B. its surface-to-volume ratio decreases as the cell becomes larger.
C. its surface-to-volume ratio decreases as the cell becomes smaller.
D. its ability to exchange materials is affected by a growing surface-to-volume ratio.
A cell can only grow to a certain size because as it grows, its surface-to-volume ratio decreases, reducing the efficiency of material exchange between the cell and its environment. The larger the cell, the more challenging it is to exchange materials, hence a size limitation.
The reason a cell can only grow so large in size is due to the decrease in its surface-to-volume ratio as the cell becomes larger. This concept, often discussed in biology, refers to the relationship between the surface area of a cell (which determines the amount of substances that can be exchanged with the environment) and its volume (which determines the amount of substances required by the cell).
As the cell grows larger, its volume increases more rapidly than its surface area, reducing the ability of the cell to exchange materials efficiently. Thus, the correct answer is Option B: its surface-to-volume ratio decreases as the cell becomes larger.
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Capillaries; veins; arteries
Capillaries allow materials to be exchanged between the blood and tissues, veins carry blood towards the heart, and arteries carry blood away from the heart.
Capillaries are small blood vessels through which molecules such as oxygen and glucose enter the cells.
Veins are tubes or blood vessels that transport blood toward the heart. Veins mostly transport deoxygenated blood towards the heart except the pulmonary and umbilical veins, which transports oxygenated blood toward heart.
Arteries are blood vessels that transport blood away from the heart to other parts of the body. Arteries have elastic walls and they are stronger and thicker than veins.
The answer is true.
In morphology, the scientist relies on genetic similarities in determining taxon based.
Morphology is the branch of science which deals with the study of structure and form of organisms and also the organism’s specific structural features.
problems?
The real world problems are explained below:
Various non-renewable energy resources like natural gas and fossil fuels. We can use biology to help with the development and improvement of renewable energy sources like hydroelectric energy.
Many countries have issues with starvation and famine. It's usually due to there are various people in a dry, desolate area, like as Yemen, or Afghanistan, where it's very difficult to grow food. We can use biology to create or generate new seeds.
Learn more: brainly.com/question/3617478?referrer=searchResults
Answer:
a. Lack of energy resources
Many non-renewable energy resources, such as natural gas and fossil fuels, and quickly being used up. We can use biology to help with the creation and improvement of renewable energy sources, such as geothermal or hydroelectric energy.
b. Food scarcity in developing countries
Many third world countries have issues with starvation and famine. It's usually because there are many people in a dry, desolate area, such as Yemen, Niger, or Afghanistan, where it's difficult to grow food. We can use biology to develop new seeds that can withstand extreme heat or drought, to combat famine in these countries.
I hope this helps!
They move in a more circular pattern.
They move faster.
They move more randomly.
Answer:
burning of fossil fuels
Explanation:
Answer:
photosynthesis
Explanation:
the equation for photosynthesis is
6CO2 + 6H20 → C6H12O6 + 602