CP Two identical spheres are each attached to silk threads of length L = 0.500 m and hung from a common point (Fig. P21.62). Each sphere has mass m = 8.00 g. The radius of each sphere is very small compared to the distance between the spheres, so they may be treated as point charges. One sphere is given positive charge q 1 , and the other a different positive charge q 2 ; this causes the spheres to separate so that when the spheres are in equilibrium, each thread makes an angle θ = 20.0° with the vertical, (a) Draw a free-body diagram for each sphere when in equilibrium, and label all the forces that act on each sphere, (b) Determine the magnitude of the electrostatic force that acts on each sphere, and determine the tension in each thread, (c) Based on the given information, what can you say about the magnitudes of q 1 , and q 2 ? Explain, (d) A small wire is now connected between the spheres, allowing charge to be transferred from one sphere to the other until the two spheres have equal charges; the wire is then removed. Each thread now makes an angle of 30.0° with the vertical. Determine the original charges. ( Hint: The total charge on the pair of spheres is conserved.)
CP Two identical spheres are each attached to silk threads of length L = 0.500 m and hung from a common point (Fig. P21.62). Each sphere has mass m = 8.00 g. The radius of each sphere is very small compared to the distance between the spheres, so they may be treated as point charges. One sphere is given positive charge q 1 , and the other a different positive charge q 2 ; this causes the spheres to separate so that when the spheres are in equilibrium, each thread makes an angle θ = 20.0° with the vertical, (a) Draw a free-body diagram for each sphere when in equilibrium, and label all the forces that act on each sphere, (b) Determine the magnitude of the electrostatic force that acts on each sphere, and determine the tension in each thread, (c) Based on the given information, what can you say about the magnitudes of q 1 , and q 2 ? Explain, (d) A small wire is now connected between the spheres, allowing charge to be transferred from one sphere to the other until the two spheres have equal charges; the wire is then removed. Each thread now makes an angle of 30.0° with the vertical. Determine the original charges. ( Hint: The total charge on the pair of spheres is conserved.)
CP Two identical spheres are each attached to silk threads of length L = 0.500 m and hung from a common point (Fig. P21.62). Each sphere has mass m = 8.00 g. The radius of each sphere is very small compared to the distance between the spheres, so they may be treated as point charges. One sphere is given positive charge q1, and the other a different positive charge q2; this causes the spheres to separate so that when the spheres are in equilibrium, each thread makes an angle θ = 20.0° with the vertical, (a) Draw a free-body diagram for each sphere when in equilibrium, and label all the forces that act on each sphere, (b) Determine the magnitude of the electrostatic force that acts on each sphere, and determine the tension in each thread, (c) Based on the given information, what can you say about the magnitudes of q1, and q2? Explain, (d) A small wire is now connected between the spheres, allowing charge to be transferred from one sphere to the other until the two spheres have equal charges; the wire is then removed. Each thread now makes an angle of 30.0° with the vertical. Determine the original charges. (Hint: The total charge on the pair of spheres is conserved.)
Please solve and answer this problem correctly please. Thank you!!
Please solve and answer this problem correctly please. Thank you!!
a) Use the node-voltage method to find v1, v2, and
v3 in the circuit in Fig. P4.14.
b) How much power does the 40 V voltage source
deliver to the circuit?
Figure P4.14
302
202
w
w
+
+
+
40 V
V1
80 Ω 02
ΣΑΩ
28 A
V3 +
w
w
102
202
Human Biology: Concepts and Current Issues (8th Edition)
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