A 2.5-mC charge is on the y-axis at y = 3.0 m, and a 6.3-mC charge is on the x-axis at x = 3.0 m. What is the direction of the electric potential at the origin? O potential has no direction 22.0° 292° 332°
Q: There is a +8.7 µC point charge at the origin and a -9.7 µC point charge at coordinates (5.0 cm, 0,…
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Q: An electron is at the origin. (a) Calculate the electric potential VA at point A, x = 0.410 cm. V…
A: Given data: a). From the given value, x=0.410 cm=0.410×10-2 m. b).Given value, x=0.420 cm=0.420×10-2…
Q: The figure shows a thin plastic rod of length L = 15.9 cm and uniform positive charge Q=51.5 fC…
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Q: What is the electric potential
A: Given: A charge q1=3 μC placed at origin. Charge q2=-9 μC is at x=1 m Coulomb constant is k=8.99×109…
Q: A -13.1nC point charge and a +21.3nC point charge are 14.2cm apart on the x-axis. What is the…
A: Let the charge -13.1 nC be at x=0 and +21.3 nC be at x=0.142 m
Q: Two point charges Q, = +5.80 nC and Q, -1.60 nC are separated by 55.0 cm. (a) What is the electric…
A: Given data The magnitude of the first charge is Q1 = 5.80 nC = 5.80 x 10-9 C The magnitude of the…
Q: Two charges of equal magnitude but opposite sign, q1 = 40 nC and q2 = -40 nC, are separated by a…
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Q: Two protons are released from rest, one from location 1 and another from location 2. When these two…
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Q: A -4.0 nC charge in on the x axis at X₁ = - 6.0 cm and a 8.0 nC charge is on the x axis at xB= 12.0…
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Q: wo point charges Q1 = +4.20 nC and Q₂ = -2.60 nC are separated by 45.0 cm. (a) What is the electric…
A: According to the given data Q1=+4.20nC Q2=-2.60nC Distance(D)=45cm=0.45m We need to find (a)…
Q: A non-uniform linear charge distribution given by λ = bx, where b is a constant, is located along an…
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Q: Two point charges Q₁ = +4.90 nC and Q₂ = -2.90 nC are separated by 45.0 cm. (a) What is the electric…
A: Given Charges are given as Q1=+4.90 nC=+4.90×10-9 C and Q2=-2.90 nC=-2.90×10-9 C Separation between…
Q: A -3.0 nC charge is on the x-axis at x = -6.0 cm and a +4.0 nC charge is on the x-axis at x = 19 cm…
A: Consider the electric potential is zero at a distance y on the y-axis. The distance between the -3.0…
Q: Two charges, q, = -14.5 nC and q2 = 30.0 nC, are separated by a distance d = 1.50 cm as shown in the…
A: in the question itis given that q1=-14.5nC, q2=30nCthey are placed on a equilateral triangle of side…
Q: Chapter 25 Q178: Three circular, nonconducting arcs of radius R = 3 cm.The charges on the arcs are…
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Q: A rod of length L = 4.00 m with uniform charge of 9.50 nC/m is oriented along the y axis as shown in…
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Q: A charged insulating rod is positioned along the x-axis, between x1 = 2.0 m and x2 = 3.0 m. The…
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Q: The picture diagram below has been given to you. There are 3 charges represented by balls along the…
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Q: Determine the charge and coordinates for the position of the two particles. Give the charge (in nC)…
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Q: A 42.0-nC charge is placed at the origin and a 74.0-nC charge is placed on the +x-axis, 2.20 cm from…
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Q: Two point charges Q1 +4.20 nC and Q₂ = -1.30 nC are separated by 55.0 cm. (a) What is the electric…
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Q: Three electric charges are places as follows: Charge q1 = 1.4 nC has coordinates x1 = -4.3 m, y1=0…
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Q: Three point charges q1 =-2.00 nC, 92 = +4.00 nC, and q3 =-3.00 nC are placed along the x axis as…
A: Given: q1 = -2.00 nCq2 = +4.00 nCq3 = -3.00 nCd=r= 0.200 m To find: Electric potential at point P…
Q: There are two charges along the x-axis. q1 = 2.1 nC at x1 = 9.6 m q2 = 8 nC at x2 = 1.6 m What…
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Q: A +2 C point charge gains 10 J of kinetic energy as it moves from point A to point B. What is the…
A: The change in electrical potential of the particle moves from A to B is, V=Wq Here, W is the work…
Q: Three point charges, Q₁ = 21.4 μC, Q2 Q3 = 57.3 µC, are arranged as shown in the figure. The lengths…
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- A point charge with charge +55.6 nC is at coordinates x = 2.00 m and y = 0.00 m. What is the electric potential at the point (3.00 m, 3.00 m)? A point charge with charge -55.6 nC is at coordinates x = 0.00 m and y = 2.00 m. What is the electric potential at the point (3.00 m, 3.00 m)?3. Four charges are at the corners of a square of side length 1 µm. Four charges are q1 = -4 nC, 92 = 4 nC, q3 = 4 nC and q4 = -4 nC. You may put the charges in any order. Find the electric potential at the center of the square. What is the total electric potential energy of the system?What is the electric potential at the dot in the figure? The charge on Q1 is 4.00 nC, the charge on Q2 is 5.00 nC and the charge on Q3 is 3.00 nC. The distance between charge Q1 and charge Q2 is 7.00 cm. The distance between Q2 and Q3 is 2.00 cm. 2.80×103 V 2.42×103 V 2.18×103 V 1.00×103 V
- A 11.5 nC charge is at x = 0 cm and a -1.5 nC charge is at x= 6.0 cm .At what point or points on the x-axis is the electric potential zero?A +3.0 nC charge is at x=0cm and a -1.0 nC charge is at x=4cm. At what point or points on the x-axis is the electric potential zero?A non-conducting rod (see diagram below) has a uniform charge density magnitude A = 3.00 x 106 C/m. The left half of the rod is negatively charged, and the right half of the rod is positively charged. The rod is 1.00 m long. P 0.5m +++++++++++ m. Taking the electric potential, V, to be 0 at infinity, what is the electric potential at point P at a distance of 0.50 m above the middle of the rod along the rod's perpendicular bisector? Express your answer to the nearest volt.