Integrated Science
7th Edition
ISBN: 9780077862602
Author: Tillery, Bill W.
Publisher: Mcgraw-hill,
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Chapter 6.5, Problem 11SC
To determine
The reason for the presence of a magnetic field around a current carrying wire.
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Integrated Science
Ch. 6.1 - Prob. 1SCCh. 6.1 - Prob. 2SCCh. 6.1 - Prob. 3SCCh. 6.2 - Compared to a thick wire, a thin wire of the same...Ch. 6.3 - Prob. 5SCCh. 6.3 - Prob. 6SCCh. 6.3 - Prob. 7SCCh. 6.3 - Prob. 8SCCh. 6.4 - If you multiply amps volts, the answer will be in...Ch. 6.5 - Prob. 10SC
Ch. 6.5 - Prob. 11SCCh. 6.5 - Prob. 12SCCh. 6 - Explain why a balloon that has been rubbed might...Ch. 6 - Prob. 2CQCh. 6 - Why does a positively or negatively charged object...Ch. 6 - Prob. 4CQCh. 6 - Prob. 5CQCh. 6 - Prob. 6CQCh. 6 - Prob. 7CQCh. 6 - How is an unmagnetized piece of iron different...Ch. 6 - Explain why the electric utility company increases...Ch. 6 - Describe how an electric generator is able to...Ch. 6 - Prob. 11CQCh. 6 - Explain what causes an electron to move toward one...Ch. 6 - Explain how the model of electricity as electrons...Ch. 6 - What are the significant similarities and...Ch. 6 - Prob. 15CQCh. 6 - Prob. 16CQCh. 6 - Analyze the apparent contradiction in the...Ch. 6 - Prob. 18CQCh. 6 - Prob. 1PEACh. 6 - Prob. 2PEACh. 6 - Prob. 3PEACh. 6 - What is the current in a 60.0 resistor when the...Ch. 6 - Prob. 5PEACh. 6 - Prob. 6PEACh. 6 - Prob. 7PEACh. 6 - Prob. 8PEACh. 6 - Prob. 9PEACh. 6 - Prob. 10PEACh. 6 - A power plant generator produces a 1,200 V, 40 A...Ch. 6 - Prob. 12PEACh. 6 - Prob. 1PEBCh. 6 - Prob. 2PEBCh. 6 - Prob. 3PEBCh. 6 - Prob. 4PEBCh. 6 - Prob. 5PEBCh. 6 - A lightbulb designed to operate in a 120.0 V...Ch. 6 - What is the monthly energy cost of leaving a 60 W...Ch. 6 - An electric motor draws a current of 11.5 A in a...Ch. 6 - A swimming pool requiring a 2.0 hp motor to filter...Ch. 6 - Prob. 10PEBCh. 6 - Prob. 11PEBCh. 6 - Prob. 12PEB
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- A proton has a magnetic field due to its spin on its axis. The field is similar to that created by a circular current loop 0.6501015m in radius with a current of 1.05104A (no kidding). Find the maximum torque on a proton in a 2.50T field. (This is a significant torque on a small particle.)arrow_forwardWhat creates a magnetic Hold? More than one answer may be correct, (a) a stationary object with electric charge (b) a moving object with electric charge (c) a stationary conductor carrying electric current (d) a difference in electric potential (e) a charged capacitor disconnected from a battery and at rest Note: In Chapter 34, we will see that a changing electric field also creates a magnetic field.arrow_forwardA proton has a magnetic field due to its spin. The field is similar to that created by a circular current loop 0.651015m in radius with a current of 1.05104A . Find the maximum torque on a proton in a 2.50-T field. (This is a significant torque on a small particle.)arrow_forward
- A charged particle is traveling through a uniform magnetic field. Which of the following statements are true of the magnetic field? There may be more than one correct statement. (a) It exerts a force on the particle parallel to the field. (b) It exerts a force on the particle along the direction of its motion. (c) It increases the kinetic energy of the particle. (d) It exerts a force that is perpendicular to the direction of motion. (e) It does not change the magnitude of the momentum of the particle.arrow_forwardA magnet attracts a piece of iron. The iron can then attract another piece of iron. On the basis of domain alignment, explain what happens in each piece of iron.arrow_forwardA proton track passes through a magnetic field with radius of 50 cm. The magnetic field strength is 1.5 T. What is the total energy of the proton?arrow_forward
- A wire carrying a 30.0-A current passes between the poles of a strong magnet that is perpendicular to its field and experiences a 2.16-N force on the 4.00 cm of wire in the field. What is the average field strength?arrow_forwardAn electron moving at 4.00103m/s in a 1.25T magnetic field experiences a magnetic force of 1.401016N. What angle does the velocity at the electron make with the magnetic field? There are two answers.arrow_forwardA wire carries current in the plane of this paper toward the top of the page. The wire experiences a magnetic force toward the right edge of the page. Is the direction of the magnetic field causing this force (a) in the plane of the page and toward the left edge, (b) in the plane of the page and toward the bottom edge, (c) upward out of the page, or (d) downward into the page?arrow_forward
- Classify each of die following statements as a characteristic (a) of electric forces only, (b) of magnetic forces only, (c) of both electric and magnetic forces, or (d) of neither electric nor magnetic forces. (i) The force is proportional to the magnitude of the field exerting it. (ii) The force is proportional to the magnitude of the charge of the object on which the force is exerted. (iii) The force exerted on a negatively charged object is opposite in direction to the force on a positive charge. (iv) The force exerted on a stationary charged object is nonzero. (v) The force exerted on a moving charged object is zero. (vi) The force exerted on a charged object is proportional to its speed. (vii) The force exerted on a charged object cannot alter the objects speed. (viii) The magnitude of the force depends on the charged objects direction of motion.arrow_forwardThe following statements are related to the force of a magnetic field on a current-carrying wire. Indicate whether each statement is true (T) or false (F). (a) The magnetic force on the wire is independent of the direction of the current. (b) The force on the wire is directed perpendicular to both the wire and the magnetic field. (c) The force takes its largest value when the magnetic field is parallel to the wire.arrow_forwardA Hall probe gives a reading of 1.5V for a current of 2 A when it is placed in a magnetic field of 1 T, What is tire magnetic field in a region where tire reading is 2V for 1.7 A of current?arrow_forward
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