine the distance d travelled when
the crate speed has been reduced to 5 m/s.
% = 10 m/s
40 kg
Figure 6
20°
H₂=0.40
H = 0.25
Transcribed Image Text:At a certain instant, the 40 kg crate, shown in Figure 6, has a velocity of 10 m/s up the 20'incline. Calculate the time t required for the crate to come to rest and the corresponding distance d travelled. Also, determine the distance d travelled when the crate speed has been reduced to 5 m/s. % = 10 m/s 40 kg Figure 6 20° H₂=0.40 H = 0.25
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