earning Portal Courses Reports - e-Services - Academic Departments - ETC CIMS - During an experiment to verify Ohm's law, the voltage supplied and the current through a circuit are measured. [Voltage is measured in Volt (V) and current in Ampere (A)]. ww R Battery The measured value of the current is I = 3.5 ± 0.1 A and that of the voltage is V = 13 + 0.5 V. The resistance of the circuit (in Q) can be calculated using the formula, R = V/I, Calculate the, a) Resistance (in Q) = b) Fractional uncertainty in the resistance = C) Absolute uncertainty (in Q) in the resistance=
earning Portal Courses Reports - e-Services - Academic Departments - ETC CIMS - During an experiment to verify Ohm's law, the voltage supplied and the current through a circuit are measured. [Voltage is measured in Volt (V) and current in Ampere (A)]. ww R Battery The measured value of the current is I = 3.5 ± 0.1 A and that of the voltage is V = 13 + 0.5 V. The resistance of the circuit (in Q) can be calculated using the formula, R = V/I, Calculate the, a) Resistance (in Q) = b) Fractional uncertainty in the resistance = C) Absolute uncertainty (in Q) in the resistance=
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Ohm's law
Ohm’s law is a prominent concept in physics and electronics. It gives the relation between the current and the voltage. It is used to analyze and construct electrical circuits. Ohm's law states that the voltage across a conductor is directly proportional to the current flowing through it.
Path of Least Resistance
In a series of alternate pathways, the direction of least resistance is the actual or metaphorical route that offers the least resistance to forwarding motion by a given individual or body.
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![earning Portal
Courses
Reports -
e-Services -
Academic Departments -
ETC
CIMS -
During an experiment to verify Ohm's law, the voltage supplied and the current through a circuit are measured. [Voltage is measured in
Volt (V) and current in Ampere (A)].
ww
R
Battery
The measured value of the current is I = 3.5 ± 0.1 A and that of the voltage is V = 13 + 0.5 V. The resistance of the circuit (in Q) can be
calculated using the formula, R = V/I,
Calculate the,
a) Resistance (in Q) =
b) Fractional uncertainty in the resistance =
C) Absolute uncertainty (in Q) in the resistance=
Finish atten](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F20d36513-4cc6-4634-9c31-8dbdd6d67134%2Fdec0991d-e1e4-4d92-8e9d-e853122217a7%2F1xa9we_processed.jpeg&w=3840&q=75)
Transcribed Image Text:earning Portal
Courses
Reports -
e-Services -
Academic Departments -
ETC
CIMS -
During an experiment to verify Ohm's law, the voltage supplied and the current through a circuit are measured. [Voltage is measured in
Volt (V) and current in Ampere (A)].
ww
R
Battery
The measured value of the current is I = 3.5 ± 0.1 A and that of the voltage is V = 13 + 0.5 V. The resistance of the circuit (in Q) can be
calculated using the formula, R = V/I,
Calculate the,
a) Resistance (in Q) =
b) Fractional uncertainty in the resistance =
C) Absolute uncertainty (in Q) in the resistance=
Finish atten
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