Q3. A 10-kg slider A on a smooth vertical guide is connected to a 6-kg wheel B of radius 120 mm through a light uniform rigid rod AB of length 650 mm as shown in the figure below. A spring of stiffness k = 1.0 kN/m is installed to the bottom of the vertical guide to stop the slide and is unstretched initially. If the mechanism is released from rest at 0 = tan-1 (5/12) and the wheel rolls without slipping, using the work and energy method, determine the velocity of slider A at the instant when e = 0• (Le. just before hitting the spring). If slipping does occur between the wheel and the horizontal surface, evaluate your answer by critically reassessing your dynamic principles used.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Q3. A 10-kg slider A on a smooth vertical guide is connected to a 6-kg wheel B of radius 120 mm through
a light uniform rigid rod AB of length 650 mm as shown in the figure below. A spring of stiffness k = 1.0
kN/m is installed to the bottom of the vertical guide to stop the slide and is unstretched initially. If the
mechanism is released from rest at 0 = tan-1 (5/12) and the wheel rolls without slipping, using the work
and energy method, determine the velocity of slider A at the instant when 0 = 0• (ie. just before hitting
the spring).
If slipping does occur between the wheel and the horizontal surface, evaluate your answer by critically
reassessing your dynamic principles used.
Transcribed Image Text:Q3. A 10-kg slider A on a smooth vertical guide is connected to a 6-kg wheel B of radius 120 mm through a light uniform rigid rod AB of length 650 mm as shown in the figure below. A spring of stiffness k = 1.0 kN/m is installed to the bottom of the vertical guide to stop the slide and is unstretched initially. If the mechanism is released from rest at 0 = tan-1 (5/12) and the wheel rolls without slipping, using the work and energy method, determine the velocity of slider A at the instant when 0 = 0• (ie. just before hitting the spring). If slipping does occur between the wheel and the horizontal surface, evaluate your answer by critically reassessing your dynamic principles used.
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