Concept explainers
(a)
The distance at which the magnitude of the magnetic field is
(a)
Answer to Problem 51P
The distance at which the magnitude of the magnetic field is
Explanation of Solution
Write the expression for the magnetic field on a wire.
Here,
Re-write the expression (I) in terms of
Conclusion:
Substitute
The distance at which the magnitude of the magnetic field is
(b)
The magnetic field
(b)
Answer to Problem 51P
The magnetic field
Explanation of Solution
Write the expression for the magnetic field on a wire.
Here,
Write the formula to calculate the net magnetic field,
Conclusion:
The distance is measured from the center. The value of
The value of
Substitute
Therefore, the magnetic field
(c)
The distance at which the magnetic field is one tenth of
(c)
Answer to Problem 51P
The distance at which the magnetic field is one tenth of
Explanation of Solution
Write the expression for the magnetic field on a wire.
Here,
Write the formula to calculate the net magnetic field,
Thus the new value for the
Conclusion:
Substitute
Consider a distance
The value for
Substitute
On further solving for
The distance at which the magnetic field is one tenth of
(d)
The magnetic field the cable create at point outside the cable.
(d)
Answer to Problem 51P
The magnetic field the cable create at point outside the cable is
Explanation of Solution
Write the expression for the magnetic field on a wire.
Here,
Write the formula to calculate the net magnetic field,
Conclusion:
The center wire in a coaxial cable carriers a current of
Thus, the magnetic field the cable create at point outside the cable is
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Chapter 22 Solutions
Principles of Physics: A Calculus-Based Text
- A long, straight, horizontal wire carries a left-to-right current of 20 A. If the wire is placed in a uniform magnetic field of magnitude 4.0105 T that is directed vertically downward, what is tire resultant magnitude of the magnetic field 20 cm above the wire? 20 cm below the wire?arrow_forwardCalculate the magnitude of the magnetic field at a point 25.0 cm from a long, thin conductor carrying a current of 2.00 A.arrow_forwardA long, solid, cylindrical conductor of radius 3.0 cm carries a current of 50 A distributed uniformly over its cross-section. Plot the magnetic field as a function of the radial distance r from the center of the conductor.arrow_forward
- A proton travels with a speed of 3.00 106 m/s at an angle of 37.0 with the direction of a magnetic field of 0.300 T in the +y direction. What are (a) the magnitude of the magnetic force on the proton and (b) its acceleration?arrow_forwardWhen the current through a circular loop is 6.0 A, the magnetic field at its center is 2.0104 T. What is the radius of the loop?arrow_forwardThe magnitude of the magnetic field 50 cm from a long, thin, straight wire is 8.0T . What is the current through the long wire?arrow_forward
- One long wire carries current 30.0 A to the left along the x axis. A second long wire carries current 50.0 A to the right along the line (y = 0.280 m, z = 0). (a) Where in the plane of the two wires is the total magnetic field equal to zero? (b) A particle with a charge of 2.00 C is moving with a velocity of 150iMm/s along the line (y = 0.100 m, z = 0). Calculate the vector magnetic force acting on the particle. (c) What If? A uniform electric field is applied to allow this particle to pass through this region undetected. Calculate the required vector electric field.arrow_forwardA toroid has 250 trims of wire and carries a current of 20 A. Its inner and outer radii are 8.0 and 9.0 cm. What are the values of its magnetic field at r = 8.1, 8.5, and 8.9 cm?arrow_forwardA magnetic field directed into the page changes with time according to B = 0.030 0t2 + 1.40, where B is in teslas and t is in seconds. The field has a circular cross section of radius R = 2.50 cm (see Fig. P23.28). When t = 3.00 s and r2 = 0.020 0 m, what are (a) the magnitude and (b) the direction of the electric field at point P2?arrow_forward
- Determine the initial direction of the deflection of charged particles as they enter the magnetic fields as shown in Figure P22.2. Figure P22.2.arrow_forwardA wire 2.80 m in length carries a current of 5.00 A in a region where a uniform magnetic field has a magnitude of 0.390 T. Calculate the magnitude of the magnetic force on the wire assuming the angle between the magnetic field and the current is (a) 60.0, (b) 90.0, and (c) 120.arrow_forwardIn Figure P22.43, the current in the long, straight wire is I1 = 5.00 A and the wire lies in the plane of the rectangular loop, which carries a current I2 = 10.0 A. The dimensions in the figure are c = 0.100 m, a = 0.150 m, and = 0.450 m. Find the magnitude and direction of the net force exerted on the loop by the magnetic field created by the wire. Figure P22.43 Problems 43 and 44.arrow_forward
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