Assuming you want the rate per one week.
1/2 ÷ 3/7 = x / 1
(1/2)(7/3) = x
7/6 = x
1 1/6 = x
The plant grows one and one-sixth inches in a week.
Answer:
Exercising
Explanation:
This happens because, when you exercise, the blood vessels in your muscles dilate (vasodilation) and as a consequence, the rate of blood flow is faster. The increased blood flow delivers more oxygenated blood to the working muscle.
Both systems regulate blood flow throughout the body.
Both systems help remove carbon dioxide from the body.
Both systems send messages to the nervous system for breathing.
The respiratory and circulatory systems are similar Both systems help remove carbon dioxide from the body. Thus, option "C" is correct.
The respiratory system Circulates oxygen into the body and blood needs oxygen the circulatory system circulates all the blood in your body in the works together with the respiratory system.
Thus, option "C" is correct.
To learn more about the respiratory system click here:
#SPJ2
Answer:
Both systems help remove carbon dioxide from the body.
Explanation:
I just took the test
Answer: Speed is the distance covered in a unit of time, and acceleration is the rate of change of speed that also takes into consideration direction.
Explanation: That is the answer I have on my note.
Answer:
The biggest difference, however, is that the line in the logistic growth graph changes direction and begins to level off as it nears the carrying capacity. That means that the main difference between exponential and logistic growth is that logistic growth takes into account carrying capacity.
Answer: So the difference between exponential growth and logistic growth is that Exponential growth model is one that exists when the the rate of growth is proportional to the existing amount. For this, a population need ideal conditions: bacteria in a petri dish, radioactive decay or compound interest in a saving amount. The logistics is a different kind of behavior which is more realistic to population not in ideal conditions: the rate of growth is proportional to the amount but there is also a damping factor due to competition and limited resources. This model works that at first the rate of growth getting faster then it slows down since there are too many individual competing on limited space. When this population reaches its equilibrium state, the rate of growth is zero and if there will be no interruptions, the size of the population will stay constant.
Explanation: