18 Fred Sanger developed an effective DNA sequencing technique in 1977. Thepeed at which DNA can be sequenced has been increasing rapidly since the Introduction of DNA sequencing. The length of DNA that can be sequenced in a given time is measured in base pairs or kilobase pairs. In 1980, the speed at which DNA could be sequenced by a single machine was approximately 500 base pairs per hour. In 2016 that speed had increased to approximately 50 million kilobase pairs per hour. Calculate how many times faster the speed of DNA sequencing is in 2016 compared with 1980.

Human Anatomy & Physiology (11th Edition)
11th Edition
ISBN:9780134580999
Author:Elaine N. Marieb, Katja N. Hoehn
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Chapter1: The Human Body: An Orientation
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18
Fred Sanger developed an efective DNA sequencing technique in 1977.
The peed at which DNA.can be sequenced has been increasing rapidly since the introduction of DNA
sequencing
The length of DNA that can be sequenced in a given time is measured in base pairs or kilobase pairs.
In 1980, the speed at which DNA could be sequenced by a single machine was approximately 500 base palrs
per hour. In 2016 that speed had increased to approximately 50 million kilobase pairs per hour.
Calculate how many times faster the speed of DNA sequencing is in 2016 compared with 1980.
Transcribed Image Text:18 Fred Sanger developed an efective DNA sequencing technique in 1977. The peed at which DNA.can be sequenced has been increasing rapidly since the introduction of DNA sequencing The length of DNA that can be sequenced in a given time is measured in base pairs or kilobase pairs. In 1980, the speed at which DNA could be sequenced by a single machine was approximately 500 base palrs per hour. In 2016 that speed had increased to approximately 50 million kilobase pairs per hour. Calculate how many times faster the speed of DNA sequencing is in 2016 compared with 1980.
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