
(a)
The angle of refraction at the first surface.
(a)

Answer to Problem 29P
The angle of refraction at the first surface is
Explanation of Solution
Figure-(1)
Write the expression of Snell`s Law.
Here,
Conclusion:
Substitute
Therefore, the angle of refraction at the first surface is
(b)
The angle of incidence at the second surface.
(b)

Answer to Problem 29P
The angle of incidence at the second surface is
Explanation of Solution
From the figure-(1)
Here
Add equation (III) and (IV).
From the figure in
Conclusion:
Substitute equation (V) in equation (IV)
Substitute
Therefore, the angle of incidence at the second surface is
(c)
The angle of refraction at the second surface.
(c)

Answer to Problem 29P
The angle of refraction at the second surface is
Explanation of Solution
Write the expression of Snell`s Law.
Here,
Conclusion:
Substitute
Therefore, the angle of refraction at the second surface is
(d)
The angle between the incident rays and emerging rays.
(d)

Answer to Problem 29P
The angle between the incident and emerging rays is
Explanation of Solution
Write the expression of angle between incident and emerging rays.
Here,
Conclusion:
Substitute
Therefore, the angle between the incident and emerging rays is
Want to see more full solutions like this?
Chapter 35 Solutions
Physics for Scientists and Engineers with Modern, Revised Hybrid (with Enhanced WebAssign Printed Access Card for Physics, Multi-Term Courses)
- 2). How much energy is stored in the 50-μF capacitor when Va - V₁ = 22V? 25 µF b 25 µF 50 µFarrow_forward9). A series RC circuit has a time constant of 1.0 s. The battery has a voltage of 50 V and the maximum current just after closing the switch is 500 mA. The capacitor is initially uncharged. What is the charge on the capacitor 2.0 s after the switch is closed? R 50 V a. 0.43 C b. 0 66 C c. 0.86 C d. 0.99 C Carrow_forward1). Determine the equivalent capacitance of the combination shown when C = 12 pF. +11/20 2C C Carrow_forward
- 3). When a capacitor has a charge of magnitude 80 μC on each plate the potential difference across the plates is 16 V. How much energy is stored in this capacitor when the potential difference across its plates is 42 V? a. 1.0 mJ b. 4.4 mJ c. 3.2 mJ d. 1.4 mJ e. 1.7 mJarrow_forward5). A conductor of radius r, length & and resistivity p has resistance R. It is melted down and formed into a new conductor, also cylindrical, with one fourth the length of the original conductor. The resistance of the new conductor is a. 1 R 161 b. 1 R C. R d. 4R e. 16Rarrow_forward8). Determine the magnitude and sense (direction) of the current in the 10-Q2 resistor when I = 1.8 A. 30 V L 50 V 10 Ω 20 Ω a. 1.6 A right to left b. 1.6 A left to right C. 1.2 A right to left d. 1.2 A left to right e. 1.8 A left to right R PGarrow_forward
- 7). Determine the current in the 10-V emf. 5.0 0 w 10 V 5.0 0 15 V 5.0 Ω a. 2.3 A b. 2.7 A c. 1.3 A d. 0.30 A e. 2.5 Aarrow_forward4). What is the resistance of a wire made of a material with a resistivity of 3.2 is 2.5 m and its diameter is 0.50 mm? a. 0.16 Ω b. 0.10 2 C. c. 1.28 Ω d. 0.41 2 e. 0.81 2 108 m if its lengtharrow_forwardA flat circular coil with 135 turns, a radius of 2.28 x 10-2 m, and a resistance of 0.618 is exposed to an external magnetic field that is directed perpendicular to the plane of the coil. The magnitude of the external magnetic field is changing at a rate of AB/At = 0.615 T/s, thereby inducing a current in the coil. Find the magnitude of the magnetic field at the center of the coil that is produced by the induced current. Numberarrow_forward
- please solve the question attachedarrow_forwardSketch a sine wave depicting 3 seconds of wave activity for a 5 Hz tone. Sketch the resulting complex wave form that results from the combination of the following two waves. Is this wave periodic or aperiodic? USE GRAPH PAPER!arrow_forwardRequired information A bungee jumper leaps from a bridge and undergoes a series of oscillations. Assume g = 9.78 m/s². If a 60.0-kg jumper uses a bungee cord that has an unstretched length of 30.1 m and she jumps from a height of 45.2 m above a river, coming to rest just a few centimeters above the water surface on the first downward descent, what is the period of the oscillations? Assume the bungee cord follows Hooke's law.arrow_forward
- Physics for Scientists and EngineersPhysicsISBN:9781337553278Author:Raymond A. Serway, John W. JewettPublisher:Cengage LearningPhysics for Scientists and Engineers with Modern ...PhysicsISBN:9781337553292Author:Raymond A. Serway, John W. JewettPublisher:Cengage LearningPrinciples of Physics: A Calculus-Based TextPhysicsISBN:9781133104261Author:Raymond A. Serway, John W. JewettPublisher:Cengage Learning
- College PhysicsPhysicsISBN:9781305952300Author:Raymond A. Serway, Chris VuillePublisher:Cengage LearningCollege PhysicsPhysicsISBN:9781285737027Author:Raymond A. Serway, Chris VuillePublisher:Cengage LearningPhysics for Scientists and Engineers: Foundations...PhysicsISBN:9781133939146Author:Katz, Debora M.Publisher:Cengage Learning





