12. Assume that spherical particles with diameter=100 µm and density=1.1 g/cm³ have sedimentation velocity of 1 cm/min in a solution with density=1 g/cm³. What is the sedimentation velocity of spherical particles with diameter=50 µm and density=1.3 g/cm3 in the same conditions? SOLUTION: 13. Which method, Rate Zonal Centrifugation or Isopycnic Centrifugation, is better suited to separate RNAS from proteins? Briefly explain why. SOLUTION:

Curren'S Math For Meds: Dosages & Sol
11th Edition
ISBN:9781305143531
Author:CURREN
Publisher:CURREN
Chapter21: Heparin Infusion Calculations
Section: Chapter Questions
Problem 1.4P
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12. Assume that spherical particles with diameter=100 um and density=1.1 g/cm3 have
sedimentation velocity of 1 cm/min in a solution with density=1 g/cm3. What is the
sedimentation velocity of spherical particles with diameter=50 µm and density=D1.3 g/cm3
in the same conditions?
SOLUTION:
13. Which method, Rate Zonal Centrifugation or Isopycnic Centrifugation, is better suited to
separate RNAS from proteins? Briefly explain why.
SOLUTION:
Transcribed Image Text:12. Assume that spherical particles with diameter=100 um and density=1.1 g/cm3 have sedimentation velocity of 1 cm/min in a solution with density=1 g/cm3. What is the sedimentation velocity of spherical particles with diameter=50 µm and density=D1.3 g/cm3 in the same conditions? SOLUTION: 13. Which method, Rate Zonal Centrifugation or Isopycnic Centrifugation, is better suited to separate RNAS from proteins? Briefly explain why. SOLUTION:
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