This is a paper centrifuge: (you don't need to watch the whole video, just a few seconds to see how it works--description below is probably sufficient if you can't get to the link) https://www.youtube.com/watch?v=isMYGtCFljc It is a paper disc that has supercoiled strings through two holes in the centre--like a button. As you straighten the strings and uncoil them, the paper spins. The paper spins at a very high rate and can separate materials in a way that is similar to a centrifuge. A droplet is added to the centre of the paper and it is spun. The densest objects travel the farthest from the centre. Assume that we are using it to perform our mitochondrial extraction, which cellular component would travel the furthest? nuclei mitochondria microvessicles blood cells

Curren'S Math For Meds: Dosages & Sol
11th Edition
ISBN:9781305143531
Author:CURREN
Publisher:CURREN
Chapter2: Multiplication And Division Of Decimals
Section: Chapter Questions
Problem 1.8P
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This is a paper centrifuge: (you don't need to watch the whole video, just a few
seconds to see how it works--description below is probably sufficient if you can't
get to the link)
https://www.youtube.com/watch?v=isMYGtCFljc
It is a paper disc that has supercoiled strings through two holes in the centre--like a
button. As you straighten the strings and uncoil them, the paper spins.
The paper spins at a very high rate and can separate materials in a way that is
similar to a centrifuge.
A droplet is added to the centre of the paper and it is spun. The densest objects
travel the farthest from the centre.
Assume that we are using it to perform our mitochondrial extraction, which cellular
component would travel the furthest?
nuclei
mitochondria
microvessicles
blood cells
Transcribed Image Text:This is a paper centrifuge: (you don't need to watch the whole video, just a few seconds to see how it works--description below is probably sufficient if you can't get to the link) https://www.youtube.com/watch?v=isMYGtCFljc It is a paper disc that has supercoiled strings through two holes in the centre--like a button. As you straighten the strings and uncoil them, the paper spins. The paper spins at a very high rate and can separate materials in a way that is similar to a centrifuge. A droplet is added to the centre of the paper and it is spun. The densest objects travel the farthest from the centre. Assume that we are using it to perform our mitochondrial extraction, which cellular component would travel the furthest? nuclei mitochondria microvessicles blood cells
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