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Flux per unit of cross-sectional area is called flux density. Magnetic Flux Density Formula. Its letter symbol is B. The relationship between total flux and flux density is given by the following equation: $B=\frac{\varphi }{A}$ Where. B=flux density in Tesla. φ=total magnetic flux in weber. A= Cross-sectional area in square meter. Magnetic ...
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The magnetic flux density is measured in Webers per square meter [Wb/m^2], which is equivalent to Teslas [T]. The B field is a vector field, which means it has a magnitude and direction at each point in space.
Magnetic flux density (\({\bf B}\), T or Wb/m\(^2\)) is a description of the magnetic field that can be defined as the solution to Equation \ref{m0005_eFqvB}. Figure \(\PageIndex{4}\): The magnetic field of a bar magnet, illustrating field lines.
The magnetic flux density B is defined as: The force acting per unit current per unit length on a current-carrying conductor placed perpendicular to the magnetic field . Rearranging the equation for magnetic force on a wire, the magnetic flux density is defined by the equation:
31 lip 2022 · The magnetic flux density formula is: Magnetic field (B) = Magnetic flux (Φ) / Area (A) Therefore, we can write the mathematical expression for magnetic flux density as: B = Φ / A. Where: B = Magnetic flux density (tesla, T), Φ = Magnetic flux (weber, Wb), A = Cross-sectional area (square meters, m²). After cross-multiplying the equation ...
4 wrz 2022 · Magnetic Flux Equation. The magnetic flux is a scalar quantity and can be quantified by establishing an imaginary surface represented by an area vector in the vicinity of a magnetic field. The magnetic flux φ is given by the dot product of the magnetic field and the area vector. ϕ= →B. →A ϕ = B →. A →.
Rearranging the equation for magnetic force on a wire, the magnetic flux density is defined by the equation: Where: B = magnetic flux density (T) F = magnetic force on a current-carrying wire (N) I = current (A) L = length of the wire (m) For reference, the Earth's magnetic flux density is around 0.032 mT and an ordinary fridge magnet is around ...