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irina [24]
3 years ago
9

Select the correct answer from each drop-down menu. During the day, plants produce by splitting water molecules in the light-dep

endent reactions of photosynthesis. At the same time, plants use cellular respiration to produce some of the needed by the light-independent reactions to make sugars. During the night, plants produce because takes place.
Biology
1 answer:
Kay [80]3 years ago
7 0

During the day, plants produce oxygen by splitting water molecules in the light-dependent reactions of photosynthesis.  

Light-dependent reactions occur in thylakoid membranes of chloroplasts and begin with the absorption of light energy. This energy (together with water and photosystems) is used for the production of ATP and the reduced electron carrier NADPH which are necessary for the next stage of photosynthesis. Oxygen is released.

At the same time, plants use cellular respiration to produce some of the carbon dioxide needed by the light-independent reactions to make sugars.  

Cellular respiration is a chemical reaction of plants where they use glucose and oxygen to produce carbon dioxide and water and release energy.

During the night, plants produce carbon dioxide, but not oxygen because only cellular respiration takes place.

There is no sunlight at night, so only the cellular respiration occurs.


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What is a primary reason an increase in glaciers on land would cause sea level to fall? g?
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Each of the following phrases describes the structure, function, or regulation of either the hypothalamus, posterior pituitary,
juin [17]

Answer:

1) Hypothalmus: .D) Synthesizes some hormones that are released into blood vessels bound for another gland - G) Synthesizes oxytocin and ADH - H) Integrates nervous and endocrine systems.

2) Posterior Pituitary Gland: A) Releases oxytocin - F) Is an extension of the Hypothalmus

3) Anterior Pituitary Gland: B) Synthesizes and releases PRL - C) Synthesizes and releases TSH - E) Regulated by hormones released into portal blood vessels

Explanation:

The hypothalamus is the source of at least nine hormones that act stimulating on inhibiting other hormones secretion.

The first hypothalamic hormone discovered is the thyrotropin-releasing hormone, TRH, that stimulates the thyrotropin release by the hypophysis. Another important hormone is the gonadotrophin-releasing hormone, GnRH, that controls the release of gonadotrophic hormones, such as LH and FSH. The somatostatin hormone inhibits the release of somatotrophin hormone from the hypophysis. The <u>oxytocin</u> and the <u>antidiuretic hormone</u> are also <u>secreted and released</u> by the hypothalamus and <u>collected by the posterior hypophysis</u> from where they are then released again to the system.

The hypothalamus secretes hormones directly into <u>capillaries</u> forward to the anterior hypophysis. Oxytocin and antidiuretic hormone, instead, go to the posterior hypophysis through <u>nerve fibers</u>.

The hypophysis gland, also known as the pituitary gland, is located under the hypothalamus which controls the hypophysis.  It is considered to be the master gland as it acts as a source of hormones that stimulates different organs. The hypophysis is conformed of three lobules: anterior, intermediate, and posterior.  

The anterior lobule releases somatotrophin, prolactin, trophic hormones such as thyrotropin or TSH, ACTH, and gonadotrophins such as FSH and LH.

The posterior lobule collects and release the hormones secreted by the hypothalamus, such as oxytocin and ADH.

The hypophysis and the hypothalamus are both controlled by other parts of the nervous system.

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Answer: 2 answer

Explanation:

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