Convent the transter function 532.755+o5 (Zon)at 7= 1 sec.
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- A capacitor is made with a dielectric layer of mylar film that is 12μm thick. The effective area of the film and conducting plates is 0.1m². K-value for mylar film is 3.1. What is the capacitance rating of the device?If a circuit is connected to a voltage source of 1sin(10t + 84 degrees) and Capacitance(C) = 2F, Resistance(R) = 6 Ohms and Inductance(L) = 5H. Find the instantaneous current flowing in the circuit at time t = 0.46 seconds. - Capacitor, Resistor and Inductor connected in seriesThree identical 3.0 µF capacitors are to be connected with each other. Identify, illustrate and calculate the net capacitance of a network equivalent to (a) 2.0 µF and (b) 4.5 µF?
- S:46) I just need the integral of the mutual inductance for these 3 problemsFind the value of Ls, if the mutual inductance M is equal to 40 mH.1.1 A capacitor which has an internal resistance of 10Ω and a capacitance value of 160uF is connected to a supply voltage given as v(t) = 100sin(314t) Calculate the peak current flowing into the capacitor
- A series circuit of 20uF capacitor, 110V, 160 cycles supply, and a variable inductor. Determine the value of the inductor considering that the circuit current is 5A leading.a. 27.6mHb. 45.2mHc. 54.3mHd. 75.56mHsolve the equation for I(t), where Resistance (ohm) = 6.8, Voltage(volts) = 120, Frequency (Hz) = 50, Inductance (millihenry) = 1.3, Capacitance (millifarad) = 16.19apoint chanay of 30ncis located at th corigam) while plane yz3 carries fined 1Dat point (6,4,3) chavg to nc /m'
- a) Compute the capacitance of a parallel-plate capacitor with plates 10 cm by 20 cm and separation of 5 mm if the dielectric are (i) an air dielectric, (ii) a ceramic dielectric with permittivity of 7500A flashlight beam has an exit power of 100mW, an exit diameter of 3.8cm, and a divergence of 1.1 degree. Calculate the intensity in mW/cm2 at 55m and the size of the beam at that distance.A 40μF capacitor in series with a coil of resistance 8Ω and inductance 80mH is connected to a 200V, 100Hz supply. Calculate: i. The circuit impedance. ii. The current flowing. iii. The phase angle between the voltage and current. iv. The voltage across the coil. v. The voltage across the capacitor. b. A coil of resistance 25Ω and inductance 100mH is connected in series with a capacitance of 0.12μF across a 200V, variable frequency supply. Calculate: i. The resonant frequency. ii. The current at resonance. iii. The factor by which the voltage across the reactance is greater than the supply voltage.