Unit of Resistance: Definition, Dimension, Formula

Jasmine Grover logo

Jasmine Grover

Education Journalist | Study Abroad Lead

The unit of resistance is ohm denoted by the symbol Ω. ​Resistance is the opposition created by a substance against the flow of current. Resistance is expressed by the ratio of the voltage applied to the electric current that flows through it. When an electric current flows through a bulb, the bulb provides some obstructions to the flow of current which is known as electrical resistance. 

Key Terms: Resistor, SI Unit of Resistance, Unit of Resistivity, Unit of Specific Resistance, Ohm Unit, Ohm’s law, Bulb, Resistance, Conductor, Electric current


Definition of Resistance: Ohm’s Law

[Click Here for Sample Questions]

According to Ohm’s law, the electric current flowing through a conductor is proportional to the potential difference between the two ends of the conductor.

  • Ohm’s law holds true only if we keep all other physical quantities and temperatures constant.
  • The potential difference is written as V, and the current passing through the conductor is represented by I. 
  • The unit of resistance is Ohm which also is derived using Ohm’s law.
  • The resistance of a conducting wire depends upon the constituent material's physical state and composition.

So:

V∝ I

VI = R, 
VI = Constant R = Resistance of the conducting wire

Ohm's Law

Ohm’s Law

Discover about the Chapter video:

Current Electricity Detailed Video Explanation:

Also Check Out:


SI Unit of Resistance

[Click Here for Previous Year Questions]

The SI unit of resistance is Ohm(Ω), which is represented as Volt per Ampere.

  • The resistance of the conductor will be 1 Ohm if 1 A of current flows through the ends of a conductor when the two ends are kept at 1 V of potential difference.
  • The SI unit of resistance is Ohm (Ω) named after George Ohm.
  • Based on the above equation, it can be defined as:

1Ω = \(1V \over 1A \)

  • In terms of fundamental units, Ohm can be expressed as Ω = J/S. A2 = kg. M2. s-3. A-2
  • The dimensional formula of Ohm is [ML2T-3I-2].

\(\Omega = {V \over A}= {1 \over S}= {W \over A^2}= {V^2 \over W}= {s \over F}= {J.s \over C^2}= {kg.m^2 \over s.C^2}= {J \over s.A^2}= {kg.m^2 \over s^3.A^2}\)

  • in which A = ampere
  • S = siemens
  • V = volt
  • W = watt
  • s = second
  • m = metre
  • J = joule
  • F = farad 
  • kg = kilogram 
  • C = coulomb

The video below explains this:

Resistance Formula Detailed Video Explanation:


SI Unit of Conductance

[Click Here for Sample Questions]

Electrical conductance is referred to as the reciprocal of resistance which is a property of a material and it quantifies how easily the current can conduct through the material. The SI unit of conductance in siemens (S) or mho, which is the inverse of ohm, is the SI unit of electrical resistance.

mho = 1/Ohm = A/V

Read More: Unit of Resistance Important Questions


Specific Resistance

[Click Here for Previous Year Questions]

A conductor’s resistance R relies on its length L, cross-section A, and its composition. The resistance is proportional to the length of the conductor for a fixed cross-section. While the resistance is inversely proportional to the cross-section for a fixed length. It can be written as,

R \(\propto\) L/A

R = pL/A

Here, length and cross-sectional area are proportionality constant, which is known as the specific resistance. The resistance of a homogeneous material of unit length and unit cross-section is defined as the resistivity or specific resistance of that material. Quantitatively, 

p = RA/L

The SI unit of specific resistance is Ohm (Ω. m).


Popular Resistance Units

[Click Here for Sample Questions]

Some useful conversion units of resistance are – 

Unit  Conversions to Ohm
Kilo ohm (k Ω) 1 K Ω (Kilo Ohm) = 103 Ω
Mega ohm (M Ω) 1 M Ω (Mega Ohm) = 106 Ω
Stat ohm (stat Ω ) 1 stat Ω (stat Ω) = 9 X 1011 Ω
emu resistance 1 emu of resistance = 10-9 Ω

Check out:


Things to Remember

  • The physical quantity resistance is dependent on temperature, resistance increases with increasing the temperature.
  • Zero resistance is recorded for superconductors.
  • Ohm is the unit of resistance.
  • In terms of fundamental units, Ohm can be expressed as Ω = J/ S. A2 = kg. M2. s-3. A-2
  • The dimensional formula of Ohm is [ML2T-3I-2].
  • Ohm's law states that the current flowing through two points of a conductor is directly proportional to the voltage across two points.
  • The resistance of a homogeneous material of unit length and unit cross-section is defined as the resistivity or specific resistance of that material. Quantitatively, p = RA/L.

Previous Year Questions

  1. The resistance of a wire is ′R′ ′ ohm. If it is melted and stretched to ′n′ times its original length, its new resistance will be… [NEET 2017]
  2. If the ammeter has a coil of resistance 480ohm and a shunt of 20ohm , the reading in the ammeter will be… [NEET 2015]
  3. If both the coils are connected in parallel, the time taken by the same quantity of water to boil will be… [NEET 2003]
  4. The internal resistance of the battery is… [NEET 2011]
  5. An aluminium rod and a copper rod are taken such that… [DUET 2007]
  6. In the adjacent shown circuit, a voltmeter of internal resistance… [BITSAT 2009]
  7. A wire of resistance 12 ohm is in the form of a circle… [JIPMER 1999]
  8. A cell of constant emf first connected to a resistance… [BITSAT 2006]
  9. In an a.c. circuit the e.m.f. (∈) and the current (i) at any instant… [NEET 2008]
  10. A circuit contain two resistors R1 and R2 in series… [JIPMER 2019]
  11. Which of the following Material has lowest resistivity… [UPSEE 2016]
  12. Specific resistance of a conductor material increases with… [COMEDK UGET 2009]
  13. Two resistances A and B have colour codes orange, blue, white and brown… [COMEDK UGET 2015]
  14. In the circuit shown the equivalent resistance between A and B is
  15. Two batteries of emf 4V and 8V with internal resistance
  16. A material B has twice the specific resistance of
  17. The length of a conductor is halved. Its conductivity will be
  18. The masses of three copper wires are in the ratio
  19. To increase the range of an ammeter, we need to connect a suitable
  20. Two electric bulbs, one of 200V, 40W and the other of

Sample Questions

Ques. What is the S.I. unit of resistance? (1 mark)

Ans. The S.I. unit of resistance is ohm which is symbolized by \(\Omega\).

Ques. What is the CGS unit of Resistance? (1 mark)

Ans. The CGS unit of resistance is stat ohm or stat ?.

Ques. What is specific resistance? (2 marks)

Ans. The resistance offered per unit length and unit cross-sectional area when a known amount of voltage is applied is called specific resistance. The specific resistance is also known as resistivity.

Ques. What is the specific resistance of copper? (1 mark)

Ans. Copper is a good conductor of electricity. The specific resistance of copper is 1.72 X 10-8 Ohm meter.

Ques. Name the material having a resistance of almost zero. (1 mark)

Ans. The superconductors have zero resistance.

Ques. How can we reduce the resistance? (2 marks)

Ans. The resistance can be reduced by increasing the cross-sectional area of a cord. As the resistance is inversely proportional to the cross-sectional area.

Ques. What will happen to the resistivity of a wire if the cross-sectional area is doubled keeping the resistance and length constant? (2 marks)

Ans. The resistivity of the wire is directly proportional to the cross-sectional area. So, on increasing the cross-sectional area by double, resistivity will also increase by double.

Ques. What is the reciprocal of resistivity? (1 mark)

Ans. The conductivity is considered the reciprocal of resistivity.

Ques. What happens to the resistance of pure metals with an increase in temperature? (1 mark)

Ans. On increasing the temperature of a metal, the resistance of the pure metal will also increase.

Ques. What is meant by a unit of resistance? (2 marks)

Ans. TheSI unit of resistance is Ohm is referred to as a resistance of a conductor when a current of 1A flows through it because of a potential difference of 1 V. The resistance of a column of mercury having a temperature of melting ice, uniform cross-sectional area, length, and mass of 106.3 cm and 14.4521 g respectively, is called 1 Ohm.

Ques. In an electric circuit, a current of 4.00 A flows through a resistor. The voltage drop which takes place from one end of the resistor to the other happens to be 120 V. Find out the value of resistance? (3 Marks)

Ans. By applying the resistance formula,

R = VI

Thus, R = 120V/4A

R = 30.O Ω

Therefore, the resistance of the resistor in the circuit is 30.0 Ω.

Ques. If you were to place a 220 Ω, 100 Ω,  and 470 Ω resistor in series, what should the effective resistance be? (2 Marks)

Ans. In series, the resistances are simply added, so the effective resistance would be:

Reff​ = 220 + 100 + 470 = 790 Ω

For Latest Updates on Upcoming Board Exams, Click Here: https://t.me/class_10_12_board_updates


Check-Out: 

CBSE CLASS XII Related Questions

  • 1.
    Read the following paragraph and answer the questions that follow.
    In an experiment with convex lens of focal length f, the screen is fixed at a distance D from the object. A student slowly moves the lens away from the object towards the screen and finds that she is able to form sharp image of the object for two positions of the lens. The distance between these two positions of the lens is d.


      • 2.
        A student sets up the circuit as shown in the figure to find the value of unknown resistance X and records a set of readings of the voltmeter and the ammeter by using the rheostat.


          • 3.
            A charged particle $+q$ in an electric field $\vec{E}$ experiences a force in the direction of the electric field. As a result, its kinetic energy changes. Similarly, the charged particle also experiences a force when it moves in a magnetic field $\vec{B}$. But this magnetic force is perpendicular to both velocity $\vec{v}$ of the charged particle and the magnetic field $\vec{B}$, so it cannot change the kinetic energy of the charged particle. Consider two charged particles 1 and 2 of masses $m$ and $\frac{m}{2}$ having charges $-q$ and $+2q$ respectively. They are accelerated from rest through the same potential difference $V$ and acquire kinetic energy $K_1$ and $K_2$. Then they enter in a region of uniform magnetic field $\vec{B}$ perpendicular to their velocities.


              • 4.
                Capacitors are manufactured with certain standard capacitances and working voltages. However, these standard values may not be the ones that are actually needed in a particular application. Two or more capacitors can be grouped in series or in parallel to achieve desired capacitance and voltage. When connected in series, the total capacitance decreases while the voltage rating increases, whereas in parallel connections, the total capacitance increases and maintains the same voltage rating. A capacitor stores energy in the electric field between its plates and stored energy is proportional to the square of the voltage and capacitance $U = \frac{1}{2}CV^2$, where symbols have their usual meanings.
                Two capacitors, one of $3 \ \mu$F and the other of $6 \ \mu$F, are connected in series in the circuit as shown in the figure, for a long time. }


                  • 5.
                    Draw a labelled ray diagram of a refracting telescope when it forms image of a distant object at infinity. Derive expression for its magnifying power.


                      • 6.
                        Two air-filled capacitors of capacitances $C_1$ and $C_2$ are connected in parallel with a dc battery. After the capacitors are fully charged, a slab of dielectric constant K is inserted between the plates of each capacitor. How will the (i) charge on each capacitor and (ii) energy stored in the capacitor affected after the slab is introduced.

                          CBSE CLASS XII Previous Year Papers

                          Comments


                          No Comments To Show