![Bundle: Physics for Scientists and Engineers, Technology Update, 9th Loose-leaf Version + WebAssign Printed Access Card, Multi-Term](https://www.bartleby.com/isbn_cover_images/9781305714892/9781305714892_largeCoverImage.gif)
Concept explainers
Four capacitors are connected as shown in Figure P25.11. (a) Find the equivalent capacitance between points a and b. (b) Calculate the charge on each capacitor, taking ΔVab = 15.0 V.
Figure P25.11
(a)
![Check Mark](/static/check-mark.png)
Answer to Problem 26.23P
Explanation of Solution
Given information:
The four capacitors are connected in figure given below:
Figure (1)
Explanation:
The capacitors
Formula to calculate the equivalent capacitance when they are connected in series.
Here,
Substitute
The capacitors
Formula to calculate the equivalent capacitance when they are connected in parallel.
Here,
Substitute
The capacitors
Formula to calculate the equivalent capacitance when they are connected in series.
Here,
Substitute
Thus, the equivalent capacitance between
Conclusion:
Therefore, the equivalent capacitance between
(b)
![Check Mark](/static/check-mark.png)
Answer to Problem 26.23P
Explanation of Solution
Given information:
The voltage across
Explanation:
Formula to calculate the total charge in the circuit.
Here,
Substitute
Thus, the total charge in the circuit and the charge through
Formula to calculate the potential drop across
Substitute
Thus, the potential drop across
Formula to calculate the potential drop across
Substitute
Thus, the potential drop across
Formula to calculate the charge across
Substitute
Thus, the charge across
The charge across capacitors
Calculate the charge for the capacitor
Substitute
Thus, the charge across capacitors
Conclusion:
Therefore, the charge across capacitors
Want to see more full solutions like this?
Chapter 26 Solutions
Bundle: Physics for Scientists and Engineers, Technology Update, 9th Loose-leaf Version + WebAssign Printed Access Card, Multi-Term
- Part A m 2πkT ) 3/2 Calculate the integral (v) = f vƒ (v)dv. The function f(v) describing the actual distribution of molecular speeds is called the Maxwell-Boltzmann distribution, = ƒ(v) = 4π (· v²e-mv²/2kT . (Hint: Make the change of variable v² =x and use the tabulated integral foxne integer and a is a positive constant.) Express your answer in terms of the variables T, m, and appropriate constants. -ax dx n! - an+1 where n is a positive (v) = ΕΠΙ ΑΣΦ Submit Previous Answers Request Answer ? × Incorrect; Try Again; 4 attempts remaining Al Study Tools Looking for some guidance? Let's work through a few related practice questions before you go back to the real thing. This won't impact your score, so stop at anytime and ask for clarification whenever you need it. Ready to give it a try? Startarrow_forwardStarter the rule of significantarrow_forwardPlease solve this problem and give step by step explanations on each step while breaking it down please. Thank you!!arrow_forward
- Car A starts from rest at t = 0 and travels along a straight road with a constant acceleration of 6 ft/s^2 until it reaches a speed of 60ft/s. Afterwards it maintains the speed. Also, when t = 0, car B located 6000 ft down the road is traveling towards A at a constant speed of 80 ft/s. Determine the distance traveled by Car A when they pass each other.Write the solution using pen and draw the graph if needed.arrow_forwardIn the given circuit the charge on the plates of 1 μF capacitor, when 100 V battery is connected to the terminals A and B, will be 2 μF A 1 µF B 3 µFarrow_forwardThe velocity of a particle moves along the x-axis and is given by the equation ds/dt = 40 - 3t^2 m/s. Calculate the acceleration at time t=2 s and t=4 s. Calculate also the total displacement at the given interval. Assume at t=0 s=5m.Write the solution using pen and draw the graph if needed.arrow_forward
- The velocity of a particle moves along the x-axis and is given by the equation ds/dt = 40 - 3t^2 m/s. Calculate the acceleration at time t=2 s and t=4 s. Calculate also the total displacement at the given interval. Assume at t=0 s=5m.Write the solution using pen and draw the graph if needed.arrow_forwardThe velocity of a particle moves along the x-axis and is given by the equation ds/dt = 40 - 3t^2 m/s. Calculate the acceleration at time t=2 s and t=4 s. Calculate also the total displacement at the given interval. Assume at t=0 s=5m.Write the solution using pen and draw the graph if needed. NOT AI PLSarrow_forwardThe velocity of a particle moves along the x-axis and is given by the equation ds/dt = 40 - 3t^2 m/s. Calculate the acceleration at time t=2 s and t=4 s. Calculate also the total displacement at the given interval. Assume at t=0 s=5m.Write the solution using pen and draw the graph if needed.arrow_forward
- Physics for Scientists and Engineers: Foundations...PhysicsISBN:9781133939146Author:Katz, Debora M.Publisher:Cengage LearningPhysics 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 Learning
- Principles of Physics: A Calculus-Based TextPhysicsISBN:9781133104261Author:Raymond A. Serway, John W. JewettPublisher:Cengage LearningPhysics for Scientists and Engineers, Technology ...PhysicsISBN:9781305116399Author:Raymond A. Serway, John W. JewettPublisher:Cengage LearningCollege PhysicsPhysicsISBN:9781305952300Author:Raymond A. Serway, Chris VuillePublisher:Cengage Learning
![Text book image](https://www.bartleby.com/isbn_cover_images/9781133939146/9781133939146_smallCoverImage.gif)
![Text book image](https://www.bartleby.com/isbn_cover_images/9781337553278/9781337553278_smallCoverImage.gif)
![Text book image](https://www.bartleby.com/isbn_cover_images/9781337553292/9781337553292_smallCoverImage.gif)
![Text book image](https://www.bartleby.com/isbn_cover_images/9781133104261/9781133104261_smallCoverImage.gif)
![Text book image](https://www.bartleby.com/isbn_cover_images/9781305116399/9781305116399_smallCoverImage.gif)
![Text book image](https://www.bartleby.com/isbn_cover_images/9781305952300/9781305952300_smallCoverImage.gif)