2 equal charges, 4 micro Coulomb each, are separated by 5 cm. Find force betwee those.
Q: Theee poibt charges are located at the corners of an equilateral triangle as shown in the figure.…
A: charge at A (qA) = 1.05 μC charge at B (qB) = 6.90 μC charge at C (qC) = -3.84 μC d = 0.5 m θ = 60o…
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A: The third charge should be placed to the right of -3 micro Coulomb Charge.
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Q: Two point charges are brought closer together, increasing the force between them by a factor of 69.…
A: let separation initially be rthen force=kq1q2r2now separation becomes r'force= kq1q2r'2
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Q: (a) Three charges are placed along x axis such that 4 µC at x= -5 m, -4 µC at the origin , and -6 µC…
A: The solution is given below
Q: If two equal charges, each of 1 C, were separated in air by a distance of 1 km, what would be the…
A: Given: Charges, q1=q2=1 C Distance between charges, r=1 km=1×103 m k=9×109 Nm2/C2 Force can be…
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A: Considered the first charged particle is q1 and the second charge particle is q2 the size of the…
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Q: Consider two point charges whose initial separation decreases so as to increase the force between…
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Q: How many coulombs of positive charge are there in 1.08 kg of plutonium, given that its atomic mass…
A: Given data: The total mass of the plutonium is, M=1.08 kg=1.08×103 g The number of protons in each…
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Q: (1) (a) Three charges are placed along x axis such that -2 µC at x= -5 m, 4 µC at the origin , and…
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Q: The electric fild at a distance of 0.5 x 10-10 m from a proton?
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Q: Calculate the force between two point charges each with 0.1 micro coulomb of charge are 0.1meter…
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Q: How many coulombs of positive charge are there in 47.0 gm of plutonium, given its atomic mass is 244…
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Q: Two point charges are brought closer together, increasing the force between them by a factor of 95.…
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Q: How many coulombs of positive charge are there in 5.80kg of plutonium, given its atomic mass is 244…
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Q: Two objects are identical and small enough that their sizes canbe ignored relative to the distance…
A: See below
Q: (i) A negative point charge of 8.0 nC and a positive point charge of 2.5 nC are placed 9 cm apart.…
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- (a) Common transparent tape becomes charged when pulled from a dispenser. If one piece is placed above another, the repulsive force can be great enough to support the top piece’s weight. Assuming equal point charges (only an approximation), calculate the magnitude of the charge ifelectrostatic force is great enough to support the weight of a 10.0 mg piece of tape held 1.00 cm above another. (b) Discuss whether the magnitude of this charge is consistent with what is typical of static electricity.(b) Calculate the magnitude of the electric field at Point A. If a charge of–3 nC is placed at this point, what is the force (magnitude and direction) acting on it? c.If a charge of –3 nC is placed at Point A, what is the force (magnitude and direction) acting on it?Asap