1. Convert 3.24KW-Hr to (a) BTU per hour (c) Cal. per sec (b) N.m (d) kJ 2. The voltage across any part of a circuit is equal to the resistance in Ohms. of the current in amperes and the 3. In a series circuit the current is the equal to the in any part of the circuit and the total emf (source) is of the voltages across each resistor

Introductory Circuit Analysis (13th Edition)
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1. Convert 3.24kW-Hr to
(a) BTU per hour
(c) Cal. per sec
(b) N.m
(d) kJ
2. The voltage across any part of a circuit is equal to the
resistance in Ohms.
of the current in amperes and the
3. In a series circuit the current is the.
equal to the
in any part of the circuit and the total emf (source) is
of the voltages across each resistor
4.
System efficiency when maximum power is transferred or delivered is
, i.e. power output
to power losses.
(а) 60%.
(c) 50%.
(b) 150%.
(d) 200%.
5. In parallel circuit the emf across each resistor is the
of all branch currents
and the total current is equal to the
6. Express 3,600,000 kJoules to
(а) BTU
(b) Calories
7. Ohm's Law states that, for a steady current, the current in a circuit is
total emf acting in the circuit and is
proportional to the
proportional to the total resistance.
8.
is the rate of doing work, or rate of expenditure of energy, and its unit is
Transcribed Image Text:1. Convert 3.24kW-Hr to (a) BTU per hour (c) Cal. per sec (b) N.m (d) kJ 2. The voltage across any part of a circuit is equal to the resistance in Ohms. of the current in amperes and the 3. In a series circuit the current is the. equal to the in any part of the circuit and the total emf (source) is of the voltages across each resistor 4. System efficiency when maximum power is transferred or delivered is , i.e. power output to power losses. (а) 60%. (c) 50%. (b) 150%. (d) 200%. 5. In parallel circuit the emf across each resistor is the of all branch currents and the total current is equal to the 6. Express 3,600,000 kJoules to (а) BTU (b) Calories 7. Ohm's Law states that, for a steady current, the current in a circuit is total emf acting in the circuit and is proportional to the proportional to the total resistance. 8. is the rate of doing work, or rate of expenditure of energy, and its unit is
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