20 – ohm non – inductive resistor is connected across 230 volts, 60 Hz power supply. What is the equation of the resulting current?
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A 20 – ohm non – inductive resistor is connected across 230 volts, 60 Hz power supply. What
is the equation of the resulting current?
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- 2. A burst controlled triac is feeding a 200 ohm resistive load. The AC supply providing 240 V rms voltage at 60Hz. a) For one cylcle on, four cycles off control calculate the load rms voltage, current, power transferred to the load and efficiency. b) For four cylcles on, one cycle off control calculate the load rms voltage, current, power transferred to the load and efficiency.What is the advantage of alternating current over direct current?a) A sinewave is having a frequency of 100 Hz and instantaneous value of 150 Volts at 1.5 milli seconds. Find i) The maximum value of sinusoidal voltage waveform and ii) The value of voltage at 1.8 milli seconds. b) Determine the instantaneous equation for the voltage waveform shown in figure, if Vp=100 Volts, Time period is 20 milli seconds and =40 degrees. Vp ì = 0
- 1.The exciting current of an electromagnet is rated at 12 Amperes. When connected across a 122-Volt source, the current is 14 Amperes. Determine the ohms in a resistor which must be connected in series to limit the current to (a) rated value, and (b) 9 amperes.List three applications of electrical transformers.Answer the question briefly. 1. What is Alternating Current (AC)? Draw a simple graphical representation of AC. 2. What are the advantages of using alternating current over direct current?
- Answer the question. 1. What is Alternating Current (AC)? Draw a simple graphical representation of AC. 2. What are the advantages of using alternating current over direct current?Describe and briefly explain the functions of the following Electrical Components. Insulator Conductor Raceway DC Circuit AC Circuita) A sinewave is having a frequency of 50 Hz and instantaneous value of 150 Volts at 1.2 milli seconds. Find i) The maximum value of sinusoidal voltage waveform and i) The value of voltage at 1.7 milli seconds. b) Determine the instantaneous equation for the voltage waveform shown in figure, if Vp=100 Volts, Time period is 5 milli seconds and 0 =50 degrees. Vp i= 0 Upload your Answers steps in the "Final Answer Submission" Link provided in the Moodle. a) (i) Maximum value = a) (ii) Value of voltage at 1.7 ms b) Angular frequency %3D
- a) A sinewave is having a frequency of 100 Hz and instantaneous value of 150 Volts at 1.4 milli seconds. Find i) The maximum value of sinusoidal voltage waveform and ii) The value of voltage at 1.8 milli seconds. b) Determine the instantaneous equation for the voltage waveform shown in figure, if Vp=100 Volts, Time period is 10 milli seconds and o =30 degrees. Vp t= 0 Upload your Answers steps in the "Final Answer Submission" Link provided in the Moodle. a) (i) Maximum value = a) (ii) Value of voltage at 1.8 ms b) Angular frequency =How is inductive reactance in alternating current circuits?Could you slove this dc electrical circuit