Fundamentals Of Physics - Volume 1 Only
11th Edition
ISBN: 9781119306856
Author: Halliday
Publisher: WILEY
expand_more
expand_more
format_list_bulleted
Concept explainers
Question
Chapter 30, Problem 76P
To determine
To find:
a) Show that the mutual inductance for the coil – solenoid combination is
b) Why M does not depend on the shape, size or possible lack of close packing of the coil.
Expert Solution & Answer
Want to see the full answer?
Check out a sample textbook solutionStudents have asked these similar questions
58 In Fig. 30-47, R₁ = 8.0 2, R₂ = 10 2,
L₁ = 0.30 H, L₂ = 0.20 H, and the ideal
battery has = 6.0 V. (a) Just after
switch S is closed, at what rate is the
current in inductor 1 changing? (b)
When the circuit is in the steady state,
what is the current in inductor 1?
oooo
L₁
R₁
R₂
E SOPORD
L2
elle
Figure 30-47 Problem 58.
*73 A rectangular loop of N
closely packed turns is posi-
tioned near a long straight wire
as shown in Fig. 30-68. What is
the mutual inductance M for
the loop-wire combination if
N = 100, a = 1.0 cm, b = 8.0
cm, and / = 30 cm? ILW
*77 SSM Two coils connected as
shown in Fig. 30-70 separately have inductances L1 and L2. TI
mutual inductance is M. (a) Show that this combination can be
placed by a single coil of equivalent inductance given by
Leg = L1 + L2 + 2M.
(b) How could the coils in Fig. 30-70 be reconnected to yield
equivalent inductance of
Leg = L + L2- 2M?
(This problem is an extension of Problem 47, but the requirem
that the coils be far apart has been removed.)
L1
M-
L9
N1
Ng
Figure 30-70 Problem 77.
Chapter 30 Solutions
Fundamentals Of Physics - Volume 1 Only
Ch. 30 - If the circular conductor in Fig. 30-21 undergoes...Ch. 30 - Prob. 2QCh. 30 - Prob. 3QCh. 30 - Prob. 4QCh. 30 - Prob. 5QCh. 30 - Prob. 6QCh. 30 - Prob. 7QCh. 30 - Prob. 8QCh. 30 - Prob. 9QCh. 30 - Prob. 10Q
Ch. 30 - Figure 30-31 shows three situations in which a...Ch. 30 - Figure 30-32 gives four situations in which we...Ch. 30 - Prob. 1PCh. 30 - A certain elastic conducting material is stretched...Ch. 30 - Prob. 3PCh. 30 - A wire loop of radius 12 cm and resistance 8.5 is...Ch. 30 - Prob. 5PCh. 30 - Figure 30-37a shows a circuit consisting of an...Ch. 30 - In Fig. 30-38, the magnetic flux through the loop...Ch. 30 - Prob. 8PCh. 30 - Prob. 9PCh. 30 - Prob. 10PCh. 30 - A rectangular coil of N turns and of length a and...Ch. 30 - Prob. 12PCh. 30 - Prob. 13PCh. 30 - GO In Fig. 30-42a, a uniform magnetic field B...Ch. 30 - GO A square wire loop with 2.00 m sides is...Ch. 30 - GO Figure 30-44a shows a wire that forms a...Ch. 30 - A small circular loop of area 2.00 cm2 is placed...Ch. 30 - Prob. 18PCh. 30 - ILW An electric generator contains a coil of 100...Ch. 30 - At a certain place, Earths magnetic field has...Ch. 30 - Prob. 21PCh. 30 - A rectangular loop area = 0.15 m2 turns in a...Ch. 30 - SSM Figure 30-47 shows two parallel loops of wire...Ch. 30 - Prob. 24PCh. 30 - GO Two long, parallel copper wires of diameter 2.5...Ch. 30 - GO For the wire arrangement in Fig. 30-49, a =...Ch. 30 - ILW As seen in Fig. 30-50, a square loop of wire...Ch. 30 - Prob. 28PCh. 30 - Prob. 29PCh. 30 - Prob. 30PCh. 30 - Prob. 31PCh. 30 - A loop antenna of area 2.00 cm2 and resistance...Ch. 30 - GO Figure 30-54 shows a rod of length L = 10.0 cm...Ch. 30 - Prob. 34PCh. 30 - Prob. 35PCh. 30 - Prob. 36PCh. 30 - Prob. 37PCh. 30 - Prob. 38PCh. 30 - Prob. 39PCh. 30 - Prob. 40PCh. 30 - A circular coil has a 10.0 cm radius and consists...Ch. 30 - Prob. 42PCh. 30 - Prob. 43PCh. 30 - Prob. 44PCh. 30 - Prob. 45PCh. 30 - Prob. 46PCh. 30 - Inductors in series. Two inductors L1 and L2 are...Ch. 30 - Prob. 48PCh. 30 - Prob. 49PCh. 30 - Prob. 50PCh. 30 - ILW The current in an RL circuit drops from 1.0 A...Ch. 30 - Prob. 52PCh. 30 - Prob. 53PCh. 30 - Prob. 54PCh. 30 - Prob. 55PCh. 30 - Prob. 56PCh. 30 - In Fig. 30-65, R = 15 , L = 5.0 H, the ideal...Ch. 30 - Prob. 58PCh. 30 - Prob. 59PCh. 30 - Prob. 60PCh. 30 - Prob. 61PCh. 30 - A coil with an inductance of 2.0 H and a...Ch. 30 - Prob. 63PCh. 30 - Prob. 64PCh. 30 - Prob. 65PCh. 30 - A circular loop of wire 50 mm in radius carries a...Ch. 30 - Prob. 67PCh. 30 - Prob. 68PCh. 30 - ILW What must be the magnitude of a uniform...Ch. 30 - Prob. 70PCh. 30 - Prob. 71PCh. 30 - Prob. 72PCh. 30 - Prob. 73PCh. 30 - Prob. 74PCh. 30 - Prob. 75PCh. 30 - Prob. 76PCh. 30 - Prob. 77PCh. 30 - Prob. 78PCh. 30 - SSM In Fig. 30-71, the battery is ideal and = 10...Ch. 30 - Prob. 80PCh. 30 - Prob. 81PCh. 30 - A uniform magnetic field B is perpendicular to the...Ch. 30 - Prob. 83PCh. 30 - Prob. 84PCh. 30 - Prob. 85PCh. 30 - Prob. 86PCh. 30 - Prob. 87PCh. 30 - Prob. 88PCh. 30 - A coil with an inductance of 2.0 H and a...Ch. 30 - Prob. 90PCh. 30 - Prob. 91PCh. 30 - Prob. 92PCh. 30 - Prob. 93PCh. 30 - A long cylindrical solenoid with 100 turns/cm has...Ch. 30 - Prob. 95PCh. 30 - A square loop of wire is held in a uniform 0.24 T...Ch. 30 - Prob. 97PCh. 30 - The inductance of a closely wound coil is such...Ch. 30 - The magnetic field in the interstellar space of...Ch. 30 - Prob. 100PCh. 30 - A toroid has a 5.00 cm square cross section, an...
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
- Two coils are placed close to each other and have a mutual inductance of 150 µH. The current through one coil is given by, I(t)=5sin(1000t). Estimate the time when the emf will be maximum on the second coil.arrow_forward(a) A coil of conducting wire carries a current of i(t) = 16.0 sin(1.20 x 10³t), where i is in amperes and t is in seconds. A second coil is placed in close proximity to the first, and the mutual inductance of the coils is 160 pH. What is the peak emf (in V) in the second coil? V (b) What If? Which would lead to a larger peak emf in the second coil, a doubling of the mutual inductance or a doubling of the frequency with which the current in the first coil changes? O Doubling the mutual inductance would lead to a larger peak emf. O Doubling the frequency with which the current in the first coil changes would lead to a larger peak emf. O The two changes would each have the same effect.arrow_forwardAn inductor has a current I(t) = (0.500 A) cos[(275s-1)t] flowing through it. If the maximum emf across the inductor is equal to 0.500 V, determine the self-inductance of the inductor.arrow_forward
- A solenoid has N turns of area A distributed uniformly along its length, /. When the current in this solenoid increases at the rate of 2.0 A>s, an induced emf of 75 mVis observed. (a) What is the inductance of this solenoid? (b) Suppose the spacing between coils is doubled. The result is a solenoid that is twice as long but with the same area and numberof turns. Will the induced emf in this new solenoid be greaterthan, less than, or equal to 75 mV when the current changes atthe rate of 2.0 A>s? Explain. (c) Calculate the induced emf forpart (b).arrow_forwardIf the ratio of the outer radius to the inner radius of a rectangular toroid is doubled how does the energy stored change for a given current? Hint: the inductance of a rectangular toroid with N turns, a height h, and outer and inner radii R2 and R₁, respectively is MON²h L = -In 2π R₂ R₁ O The answer cannot be determined from the information given. ○ It stays the same. O It is reduced by half. ○ It quadruples. ○ It doubles.arrow_forwardAn inductor is built using a circular coil that is l 0.50 m long, has radius R 10.0 cm, and consists of N 30 closely wound turns of wire. Treat the coil as an ideal solenoid. (a) Calculate the self-inductance of the coil. (b) At what rate do we need to change the current to produce a 1.5 V emf in the inductor? If this change is done at a constant rate and we reduce the current from Io of a time should we use for that? 3.8 A to zero, how longarrow_forward
- Two coils are wound around the same cylindrical form, When the current in the first coil is decreasing at a rate of -0.242 A>s, the induced emf in the second coil has magnitude 1.65 x 10-3 V. (a) What is the mutual inductance of the pair of coils? (b) If the second coil has 25 turns, what is the flux through each turn when the current in the first coil equals 1.20 A? (c) If the current in the second coil increases at a rate of 0.360 A/s, what is the magnitude of the induced emf in the first coil?arrow_forwardSuppose insulated wire of length 5.28 m is coiled into a 0.015 0-m radius solenoid of length 0.060 0 m. Determine (a) the number of loops in the coil, (b) the inductance of the solenoid, and (c) the magnitude of the induced emf if the current is changing at a rate of 6.00X102 A/s.arrow_forwardTwo coils, held in fixed positions, have a mutual inductance of 225 uH. What is the peak emf in one coil when the current in the other coil is i(t) = 14.0 sin(1.10 x 103t), where i is in amperes and t is in seconds?arrow_forward
- Current through an inductor(L= 0.1 H) is given by i = (t²-6t) A. Find the magnitude of the induced emf at t= 4.0 s.arrow_forwardA conducting coil, with current i(t) = 5.40e-0.0250+ sin(120mt), withi in amperes and t in seconds, is placed next to a second coil, end to end. At t = 0.720 s, a lab tech measures the emf across the second coil, and the result is -3.50 V. What is the mutual inductance (in mH) of the coils? mHarrow_forwardAn inductor has a current I(t) = (0.480 A) cos[(260 s-1)t] flowing through it. If the maximum emf %3D across the inductor is equal to 0.530 V, what is the self-inductance of the inductor, in mH? A 110-V hair dryer is rated at 1200 W. What current will it draw when operating from a 110-V electrical outlet? A small glass bead has been charged to 4.5 nC. What is the magnitude of the electric field 2.0 cm from the center of the bead? (k = 1/4nE 0 = 8.99 x 10° N. m2/C2) %3Darrow_forward
arrow_back_ios
SEE MORE QUESTIONS
arrow_forward_ios
Recommended textbooks for you