Two particles A and B of masses m and me respectively and having the same charge are moving in a plane. A uniform magnetic field exists perpendicular to this plane. The speeds of the particles are vA and VB, respectively and the trajectories are as shown in the figure. Then A o B O (a) mAVA < MB VB (c) m < mg and VA < VB O (b) M₁ V₁ > MB VB VA A (d) m = mg and V₁ =VB mB VA
Two particles A and B of masses m and me respectively and having the same charge are moving in a plane. A uniform magnetic field exists perpendicular to this plane. The speeds of the particles are vA and VB, respectively and the trajectories are as shown in the figure. Then A o B O (a) mAVA < MB VB (c) m < mg and VA < VB O (b) M₁ V₁ > MB VB VA A (d) m = mg and V₁ =VB mB VA
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Two particles A and B of masses m₁ and me respectively and
having the same charge are moving in a plane. A uniform
magnetic field exists perpendicular to this plane. The speeds
of the particles are v₁ and VB, respectively and the
VA
trajectories are as shown in the figure. Then
A o
B
(a) mAVA < MB VB
(c) m < m₂ and v₁ < VB
VA
MB A<
O
(b) m₁V₁ > MB VB
MAVA
(d) MA тв
=
and V₁ = VB"
Transcribed Image Text:A
Two particles A and B of masses m₁ and me respectively and
having the same charge are moving in a plane. A uniform
magnetic field exists perpendicular to this plane. The speeds
of the particles are v₁ and VB, respectively and the
VA
trajectories are as shown in the figure. Then
A o
B
(a) mAVA < MB VB
(c) m < m₂ and v₁ < VB
VA
MB A<
O
(b) m₁V₁ > MB VB
MAVA
(d) MA тв
=
and V₁ = VB
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