Consider the circuit below. Here we have ɛ1=3.0 Volt, 2=6.0 Volt, R1=R2=R=Rs=2.0 Q, R3=4.0 2. Detemine the intesities and directions of the currents going through R2, R3 ve R4. Take the intemal resistances of the batteries zero. Thereby, calculate the electric potential differences in between the edges of the given resistances. (Hint: R¡ and R2, also R4 and Rs are connected in series. Their equivalent resistances are the same. Under the circum stances, the currents created by the batteries of electromotorforce ɛz are counteracting each other. If so, the current going through them, is the same as the current going through R2.) ww w w www R4 R2 E2 R3 R5 E2 R1

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Consider the circuit below. Here we have ɛi=3.0 Volt, &=6.0 Volt, R1=R2=R=Rs=2.0 Q,
R3=4.0 Q. Detemine the intesities and directions of the currents going through R2, R3 ve R4.
Take the intemal resistances of the batteries zero. Thereby, calculate the electric potential
differences in between the edges of the given resistances. (Hint: R¡ and R2, also R4 and Rs are
connected in series. Their equivalent resistances are the same. Under the circum stances, the
currents created by the batteries of electromotorforce 82 are counteracting each other. If so, the
current going through them, is the same as the current going through R2.)
R2
R4
E2
R3
Rs
R1
Transcribed Image Text:Consider the circuit below. Here we have ɛi=3.0 Volt, &=6.0 Volt, R1=R2=R=Rs=2.0 Q, R3=4.0 Q. Detemine the intesities and directions of the currents going through R2, R3 ve R4. Take the intemal resistances of the batteries zero. Thereby, calculate the electric potential differences in between the edges of the given resistances. (Hint: R¡ and R2, also R4 and Rs are connected in series. Their equivalent resistances are the same. Under the circum stances, the currents created by the batteries of electromotorforce 82 are counteracting each other. If so, the current going through them, is the same as the current going through R2.) R2 R4 E2 R3 Rs R1
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