For r=10 m;0 = 60 degrees; q=106 Coulomb, and d =10 m , the electric dipole potential in volts (rounded off to three decimal places) at a point (r,0) is Nm? [Use: Απ Εο = 9×10° C?
Q: separation of 0.1 mm, and energy density of 3.62 J/m. The plate charge (in uc) on the capacitor is:…
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Q: A total charge Q=5 HC is distributed uniformly along a rod of length 9 m, calculate the potential at…
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Q: [Numbers change] If it takes 8 µJ to move a 7 nC charge from point A to point B, and -7 µJ to move…
A: Given data: WAB= 8 μJ = 8× 10-6 J WCB =-7 μJ =-7× 10-6 J Charge q= 7nC=7×10-9C
Q: punded and the sixth side is insulated from the [TI
A: Potential.
Q: An electric dipole with length (6 m) parallel to z-axis located at point PI(0, 3, 0) in meter, and…
A: Given:Electric dipole with lenght,d=6mZ-axis located at point P1=(0,3,0) mCharge,Q=3 pcFind total…
Q: The work needed to carry a 5 C charge from point A to point B is 3 J. Calculate the potential…
A: Given:- The charge must be carry from point A to B The work (W)= 3 J charge =5 C Find:- The…
Q: Equal charges of 3 x 10^-9 C are situated at the three corners of a square of side 5.2 m. Find the…
A: Given : q1=q2=q3=3×10-9C r=5.2m Refer to the figure below : The length of the diagonal…
Q: Within cylinder p= 4, 0<z<3, The potential is given by: V = [ (Reg. No.) (sin p) + (SUM)p ] volts…
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Q: In Fig 121, the conducting sphere A of radius R=20 cm that is initially isolated has has a potential…
A: Initially potential on sphere A is 10 V. And potential on sphere B is 0 because is it grounded.…
Q: spherical rain drop carries a charge of 3.900E−8 C and has a potential of 8.698E4 V at the surface.…
A: Given Data: Charge (q) = 3.900×10-8 C.Potential (V) = 8.698×104 V.
Q: a single charged q is V = 1 q 4πετ al? Show that the electric potential at a distance r from
A: Electric potential at at a distance 'r' from a single charge q, is given by V=q4πεor.
Q: Consider a non-conducting sphere of radius 17.47 meters and total charge 13.39 nanocoulombs…
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Q: The potential difference between the two points is 471 μV. If 535 mJ of work are required to move a…
A: potential difference = ∆V= 471 μV.= 471 X 10-6 V Work = W = 535 mJ = 535 X 10-3 J charge = q = ?
Q: he drawing below shows four point charges. The value of q is 3.2 µC, a distance d is 840 mm.…
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Q: Determine the equivalent capacitance ( in mF units) of the combination shown when C = 46.8 mF.
A: Adding the capacitance of all three capacitor that are connected in parallel arrangement…
Q: A positive charge of 2 C is moved from point A to point B along an equipotential line. The electric…
A: Work done for Equipotential surface = zero (0) J As W=dq.dv and dv is zero for equipotential…
Q: wo charges 3 x 10-8C and – 2 x 10-8C are located 25cm apart.At what pint on the line joining the two…
A: Electric potential due to point charge V =kq/r
Q: ce d2 = 1./m. (a) If A and B are d e (a), what is the electric potentia
A: Given data: d1=2.3 md2=1.7 mq=0.83 μC
Q: Calculate the electric potential at a point P which is 20 cm away from an the point charge 1 = 9 x…
A: Given value--- charge q = 2 × 10-8 C distance r = 20 cm. We have to find--- Electric Potential…
Q: Consider a particle with charge q = 1.50 * 10-8 C, and take V = 0 at infinity. (a) What are the…
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Q: P:57) A point charge of q = 10 µC is in a dielectric medium with relative dielectric constant ɛr =…
A: Given: The point charge q = 10 µC . The dielectric constant ɛr = 4.5. The energy stored region R =…
Q: Two very long L=94m concentric cylindrical shells of radii a=14cm and b=42 cm carry uniform charges…
A: This problem can be solved using the fact relation between electric field and potential.
Q: Consider an infinitely long conducting shell in the shape of a right circular cylinder with radius R…
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Q: Points A [at (3, 6) m] and B [at (5, 7) m] in a region where the electric field is uniform and given…
A: Given data: Position of point A, r1=3i+6j Position of point B, r2=5i+7j
Q: Calculate the electric potential of q1 = 25.0nC at 2.00 m.
A: Answer:- Given Charge (q1) = 25.0 nC = 25.0 × 10-9 C Distance (r) = 2.00 m Coulomb constant (K)…
Q: Two very large concentric spherical shells of radii a=177m and b=377 m carry uniform charges -Q and…
A: Given: Radius a=177 m Radius b=377 m Charge Q=8μC=8×10-6 C Electric field E→=-kQr2r^
Q: The work needed to carry a 2 C charge from point A to point B is 4 J. Calculate the potential…
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Q: Calculate the potential at a point P due to a charge of 5 × 10-7 C located 15 cm away.
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Q: Find the value of xx between 0 and 1.00 mm where the electric potential is zero.
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Q: The electrostatic potential due to a change distribution is given by V(r) = A–, where A and 2 are…
A: Solution :- Given that,V(r)=A e-λrrwe know thatE→=-∇ V→E→=-A[re-λr-(-λ)e-λrr2] r⇀ =A…
Q: f the electric field in the region is given as E = 4 (z ax – y ay + x az) V/m. Determine the…
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Q: arge of 10 x metre. the potential at a distance 10 cm from its centre. A sphere of radius 5 cm has a…
A: Charge of sphere =Q = 2000 stat C 1 stat C = 3.35*10-10 C Radius of sphere = r = 5 cm = 0.05 m…
Q: If the electric potential difference between points a and b is 8V, determine the charge on capacitor…
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Q: (a) Two spheres have radii a and b, and their centers are a distance d apart. Show that the…
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Q: oblem 3: The electric field strength between two parallel conducting plates separated by 4.75 cm is…
A: Given that, electric field E = 7.7 * 104 V / m distance between plates r = 4.75 cm
Q: What is the electric potential in volts (realative to zero at infinity) at the origin for a charge…
A: Consider an elementary length dz along the z-axis. The charge of the elementary length is,
Q: A parallel plate capacitor with plate area 1.5 m2, and plate separation 0.002 cm, and filled with…
A: Area of the plate is A = 1.5 m2 Separation distance of the plate is d = 0.002 cm Voltage applied to…
Q: The drawing below shows four point charges. The value of q is 3.2 µC, a distance d is 840 mm.…
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