Final answer:
The total resistance of the circuit is 6 ohms. The current in the circuit is 2 amps. The power of each bulb is 24 watts. The power supplied by the battery is 24 watts.
Step-by-step explanation:
a. Calculating the total resistance:
To find the total resistance of a series circuit, you need to add up the individual resistances. In this case, the circuit contains two 3-ohm bulbs in series, so the total resistance is 3 ohms + 3 ohms = 6 ohms.
b. Calculating the current:
To calculate the current in a series circuit, you need to use Ohm's Law: I = V / R, where I is the current, V is the voltage, and R is the resistance. Since the voltage of the battery is 12 volts and the total resistance is 6 ohms, the current is I = 12 V / 6 ohms = 2 amps.
c. Calculating the power of each bulb:
To calculate the power of each bulb, you can use the equation P = I × V, where P is the power, I is the current, and V is the voltage. Since the current flowing through each bulb is the same as the current in the circuit (2 amps) and the voltage across each bulb is the same as the voltage of the battery (12 volts), the power of each bulb is P = 2 A × 12 V = 24 watts.
d. Calculating the power supplied by the battery:
The power supplied by the battery can be calculated using the equation P = I × V, where P is the power, I is the current, and V is the voltage. In this case, the current is 2 amps and the voltage is 12 volts, so the power supplied by the battery is P = 2 A × 12 V = 24 watts.