162. In Fig. 68, the ring of radius R=30 cm, mass m=4 g and uniform linear charge density of X=4.10³ C/m, is in equilibrium in a horizontal plane, in the presence of the spherical charge that is at a distance d=40 cm from the center of the ring. Find the value of the electric charge of the sphemite. (k = 9.10° N.m²/C², u = 106) a)18,0 UC b)18,2 UC c)18,4 uc d)18,6 UC e)18,8 uc

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162. In Fig. 68, the ring of radius R=30 cm, mass m=4 g and uniform linear charge density of
X=4.10-³ C/m, is in equilibrium in a horizontal plane, in the presence of the spherical charge
that is at a distance d=40 cm from the center of the ring. Find the value of the electric charge
of the sphemite. (k = 9.10° N.m²/C2, u = 10°)
a) 18,0 UC
b)18,2 UC
c)18,4 uc
d) 18,6 uc
Fig.68
e)18,8 UC
Transcribed Image Text:162. In Fig. 68, the ring of radius R=30 cm, mass m=4 g and uniform linear charge density of X=4.10-³ C/m, is in equilibrium in a horizontal plane, in the presence of the spherical charge that is at a distance d=40 cm from the center of the ring. Find the value of the electric charge of the sphemite. (k = 9.10° N.m²/C2, u = 10°) a) 18,0 UC b)18,2 UC c)18,4 uc d) 18,6 uc Fig.68 e)18,8 UC
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