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  1. Dimensional Formula of Magnetic Field. The dimensional formula of Magnetic Field is given by, M 1 T-2 I-1. Where, M = Mass; I = Current; L = Length; T = Time

  2. Solution. Verified by Toppr. Correct option is A. [ M T − 2 A − 1] We have the equation, F = q v B s i n θ. Dimension of Force, F = [ M L T − 2] Dimension of Velocity, v = [ L T − 1] Dimension of Charge, q = [ A T] S i n θ is dimensionless. Then,

  3. 6 days ago · The dimensional formula of Magnetic field is given as [M] 1 [T]-2 [I]-1. In this formula, ‘M’ represents the mass, ‘T’ represents the time, and ‘I’ represents the current. Derivation of Dimensional Formula Of Magnetic Field. The Lorentz force is given by the equation, Force = Charge x Magnetic Field (B) x Velocity. The above ...

  4. Magnitude of Magnetic Field from Current. The equation for the magnetic field strength (magnitude) produced by a long straight current-carrying wire is: \[\mathrm { B } = \dfrac { \mu _ { 0 } \mathrm { I } } { 2 \pi \mathrm { r } }\]

  5. This article outlines what a magnetic field is, its dimensional formula, properties of magnetic field lines, magnetic flux, and electromagnetic induction. A dimensional formula is a mathematical formula that represents a physical quantity in terms of fundamental quantities, such as mass, length, and time. By using dimensional formulae, we can ...

  6. Magnetic Field Formula. The magnetic field formula contains the \(constant^{\mu_{0}}\). This is known as permeability of free space and has a \(value^{\mu}_{0}\) = \(4\pi \times 10^{-7} (T \cdot m\)/ A). Besides, the unit of a magnetic field is Tesla (T). Magnetic field magnitude = \(\frac{(permeability of free space) (current magnitude)}{2\pi ...

  7. Feb 15, 2023 · Thus, magnetic dipole moment, \(\vec\mu\), will line up with the external magnetic field, \(\vec B\). The equation that describes the magnetic potential energy of this interaction is shown below. Figure 11.7.7: Comparing Electric and Magnetic Dipole Interactions

  8. Describe and interpret drawings of magnetic fields around permanent magnets and current-carrying wires. Calculate the magnitude and direction of magnetic force in a magnetic field and the force on a current-carrying wire in a magnetic field.

  9. Nov 29, 2017 · The Main Idea. What is a Magnetic Field? Magnetic fields can be simply described as a field that extends through space, originating from a moving electric charge or from a magnetic dipole. This field can produce a force when acting on another magnetic object.

  10. Define the magnetic field based on a moving charge experiencing a force; Apply the right-hand rule to determine the direction of a magnetic force based on the motion of a charge in a magnetic field; Sketch magnetic field lines to understand which way the magnetic field points and how strong it is in a region of space

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