A battery with a potential difference of 56.3 V is connected to the chain, with one terminal connected to point a and the other connected to point b. What is the current (in A) in each resistor?
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3 V is connected, we need to know the configuration of the resistors (series or parallel) and their individual resistances. However, since that information is not provided, I will outline the steps assuming a simple series circuit with two resistors, R1 and R2. ** Show more…
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The figure below shows a network of connected resistors between points a and b. The resistance of each is given in the figure. (a) What is the equivalent resistance (in ΓΉ) of the entire network between points a and b? (b) A battery with a potential difference of 56 V is connected to the network, with one terminal connected to point a and the other connected to point b. What is the current (in A) in each resistor? 12.0 ΓΉ 6.00 ΓΉ 5.00 ΓΉ 4.00 ΓΉ 8.00 ΓΉ
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$\begin{array}{lll}\text { In } & \text { Fig. } & 27-35, & R_{1}=100 \Omega,\end{array}$ $R_{2}=50 \Omega,$ and the ideal batteries have emfs $\mathscr{E}_{1}=6.0 \mathrm{~V}, \mathscr{E}_{2}=5.0 \mathrm{~V},$ and $8_{3}=4.0 \mathrm{~V} .$ Find (a) the current in resistor $1,$ (b) the current in resistor 2 and (c) the potential difference between points $a$ and $b$.
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