Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN: 9780133923605
Author: Robert L. Boylestad
Publisher: PEARSON
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- Which of the following statements is true of an open component in a series circuit? a.. The circuit current will be higher than normal. b. The voltage drop across the component will be lower than normal. c. The voltage drop across the component will be higher than normal. d, The resistance of the component will be lower than normal.arrow_forwardIn an electrical circuit four resistors are connected in parallel and their equivalent resistance is 50ohms. Find the value of each resistors if the currents through each impedance are 0.8, 0.4, 0.6 and 0.2 ampere.arrow_forwardBased on Figures la,1b and 1c and RLC elements, write a discussion on voltage-current relations and power factor. Im A Im A Im A V Re Re Re Figure la. Figure 1b. Figure 1c.arrow_forward
- The images are attached with the question and circuit. Please include a drawing with the solution. Thank youarrow_forwardShow me how to approach this problem with steps pleasearrow_forwardC -Q (A) 0.25 uF 10V 2uF 4uF (B) Figure 3: 3. In Figure 3 the capacitors were discharged before being connected to the battery. (a) In Figure 3A the net positive charge delivered by the battery is +Q1 to C1 and a net negative charge -[Q2 + Q3] is delivered to C2 and C3 [-Q2 is delivered to C2 and -Q3 to C3]. From conservation of charge[net charge is zero since both the battery and the capacitors have a zero net excess charge] and path independence of the electric field[sum of voltages must add up to zero for a closed path or conservation of energy]: Q1 + (-Q2) + (-Q3) = 0 conservation of charge +%-왕-용 (True, False) = 0 conservation of energy +V - = 0 conservation of energy (b) If (a) is true then the charge Q1, Q2 and Q3 follow from above three equations as C1(C2 + C3) V Q2 = Ci + C2 + C3 C1 C3 Ci + C2 + C3 Q1 = Q3 = V, (True, False) C1 + C2 + C3 (c) In Figure 3A the net positive charge delivered by the battery is Qtot = Q1 = C1(C2+C3) v which implies an equivalent capacitance of Qtot…arrow_forward
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