Q2/ Calculate the value of the battery shown in the circuit below, given that the current value is 10mAmp and the resistance is 12 (R=(300×C). 1-10mAmp Vi=? R1-(300XC)
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- S3) Calculate the current IB, IC and voltage VCE in the circuit in the figure and examine whether it is conduction or not? (VBE=0,7V , β=80)A battery with an e.m.f of 12 V and negligible internal resistance is connected to a resistor of 500 ohm How much energy is dissipated by the resistor in 40 s?The circuits, P and Q, show two different ammeter-voltmeter methods of measuring resistance. Suppose the ammeter has a resistance of 0.10 ohms and the voltmeter has a resistance of 3.0 ohms; the ammeter reads 2.5 amps and the voltmeter reads 6.0 volts. What is the uncorrected value of the resistance in each case? What is the true value of the resistance in each case?
- The EMF of a battery is 4.2 volts and its internal resistance is 0.2 ohm. Its is connected to an external resistance of 0.9 ohm by means of lead wires of resistance 0.10 ohm. (a) Find the TPD of the battery. (b) what is the voltage across the external Resistance?The circuit below(left) displays a schematic diagram of a battery. The voltage measured by U1 is called the terminal voltage given R1 = 1 ohm. In the circuit below(right), the terminal voltage of each of the battery-resistor combination is VT = 1.5 volts. Find The percentage of power dissipation loss due to the four resistors R1, R2, R3, and R4.A battery with an f.e.m. of 12 V and negligible internal resistance is connected to a resistor of 545 How much energy is dissipated by the resistor in 65 s?
- consider the following circuit composed of four resistors and an ideal battery. each resistor has a resistance of 2.00 ohms. the battery has a terminal voltage of 30.0V. a.) what is the equivalent resistance of this circuit? b.) what is the equivalent current passing through this circuit? c.) what is the voltage drop across R1? d.) what is the current passing through R2?The circuit below(left) displays a schematic diagram of a battery. The voltage measured by U1 is called the terminal voltage given R1 = 1 ohm. In the circuit below(right), the terminal voltage of each of the battery-resistor combination is VT = 1.5 volts. Find the percentage of voltage loss of the battery due to the internal resistance R1.Since ?? = 4 V in the circuit in Figure 2, find the current ???
- 1. A PMMC instrument has internal resistance of 1.7kΩ andgives full scale deflection for 50μA. Calculate the required resistance value of multiplier resistors for employing the meter as a multi range voltmeter for voltage ranges of 10V, 50V and 100V.5.) A resistor has a resistance value of 20.0 ohms. a.) If it can handle a maximum of 5.00 watts of power, how much voltage can safely be applied to it? b.) What would be the current that flows through the resistor at this voltage, assuming an ideal battery with no internal resistance? c.) If the battery has an internal resistance of 5.0 ohms, what emf voltage would need to be applied in order to have the current found in the previous part of this question?Consider the circuit shown below.a. What is the terminal voltage of the battery? b. What is the potential difference across resistor R_2?