2. Two point charges are placed on the x-axis: 0.400 uC at x-0 and -0.200 uC at x-40.0 cm. what point(s), if any, on the x-axis is the electric potential equal to zero? if there are multiple points, l of them.
Q: 1. A proton has a speed of 1.5 x 105 m/s at a point where the electrical potential is 1000 V. It…
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Q: 9. Three point-like charges are placed as shown in the figure, a = 26.0 cm and b = 68.0 cm. Find the…
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Q: 4) Two charges q₁ (+2.00 μC) and q2 (+2.00 μC) are fixed in place symmetrically along the x- axis at…
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Q: 3. A charge Q is distributed uniformly over an L x L square plate. Given a point A having a distance…
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Q: A distribution of charge produces an electric field along the x-axis of the form E(x) = (327 V/m³)…
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Q: 8. Three point-like charges are placed as shown in the figure, a = 38.0 cm and b = 48.0 cm. The…
A: a = 38 cm = 0.38 m b = 48 cm =0.48 m q1 = -1.60μC q2 = -4.20 μC q3 = +4.10 μC
Q: 1. Two charged, point particles are located at the bottom corners of a square. Suppose q = 4.0 nC…
A: 1.a)The required potential at point ‘a’ due to the two charges is,
Q: 4. Three charges are placed at the corners of an equilateral triangle. What is the electric…
A: Step 1: Step 2: Step 3: Step 4:
Q: 3. meters. The rightmost charge is at x = 2m and has a charge of q =8µC. The leftmost charge is at x…
A: Given data : q = 8 micro Coulomb at x = 2m q = -8 micro Coulomb at x = -2m To find : (a)…
Q: 5. Electric potential: The drawing shows four charges placed on the x and y axes. They are all…
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Q: 4. Two charges, qı=6nC, which is located at the y=4cm, and q2=-4nC, which is located at the +x-axis,…
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Q: 9. A total charge of 3.00 µC/m is uniformly spread over a ring with a 0.400 meter radius. What is…
A: Given:linear charge density is, q = 3.00×10-6 C/mradius of the ring, R = 0.400 maxial distance of…
Q: 4. Two point charges are placed as in the figure. q1=+ 4e q2= - e X= 0 X=5a (a) Find the electric…
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Q: 4. Two point-like charges are placed as shown in the figure, d and r1 = 56.0 cm 32.0 cm. What is the…
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Q: 6. Two point charges of opposite signs and different magnitudes are separated by a distance r as…
A: Given: Two point charges, q1=+q1 q2=-q2 Potential at point P, Pp=0 To find: Distance r1
Q: Point charges Q and -20 are at a distance d. At what distances from Q is the electric potential…
A: Let the point is situated at a distance of "r" from the charge Q , thenQ IS
Q: 1. In the following diagram, Q1 = -2.50 µC and Q2 = 6.00 µC. They are 1.50 meters apart. Determine a…
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Q: 2. Three point-like charges are placed at the corners of a rectangle as shown in the figure, a =…
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- 1. A charge 2µC is 0.3 meters to the left of a -1µC charge. Find the magnitude of the electric field at a point 0.5 meters to the left of the 2µC charge. 2. Same setup as problem 1. Find the electric potential at the same location.7. Three point-like charges are placed at the corners of an equilateral triangle as shown in the figure. Each side of the triangle has a length of 30.0 cm, and the point (A) is located half way between 9₁ and 92. Find the electric potential at point (A). Let q₁ = -3.20 µC, 92 = +3.80 µC, and q3 = -3.70 µC. V 4 A 91.When moving a distance d in a uniform electric field, a proton acquires 5.0 V of electric potential. If three protons are moving the same distance in the same uniform electric field, the electric potential each of them acquires is O 3.0 V. 5/3 V. OV. O 5.0 V. O 15 V.
- O O 7:-0 55% +962 7 95421124 :02 ttu.thuraya.io/courses/1 Question 1 3 pt: Two point charges q= +S nC and q= -3nC are separated by 40cm. What is the electric potential at a point midway between the charges (in V)? 75 90 180 120 457. Three point-like charges are placed at the corners of an equilateral triangle as shown in the figure. Each side of the triangle has a length of 42.0 cm, and the point (A) is located half way between 9₁ and 92. Find the electric potential at point (A). Let q1 -1.20 µC, 92 -3.50 µC, and 93 +4.30 μC. = V ssf60 svo f60 ssf60 ssf60 ssf60 ssf60 s F 91 92 1958 1958 1958 19. ss0 s 160 ssf60 ssf60 ssf60 ssf60 ssf60 ƒ60 ssf60 ssf60 ssf60 ssf60 ssf60 ssf60 ssf6ðę 0 ssf60s ·ssf60 ssf60 sc 60 ssf60 ss. ss150 ssf60 ssf " f60 ssf60 ssf60 ssf60 ssf69. Three point-like charges are placed as shown in the figure, a = 38.0 cm and b = 48.0 cm. Find the electric potential at -2.50 μC, 92 -3.30 μC, and +3.60 μC. V point (A). Let q1 = ssf60 ssf60 ssf J$$ 93 91 93 = C D ƒ60 ssf60 ssf60 ssf60 ssf60 160 ssf60 ssf60 ssf60 ssf60* P ssf60 sst ssf60 ssf60 ssf60 ssf60° 09.09.09 sf60f60 ssf60f60 sof60 sf60 ssf60 ssf60 ssf60 ssf60 50 ssf60 ssf
- 10. Three point-like charges are placed as shown in the figure, a = 18.0 cm and b = 52.0 cm. Find the electric potential at point (D). Let q1 = -1.60 µC, q2 = +4.20 µC, and q3 = +4.10 µc. oof19 0of19 oofl9 0of19 oof pof19 0of19 19.00f19 0of19.00f19.0of19.0of1 91 Di 92 oof19 oof192. Three charges are located at the corners of an equilateral triangle of 10-mm side. What is the value of the electric potential at midway between q2 and 93? Answer: qz =+ 10μC q₁ =+ 2μC q3 =- 5μC5. Three point-like charges are placed at the corners of an equilateral triangle as shown in the figure. Each side of the triangle has a length of 34.0 cm, and the point (C) is located half way between 9₁ and 93. Find the electric potential at point (C). Let q1 -2.40 μC, 92 = -2.90 μC, and 93: = +4.10 μC. 91 = O 92₂