A capacitor, inductor and resistor are connected in series across an AC source. When the source frequency is f, the phase angle is positive (> 0, where the phase angle is defined to be positive if the voltage leads the current). Which best describes the frequency frelative to the resonance frequency fo? f< fo f = fo f> > fo The frequency could be any of the above.
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- Part A The following graph shows the voltage and current through a single circuit element. What is the frequency of the ac generator? Vp = 65.0 V, Ip = 4.60 A, t₁ = 0.0816 s. Voltage Current NAN p Submit Answer Tries 0/6 Part B What is the average power dissipated in this element? Submit Answer Tries 0/6 t(s) Part C The circuit element above is either a resistor, an inductor, or a capacitor. Use the graph and what you know of circuit elements to determine what type of element is shown in the graph. If it is a resistor, what is the value of its resistance? If it is an inductor, what is its inductance? If it is a capacitor, what is its capacitance? Submit Answer Tries 0/6What maximum current is delivered by an AC source with AVmax = 58.7 V and f = 72.1 Hz when connected across a 3.70-µF capacitor? Step 1 The applied AC source determines the voltage amplitude and frequency. We will compute the reactance of the capacitor at this frequency and use the definition of reactance to find the current. The impeding effect of capacitance C in an AC circuit with frequency f is called capacitive reactance. Capacitive reactance is defined by the following equation. 1 Xc = 2zfC For the maximum current I Imax Imax = = ΔV, = max Xc Substituting the expression for capacitive reactance and solving for the current gives ΔV. max Xc max = at applied voltage ΔV, AV max . (2πf) C V 2π mA. max' we have JH₂) ( Hz |x 10-6 F)A 2.6-k resistor and a 4.0-μF capacitor are connected in series to an ac source. Part A Calculate the impedance of the circuit if the source frequency is 55 Hz. Express your answer to two significant figures and include the appropriate units. Z = Submit Part B Z = 0 Submit Value Request Answer Calculate the impedance of the circuit if the source frequency is 10000 Hz. Express your answer to two significant figures and include the appropriate units. Value Units Request Answer 2 Units ?
- An RLC circuit is driven by an AC generator of frequency w. The generator voltage can be represented by Et) - Emax cos(ur) and the current by t) - max cos(wr-p). The peak generator voltage Emax, the peak current /max- and the phase angle p by which the generator EMF leads the current are given in the figure. R E- 20 V Ina = 2.3 A = +30 The average power dissipated by the resistor is:Please make sure your answer is 100% correct, thanks A 69 Ω resistor, an 7.4 μF capacitor, and a 32 mH inductor are connected in series in an ac circuit. Part A. Calculate the impedance for a source frequency of 300 Hz. Express your answer with the appropriate units. Part B. Calculate the impedance for a source frequency of 30.0 kHz. Express your answer with the appropriate units.Part A An inductance coil operates at 240 V and 60.0 Hz. It draws 13.2 A. What is the coil's inductance? Express your answer using three significant figures. L = Submit ΑΣΦ Request Answer P I ? HA resistor and an unknown device are connected in series with an AC generator as shown in the diagram below. The current lags behind the voltage of the generator by 69º. R www X (a) If the total impedance of the circuit is 223 , what is the value of the resistor in the circuit? Ω (b) What is the reactance of the device? ΩA 22-kN resistor is in series with a 56-mH inductor and Part A an ac source. Calculate the impedance of the circuit if the source frequency is 70 Hz . Express your answer to two significant figures and include the appropriate units. HÀ ? Z = Value Units Submit Request Answer Part B Calculate the impedance of the circuit if the source frequency is 8.1x104 Hz. Express your answer to two significant figures and include the appropriate units. HẢ Z = Value Units Submit Request AnswerPlease helpWhat is the capacitive reactance Xc of a 50.0 µF capacitor placed in an ac circuit driven at a frequency of f = 571 kHz? Xc =A capacitor (capacitance C₁) is connected across the terminals of an ac generator. Without changing the voltage or frequency of the generator, a second capacitor (capacitance C2) is added in series with the first one. As a result, the current delivered by the generator decreases by a factor of 5.00. Suppose the second capacitor had been added in parallel with the first one, instead of in series. By what factor would the current delivered by the generator have increased? Note: The ac current and voltage are rms values and power is an average value unless indicated otherwise.Please don't provide handwritten solution....SEE MORE QUESTIONS