Experimental tests have shown that hammerhead sharks can detect magnetic fields. In one such test, 100 turns of wire were wrapped around a 7.0-m diameter cylindrical shark tank. A magnetic field was created inside the tank when this coil of wire carried a current of 1 .5 A. Sharks trained by getting a food reward when the field was present would later unambiguously respond when the field was turned on. a. What was the magnetic field strength in the center of the tank due to the current in the coil? b. Is the strength of the coil’s field at the center of the tank larger or smaller than that of the earth?
Experimental tests have shown that hammerhead sharks can detect magnetic fields. In one such test, 100 turns of wire were wrapped around a 7.0-m diameter cylindrical shark tank. A magnetic field was created inside the tank when this coil of wire carried a current of 1 .5 A. Sharks trained by getting a food reward when the field was present would later unambiguously respond when the field was turned on. a. What was the magnetic field strength in the center of the tank due to the current in the coil? b. Is the strength of the coil’s field at the center of the tank larger or smaller than that of the earth?
Experimental tests have shown that hammerhead sharks can detect magnetic fields. In one such test, 100 turns of wire were wrapped around a 7.0-m diameter cylindrical shark tank. A magnetic field was created inside the tank when this coil of wire carried a current of 1.5 A. Sharks trained by getting a food reward when the field was present would later unambiguously respond when the field was turned on.
a. What was the magnetic field strength in the center of the tank due to the current in the coil?
b. Is the strength of the coil’s field at the center of the tank larger or smaller than that of the earth?
4
Problem 4) A particle is being pushed up a smooth slot by a rod. At the instant when 0 = rad,
the angular speed of the arm is ė = 1 rad/sec, and the angular acceleration is = 2 rad/sec².
What is the net force acting on the 1 kg particle at this instant? Express your answer as a vector
in cylindrical coordinates. Hint: You can express the radial coordinate as a function of the angle
by observing a right triangle. (20 pts)
Ꮎ
2 m
Figure 3: Particle pushed by rod along vertical path.
4
Problem 4) A particle is being pushed up a smooth slot by a rod. At the instant when 0 = rad,
the angular speed of the arm is ė = 1 rad/sec, and the angular acceleration is = 2 rad/sec².
What is the net force acting on the 1 kg particle at this instant? Express your answer as a vector
in cylindrical coordinates. Hint: You can express the radial coordinate as a function of the angle
by observing a right triangle. (20 pts)
Ꮎ
2 m
Figure 3: Particle pushed by rod along vertical path.
please solve and answer the question correctly. Thank you!!
Chapter 24 Solutions
College Physics: A Strategic Approach (3rd Edition)
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