• Example: let's draw the phasor diagram for VS, IŠ, VR and V₁: 'S' S v = 750 cos (5t +30°) V + L = 24H + VL - Vs + + VR. R = 909
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A: The transfer function is G(s)=s2+625625
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- In alternating current, AC, theory, the voltage through an inductor leads the current by a phase angle of 90°. Complex numbers can help in this situation as when a real number is multiplied by i it rotates through 90° on the Argand diagram, with the magnitude remaining the same. This allows us to specify the impedance through an inductor as a complex number. This can be combined with a resistor to give a combined impedance of z = r + Li. If we have two such elements in a circuit, we can use complex numbers to determine the total impedance when they are in series and in parallel. In series Zt = Z1 + Z2 In ParallelIn alternating current, AC, theory, the voltage through an inductor leads the current by a phase angle of 90°. Complex numbers can help in this situation as when a real number is multiplied by i it rotates through 90° on the Argand diagram, with the magnitude remaining the same. This allows us to specify the impedance through an inductor as a complex number. This can be combined with a resistor to give a combined impedance of z = r + Li. If we have two such elements in a circuit, we can use complex numbers to determine the total impedance when they are in series and in parallel. In series Zt = Z1 + Z2 In Parallel Add the following two impedances (a) in series and (b) in parallel. Z1 = 4 + 3i and Z2 = 12 + 5i#18 please choose the correct answer
- Please disregard the question on the picture. Here's the right question, at what frequency will the value of the impedance be twice that at 25Hz (refer to the given in question #20).Please answer correctly. Thank youA certain element has a phasor voltage of V = 200/30 V and current of I = 6Z120 A The angular frequency is 500 rad/s. Determine the nature of the element. The element is an inductance. • The element is a capacitance. The element is a resistance Previous Answers v Correct