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Circular Disc Problems-Applied Physics-Assignment, Exercises of Applied Chemistry

This course includes Motion, Oscillations, waves and propagation, Electric Charge and Coulomb Law, Electric Field, Electric Potential, Capacitors and Dielectric, Current and Resistance, AC and DC, Magnetic fields, Ampere Law and Faraday law, Maxwell equations and Traveling waves. This file includes: Capacitor, Circular, Plates, Source, Emf, Potential, Difference, Displacement, Current, Straight, Wire

Typology: Exercises

2011/2012

Uploaded on 07/31/2012

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PH-101 Introductory Physics
Assignment #4 Submission Date: 23-05-2011
1) The capacitor in the figure given below consisting of two circular plates with radius R = 18.2cm
is connected to a source of emf. At what rate must the potential difference between the plates
with 2.0µF capacitance be changed to produce a displacement current of 1.5A?
Figure.1
2) A current 10 A flowing through a straight wire is split at point A in two semicircular wires of
radius 0.1 m. The resistances of upper and lower semicircular wires are 10 and 20
respectively. The currents rejoin to flow in the straight wire again as shown in the figure below.
Determine the magnitude and direction of magnetic field at the center O.
AmT
o/.1047
Figure.2
3) Four long copper wires are parallel to each other, their cross sections forming the corners of a
square with side a = 20cm. A 20A current exists in each wire in the direction shown in the figure
below. What are the magnitude and direction of B at the center of square?
Figure.3
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PH-101 Introductory Physics

Assignment #4 Submission Date: 23-05-

  1. The capacitor in the figure given below consisting of two circular plates with radius R = 18.2cm is connected to a source of emf. At what rate must the potential difference between the plates with 2.0 μF capacitance be changed to produce a displacement current of 1.5A?

Figure.

  1. A current 10 A flowing through a straight wire is split at point A in two semicircular wires of radius 0.1 m. The resistances of upper and lower semicircular wires are 10 and 20 respectively. The currents rejoin to flow in the straight wire again as shown in the figure below. Determine the magnitude and direction of magnetic field at the center “O”.

 o  4   10 ^7 T. m / A

Figure.

  1. Four long copper wires are parallel to each other, their cross sections forming the corners of a square with side a = 20cm. A 20A current exists in each wire in the direction shown in the figure below. What are the magnitude and direction of B at the center of square?

Figure.

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  1. A coil of 15 turns and radius 10.0 cm surrounds a long solenoid of radius 2.00 cm and 1.00 × 103 turns/meter (Figure.3). The current in the solenoid changes as I = (5.00 A) sin(120 t ). Find the induced emf in the 15-turn coil as a function of time.

Figure.

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