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book Biomedical Engineering: Bridging Medicine and Technology 1st Edition by Veronique Tran,Mark Saltzman cover

Biomedical Engineering: Bridging Medicine and Technology 1st Edition by Veronique Tran,Mark Saltzman

Edition 1ISBN: 9780521840996
book Biomedical Engineering: Bridging Medicine and Technology 1st Edition by Veronique Tran,Mark Saltzman cover

Biomedical Engineering: Bridging Medicine and Technology 1st Edition by Veronique Tran,Mark Saltzman

Edition 1ISBN: 9780521840996
Exercise 2
Figure 1.15 shows an image of a microscope slide, onto which small spots of protein have been printed. The slide was used to identify protein compositions that provide for good adhesion of cells. If each spot of protein is 300 microns (micrometers) in diameter, and each cell is 15 microns in diameter, what is the maximum number of cells that can fit into each spot? Figure 1.15 shows an image of a microscope slide, onto which small spots of protein have been printed. The slide was used to identify protein compositions that provide for good adhesion of cells. If each spot of protein is 300 microns (micrometers) in diameter, and each cell is 15 microns in diameter, what is the maximum number of cells that can fit into each spot?
Explanation
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The maximum number of cells that fit into each spot of protein with the diameter 300 microns can be calculated by the following calculation : The maximum number of cells that fit into each spot of protein with the diameter 300 microns can be calculated by the following calculation :   So, the maximum number of   can fit into each spot. So, the maximum number of The maximum number of cells that fit into each spot of protein with the diameter 300 microns can be calculated by the following calculation :   So, the maximum number of   can fit into each spot. can fit into each spot.
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Biomedical Engineering: Bridging Medicine and Technology 1st Edition by Veronique Tran,Mark Saltzman
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