As a cell approaches the end of the G1 phase it is controlled at a vital checkpoint, called G1/S, where the cell determines whether or not to replicate its DNA. At this checkpoint the cell is checked for DNA damage to ensure that it has all the necessary cellular machinery to allow for successful cell division.
The priority intervention when treating a client with diabetic ketoacidosis (DKA) is the intravenous administration of fluids, electrolytes, and insulin.
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Diabetic ketoacidosis (DKA).</h3>
A potentially fatal Diabetes Mellitus consequence is diabetic ketoacidosis. Common symptoms of DKA are:
- Vomiting,
- stomach discomfort,
- gasping for air,
- excessive urination,
- weakness,
- disorientation,
- loss of consciousness,
- "fruity" odor
Symptoms generally appear quickly. DKA may appear in people who have never had diabetes before as their first noticeable symptom.
DKA most frequently affects people with type 1 diabetes, although it can also happen to people with other forms of diabetes in specific situations like improper insulin administration.
A lack of insulin causes DKA, which causes the body to resort to burning fatty acids instead, leading to the production of acidic ketone bodies that lead to metabolic acidosis (an acid-base disorder).
When a client is in DKA, the top priority is to IV administer fluids (the excessive urination leads to dehydration), replace the electrolytes (DKA causes severe alteration in the normal concentrations of electrolytes; these need to be replaced for the correct amount to secure the normal functioning of many organs) and insulin (this reverses the DKA).
To learn more about diabetic ketoacidosis, read here: brainly.com/question/4564126
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There are more than 4, but here are 4 of them
1. make proteins
2. release glucose
3. produce bile
4. waste removal/detoxification
Answer:
Explanation:
In summary, it takes six turns of the Calvin cycle to fix six carbon atoms from CO2. These six turns require energy input from 12 ATP molecules and 12 NADPH molecules in the reduction step and 6 ATP molecules in the regeneration step.