Using an example, describe how negative feedback loops maintain homeostasis. (hint: glucose levels and temperature) Which graph best represents homeostasis? Why? Graph 1 Graph 2 Graph 3 Level of Level of substance in the body Level of substance in the body the bedy Time Time Time The graph that best represents homeostasis is Graph because The body tolerates a wide range of many variables such as blood glucose and sodium plasma levels. Why do you think that is there much less variation tolerated in oxygen saturation? Normal ranges: Glucose 90-130 mg/dL Plasma-sodium 135 and 145 (mEq/L) Oxygen 95-100% saturation There is much less variation tolerated in oxygen saturation because

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Chapter1: Biochemistry: An Evolving Science
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Using an example, describe how negative feedback loops maintain homeostasis.
(hint: glucose levels and temperature)
Which graph best represents homeostasis? Why?
Graph 1
Graph 2
Graph 3
Level of
substance
Level of
substance
in the body
substance
in the
body
Time
Time
Time
The graph that best represents homeostasis is Graph_
because
The body tolerates a wide range of many variables such as blood glucose and
sodium plasma levels. Why do you think that is there much less variation
tolerated in oxygen saturation?
Normal ranges:
Glucose 90-130 mg/dL
Plasma-sodium 135 and 145 (mEq/L)
Oxygen 95-100% saturation
There is much less variation tolerated in oxygen saturation because
Transcribed Image Text:Using an example, describe how negative feedback loops maintain homeostasis. (hint: glucose levels and temperature) Which graph best represents homeostasis? Why? Graph 1 Graph 2 Graph 3 Level of substance Level of substance in the body substance in the body Time Time Time The graph that best represents homeostasis is Graph_ because The body tolerates a wide range of many variables such as blood glucose and sodium plasma levels. Why do you think that is there much less variation tolerated in oxygen saturation? Normal ranges: Glucose 90-130 mg/dL Plasma-sodium 135 and 145 (mEq/L) Oxygen 95-100% saturation There is much less variation tolerated in oxygen saturation because
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