
What is the approximate resistance setting of a rheostat in which $650$ mA of current flows with a $150$ V source?
Answer
452.4k+ views
Hint: Voltage is the charge difference between two positions. Current is the rate of charge flow. Resistance is a material's tendency to oppose the current. Ohm's law says that the current by a conductor between two locations is directly proportionate to the voltage across the two positions.
Complete step-by-step solution:
Given: Voltage, $V = 150 V$
Current, $I = 650 mA$
We will change the value of current from milliammeter to ammeter.
$I = 650 \times 10^{-3} A$
Potential difference is proportional to the current.
$V \propto I$
$V = IR$
We get,
$R = \dfrac{V}{I}$
Now, put the values of voltage and current in the above formula.
$R = \dfrac{150}{650 \times 10^{-3}}$
We get after solving,
$R = 0.2307 \times 10^{3} \Omega$
$\implies R = 230 \Omega$
Hence, the value of resistance setting of a rheostat in which $650$ mA of current flows with a $150 $ V source is $230 \Omega$.
Note:Ohm's law only holds if the given temperature and the other physical factors keep constant. In particular, components, rising the current increases the temperature. The light bulb's filament is an example of it, in which the temperature increases as the current is raised. In this case, Ohm's law cannot be implemented.
Complete step-by-step solution:
Given: Voltage, $V = 150 V$
Current, $I = 650 mA$
We will change the value of current from milliammeter to ammeter.
$I = 650 \times 10^{-3} A$
Potential difference is proportional to the current.
$V \propto I$
$V = IR$
We get,
$R = \dfrac{V}{I}$
Now, put the values of voltage and current in the above formula.
$R = \dfrac{150}{650 \times 10^{-3}}$
We get after solving,
$R = 0.2307 \times 10^{3} \Omega$
$\implies R = 230 \Omega$
Hence, the value of resistance setting of a rheostat in which $650$ mA of current flows with a $150 $ V source is $230 \Omega$.
Note:Ohm's law only holds if the given temperature and the other physical factors keep constant. In particular, components, rising the current increases the temperature. The light bulb's filament is an example of it, in which the temperature increases as the current is raised. In this case, Ohm's law cannot be implemented.
Recently Updated Pages
NCERT Solutions For Class 4 English Marigold (Poem) - Don’t Be Afraid Of The Dark

NCERT Solutions For Class 5 English Marigold (Poem) - Class Discussion

NCERT Solutions For Class 5 English Marigold - Gullivers Travels

NCERT Solutions For Class 5 Hindi Rimjhim - Bagh Aaya Uss Raat

NCERT Solutions For Class 8 Hindi Bharat Ki Khoj - Tanaav

NCERT Solutions For Class 12 Maths - Differential Equations

Trending doubts
Which are the Top 10 Largest Countries of the World?

Differentiate between homogeneous and heterogeneous class 12 chemistry CBSE

Why is the cell called the structural and functional class 12 biology CBSE

a Tabulate the differences in the characteristics of class 12 chemistry CBSE

Who discovered the cell and how class 12 biology CBSE

Draw a labelled sketch of the human eye class 12 physics CBSE
