The resistor in Figure P32.49 represents the midrange speaker in a three-speaker system. Assume its resistance to be constant at 8.00 Ω. The source represents an audio amplifier producing signals of uniform amplitude ΔVmax = 10.0 V at all audio frequencies. The inductor and capacitor are to function as a band-pass filter with
Figure P32.49
(a)
Answer to Problem 33.77CP
Explanation of Solution
Given info: The value of resistance is
Formula to calculate the output potential difference is,
Here,
Formula to calculate the input potential difference is,
Here,
Divide equation (1) and equation (1).
Formula to calculate the inductive reactance of the circuit is,
Here,
Formula to calculate the inductive reactance of the circuit is,
Here,
Formula to calculate the impedance of the circuit is,
Here,
Substitute
At low frequency that is
Substitute
Substitute
Solve the equation further,
Divide the equation by
At high frequency that is
Substitute
Substitute
Solve the equation further,
Subtract the equation (5) and equation (6) to find the value of
Conclusion:
Therefore, the required value of inductance
(b)
Answer to Problem 33.77CP
Explanation of Solution
Given info: The value of resistance is
The equation (6) is given as,
Substitute
Conclusion:
Therefore, the required value of capacitance
(c)
Answer to Problem 33.77CP
Explanation of Solution
Given info: The value of resistance is
The value
At resonance condition,
Substitute
Conclusion:
Therefore, the maximum value of the ratio
(d)
Answer to Problem 33.77CP
Explanation of Solution
Given info: The value of resistance is
Since the ratio
Formula to calculate the resonance frequency is,
Substitute
Conclusion:
Therefore, the frequency
(e)
Answer to Problem 33.77CP
Explanation of Solution
Given info: The value of resistance is
Formula to calculate the phase shift between
At
Substitute
At
Substitute
At
Substitute
Conclusion:
Therefore, the phase shift between
(f)
Answer to Problem 33.77CP
Explanation of Solution
Given info: The value of resistance is
Formula to calculate the rms output voltage is,
Formula to calculate the power deliver to the speaker is,
Substitute
For low frequency
Substitute
Substitute
For resonance frequency
Substitute
Substitute
Conclusion:
Therefore, the average power transferred to the speaker at
(g)
Answer to Problem 33.77CP
Explanation of Solution
Given info: The value of resistance is
Formula to calculate the quality factor is,
Substitute
Conclusion:
Therefore, the quality factor of the circuit is
Want to see more full solutions like this?
Chapter 33 Solutions
Physics for Scientists and Engineers, Technology Update (No access codes included)
- The 10-lb weight is supported by the cord AC and roller and by the spring that has a stiffness of k = 10 lb/in. and an unstretched length of 12 in. as shown in. Part A Determine the distance d to maintain equilibrium. Express your answer in inches to three significant figures. 節 ΕΠΙ ΑΣΦ d = *k J vec 5 t 0 ? d C A in. 12 in. Barrow_forwardThe members of a truss are connected to the gusset plate as shown in . The forces are concurrent at point O. Take = 90° and T₁ = 7.5 kN. Part A Determine the magnitude of F for equilibrium. Express your answer to three significant figures and include the appropriate units. F = Value Submit Request Answer Part B 0 ? Units Determine the magnitude of T2 for equilibrium. Express your answer to three significant figures and include the appropriate units. ? T₂ = Value Units T₁ Carrow_forwardpls help on botharrow_forward
- pls helparrow_forwardpls helparrow_forward6. 6. There are 1000 turns on the primary side of a transformer and 200 turns on thesecondary side. If 440 V are supplied to the primary winding, what is the voltageinduced in the secondary winding? Is this a step-up or step-down transformer? 7. 80 V are supplied to the primary winding of a transformer that has 50 turns. If thesecondary side has 50,000 turns, what is the voltage induced on the secondary side?Is this a step-up or step-down transformer? 8. There are 50 turns on the primary side of a transformer and 500 turns on thesecondary side. The current through the primary winding is 6 A. What is the turnsratio of this transformer? What is the current, in milliamps, through the secondarywinding?9. The current through the primary winding on a transformer is 5 A. There are 1000turns on the primary winding and 20 turns on the secondary winding. What is theturns ratio of this transformer? What is the current, in amps, through the secondarywinding?arrow_forward
- No chatgpt plsarrow_forwardWhat is the current, in amps, across a conductor that has a resistance of10 Ω and a voltage of 20 V? 2. A conductor draws a current of 100 A and a resistance of 5 Ω. What is thevoltageacross the conductor? 3. What is the resistance, in ohm’s, of a conductor that has a voltage of 80 kVand acurrent of 200 mA? 4. An x-ray imaging system that draws a current of 90 A is supplied with 220V. What is the power consumed? 5. An x-ray is produced using 800 mA and 100 kV. What is the powerconsumed in kilowatts?arrow_forwardՍՈՈՒ XVirginia Western Community Coll x P Course Home X + astering.pearson.com/?courseld=13289599#/ Figure y (mm) x=0x = 0.0900 m All ✓ Correct For either the time for one full cycle is 0.040 s; this is the period. Part C - ON You are told that the two points x = 0 and x = 0.0900 m are within one wavelength of each other. If the wave is moving in the +x-direction, determine the wavelength. Express your answer to two significant figures and include the appropriate units. 0 t(s) λ = Value m 0.01 0.03 0.05 0.07 Copyright © 2025 Pearson Education Inc. All rights reserved. 日 F3 F4 F5 1775 % F6 F7 B F8 Submit Previous Answers Request Answer ? × Incorrect; Try Again; 3 attempts remaining | Terms of Use | Privacy Policy | Permissions | Contact Us | Cookie Settings 28°F Clear 4 9:23 PM 1/20/2025 F9 prt sc F10 home F11 end F12 insert delete 6 7 29 & * ( 8 9 0 t = back Οarrow_forward
- Part C Find the height yi from which the rock was launched. Express your answer in meters to three significant figures. Learning Goal: To practice Problem-Solving Strategy 4.1 for projectile motion problems. A rock thrown with speed 12.0 m/s and launch angle 30.0 ∘ (above the horizontal) travels a horizontal distance of d = 19.0 m before hitting the ground. From what height was the rock thrown? Use the value g = 9.800 m/s2 for the free-fall acceleration. PROBLEM-SOLVING STRATEGY 4.1 Projectile motion problems MODEL: Is it reasonable to ignore air resistance? If so, use the projectile motion model. VISUALIZE: Establish a coordinate system with the x-axis horizontal and the y-axis vertical. Define symbols and identify what the problem is trying to find. For a launch at angle θ, the initial velocity components are vix=v0cosθ and viy=v0sinθ. SOLVE: The acceleration is known: ax=0 and ay=−g. Thus, the problem becomes one of…arrow_forwardPhys 25arrow_forwardPhys 22arrow_forward
- Physics for Scientists and Engineers, Technology ...PhysicsISBN:9781305116399Author:Raymond A. Serway, John W. JewettPublisher:Cengage LearningPhysics for Scientists and Engineers: Foundations...PhysicsISBN:9781133939146Author:Katz, Debora M.Publisher:Cengage Learning
- 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 LearningCollege PhysicsPhysicsISBN:9781305952300Author:Raymond A. Serway, Chris VuillePublisher:Cengage Learning