Relation between Articles in Physics

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Jasmine Grover

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Relation between based articles in physics helps us understand the relationship between two different terms under the similar topic. There are various terms in physics that are related to one another. Relation between articles in physics helps the students understand the basic concepts of 2 topics to better prepare for their CBSE Board Examinations. This article includes the relation between articles in physics covering all the important concepts. Some of the relation between articles include the relation between Celcius and Fahrenheit, the relation between beta and gamma function, the relation between elastic constants, etc. 


List of Relation between Articles in Physics

A list of the relation between articles in physics is covered here in a tabular format:

Relation between based articles in Physics
Relation Between Celsius and Fahrenheit Relation Between Critical Angle and Refractive Index
Relation Between Torque and Moment of Inertia Relation Between Elastic Constants
Relation Between Phase Difference and Path Difference What is Relation between G and g?
Relation between escape velocity and orbital velocity Relation between gauss and tesla
Relation between amplitude and frequency Relation between pressure and density
Relation between pressure and velocity Relation between density and volume
Relation between bar and pascal Relation between power and resistance
Relation between velocity and wavelength Relation between ev and joule
Relation between frequency and velocity Relation between line voltage and phase voltage
Relation between resistance and length Relation between watt and volt
Relation between torque and speed Relation between kva and kw
Relation between viscosity and density Relation between kg and newton
Relation between bar and atm Relation between beta and gamma function
Relation between electric field and electric potential Relation between group velocity and phase velocity
Relation between newton and dyne Relation between calorie and joule

Advantages Of The Relation Between Articles in Physics

The relation between based articles in physics helps the students understand the concepts and the bond between them – 

  • The relation between articles in Physics exam is very common.
  • The articles cover the similarities and differences between the two concepts.
  • The relation between articles in physics helps in giving the students get an in-depth idea of the terms involved.
  • The relation is explained in a tabular form with bulleted points for a better understanding.

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CBSE CLASS XII Related Questions

  • 1.
    The radius of a nucleus of mass number 125 is:

      • 6.0 fm
      • 30 fm
      • 72 fm
      • 150 fm

    • 2.
      A circular coil of 100 turns and radius \( \left(\frac{10}{\sqrt{\pi}}\right) \, \text{cm}\) carrying current of \( 5.0 \, \text{A} \) is suspended vertically in a uniform horizontal magnetic field of \( 2.0 \, \text{T} \). The field makes an angle \( 30^\circ \) with the normal to the coil. Calculate:
      the magnetic dipole moment of the coil, and
      the magnitude of the counter torque that must be applied to prevent the coil from turning.


        • 3.
          Suppose a pure Si crystal has \( 5 \times 10^{28} \) atoms per \( \text{m}^3 \). It is doped with \( 5 \times 10^{22} \) atoms per \( \text{m}^3 \) of Arsenic. Calculate majority and minority carrier concentration in the doped silicon. (Given: \( n_i = 1.5 \times 10^{16} \, \text{m}^{-3} \))


            • 4.
              A 500 nm photon is incident normally on a perfectly reflecting surface and is reflected. The value of momentum transferred to the surface is:

                • \( 3.87 \times 10^{-43} \, \text{kg} \, \text{ms}^{-1} \)
                • \( 2.5 \times 10^{-30} \, \text{kg} \, \text{ms}^{-1} \)
                • \( 2.65 \times 10^{-27} \, \text{kg} \, \text{ms}^{-1} \)
                • \( 1.33 \times 10^{-27} \, \text{kg} \, \text{ms}^{-1} \)

              • 5.
                Two small identical metallic balls having charges \( q \) and \( -2q \) are kept far at a separation \( r \). They are brought in contact and then separated at distance \( \frac{r}{2} \). Compared to the initial force \( F \), they will now:

                  • attract with a force \( \frac{F}{2} \)
                  • repel with a force \( \frac{F}{2} \)
                  • repel with a force \( F \)
                  • attract with a force \( F \)

                • 6.
                  The figure represents the variation of the electric potential \( V \) at a point in a region of space as a function of its position along the x-axis. A charged particle will experience the maximum force at:

                    • P
                    • Q
                    • R
                    • S

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