Schaum's Outline of College Physics, Twelfth Edition (Schaum's Outlines)
12th Edition
ISBN: 9781259587399
Author: Eugene Hecht
Publisher: McGraw-Hill Education
expand_more
expand_more
format_list_bulleted
Concept explainers
Question
Chapter 34, Problem 21SP
To determine
Theself-inductance of the air-cored coilwhose length is
Expert Solution & Answer
Want to see the full answer?
Check out a sample textbook solutionStudents have asked these similar questions
The magnetic flux through a coil is 2.50 mWb. The current in the coil is 1.00 A and has 100 turns of wiring. Determine the inductance of the coil.
A long straight, cylindrical, air-core solenoid has a diameter of 8.00 cm. It is 60.64 cm in length and has 2400 windings (turns). Calculate its self-inductance (in mH) to three significant figures.
A 20.0 V emf is applied to a coil with an inductance of 40.0 mH and a resistance of 0.500 Ω.
a) Determine the energy stored in the magnetic field when the current reaches 1/4 of its maximum value. (Answer in J and to two decimal places)
b) How long does it take for the current to reach this value? (Answer in s and to four decimal places)
Chapter 34 Solutions
Schaum's Outline of College Physics, Twelfth Edition (Schaum's Outlines)
Ch. 34 - 15. Show that 1.00 Wb = 1.00 V • s. [Hint: Use...Ch. 34 - 16. Show that 1.00 T = 1.00 N/A • m. [Hint: Use...Ch. 34 - 17. Show that 1.00 H = 1.00 T • m2 / A. [Hint: Use...Ch. 34 - 18. Determine the back emf induced in a coil whose...Ch. 34 - Prob. 19SPCh. 34 - Prob. 20SPCh. 34 - Prob. 21SPCh. 34 - Prob. 22SPCh. 34 - Prob. 23SPCh. 34 - Prob. 24SP
Ch. 34 - Prob. 25SPCh. 34 - Prob. 26SPCh. 34 - Prob. 27SPCh. 34 - Prob. 28SPCh. 34 - 29. Show that (a) 1 N/A2 = 1 T • m /A = 1 Wb/A • m...Ch. 34 - 30. A series circuit consisting of an uncharged...Ch. 34 - 31. A charged capacitor is connected across a...Ch. 34 - Prob. 32SPCh. 34 - Prob. 33SPCh. 34 - Prob. 34SPCh. 34 - Prob. 35SPCh. 34 - Prob. 36SP
Knowledge Booster
Learn more about
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, physics and related others by exploring similar questions and additional content below.Similar questions
- A solenoid of radius 2.09 cm has 405 turns and a length of 19.9 cm. Calculate its inductance. Calculate the rate at which current must change through it to produce an emf of 81.9 mV.arrow_forwardThe heating coils in a hair dryer are 0.87 cm in diameter, have a combined length of 0.8 m, and a total of 480 turns. (a) What is their total self-inductance assuming they act like a single solenoid? (b) How much energy is stored in them when 6.5 A flows?arrow_forwardA coiled telephone cord forms a spiral with 70 turns, a diameter of 1.30 cm, and an unstretched length of 60.0 cm. Determine the self-inductance of one conductor in the unstretched cord.arrow_forward
- In a coil with an inductance of 5 mi, the current changes in 0.1 ms by 0.2 A. How much self-induction electromotive force is generated in the coil?arrow_forwardTwo coils have a mutual inductance of 2.34 x 10 4H. The current in the first coil increases at a uniform rate of 857A/s. If the resistance of the second coil is 62, what is the magnitude of the induced current (in mA) in the second coil? Answer:arrow_forwardA coil has 2.55-ΩΩ resistance and 121-mH inductance. If the current is 3.00 A and is increasing at a rate of 3.80 A/s , what is the potential difference across the coil at this moment?arrow_forward
- Self-inductance (L) of a 40.0 cm long solenoid containing N = 400 turns, and cross- sectional area of 5.00 x 10-4 m2, would be_ (Take the permeability of free space H. = 47T x 10-7 Tm/A). O 0.18 mH O 1.20 mH O 0.25 mH O 0.44 mHarrow_forwardA solenoid of radius 1.70 cm has 560 turns and a length of 25.0 cm. (a) Find its inductance. X You may have made an error in converting units or in keeping track of exponents. mH (b) Find the rate at which current must change through it to produce an emf of 90.0 mV. (Enter the magnitude.) A/sarrow_forwardAn ideal solenoid with n=50 turns/cm, radius r, and current I shares its axis with an aluminum ring of radius R. The coil acts as the resistance in an RC circuit that is being charged by a DC power supply of 15.0 V. If the resistance of the coil is 5.00 2 and the time constant for the circuit is 42.0 ms, (a) What is the current through the coil at time t = 50.0 ms? (b) 2r Since the current through the coil is changing in time, the magnetic flux it creates is also changing. Indicate on the drawing the direction of the induced current in the aluminum ring at the same time t = 50.0 ms.. Determine the inductance per unit length 2R- of the solenoid if r-10.0 cm, and R-18.0 cm. What further information, if any, is necessary to compute the value of the inducted emf in the ring at time t-50.0 ms? I O (d)arrow_forward
- The heating coils in a hair dryer are 0.800 cm in diameter, have a combined length of 1.00 m, and a total of 395 turns. a) What is their total self-inductance (in H) assuming they act like a single solenoid? b) How much energy (in J) is stored in them when 10.0 A flows? and c) What average emf (in mV) opposes shutting them off if this is done in 4.17 ms (one-fourth of a cycle for 60 Hz AC)?arrow_forwardA coiled telephone cord forms a spiral with 70.0 turns, a diameter of 1.30 cm, and an unstretched length of 60.0 cm. Determine the inductance of one conductor in the unstretched cord.arrow_forwardTwo coils are placed close together in a physics lab to demonstrate Faraday's law of induction. A current of 7.00 A in one is switched off in 1.30 ms, inducing a 3.00 V emf in the other. What is their mutual inductance (in mH)?arrow_forward
arrow_back_ios
SEE MORE QUESTIONS
arrow_forward_ios
Recommended textbooks for you