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Chapters
2: Kinetic Theory of Gases
3: Calorimetry
4: Laws of Thermodynamics
5: Specific Heat Capacities of Gases
6: Heat Transfer
7: Electric Field and Potential
8: Gauss’s Law
9: Capacitors
10: Electric Current in Conductors
11: Thermal and Chemical Effects of Current
12: Magnetic Field
13: Magnetic Field due to a Current
14: Permanent Magnets
15: Magnetic Properties of Matter
16: Electromagnetic Induction
17: Alternating Current
▶ 18: Electromagnetic Waves
19: Electric Current through Gases
20: Photoelectric Effect and Wave-Particle Duality
21: Bohr’s Model and Physics of Atom
22: X-rays
23: Semiconductors and Semiconductor Devices
24: The Nucleus
25: The Special Theory of Relativity
![HC Verma solutions for Concepts of Physics Vol. 2 [English] Class 11 and 12 chapter 18 - Electromagnetic Waves HC Verma solutions for Concepts of Physics Vol. 2 [English] Class 11 and 12 chapter 18 - Electromagnetic Waves - Shaalaa.com](/images/9788177092325-concepts-of-physics-vol-2-english-class-11-and-12_6:cd4e4bfcb8474a60871d8e5659ec4eb9.jpg)
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Solutions for Chapter 18: Electromagnetic Waves
Below listed, you can find solutions for Chapter 18 of CBSE, Karnataka Board PUC HC Verma for Concepts of Physics Vol. 2 [English] Class 11 and 12.
HC Verma solutions for Concepts of Physics Vol. 2 [English] Class 11 and 12 18 Electromagnetic Waves Short Answers [Page 338]
In a microwave oven, the food is kept in a plastic container and the microwaves is directed towards the food. The food is cooked without melting or igniting the plastic container. Explain.
A metal rod is placed along the axis of a solenoid carrying a high-frequency alternating current. It is found that the rod gets heated. Explain why the rod gets heated.
Can an electromagnetic wave be deflected by an electric field or a magnetic field?
A wire carries an alternating current i = i0 sin ωt. Is there an electric field in the vicinity of the wire?
A capacitor is connected to an alternating-current source. Is there a magnetic field between the plates?
Can an electromagnetic wave be polarised?
A plane electromagnetic wave is passing through a region. Consider (a) electric field (b) magnetic field (c) electrical energy in a small volume and (d) magnetic energy in a small volume. Construct the pairs of the quantities that oscillate with equal frequencies.
HC Verma solutions for Concepts of Physics Vol. 2 [English] Class 11 and 12 18 Electromagnetic Waves MCQ [Pages 338 - 339]
A magnetic field can be produced by
a moving charge
a changing electric field
Neither of them
Both of them
A compass needle is placed in the gap of a parallel plate capacitor. The capacitor is connected to a battery through a resistance. The compass needle
does not deflect
deflects for a very short time and then comes back to the original position
deflects and remains deflected as long as the battery is connected
deflects and gradually comes to the original position in a time that is large compared to the time constant
Dimensions of 1/(µ0ϵ0) is
L/T
T/L
L2/T2
T2/L2.
Electromagnetic waves are produced by
a static charge
a moving charge
an accelerating charge
chargeless particles
An electromagnetic wave going through vacuum is described by
E = E0 sin (kx − ωt); B = B0 sin (kx − ωt).
Which of the following equations is true?
E0 k = B0 ω
E0 B0 = ωk
E0 ω = B0 k
None of these
An electric field `vec E` and a magnetic field `vec B` exist in a region. The fields are not perpendicular to each other.
This is not possible.
No electromagnetic wave is passing through the region.
An electromagnetic wave may be passing through the region.
An electromagnetic wave is certainly passing through the region.
Consider the following two statements regarding a linearly polarised, plane electromagnetic wave :
(A) The electric field and the magnetic field have equal average values.
(B) The electric energy and the magnetic energy have equal average values.
Both A and B are true.
A is false but B is true.
B is false but A is true
Both A and B are false.
A free electron is placed in the path of a plane electromagnetic wave. The electron will start moving
along the electric field
along the magnetic field
along the direction of propagation of the wave
in a plane containing the magnetic field and the direction of propagation
A plane electromagnetic wave is incident on a material surface. The wave delivers momentum p and energy E.
p = 0, E ≠ 0
p ≠ 0, E = 0
p ≠ 0, E ≠ 0
p = 0, E = 0
HC Verma solutions for Concepts of Physics Vol. 2 [English] Class 11 and 12 18 Electromagnetic Waves MCQ [Page 339]
An electromagnetic wave going through vacuum is described by
E = E0 sin (kx − ωt).
Which of the following is/are independent of the wavelength?
k
ω
k/ω
kω
Displacement current goes through the gap between the plates of a capacitor when the charge of the capacitor
(a) increases
(b) decreases
(c) does not change
(d) is zero
Speed of electromagnetic waves is the same
For all wavelengths
For all frequencies
In all media
For all intensities
Which of the following have zero average value in a plane electromagnetic wave?
(a) Electric field
(b) Magnetic field
(c) Electric energy
(d) Magnetic energy
The energy contained in a small volume through which an electromagnetic wave is passing oscillates with
zero frequency
the frequency of the wave
half the frequency of the wave
double the frequency of the wave
HC Verma solutions for Concepts of Physics Vol. 2 [English] Class 11 and 12 18 Electromagnetic Waves Exercises [Page 339]
Show that the dimensions of the displacement current `∈_0 (d varphi_E)/dt` are that of an electric current .
A point charge is moving along a straight line with a constant velocity v. Consider a small area A perpendicular to the motion of the charge. Calculate the displacement current through the area when its distance from the charge is x. The value of x is not large, so that the electric field at any instant is essentially given by Coulomb's law.
A parallel-plate capacitor of plate-area A and plate separation d is joined to a battery of emf ε and internal resistance R at t = 0. Consider a plane surface of area A/2, parallel to the plates and situated symmetrically between them. Find the displacement current through this surface as a function of time.
Consider the situation of the previous problem. Define displacement resistance Rd = V/idof the space between the plates, where V is the potential difference between the plates and id is the displacement current. Show that Rd varies with time as `R_d = R(e^(t"/"tau) - 1)` .
Using B = µ0 H, find the ratio E0/H0 for a plane electromagnetic wave propagating through vacuum. Show that it has the dimensions of electric resistance. This ratio is a universal constant called the impedance of free space.
The sunlight reaching Earth has maximum electric field of 810 Vm−1. What is the maximum magnetic field in this light?
The magnetic field in a plane electromagnetic wave is given by
B = (200 µT) sin [(4.0 × 1015s−1)(t−x/c)].
Find the maximum electric field and the average energy density corresponding to the electric field.
A laser beam has intensity 2.5 × 1014 W m−2. Find amplitudes of electric and magnetic fields in the beam.
The intensity of the sunlight reaching Earth is 1380 W m−2. Assume this light to be a plane, monochromatic wave. Find the amplitudes of electric and magnetic fields in this wave.
Solutions for 18: Electromagnetic Waves
![HC Verma solutions for Concepts of Physics Vol. 2 [English] Class 11 and 12 chapter 18 - Electromagnetic Waves HC Verma solutions for Concepts of Physics Vol. 2 [English] Class 11 and 12 chapter 18 - Electromagnetic Waves - Shaalaa.com](/images/9788177092325-concepts-of-physics-vol-2-english-class-11-and-12_6:cd4e4bfcb8474a60871d8e5659ec4eb9.jpg)
HC Verma solutions for Concepts of Physics Vol. 2 [English] Class 11 and 12 chapter 18 - Electromagnetic Waves
Shaalaa.com has the CBSE, Karnataka Board PUC Mathematics Concepts of Physics Vol. 2 [English] Class 11 and 12 CBSE, Karnataka Board PUC solutions in a manner that help students grasp basic concepts better and faster. The detailed, step-by-step solutions will help you understand the concepts better and clarify any confusion. HC Verma solutions for Mathematics Concepts of Physics Vol. 2 [English] Class 11 and 12 CBSE, Karnataka Board PUC 18 (Electromagnetic Waves) include all questions with answers and detailed explanations. This will clear students' doubts about questions and improve their application skills while preparing for board exams.
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Concepts covered in Concepts of Physics Vol. 2 [English] Class 11 and 12 chapter 18 Electromagnetic Waves are Elementary Facts About Electromagnetic Wave Uses, Electromagnetic Spectrum, Transverse Nature of Electromagnetic Waves, Electromagnetic Waves, Displacement Current.
Using HC Verma Concepts of Physics Vol. 2 [English] Class 11 and 12 solutions Electromagnetic Waves exercise by students is an easy way to prepare for the exams, as they involve solutions arranged chapter-wise and also page-wise. The questions involved in HC Verma Solutions are essential questions that can be asked in the final exam. Maximum CBSE, Karnataka Board PUC Concepts of Physics Vol. 2 [English] Class 11 and 12 students prefer HC Verma Textbook Solutions to score more in exams.
Get the free view of Chapter 18, Electromagnetic Waves Concepts of Physics Vol. 2 [English] Class 11 and 12 additional questions for Mathematics Concepts of Physics Vol. 2 [English] Class 11 and 12 CBSE, Karnataka Board PUC, and you can use Shaalaa.com to keep it handy for your exam preparation.