A charged particle has acceleration a vector = 2i^ + xj^ in a magnetic field B Vector= -3i^ +2 j^ -4k^. Find the value of x
Sahay Sir > Question Answers > A charged particle has acceleration a vector = 2i^ + xj^ in a magnetic field B Vector= -3i^ +2 j^ -4k^. Find the value of x
A particle with charge 7.00 μC is moving with velocity v→=−( 4 × 10^3 m/s)jˆ. The magnetic force on the particle is measured to be F→=+(8.4 × 10^−2 N)iˆ−(5.60 × 10^−2 N)kˆ. a. Calculate all the components of the magnetic field you can from this information. b. Are there components of the magnetic field that cannot be determined by measurement of the force? Explain. c. Calculate the scalar product B→.F→. What is the angle between B→andF→?
13
Oct
A particle with charge 7.00 μC is moving with velocity v→=−( 4 × 10^3 m/s)jˆ. The magnetic force on the particle is measured to be F→=+(8.4 × 10^−2 N)iˆ−(5.60 × 10^−2 N)kˆ. a. Calculate all the components of the magnetic field you can from this information. b. Are there components of the magnetic field that [...]
A particle with charge – 5.60 nC is moving in a uniform magnetic field → B = − ( 1.25 T ) ^ k . The magnetic force on the particle Is measured to be → F = − ( 3.36 × 10^ − 7 N ) ^ i + ( 7.42 × 10^ − 7 N ) ^ j . (a) Calculate the x-component of the velocity of the particle. (b) Calculate the y-component of the velocity of the particle. (c) Calculate the scalar product → v ⋅ → F .
13
Oct
A particle with charge – 5.60 nC is moving in a uniform magnetic field → B = − ( 1.25 T ) ^ k . The magnetic force on the particle Is measured to be → F = − ( 3.36 × 10^ − 7 N ) ^ i + ( 7.42 × 10^ − [...]
The force on a charged particle moving in a magnetic field can be computed as the vector sum of the force due to each separate component of the magnetic field. As an example, a particle with charge q is moving with speed v in the -y direction. It is moving in a uniform magnetic field B→=Bxiˆ+Byjˆ+Bzkˆ. a. What are the components of the force F→ exerted on the particle by the magnetic field? b. If q>0, what must the signs of the components of B→ be if the components of F→ are all non-negative? c. If q0, find the direction and magnitude of F in terms of |q|, v and Bx.
13
Oct
The force on a charged particle moving in a magnetic field can be computed as the vector sum of the force due to each separate component of the magnetic field. As an example, a particle with charge q is moving with speed v in the -y direction. It is moving in a uniform magnetic field [...]
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A charged particle has acceleration a vector = 2i^ + xj^ in a magnetic field B Vector= -3i^ +2 j^ -4k^. Find the value of x ,
The force on a charged particle moving in a magnetic field can be computed as the vector sum of the force due to each separate component of the magnetic field. As an example ,
A charged particle has acceleration a vector = 2i^ + xj^ in a magnetic field B Vector= -3i^ +2 j^ -4k^. Find the value of x
13
Oct
A charged particle has acceleration a vector = 2i^ + xj^ in a magnetic field B Vector= -3i^ +2 j^ -4k^. Find the value of x A charged particle has acceleration a vector = 2i^ + xj^ in a magnetic field B Vector= -3i^ +2 j^ -4k^. Find the value of x October 13, 2020 [...]