es Required information In gel electrophoresis, the mobility of a molecule in a particular gel matrix is defined as = v/E, where it is the terminal speed of the molecule and E is the applied electric field strength. In one case, a molecule has mobility 2.83 × 10-8 C-m/(N-s) and charge -12e. How long does it take the molecule to move 2.10 cm through the gel if the terminal speed of the molecule is 1.50 × 10-5 m/s? min Check my we

College Physics
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Author:Raymond A. Serway, Chris Vuille
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Chapter15: Electric Forces And Electric Fields
Section: Chapter Questions
Problem 24P: (a) Find the magnitude and direction of the electric field at the position of the 2.00 C charge in...
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Required information In gel electrophoresis, the mobility of a molecule in a particular gel matrix is defined as mu = u_{t} / E where is the terminal speed of the molecule and E is the applied electric field strengthIn one case, a molecule has mobility 2.83 * 10 ^ - 8; Cm / (Ns) and charge-12e How long does it take the molecule to move 210 cm through the gel if the terminal speed of the molecule 1.5 * 10 ^ - 5 * m / s ? min
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Required information
In gel electrophoresis, the mobility of a molecule in a particular gel matrix is defined as = v/E, where it is the terminal
speed of the molecule and E is the applied electric field strength. In one case, a molecule has mobility 2.83 x 10-8
C-m/(N-s) and charge -12e.
How long does it take the molecule to move 2.10 cm through the gel if the terminal speed of the molecule is 1.50 x 10-5 m/s?
min
Check my we
Transcribed Image Text:es Required information In gel electrophoresis, the mobility of a molecule in a particular gel matrix is defined as = v/E, where it is the terminal speed of the molecule and E is the applied electric field strength. In one case, a molecule has mobility 2.83 x 10-8 C-m/(N-s) and charge -12e. How long does it take the molecule to move 2.10 cm through the gel if the terminal speed of the molecule is 1.50 x 10-5 m/s? min Check my we
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