Four resistors are connected to a battery with a terminal voltage of 12 V, as shown in the figure below. (Assume R1 = 35.0 Ω and R2 = 75.0 Ω.) A circuit consists of two adjacent square loops, one above the other. The top side contains a resistor labeled R1 to the left of a resistor labeled 50.0 Ω. The shared center side contains a resistor labeled R2. The bottom side contains a resistor labeled 20.0 Ω to the left of a 12 V battery. Its positive terminal is to the right of its negative terminal. (a) How would you reduce the circuit to an equivalent single resistor connected to the battery? Use this procedure to find the equivalent resistance of the circuit. Ω (b) Find the current delivered by the battery to this equivalent resistance. A (c) Determine the power delivered by the battery. W (d) Determine the power delivered to the 50.0-Ω resistor. W
Four resistors are connected to a battery with a terminal voltage of 12 V, as shown in the figure below. (Assume R1 = 35.0 Ω and R2 = 75.0 Ω.) A circuit consists of two adjacent square loops, one above the other. The top side contains a resistor labeled R1 to the left of a resistor labeled 50.0 Ω. The shared center side contains a resistor labeled R2. The bottom side contains a resistor labeled 20.0 Ω to the left of a 12 V battery. Its positive terminal is to the right of its negative terminal. (a) How would you reduce the circuit to an equivalent single resistor connected to the battery? Use this procedure to find the equivalent resistance of the circuit. Ω (b) Find the current delivered by the battery to this equivalent resistance. A (c) Determine the power delivered by the battery. W (d) Determine the power delivered to the 50.0-Ω resistor. W
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Four resistors are connected to a battery with a terminal voltage of 12 V, as shown in the figure below. (Assume R1 = 35.0 Ω and R2 = 75.0 Ω.)
A circuit consists of two adjacent square loops, one above the other.
The top side contains a resistor labeled R1 to the left of a resistor labeled 50.0 Ω.
The shared center side contains a resistor labeled R2.
The bottom side contains a resistor labeled 20.0 Ω to the left of a 12 V battery. Its positive terminal is to the right of its negative terminal.
(a) How would you reduce the circuit to an equivalent single resistor connected to the battery? Use this procedure to find the equivalent resistance of the circuit.
Ω
(b) Find the current delivered by the battery to this equivalent resistance.
A
(c) Determine the power delivered by the battery.
W
(d) Determine the power delivered to the 50.0-Ω resistor.
W
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