The number of cans required by Kathryn to fill the pitcher cylinder is 7.3 cans.
<h3>What is volume of cylinder?</h3>
The volume of cylinder is given as the space occupied in the interior of the cylinder. It is given by:

The volume of the cylinder pitcher to be filled is:

The volume of one small can is:

The volume given by one can is 24 times pi. The number of cans required to fill the pitcher is:

Kathryn in order to fill the cylinder required 7.3 cans.
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One thing that aldosterone is able to affect from the given options is A) regulation of body fluid concentration along the distal convoluted tubule and collecting duct.
<h3 /><h3>What does aldosterone do?</h3>
The aldosterone hormone has several functions in the body due to its nature as a steroid hormone. One thing that is does is to control the balance of water in the kidney.
To be more technical, it regulates the body fluid concentration along the distal convoluted tubule and collecting duct by keeping the level of water and sale balanced. It does this by controlling sodium and potassium levels.
Options for this question include:
- A) regulation of body fluid concentration along the distal convoluted tubule and collecting duct
- B) osmotic flow of water in the proximal convoluted tubule
- C) removal of wastes through the entire renal tubule
- D) pH regulation
- E) formation of plasma proteins
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I believe the higher/stronger the magnitude is the higher the retraction or repulse.
BRAINLIEST
In the pillbug experiment, your hypothesis was related to the environment Pillbugs prefer. This is further explained below.
<h3>What is a pillbug experiment?</h3>
Generally, Terrestrial isopods, such as pillbugs, are members of the crustacean family. Pillbugs, often known as roly-polys, are the subjects of this experiment, which examines their preference for lighting or darkness.
In conclusion, In the experiment with the pillbugs, your hypothesis
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Answer:
Step 1
The expression for the electric force between 2 charges is given as
F=k q1q2/r2
Here
F is the electric force
k is the coulombs constant
q1 is the charge on 1st particle
q2 is the charge on second particle
r is the distance the charges
Step 2
From the above expression we can clearly see that the force has the inverse relation with the square of distance between the charges. So if the distance between the charges increases, force will decrease.
Therefore, when the distance between the object increases, the magnitude of the force decreases.
Explanation: