GO Three dimensions. Three point particles are fixed in place in an xyz coordinate system. Particle A, at the origin, has mass m A Particle B, at xyz coordinates (2.00 d , 1.00 d, 2.00 d) . has mass 2.00 m A , and particle C , at coordinates (−1.00 d, 2.00 d, −3.00 d ), has mass 3.00 m A . A fourth particle D. with mass 4.00m A , is to be placed near the other particles. In terms of distance d, at w hat (a) . x , (b) y , and (c) z coordinate should D be placed so that the net gravitational force on A from B , C. and D is zero?
GO Three dimensions. Three point particles are fixed in place in an xyz coordinate system. Particle A, at the origin, has mass m A Particle B, at xyz coordinates (2.00 d , 1.00 d, 2.00 d) . has mass 2.00 m A , and particle C , at coordinates (−1.00 d, 2.00 d, −3.00 d ), has mass 3.00 m A . A fourth particle D. with mass 4.00m A , is to be placed near the other particles. In terms of distance d, at w hat (a) . x , (b) y , and (c) z coordinate should D be placed so that the net gravitational force on A from B , C. and D is zero?
GO Three dimensions. Three point particles are fixed in place in an xyz coordinate system. Particle A, at the origin, has mass mAParticle B, at xyz coordinates (2.00d, 1.00d, 2.00d). has mass 2.00mA, and particle C, at coordinates (−1.00d, 2.00d, −3.00d), has mass 3.00mA. A fourth particle D. with mass 4.00mA, is to be placed near the other particles. In terms of distance d, at w hat (a) .x, (b) y, and (c) z coordinate should D be placed so that the net gravitational force on A from B, C. and D is zero?
What is the resistance (in (2) of a 27.5 m long piece of 17 gauge copper wire having a 1.150 mm diameter?
0.445
ΧΩ
Find the ratio of the diameter of silver to iron wire, if they have the same resistance per unit length (as they might in household wiring).
d.
Ag
dFe
= 2.47
×
Find the ratio of the diameter of silver to iron wire, if they have the same resistance per unit length (as they might in household wiring).
d
Ag
= 2.51
dFe
×
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