Which organism most likely has 10% of the Sun's energy available for its use?Mouse

Elm tree

Snake

Hawk

Answers

Answer 1
Answer: The primary consumer in a food chain that would receive 10% (converted to biomass) of the Sun's energy is the mouse. The Elm tree would receive all (100%), the mouse follows as it eats greens, then the snake as it eats mice, then the hawk as top in the food chain in terms of the energy from the Sun itself.

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Which principle states that two species in the same habitat cannot have the same niche?

Answers

The correct answer is Competitive exclusion principle.

Competitive exclusion is the principle which states that two species in the same habitat cannot have the same niche.
When one species has little advantage over the other, the one with little advantage will be able to dominate in the long term. 
It is attributed to the Georgia Gause.
The question says,'which principle states that two species in the same habitat can not have the same niche? The principle is called competitive exclusion principle. It tates that two species that compete for exactly the same resources can not coexist stably. One specie will outcompete the other specie, which will be eliminated.

Which is a belief of deism?a. The pope is God's spokesman to the human race.
b. A monarch's power comes from God.
c. God ensures that bad things don't happen to good people.
d. God created an ordered universe but does not intervene in people’s affairs.

Answers

Correct answer:  D. God created an ordered universe but does not intervene in people's affairs.

Further detail:

Deism and rational religion were popular approaches to religion by philosophical thinkers during the Enlightenment.  John Locke was one of the early proponents of this sort of approach to thinking about God.  Deists (or we could say "God-ists") believed in God, but as a rather remote Being who had created the universe by his power and embedded in it natural laws that allowed it to run on its own from there.  Some have compared it to viewing God as the "great watchmaker" who designed the universe as a perpetual watch or clock that could run on from there without needing his personal intervention in daily affairs of earthly life.

The answer is D.God created an ordered universe but does not intervene in people’s affairs.

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A half-life of a radioactive substance is the amount of time needed for one half of _____ to decay into a stable isotope.A) the neutrons in the nuclei

B) its beta particles

C) the nuclei in a sample

Answers

A half-life of a radioactive substance is the amount of time needed for one hald of the nuclie in a sample to decay into a stable isotope.Many protons and neutrons disturb the balance of binding energy from a strong nuclear forces resulting for the nucleus to be unstable. To be in a balance state, the unstable nucleus will give off a proton or neutron through radioactive decay.

nuclie in a sample is the answer

Which vitamin requires intrinsic factor in order to be absorbed?A. B12
B. K
C. A
D. C

Answers

Final answer:

Vitamin B12 requires an intrinsic factor for absorption. The intrinsic factor is a protein produced in the stomach which aids in the absorption of Vitamin B12 in the small intestine. Lack of intrinsic factor can lead to vitamin B12 deficiency.

Explanation:

The vitamin that requires intrinsic factor in order to be absorbed is Vitamin B12. The intrinsic factor is a protein produced by the stomach that is necessary for the absorption of Vitamin B12 in the small intestine. Without the presence of intrinsic factor, Vitamin B12 cannot be effectively absorbed, leading to a potential vitamin B12 deficiency.

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Final answer:

Vitamin B12 requires intrinsic factor for absorption.

Explanation:

The vitamin that requires intrinsic factor in order to be absorbed is B12. Intrinsic factor is a protein that is produced by the stomach and is necessary for the absorption of vitamin B12 in the small intestine. Without intrinsic factor, the body cannot effectively absorb vitamin B12, leading to a deficiency.

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can you predict the properties of a compound by knowing the properties of the elements that make up the compound?

Answers

No, you cannot determine the properties of a chemical compound by solely knowing the properties of the elements that make up the compound, because in a chemical compound, the properties are completely different and or independent of the chemical and or physical properties of the individual elements used to make up the compound.

Final answer:

The properties of a compound can often be predicted from the properties of its constituent elements, however, they're not always the same due to changes that occur during chemical reactions.

Explanation:

Yes, you can often predict the properties of a compound by knowing the properties of the elements that make it up. This is a fundamental concept in chemistry. For instance, sodium is a very reactive metal and chlorine is a poisonous gas, but when they combine to form sodium chloride, the resulting compound is ordinary table salt, which is safe to consume. However, it's important to note that while the properties of a compound are related to the properties of its constituent elements, they are not always the same. This is due to the changes that occur during the chemical reaction process, in which bonds are formed or broken and electrons are shared, gained, or lost.

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What do we mean when we use the terms monohybrid cross and dihybrid cross? A) A monohybrid cross involves a single parent, whereas a dihybrid cross involves two parents.
B) A monohybrid cross produces a single progeny, whereas a dihybrid cross produces two progeny.
C) A dihybrid cross involves organisms that are heterozygous for two characters and a monohybrid cross involves only one.
D) A monohybrid cross is performed for one generation, whereas a dihybrid cross is performed for two generations.
E) A monohybrid cross results in a 9:3:3:1 ratio whereas a dihybrid cross gives a 3:1 ratio.

Answers

The answer is C) A dihybrid cross involves organisms that are heterozygous for two characters and a monohybrid cross involves only one.

A dihybrid cross considers two traits, while a monohybrid cross considers one trait to be inherited.
The other statements cannot be true because of the following:
A) Both monohybrid and dihybrid cross involves two parents.
B) There is more than one progeny in both 
monohybrid and dihybrid cross, and the number depends on parental genotypes.
D) Both 
monohybrid and dihybrid cross are performed for two generations.
E) 
A monohybrid cross results in a 3:1 ratio whereas a dihybrid cross gives a 9:3:3:1 ratio.