A particle of mass m and charge q is accelerated along the +x axis (in the plane of the page) from rest through an electric potential difference V. The particle then enters a region, defined by x> 0, containing a uniform magnetic field. у V = 400.0 V B = 0.850 T q = -1.602 × 10-19 C m = 6.68 × 10-27 kg V B = 0 8. When the particle first enters the region with the magnetic field the Lorentz force acting on it is directed along the +y axis. What is the direction of the Magnetic field? Explain your reasoning а. +z b. -z с. +x d. -x

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A particle of mass m and charge q is
accelerated along the +x axis (in the
plane of the page) from rest through
an electric potential difference V.
The particle then enters a region,
defined by x > 0, containing a
uniform magnetic field.
y
V = 400.0 V
B = 0.850 T
q = -1.602 × 10-19 C
m = 6.68 × 10-27 kg
V
B = 0
8.
When the particle first enters the region with the magnetic field the Lorentz force acting
on it is directed along the +y axis. What is the direction of the Magnetic field? Explain your
reasoning
a. +z
b. -z
с. +x
d. -x
Transcribed Image Text:A particle of mass m and charge q is accelerated along the +x axis (in the plane of the page) from rest through an electric potential difference V. The particle then enters a region, defined by x > 0, containing a uniform magnetic field. y V = 400.0 V B = 0.850 T q = -1.602 × 10-19 C m = 6.68 × 10-27 kg V B = 0 8. When the particle first enters the region with the magnetic field the Lorentz force acting on it is directed along the +y axis. What is the direction of the Magnetic field? Explain your reasoning a. +z b. -z с. +x d. -x
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