The balanced chemical equation for cellular respiration is below. How does this equation represent the law of conservation of matter-that matter cannot be created or destroyed?C⁶H¹²0⁶ + 60² 》》》6C0² + 6H²0 + heat + ATP

A.) The inputs are different than the outputs.
B.) The atoms of hydrogen, oxygen, and carbon are rearranged.
C.) There are equal numbers of atoms on each side of the equation.
D.) The number of molecules is the same on either side of the equation.

Answers

Answer 1
Answer:

There are equal numbers of atoms on each side of the equation. The correct answer is C.

Cellular respiration and the balanced chemical equation

The balanced chemical equation for cellular respiration, C6H12O6 + 6O2 → 6CO2 + 6H2O + heat + ATP, exemplifies the law of conservation of matter. This law asserts that matter cannot be created or destroyed, only transformed. In this equation, equal numbers of atoms are present on both sides, symbolizing this principle.

While the reactants, glucose (C6H12O6) and oxygen (O2), undergo rearrangement, their total mass remains constant. Carbon, hydrogen, and oxygen atoms are transformed into carbon dioxide (6CO2) and water (6H2O) while releasing energy in the form of heat and ATP.

This equation showcases the fundamental scientific concept of matter conservation in chemical reactions.

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Answer 2
Answer:

Answer:

C

Explanation:

same number of carbon

hydrogen

and

oxygen


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Answer:

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Which genetic factors determine the coloring of a hummingbird? alleles traits genotypes phenotypes

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The genetic factor that determines the coloring of a humming bird is Phenotypes

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please help me If a heterozygous dominant tall pea plant is crossed with a short pea plant, what is the expected phenotypic ratio of tall:short plants? 1:1 1:2 3:1 all tall all short

Answers

Assuming a diallelic gene exhibiting complete dominance, with tall plants being the dominant phenotype and short plants the recessive one, the cross of a heter0zyg0us plant with a short one results in a phenotypic ratio 1:1.

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We know that the cross involved a heter0zyg0us dominant tall pea plant and a short pea plant.

We will assume a diallelic gene coding for this trait, and exhibiting complete dominance. This means that the dominant allele completely masks the expression of the recessive allele.

So,

  • h0m0zyg0us dominant genotype    ⇒     dominant phenotype
  • heter0zyg0us genotype                    ⇒     dominant phenotype
  • h0m0zygous recessive genotype    ⇒     recessive phenotype

If the heter0zyg0us plant exhibits the dominant phenotype, it means that the allele coding for tall plants in the dominant allele.

So let us say that

  • T is the dominant allele that codes for tall plants
  • t is the recessive allele that codes for short plant

According to this information, the tall plant is Tt and the short plant is tt.

So let us make the cross,

Cross:  tall plant with short plant

Parentals)    Tt      x       tt

Gametes)   T     t        t     t

Punnett square)      T            t

                       t       Tt            tt

                       t       Tt            tt

F1) Genotype

  • 2/4 = 1/2 = 50% of the progeny is expected to be heter0zygous, Tt
  • 2/4 = 1/2 = 50% of the progeny is expected to be h0m0zyg0us recessive, tt

Genotypic ratio ⇒ 1:1

    Phenotype

  • 2/4 = 1/2 = 50% of the progeny is expected to be tall plants
  • 2/4 = 1/2 = 50% of the progeny is expected to be short plants

Phenotypic ratio ⇒ 1:1

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dominant trait = T (tall)
recessive trait = t (short)

heterozygous, meaning different, tall pea plant = Tt
short, short being recessive, pea plant = tt

phenotype means physical looks, which is either tall or short

T t

t | Tt tt
t | Tt tt

two Tt & two tt meaning there are 2 tall and two short. therefore,
1:1

What kind of plants did Gregor Mendel conduct his famous genetic experiments on? tulips cucumbers beans peas

Answers

Peas would be the correct answer. 

peas would be the white answer