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14. define homeostasis. 15. classify each of the following examples as …

Question

  1. define homeostasis.
  2. classify each of the following examples as either positive or negative feedback mechanisms. provide a short explanation to support your answer.

a. thermoregulation: when body temperature rises above the set point, sweat glands are activated to cool the body through evaporation
b. childbirth: when the baby’s head presses against the cervix, the brain releases oxytocin, which stimulates uterine contractions, further pushing the baby’s head against the cervix.
c. blood pressure regulation: when blood pressure increases, the heart rate slows down, and blood vessels dilate to reduce blood pressure.
d. blood clotting: when a blood vessel is damaged, platelets in the blood adhere to the damaged area and release chemicals that attract more platelets, forming a clot.
e. blood sugar regulation: after a person eats a meal high in carbohydrates and blood sugar rises, the pancreases releases insulin which causes cells to take in and use glucose.

  1. how do the stomata, in leaves, help a plant to maintain homeostasis?

Explanation:

Question 14: Define homeostasis.
Brief Explanations

Homeostasis is the ability of an organism or a system to maintain a stable internal environment despite changes in the external environment. It involves regulatory mechanisms (like feedback loops) that keep physiological parameters (e.g., temperature, pH, blood sugar) within a narrow, optimal range for proper functioning.

Brief Explanations

Negative feedback reverses a change to restore set - point. Here, body temp rises (deviation), sweat glands activate to cool (oppose the rise, bringing temp back to set - point). So it's negative feedback.

Brief Explanations

Positive feedback amplifies a change. In childbirth, baby's head pressing cervix leads to oxytocin release, which causes more contractions, pushing the head more (amplifying the initial change). So it's positive feedback.

Answer:

Homeostasis is the maintenance of a stable internal environment in an organism or system, via regulatory mechanisms, to ensure optimal physiological functioning despite external changes.

Question 15: Classify each example as positive or negative feedback, with explanations.
Part (a): Thermoregulation