If you placed a load of 700 ohms on a circuit with a Thevenin resistance of 492 ohms and a Thevenin voltage of 14 volts, then what would be the voltage across the load? Express your answer in volts, to the nearest 1/10 of a volt.
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- What is the value of IT? (in amperes) What is the value of I2? (in amperes)3. The figure on the left below shows a schematic diagram of a battery. The voltage measured by U1 is called the terminal voltage given R1 = 1 ohm. In the figure on the right below, the terminal voltage of each of the battery-resistor combination is Vr = 1.5 volts. Find the following: a. The current passing through R5. b. The currents passing through R1 and R3 C. The voltage across R1. d. The voltage of the battery EMF. e. The percentage of voltage loss ot the battery due to the internal resistance R1. The power dissipated by the internal resistance R1. g. The power dissipated by R5 if R1 = R2 = R3 = R4 = 0. h. The percentage of power dissipation loss due to the four resistors R1, R2, R3, and R4 f. R1 R3 S10 R1 U1 1.500 EMF EMF R5 100 V1 R2 $10 EMF R4 EMF EMFA resistor has a resistance of 20 ohms at 30 degrees Celsius and 32 ohms at 90 degrees Celsius. Find its resistance at 125 degrees Celsius. Determine also the temperature coefficient at 100 degrees Celsius. (Please Show Complete solution and write properly) (Round off the final answer to the 4th decimal if possible and box the final answer)
- Analyze the scale divisions and determine the experimental error for the measurements, and enter it along with its units into table 5. Based on the value of the experimental error estimate the value of the "Volts" measurement Round your estimate to the correct number of significant figures, and enter this value into table 5. Below you are given the read-out from a voltmeter. Table 5 Volts Volts Error Value Value > Units > volts volts volts 4 6. 10- What is the output voltage vo in volts? - What is the voltage v2 across R2 in volts? - What is the current i3 through R3 in amperes? - What is the power dissipated by R4 in mW (milliwatt)?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
- A question from the Matallb I want a solution in half an hour.Find the current in the given figure. Let R₁ = 2 ohm, R2 = 3 ohm, R3 = 6 ohm, and Va = 12V. Will rate! Please answer in typing formatthe value of the current in each fiqure below, the values being 9s shown. Acircuit is Sranged qs indicated in the Calculate branch and its obre a relative to the Supply voltage san 200, SOHZ
- In a 100 volt circuit with a resistance of 25 ohms, the current flowing through the circuit is which of the following: a. 1.25 amps b. 2.5 amps c. 4 amps d. 5 amps14. A 6-V lead-acid battery has an A-hr rating of 180 A-hr. The battery is to be load-tested. What should be the test current, and what are the maximum permissible amount and duration of the voltage drop?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 N