Question: r B X V= +q Figure 1. A particle of charge +q, accelerated through a potential difference V to a speed venters a magnetic field and travels in an arc of radius r. In the device depicted in the schematic, a singly charged positive ion, mass 2.00 x 10-26 kg and charge 1.60 x 10-¹9 C, is accelerated from rest by a potential difference 6.2 kV in the absence of magnetic fields. (Its weight is negligible in comparison with the electric and magnetic forces.) Part 1) What direction is B in, in order to produce the motion shown? (No answer given) + (No answer given) Into the page Out of the page Neither of these What is its speed after this acceleration? V= ms-1 Part 3) It then enters, at right angles and through a small slot, into a region with a uniform magnetic field B, with magnitude 0.97 T, which causes the ion to follow the semicircular path shown. Calculate the distance from the injection point at which the ion strikes the screen (see schematic). x= m

University Physics Volume 2
18th Edition
ISBN:9781938168161
Author:OpenStax
Publisher:OpenStax
Chapter11: Magnetic Forces And Fields
Section: Chapter Questions
Problem 26P: (a) Viewers of Star Trek have heard of an antimatter drive on the Starship Enterprise. One...
icon
Related questions
Question
Question:
r
B
X
V=
+q
Figure 1. A particle of charge +q, accelerated through a potential difference V to a speed venters a magnetic field and travels in an arc of radius r.
In the device depicted in the schematic, a singly charged positive ion, mass 2.00 x 10-26 kg and charge 1.60 x 10-¹9 C, is accelerated from rest
by a potential difference 6.2 kV in the absence of magnetic fields. (Its weight is negligible in comparison with the electric and magnetic forces.)
Part 1)
What direction is B in, in order to produce the motion shown?
(No answer given) +
(No answer given)
Into the page
Out of the page
Neither of these
What is its speed after this acceleration?
V=
ms-1
Part 3)
It then enters, at right angles and through a small slot, into a region with a uniform magnetic field B, with magnitude 0.97 T, which causes the ion to
follow the semicircular path shown. Calculate the distance from the injection point at which the ion strikes the screen (see schematic).
x=
m
Transcribed Image Text:Question: r B X V= +q Figure 1. A particle of charge +q, accelerated through a potential difference V to a speed venters a magnetic field and travels in an arc of radius r. In the device depicted in the schematic, a singly charged positive ion, mass 2.00 x 10-26 kg and charge 1.60 x 10-¹9 C, is accelerated from rest by a potential difference 6.2 kV in the absence of magnetic fields. (Its weight is negligible in comparison with the electric and magnetic forces.) Part 1) What direction is B in, in order to produce the motion shown? (No answer given) + (No answer given) Into the page Out of the page Neither of these What is its speed after this acceleration? V= ms-1 Part 3) It then enters, at right angles and through a small slot, into a region with a uniform magnetic field B, with magnitude 0.97 T, which causes the ion to follow the semicircular path shown. Calculate the distance from the injection point at which the ion strikes the screen (see schematic). x= m
Expert Solution
steps

Step by step

Solved in 2 steps with 3 images

Blurred answer
Knowledge Booster
Magnetic field
Learn more about
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, physics and related others by exploring similar questions and additional content below.
Similar questions
  • SEE MORE QUESTIONS
Recommended textbooks for you
University Physics Volume 2
University Physics Volume 2
Physics
ISBN:
9781938168161
Author:
OpenStax
Publisher:
OpenStax
College Physics
College Physics
Physics
ISBN:
9781305952300
Author:
Raymond A. Serway, Chris Vuille
Publisher:
Cengage Learning
Physics for Scientists and Engineers with Modern …
Physics for Scientists and Engineers with Modern …
Physics
ISBN:
9781337553292
Author:
Raymond A. Serway, John W. Jewett
Publisher:
Cengage Learning
Physics for Scientists and Engineers
Physics for Scientists and Engineers
Physics
ISBN:
9781337553278
Author:
Raymond A. Serway, John W. Jewett
Publisher:
Cengage Learning
Principles of Physics: A Calculus-Based Text
Principles of Physics: A Calculus-Based Text
Physics
ISBN:
9781133104261
Author:
Raymond A. Serway, John W. Jewett
Publisher:
Cengage Learning
Physics for Scientists and Engineers, Technology …
Physics for Scientists and Engineers, Technology …
Physics
ISBN:
9781305116399
Author:
Raymond A. Serway, John W. Jewett
Publisher:
Cengage Learning