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- What is ammeter reading and value of R. Ammeter is ideal(given).The following figure shows: 2Ix Oa. A dependent current controlled current source Ob.A dependent current controlled voltage source OC. A dependent voltage controlled current source Od.A dependent voltage controlled voltage source +1D3 D1 V1 sine R1 1 kHz D2 D4 Given: • V1 = 5.9 Vrms • R1 = 7 kOhm • Diode voltage = 0.9 V What is the maximum voltage across resistor R1 (in V)?
- Examine the circuit shown below. For each of the following elements, state how much power they absorb from or deliver to the circuit? (a) The 10 V source (b) The 3 V source (c) The 5500 Ohm resistor (d) The diode 10.0 V 2.89 mA O 3.00 V -1.17 mA 562 mV -1.72 mA12. Three resistances of 8, 12, and 24 ohms are in parallel. This combination is in series with an- other parallel combination of 10, 10, and 20 ohms. The whole combination is then connected to a battery of EMF 16.6 volts. If the current through the 20-ohm resistor is 0.4 ampere, (a) what is the internal resistance of the battery? (b) What is the current through the 12-ohm resistor? (c) What is the TPD of the battery?the voltage that would be developed across a 50 ohm load connected to the terminals of a battery with 20 V no load terminal voltage and 5 ohm internal resistance is?
- Part A What must the emf E in the figure (Figure 1) be in order for the current through the 7.00 N resistor to be 1.65 A ? Each emf source has negligible internal resistance. Express your answer with the appropriate units. E = Value Units Submit Request Answer Figure Provide Feedback Next > 24.0 V Ţ §7.00 $2.00 3.00 NA galvenometer has full scale current of 20 (mA) and has a meter resistance of 2000 (ohm). To increase the range of galvanometer we add a shunt resistance of 200(ohm). What is value of multiplying factor?Four cells each of 2.10 volt internal emf are parallel connected together to make a battery. The internal resistances are 0.004, 0.005, 0.003 and 0.0025 ohm. Calculate for parallel connections: (a) internal emf and resistance of the single equivalent cell (b) current for a terminal voltage of 1.95 volts, (c)current in each cell