Engineering Electromagnetics
Engineering Electromagnetics
9th Edition
ISBN: 9780078028151
Author: Hayt, William H. (william Hart), Jr, BUCK, John A.
Publisher: Mcgraw-hill Education,
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Chapter 2, Problem 2.10P

A configuration of point charges consists of a single charge of value -2q at the origin, and two charges of value +q at locations: z = -d and +d. The charges as positioned form an electric dourupol., equivalent so two dipoles of opposite orientation that are separated by distanced along the z-axis (a) Find the electric field intensity E everywhere in the z plane, expressing your result as a function of cylindrical radius E everywhere Specialize your part a result for large distances, p >> d.

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Waveform: Triangle wave Frequency: 5000 Hz Duty Cycle: 40% Amplitude: 8 Vp   On the oscilloscope, set the timebase to 100 μs/Div.   Now run the simulation and measure the rise time and fall time of the triangle wave in V/100 μs. Are these values consistent with a 40% duty cycle? Look at the text instructions and images and tell me if my calculations seem right. change in voltage value was taken from the virtual oscilliscope.  The change in voltage slope and convert to V/100us are what I am trying to ensure are correct. (Please don't just check that only duty cycle is correct. Please check if convert to V/100us is correct as well.)
Waveform: Triangle wave Frequency: 5000 Hz Duty Cycle: 40% Amplitude: 8 Vp   On the oscilloscope, set the timebase to 100 μs/Div.   Now run the simulation and measure the rise time and fall time of the triangle wave in V/100 μs. Are these values consistent with a 40% duty cycle? I am trying to calculate V/100us. (T2−T1) rise=32.474uS (T2−T1) fall=47.755uS Minimum Voltage (V_min): 786.026 mV = 0.786026 V Maximum Voltage (V_max): 7.206 V Slope(rise) =6.419974/32.474×10^6 = 197,579.76,V/s *1,s/100,μs =197,579.76,V/100us I am checking the answer and I am concerned for V/100us =197,579.76,V/100us  is to high?  Please help me verify the answer for V/100us is correct. (I just need the calculations from my measurments) any insight is appreciated I did not post the pics of my virtual oscilliscope.
Connect the function generator and the scope, as shown in the same example. Set the function generator as follows:   Waveform: Triangle wave Frequency: 5000 Hz Duty Cycle: 40% Amplitude: 8 Vp   On the oscilloscope, set the timebase to 100 μs/Div.   Now run the simulation and measure the rise time and fall time of the triangle wave in V/100 μs. Are these values consistent with a 40% duty cycle? How do I answer this question?  what is V/100us?

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Electric Charge and Electric Fields; Author: Professor Dave Explains;https://www.youtube.com/watch?v=VFbyDCG_j18;License: Standard Youtube License