🔍
Where is Ohms law not applicable?
0 like 0 dislike

Related questions

0 like 0 dislike
5 views 0 answers
× Full Screen Image

Why Ohm's law is not applicable for nonlinear circuit?
Answer : Ohm's law states that the voltage across a conductor is directly proportional to the current flowing through it, with the proportionality constant being the resistance, i.e., \( V = IR \), where \ ... the voltage and current do not have a fixed, proportional relationship, so Ohm's law doesn't apply....

View solution
0 like 0 dislike
11 views 1 answer
× Full Screen Image

Why Ohms law is not applicable at very low temperature?

View solution
0 like 0 dislike
10 views 0 answers
× Full Screen Image
0 like 0 dislike
5 views 0 answers
× Full Screen Image

Why Ohms law is not applicable at variable temperature?
Answer : Ohm's law, which states that \( V = IR \) (where \( V \) is voltage, \( I \) is current, and \( R \) is resistance), assumes that the resistance \( R \) of a ... variable. Instead, you need to account for how resistance changes with temperature in order to understand the behavior of the material....

View solution
0 like 0 dislike
15 views 1 answer
× Full Screen Image
0 like 0 dislike
11 views 0 answers
× Full Screen Image

In which case Ohm's law is not applicable?
Answer : Ohm's Law, which states that \( V = IR \) (voltage = current resistance), is not applicable in the following cases: 1. **Non-linear materials**: Ohm's Law assumes that the ... cases, the relationship between voltage and current is more complex and cannot be described simply by Ohm's Law....

View solution
0 like 0 dislike
10 views 1 answer
× Full Screen Image

Why Ohm's law is not applicable at very low temperature?
Answer : Ohm's law, which states that \( V = I \times R \) (where \( V \) is the voltage, \( I \) is the current, and \( R \) is the resistance), is ... because the behavior of materials, especially their resistance, changes due to quantum effects, superconductivity, and altered electron scattering....

View solution
0 like 0 dislike
6 views 1 answer
× Full Screen Image
0 like 0 dislike
7 views 0 answers
× Full Screen Image
0 like 0 dislike
2 views 0 answers
× Full Screen Image

Where is Thevenin theorem not applicable?
Answer : Thevenin's theorem is a powerful tool used to simplify complex linear electrical circuits to make analysis easier. However, there are certain situations where Thevenin's theorem is not applicable or not ... **Mesh or Nodal Analysis**, or **Laplace Transform methods** might be more appropriate....

View solution
0 like 0 dislike
5 views 1 answer
× Full Screen Image

Where is the Norton theorem not applicable?
Answer : Norton's Theorem is a powerful tool used in circuit analysis, but there are certain situations where it may not be applicable or may not provide the most useful ... configurations, transient conditions, or situations involving mutual inductance without further modifications or considerations....

View solution
0 like 0 dislike
8 views 1 answer
× Full Screen Image
0 like 0 dislike
4 views 0 answers
× Full Screen Image
0 like 0 dislike
2 views 0 answers
× Full Screen Image

Is Ohm's law applicable to metallic conductors?
Answer : Yes, Ohm's law is generally applicable to metallic conductors under certain conditions. Ohm's law states that the current flowing through a conductor is directly proportional to the voltage across ... under normal conditions**, but at very high temperatures or voltages, deviations can occur....

View solution
0 like 0 dislike
11 views 1 answer
× Full Screen Image

Is Ohms law applicable everywhere?
Answer : Ohm's Law is a fundamental principle that describes the relationship between voltage (V), current (I), and resistance (R) in electrical circuits, expressed as: \[ V = I \times R \] However, ... , there are specific situations (non-linear materials, high voltages, etc.) where it doesn't hold true....

View solution
0 like 0 dislike
6 views 1 answer
× Full Screen Image

Which conductors do not obey Ohms law?
Answer : Not all conductors obey Ohm's Law. Ohm's Law states that the current passing through a conductor is directly proportional to the voltage across it and inversely proportional to its resistance (I = ... , the current and voltage do not have a simple proportional relationship like Ohm's Law suggests....

View solution
0 like 0 dislike
17 views 1 answer
× Full Screen Image
0 like 0 dislike
4 views 0 answers
× Full Screen Image
0 like 0 dislike
7 views 0 answers
× Full Screen Image
0 like 0 dislike
10 views 0 answers
× Full Screen Image
0 like 0 dislike
4 views 0 answers
× Full Screen Image
0 like 0 dislike
5 views 0 answers
× Full Screen Image

Under what conditions Ohm's law is not obeyed in a conductor Class 12?

View solution
0 like 0 dislike
16 views 0 answers
× Full Screen Image
0 like 0 dislike
20 views 0 answers
× Full Screen Image
0 like 0 dislike
14 views 0 answers
× Full Screen Image
0 like 0 dislike
5 views 0 answers
× Full Screen Image
0 like 0 dislike
9 views 0 answers
× Full Screen Image
0 like 0 dislike
5 views 0 answers
× Full Screen Image
0 like 0 dislike
2 views 0 answers
× Full Screen Image
0 like 0 dislike
6 views 0 answers
× Full Screen Image
0 like 0 dislike
8 views 0 answers
× Full Screen Image
0 like 0 dislike
12 views 0 answers
× Full Screen Image

What is not an application of Ohm's law?
Answer : Ohm's law states that the current flowing through a conductor is directly proportional to the voltage across it and inversely proportional to its resistance. Mathematically, it's expressed as: \ ... **. These scenarios require different methods or equations to analyze the behavior of the circuit....

View solution
0 like 0 dislike
5 views 1 answer
× Full Screen Image
0 like 0 dislike
5 views 0 answers
× Full Screen Image
0 like 0 dislike
19 views 0 answers
× Full Screen Image

Under what conditions is Ohms law not obeyed?
Answer : Ohm's law states that the current through a conductor is directly proportional to the voltage across it, and inversely proportional to its resistance, i.e., \( I = \frac{V}{R} \), where ... resistance, or other complex effects (like in high-frequency or very high electric fields) come into play....

View solution
0 like 0 dislike
11 views 1 answer
× Full Screen Image
0 like 0 dislike
5 views 0 answers
× Full Screen Image

What devices do not follow Ohms law?
Answer : Devices that do not follow Ohm's law are called **non-ohmic devices**. These devices have a **non-linear relationship** between voltage and current, meaning the current does not change ... doesn't apply because their resistance isn't constant-it changes with voltage, current, or temperature....

View solution
0 like 0 dislike
14 views 1 answer
× Full Screen Image
0 like 0 dislike
7 views 0 answers
× Full Screen Image
0 like 0 dislike
14 views 0 answers
× Full Screen Image
0 like 0 dislike
7 views 0 answers
× Full Screen Image

Why is Ohm's law not a universal law class 12?
Answer : Ohm's Law is not considered a universal law because it only applies to certain types of materials and conditions. It states that the current through a conductor is directly proportional to the ... . It works within specific limits, and outside of those limits, other factors must be considered....

View solution
0 like 0 dislike
6 views 1 answer
× Full Screen Image
0 like 0 dislike
6 views 0 answers
× Full Screen Image
0 like 0 dislike
15 views 0 answers
× Full Screen Image
0 like 0 dislike
14 views 0 answers
× Full Screen Image

Where is Ohms law invalid?
Answer : Ohm's Law, which states that \( V = I \times R \) (where \( V \) is voltage, \( I \) is current, and \( R \) is resistance), is a fundamental principle in ... of electrical components and materials is more complex and cannot be described by a simple linear relationship between voltage and current....

View solution
0 like 0 dislike
15 views 1 answer
× Full Screen Image
0 like 0 dislike
3 views 0 answers
× Full Screen Image
0 like 0 dislike
13 views 0 answers
× Full Screen Image

Where is Ohm's law used?
Answer : Ohm's Law is used in many areas of electrical and electronics engineering. It's fundamental for understanding how electrical circuits behave. Here's a breakdown of some key applications: 1 ... foundational principle that makes it easier to work with electricity in a controlled and predictable way....

View solution
0 like 0 dislike
16 views 1 answer
× Full Screen Image

Why KVL and KCL are not applicable at high frequency?

View solution
0 like 0 dislike
4 views 0 answers
× Full Screen Image
Learn Electrical Engineering the easy way at Electrical-Engineering.app – tutorials, tools, calculators, and video lessons for students, professionals, and beginners.

Subjects

29.4k questions

9.2k answers

7.9k users