of the cell, of examining a slide at higher magnification? To see the cell in More detail. b. What is an advantage 13. In order to determine the surface area:volume ratio of the organism you will first need to estimate the size of one or more of the dimensions of the organism. To do this, think back to the lab activity in BIOL-151 where you determined the diameter of the microscope's field of view at the different magnifications of the microscopes. In that lab you used the following formula to determine the diameter of the field of view: Magnification A X Diameter A = Magnification B X Diameter B

Human Anatomy & Physiology (11th Edition)
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Chapter1: The Human Body: An Orientation
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how did they get 4.25?

of the cell,
b. What is an advantage of examining a slide at higher magnification?
To see the cell in More detail.
13. In order to determine the surface area:volume ratio of the organism you will first need to estimate
the size of one or more of the dimensions of the organism. To do this, think back to the lab activity
in BIOL-151 where you determined the diameter of the microscope's field of view at the different
magnifications of the microscopes. In that lab you used the following formula to determine the
diameter of the field of view:
Magnification A X Diameter A = Magnification B X Diameter B
Given the field of view at the lowest magnification below, use the formula above to determine the
size of the field of view of the other two magnifications:
Lowest power (with 4x objective): Magnification=40, Diameter = 4.25
Intermediate power (with 10x objective): Magnification = 100
430
40X41251430
Highest power (with 43x objective): Magnification
1
m=
lo
mm and 1 mm =
Diameter =
Diameter =
lidelo
mm
1.1
mm
040 mm
μm (micrometers)
Transcribed Image Text:of the cell, b. What is an advantage of examining a slide at higher magnification? To see the cell in More detail. 13. In order to determine the surface area:volume ratio of the organism you will first need to estimate the size of one or more of the dimensions of the organism. To do this, think back to the lab activity in BIOL-151 where you determined the diameter of the microscope's field of view at the different magnifications of the microscopes. In that lab you used the following formula to determine the diameter of the field of view: Magnification A X Diameter A = Magnification B X Diameter B Given the field of view at the lowest magnification below, use the formula above to determine the size of the field of view of the other two magnifications: Lowest power (with 4x objective): Magnification=40, Diameter = 4.25 Intermediate power (with 10x objective): Magnification = 100 430 40X41251430 Highest power (with 43x objective): Magnification 1 m= lo mm and 1 mm = Diameter = Diameter = lidelo mm 1.1 mm 040 mm μm (micrometers)
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