A phosphate molecule PO of mass m = difference |AV| = 4.35 V and enters the mass spectrometer with magnetic field of magnitude |B| = 0.090 T. The particle then follows a semi-circular path shown in the picture before = 1.58 × 10¬25 kg is accelerated across the potential reaching the detector located to the left of its entry point. AV a) Sketch the described situation (you can start with the figure shown in the problem) CLEARLY indicating the direction of the magnetic field inside the mass spectrometer b) Determine the speed of the particle as it enters the region of magnetic field. c) Determine the distance between the entry point of the particle and the detector.

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter24: Electromagnetic Waves
Section24.1: Displacement Current And The Generalized Form Of Ampère’s Law
Problem 24.1QQ
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-25
1.58 x 10
A phosphate molecule PO of mass m =
difference |AV| = 4.35 V and enters the mass spectrometer with magnetic field of magnitude
|B| = 0.090 T. The particle then follows a semi-circular path shown in the picture before
kg is accelerated across the potential
reaching the detector located to the left of its entry point.
В
d
Δν
a) Sketch the described situation (you can start with the figure shown in the problem) CLEARLY
indicating the direction of the magnetic field inside the mass spectrometer
b) Determine the speed of the particle as it enters the region of magnetic field.
c) Determine the distance between the entry point of the particle and the detector.
Transcribed Image Text:-25 1.58 x 10 A phosphate molecule PO of mass m = difference |AV| = 4.35 V and enters the mass spectrometer with magnetic field of magnitude |B| = 0.090 T. The particle then follows a semi-circular path shown in the picture before kg is accelerated across the potential reaching the detector located to the left of its entry point. В d Δν a) Sketch the described situation (you can start with the figure shown in the problem) CLEARLY indicating the direction of the magnetic field inside the mass spectrometer b) Determine the speed of the particle as it enters the region of magnetic field. c) Determine the distance between the entry point of the particle and the detector.
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