Alternating voltages and phasors phasor addition and division (Problem 3)

1 Answer

Answer :

Alternating voltages and phasors phasor addition and division (Problem 3)

image

Related questions

Description : Alternating voltages and phasors : phasor addition (Problem 2)

Last Answer : Alternating voltages and phasors : phasor addition (Problem 2)

Description : Alternating voltages and phasors (Problem 15)

Last Answer : Alternating voltages and phasors (Problem 15)

Description : Alternating voltages and phasors (Problem 14)

Last Answer : Alternating voltages and phasors (Problem 14)

Description : Alternating voltages and phasors (Problem 13)

Last Answer : Alternating voltages and phasors (Problem 13)

Description : Alternating voltages and phasors (Problem 12)

Last Answer : Alternating voltages and phasors (Problem 12)

Description : Alternating voltages and phasors (Problem 11)

Last Answer : Alternating voltages and phasors (Problem 11)

Description : Alternating voltages and phasors (Problem 10)

Last Answer : Alternating voltages and phasors (Problem 10)

Description : Alternating voltages and phasors (Problem 9)

Last Answer : Alternating voltages and phasors (Problem 9)

Description : Alternating voltages and phasors (Problem 8)

Last Answer : Alternating voltages and phasors (Problem 8)

Description : Alternating voltages and phasors (Problem 7)

Last Answer : Alternating voltages and phasors (Problem 7)

Description : Alternating voltages and phasors (Problem 6)

Last Answer : Alternating voltages and phasors (Problem 6)

Description : Alternating voltages and phasors (Problem 5)

Last Answer : Alternating voltages and phasors (Problem 5)

Description : Alternating voltages and phasors (Problem 4)

Last Answer : Alternating voltages and phasors (Problem 4)

Description : Alternating voltages and phasors (Problem 1)

Last Answer : Alternating voltages and phasors (Problem 1)

Description : Problem on resistance and resistivity 3

Last Answer : Problem on resistance and resistivity 3

Description : Problem on temperature coefficient of resistance 3

Last Answer : Problem on temperature coefficient of resistance 3

Description : A parallel RLC circuit has the node equation Determine v(t) using the phasor method.

Last Answer : A parallel RLC circuit has the node equation Determine v(t) using the phasor method.

Description : Apply phasor analysis to evaluate the following

Last Answer : Apply phasor analysis to evaluate the following

Description : Series and parallel capacitor problem

Last Answer : Series and parallel capacitor problem 1 : https://youtu.be/MSl5mRwtjAE Series and parallel capacitor problem 2 : https://youtu.be/yGwbpyEtIyw Series and parallel capacitor problem 3 : https:// ... https://youtu.be/_7KwEwWqiNU Series and parallel capacitor problem 10 : https://youtu.be/et8MCWV_OyE

Description : Problem on resistance and resistivity 13

Last Answer : Problem on resistance and resistivity 13

Description : Problem on resistance and resistivity 12

Last Answer : Problem on resistance and resistivity 12

Description : Problem on resistance and resistivity 11

Last Answer : Problem on resistance and resistivity 11

Description : Problem on resistance and resistivity 10

Last Answer : Problem on resistance and resistivity 10

Description : Problem on resistance and resistivity 9

Last Answer : Problem on resistance and resistivity 9

Description : Problem on resistance and resistivity 8

Last Answer : Problem on resistance and resistivity 8

Description : Problem on resistance and resistivity 7

Last Answer : Problem on resistance and resistivity 7

Description : Problem on resistance and resistivity 6

Last Answer : Problem on resistance and resistivity 6

Description : Problem on resistance and resistivity 5

Last Answer : Problem on resistance and resistivity 5

Description : Problem on resistance and resistivity 4

Last Answer : Problem on resistance and resistivity 4

Description : Problem on resistance and resistivity 2

Last Answer : Problem on resistance and resistivity 2

Description : Problem on resistance and resistivity 1

Last Answer : Problem on resistance and resistivity 1

Description : Problem on electrical power and energy 2

Last Answer : Problem on electrical power and energy 2

Description : Problem on electrical power and energy 1

Last Answer : Problem on electrical power and energy 1

Description : Problem on electrical power and energy 7

Last Answer : Problem on electrical power and energy 7

Description : Problem on electrical power and energy 6

Last Answer : Problem on electrical power and energy 6

Description : Problem on electrical power and energy 5

Last Answer : Problem on electrical power and energy 5

Description : Using phasors, determine in the following equations

Last Answer : Using phasors, determine in the following equations

Description : Use phasors to find

Last Answer : Use phasors to find

Description : Obtain the sinusoids corresponding to each of the following phasors

Last Answer : Obtain the sinusoids corresponding to each of the following phasors

Description : Transform the following sinusoids to phasors

Last Answer : Transform the following sinusoids to phasors

Description : Find the phasors corresponding to the following signals

Last Answer : Find the phasors corresponding to the following signals

Description : How can we reduce the division in the US?

Last Answer : I’ll believe it when I see it.

Description : How to teach division for my 3rd grader?

Last Answer : Tell him/her it’s like sharing. 3/2 is 3 cookies shared between 2 friends. So each friend gets 1 1/2 cookies.

Description : Current division rule example

Last Answer : Current division rule example

Description : Instantaneous Voltages

Last Answer : Instantaneous value: The value of an alternating quantity at a particular instant is called the instantaneous value of the quantity at that instant.  Maximum Value: The maximum or peak value ... an alternating quantity during a cycle is called the maximum value or amplitude of the quantity.

Description : Sinusoidal Steady-State Analysis - Using nodal analysis, find node voltages in the circuit.

Last Answer : Sinusoidal Steady-State Analysis - Using nodal analysis, find node voltages in the circuit.

Description : Thyristor can be protected from over voltages by using

Last Answer : Thyristor can be protected from over voltages by using Voltage clamping device

Description : A minimum clearance of 6.3 m to ground is required for overhead lines when operating voltages are :  (A) less than 66 kV (B) lie between 66 kV and 110 kV (C) more than 165 kV (D) lie between 110 kV and 165 kV

Last Answer : A minimum clearance of 6.3 m to ground is required for overhead lines when operating voltages are : lie between 66 kV and 110 kV

Description : The voltages across various discs of suspension insulators having identical discs are different due to:  (A) Surface leakage currents  (B) Series capacitance of lines  (C) Shunt capacitance to ground  (D) Series and shunt capacitances

Last Answer : The voltages across various discs of suspension insulators having identical discs are different due to: Shunt capacitance to ground 

Description : The sending end and receiving end voltages of a three-phase transmission line are 10 kV/ph and 9.5 kV/ph, respectively. If the resistance drop is 150 V/ph and receiving end power factor is 0.8, the sending end power factor is (A) 0.745 lagging (B) 0.775 lagging (C) 0.8 lagging (D) 0.85 lagging

Last Answer : Vscos¢s-Vrcos¢r=IR