A student is examining a bacterium under the microscope. The E. coli bacterial cell has a mass of m = 1.50 fg (where a femtogram, fg, is 10 and is swimming at a velocity of v = 9.00 µm/s, with an uncertainty in the velocity of 8.00 % . E. coli bacterial cells are around 1 µm ( 10 m) in length. The student is supposed to observe the bacterium and make a drawing. However, the student, having just learned about the Heisenberg uncertainty principle in physics class, complains that she cannot make the drawing. She claims that the uncertainty of the bacterium's position is greater than the microscope's viewing field, and the bacterium is thus impossible to locate. g) %3D
A student is examining a bacterium under the microscope. The E. coli bacterial cell has a mass of m = 1.50 fg (where a femtogram, fg, is 10 and is swimming at a velocity of v = 9.00 µm/s, with an uncertainty in the velocity of 8.00 % . E. coli bacterial cells are around 1 µm ( 10 m) in length. The student is supposed to observe the bacterium and make a drawing. However, the student, having just learned about the Heisenberg uncertainty principle in physics class, complains that she cannot make the drawing. She claims that the uncertainty of the bacterium's position is greater than the microscope's viewing field, and the bacterium is thus impossible to locate. g) %3D
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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Transcribed Image Text:A student is examining a bacterium under the
microscope. The E. coli bacterial cell has a mass of
m = 1.50 fg (where a femtogram, fg, is 105
and is swimming at a velocity of v =
with an uncertainty in the velocity of 8.00 %. E. coli
bacterial cells are around 1 m (10 m) in
length. The student is supposed to observe the
bacterium and make a drawing. However, the
student, having just learned about the Heisenberg
uncertainty principle in physics class, complains
that she cannot make the drawing. She claims that
the uncertainty of the bacterium's position is greater
than the microscope's viewing field, and the
bacterium is thus impossible to locate.
9.00 pm/s,
9.

Transcribed Image Text:What is the uncertainty of the position of the bacterium?
Express your answer with the appropriate units.
> View Available Hint(s)
HA
Aæ = 9.76 10
14
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