There are four major factors that affect population growth:
Birth rate: The number of births per 1000 people in a year. This has a positive effect on population growth. This makes sense, as people being born adds to the population.
Death rate: The number of deaths per 1000 people. This has a negative effect on population growth. People dying lowers the total population.
Immigration: The number of people entering the population. This has a positive effect on population growth. People entering the population increases it.
Emigration: The number of people leaving the population. This has a negative effect on population growth. People leaving the population decreases it.
Birth rates, death rates, immigration, and emigration are the factors that greatly affect population growth.
The four factors that affect population growth are birth rates, death rates, immigration, and emigration. If the birth rate is higher than death rate, population tends to increase while on the other hand, if death rate is higher than birth rate then the population tends to decrease.
If more immigration and emigration occurs in a country then its population increases whereas decrease in population of that country from which they are migrated so we can conclude that birth rates, death rates, immigration, and emigration are the factors that greatly affect population growth.
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Answer:
I believe it's the last one! :)
Answer:
a
Explanation:
Answer:
Glycolysis.
Explanation:
Aerobic respiration involves complete breakdown of glucose molecule in the presence of oxygen to release 36 molecules of ATP. On the other hand, anaerobic respiration involves partial breakdown of glucose molecule, when oxygen is absent to release only two molecules of ATP.
Glycolysis is a universal process as it is common in both aerobic and anaerobic respiration. It does not require oxygen and can occur in both presence or absence of oxygen. Glycolysis forms two [pyruvate molecules, two ATP molecules. along with two NADH molecules from one glucose molecule.
Thus, the correct answer is 'glycolysis.'
Both aerobic and anaerobic respiration involve the breakdown of glucose for energy, but aerobic respiration requires oxygen and produces carbon dioxide and water, while anaerobic respiration occurs without oxygen and produces either ethanol or lactic acid.
Aerobic respiration and anaerobic respiration are two different processes that cells use to generate energy, but they share some similarities. Both processes involve the breakdown of glucose molecules to release energy in the form of ATP (adenosine triphosphate). Additionally, both processes occur in the cytoplasm of cells and involve the initial step of glycolysis, where glucose is converted into pyruvate.
However, the key difference between aerobic and anaerobic respiration lies in the final steps. Aerobic respiration requires oxygen and proceeds with the conversion of pyruvate into carbon dioxide and water through the Krebs cycle and the electron transport chain in the mitochondria. In contrast, anaerobic respiration occurs in the absence of oxygen and follows either alcoholic fermentation or lactic acid fermentation, where pyruvate is converted into either ethanol or lactic acid, respectively.
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disproved that life can generate from nonlife
proved that meat does produce maggots
disproved that meat was bad for you
Answer: Disproved that life can generate from nonlife.
Explanation:
Answer:
Disproved that life can generate from nonlife.
Explanation:
Calcium is a common element found in bones in the human body
Which is a common element in the human body that is located mostly in bones?
The correct answer to this question is: Calcium
B. effects of a decreasing beaver population
C. effects of agricultural farming
D. effects of density-dependent factors
The correct answer is:
A. effects of dams on society
Explanation:
The exchange of a river's flow and sediment conveyor downstream of a dam often causes the greatest sustained environmental impacts. Yet even complex changes in the number and timing of water flows impact aquatic and riparian life, which can explain the biological web of a river system.