1
You visited us
1
times! Enjoying our articles?
Unlock Full Access!
Byju's Answer
Standard XII
Physics
Electric Field
A region cont...
Question
A region contains both uniform electric field
→
E
and uniform magnetic field
→
B
. A charge particle
A
Cannot move on a circular path in this region
No worries! We‘ve got your back. Try BYJU‘S free classes today!
B
Cannot move on a uniform helical path
No worries! We‘ve got your back. Try BYJU‘S free classes today!
C
Cannot move on a parabolic path
Right on! Give the BNAT exam to get a 100% scholarship for BYJUS courses
D
All of these
No worries! We‘ve got your back. Try BYJU‘S free classes today!
Open in App
Solution
The correct option is
C
Cannot move on a parabolic path
A regional contains both uniform electric field
¯
¯¯
¯
E
and uniform magnetic field
¯
¯¯
¯
B
.
A charge particle can not move on a parabolic path because it becomes helical path.
Suggest Corrections
0
Similar questions
Q.
A charged particle with specific charge s moves undeflected through a region of space containing mutually perpendicular and uniform electric and magnetic fields E and B.When the electric field is switched off,the particle will move in a circular path of radius
Q.
A charge particle moves in a region having a uniform magnetic field and a parallel, uniform electric field. At some instant, the velocity of the particle is perpendicular to the field direction. The path of the particle will be
Q.
A particle of mass m and charge q is thrown from origin at
t
=
0
with velocity
2
^
i
+
3
^
j
+
4
^
k
units in a region with uniform magnetic field
→
B
=
2
^
i
units. After time
t
=
π
m
q
B
, an electric field
→
E
is switched on, such that particle moves on a straight line with constant speed.
→
E
may be
Q.
A particle moves in a region having a uniform magnetic field and a parallel, uniform electric field. At some instant, the velocity of the charged particle is perpendicular to the field direction. The path of the particle will be
Q.
A charged particle moves with a constant velocity
(
^
i
+
^
j
)
m
/
s
in a magnetic field
→
B
=
(
2
^
i
+
3
^
k
)
and uniform electric field
→
E
=
(
a
^
i
+
b
^
j
+
c
^
k
)
N
/
C
, then
(
assuming all quantities in S.I. unit
)
:
View More
Join BYJU'S Learning Program
Grade/Exam
1st Grade
2nd Grade
3rd Grade
4th Grade
5th Grade
6th grade
7th grade
8th Grade
9th Grade
10th Grade
11th Grade
12th Grade
Submit
Related Videos
The Electric Field
PHYSICS
Watch in App
Explore more
Electric Field
Standard XII Physics
Join BYJU'S Learning Program
Grade/Exam
1st Grade
2nd Grade
3rd Grade
4th Grade
5th Grade
6th grade
7th grade
8th Grade
9th Grade
10th Grade
11th Grade
12th Grade
Submit
AI Tutor
Textbooks
Question Papers
Install app