Given:
The resistance of the electric blanket, R_b=14.1 Ω
The resistance of the tv, R_t=26.1 Ω
The resistance of the light bulb, R_l=34.5 Ω
The supply voltage, V=113 V
To find:
a. Equivalent resistance of the circuit.
b. The total current in the circuit.
c. The current through the electric blanket.
Step-by-step explanation:
a. The equivalent resistance of the resistors that are connected in parallel is given by,
![R_(eq)=(R_bR_tR_l)/(R_bR_t+R_bR_l+R_tR_l)](https://img.qammunity.org/2023/formulas/physics/college/efalwayjab4kc7j47r6yrymj4rxjkf1xel.png)
On substituting the known values,
![\begin{gathered} R_(eq)=(14.1*26.1*34.5)/(14.1*26.1+14.1*34.5+26.1*34.5) \\ =7.20\text{ }\Omega \end{gathered}](https://img.qammunity.org/2023/formulas/physics/college/d43obw66f5v11rn3dz7mpjhg3mtsqhn11s.png)
b.
From Ohm's law, the potential difference in the circuit is given by,
![V=IR_(eq)](https://img.qammunity.org/2023/formulas/physics/college/bl148p4zb5grzd7sfj8z10nu09vzqrmbr2.png)
Where I is the total current in the circuit.
On substituting the known values,
![\begin{gathered} 113=I*7.2 \\ \implies I=(113)/(7.2) \\ =15.7\text{ A} \end{gathered}](https://img.qammunity.org/2023/formulas/physics/college/8020194m667terip3le7qsqk9uimvemi30.png)
c.
As the electric blanket is connected in parallel, the potential difference across it is V.
Thus, from Ohm's law,
![V=I__bR_b](https://img.qammunity.org/2023/formulas/physics/college/16uh4hx7i92deh2x9e3mrg4q81mp8uksgt.png)
On substituting the known values,
![\begin{gathered} 113=I_b*14.1 \\ \implies I_b=(113)/(14.1) \\ =8.01\text{ A} \end{gathered}](https://img.qammunity.org/2023/formulas/physics/college/xuskzfl5a37ozaw04ycg7kcxwwv9raazcy.png)
Final answer:
a. The equivalent resistance of the circuit is 7.20 Ω
b. The total current in the circuit is 15.7 A
c. The current through the electric blanket is 8.01 A