According to its design specification, the timer circuit delaying the closing of an elevator door is to have a capacitance of 32.0 μ F between two points A and B. When one circuit is being constructed, the inexpensive but durable capacitor installed between these two points is found to have capacitance 34.8 μ F . To meet the specification, one additional capacitor can be placed between the two points, (a) Should it be in series or in parallel with the 34.8- μ F capacitor? (b) What should be its capacitance? (c) What If ? The next circuit comes down the assembly line with capacitance 29.8 μ F between A and B. To meet the specification, what additional capacitor should be installed in series or in parallel in that circuit?
According to its design specification, the timer circuit delaying the closing of an elevator door is to have a capacitance of 32.0 μ F between two points A and B. When one circuit is being constructed, the inexpensive but durable capacitor installed between these two points is found to have capacitance 34.8 μ F . To meet the specification, one additional capacitor can be placed between the two points, (a) Should it be in series or in parallel with the 34.8- μ F capacitor? (b) What should be its capacitance? (c) What If ? The next circuit comes down the assembly line with capacitance 29.8 μ F between A and B. To meet the specification, what additional capacitor should be installed in series or in parallel in that circuit?
Solution Summary: The author explains that the addition capacitors must be connected in series or parallel combination with the 1st capacitor.
According to its design specification, the timer circuit delaying the closing of an elevator door is to have a capacitance of 32.0 μF between two points A and B. When one circuit is being constructed, the inexpensive but durable capacitor installed between these two points is found to have capacitance 34.8 μF. To meet the specification, one additional capacitor can be placed between the two points, (a) Should it be in series or in parallel with the 34.8-μF capacitor? (b) What should be its capacitance? (c) What If? The next circuit comes down the assembly line with capacitance 29.8 μF between A and B. To meet the specification, what additional capacitor should be installed in series or in parallel in that circuit?
4.46
The two blocks in Fig. P4.46 are connected
by a heavy uniform rope with a mass of 4.00 kg. An up-
ward force of 200 N is applied as shown. (a) Draw three
free-body diagrams: one for the 6.00 kg block, one for
B
the 4.00 kg rope, and another one for the 5.00 kg block. For each force,
indicate what object exerts that force. (b) What is the acceleration of the
system? (c) What is the tension at the top of the heavy rope? (d) What is
the tension at the midpoint of the rope?
Figure P4.46
F= 200 N
4.00 kg
6.00 kg
5.00 kg
4.35 ⚫ Two adults and a child want to push a wheeled cart in the direc-
tion marked x in Fig. P4.35 (next page). The two adults push with hori-
zontal forces F and F as shown. (a) Find the magnitude and direction of
the smallest force that the child should exert. Ignore the effects of friction.
(b) If the child exerts the minimum force found in part (a), the cart ac-
celerates at 2.0 m/s² in the +x-direction. What is the weight of the cart?
Figure P4.35
F₁ = 100 N
60°
30°
F2 = 140 N
4.21 ⚫ BIO World-class sprinters can accelerate out of the starting
blocks with an acceleration that is nearly horizontal and has magnitude
15 m/s². How much horizontal force must a 55 kg sprinter exert on the
starting blocks to produce this acceleration? Which object exerts the
force that propels the sprinter: the blocks or the sprinter herself?
Chapter 26 Solutions
Bundle: Physics for Scientists and Engineers, Technology Update, 9th Loose-leaf Version + WebAssign Printed Access Card, Multi-Term
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