A particle passes through a mass spectrometer as illustrated in the figure below. The electric field between the plates of the velocity selector has a magnitude of 7930 V/m, and the magnetic fields in both the velocity selector and the deflection chamber have magnitudes of 0.0913 T. In the deflection chamber the particle strikes a photographic plate 11.9 cm removed from its exit point after traveling in a semicircle. Bo in Photographic plate B.. x Velocity selector (a) What is the mass-to-charge ratio of the particle? kg/C (b) What is the mass of the particle if it is doubly ionized? kg
A particle passes through a mass spectrometer as illustrated in the figure below. The electric field between the plates of the velocity selector has a magnitude of 7930 V/m, and the magnetic fields in both the velocity selector and the deflection chamber have magnitudes of 0.0913 T. In the deflection chamber the particle strikes a photographic plate 11.9 cm removed from its exit point after traveling in a semicircle. Bo in Photographic plate B.. x Velocity selector (a) What is the mass-to-charge ratio of the particle? kg/C (b) What is the mass of the particle if it is doubly ionized? kg
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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![A particle passes through a mass spectrometer as illustrated in the figure below. The electric field between the plates of the velocity selector has a magnitude of 7930 V/m, and the magnetic fields in both the velocity selector and the deflection chamber have magnitudes of 0.0913 T. In the deflection chamber, the particle strikes a photographic plate 11.9 cm removed from its exit point after traveling in a semicircle.
[Diagram Description: The diagram shows a mass spectrometer with a positive and negative plate creating an electric field \(\mathbf{E}\) pointing downward. The magnetic field \(\mathbf{B}\) is directed into the page. A particle with charge \(+q\) enters the velocity selector and travels in a straight path due to the balanced forces, then curves in a semicircle in the deflection chamber under the influence of another magnetic field \(\mathbf{B}_0\). It hits a photographic plate after completing the semicircle.]
Questions:
(a) What is the mass-to-charge ratio of the particle?
\[ \_\_\_\_\_\_ \, \text{kg/C} \]
(b) What is the mass of the particle if it is doubly ionized?
\[ \_\_\_\_\_\_ \, \text{kg} \]
(c) What is its identity, assuming it's an element? (Enter the name of an element.)
\[ \_\_\_\_\_\_ \]](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F021773a5-30bf-4026-94da-b5b931a87d69%2Ffe487d48-1959-4a54-b7de-4632669bd8bd%2Fxpiuka4_processed.png&w=3840&q=75)
Transcribed Image Text:A particle passes through a mass spectrometer as illustrated in the figure below. The electric field between the plates of the velocity selector has a magnitude of 7930 V/m, and the magnetic fields in both the velocity selector and the deflection chamber have magnitudes of 0.0913 T. In the deflection chamber, the particle strikes a photographic plate 11.9 cm removed from its exit point after traveling in a semicircle.
[Diagram Description: The diagram shows a mass spectrometer with a positive and negative plate creating an electric field \(\mathbf{E}\) pointing downward. The magnetic field \(\mathbf{B}\) is directed into the page. A particle with charge \(+q\) enters the velocity selector and travels in a straight path due to the balanced forces, then curves in a semicircle in the deflection chamber under the influence of another magnetic field \(\mathbf{B}_0\). It hits a photographic plate after completing the semicircle.]
Questions:
(a) What is the mass-to-charge ratio of the particle?
\[ \_\_\_\_\_\_ \, \text{kg/C} \]
(b) What is the mass of the particle if it is doubly ionized?
\[ \_\_\_\_\_\_ \, \text{kg} \]
(c) What is its identity, assuming it's an element? (Enter the name of an element.)
\[ \_\_\_\_\_\_ \]
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