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melomori
3 days ago
5

If the concentration of oxygen in a body tissue cell is 5% and the concentration of oxygen in the blood surrounding the cell is

10%, which direction will the oxygen diffuse?
Select one:
a. Oxygen will diffuse out of the body tissue cell and into the blood.
b. Oxygen only diffuses in video games, not in real life.
c. Oxygen will diffuse into the body tissue cell.
d. Oxygen will not diffuse. It is already at dynamic equilibrium.
Biology
1 answer:
inysia [1.6K]3 days ago
3 0

Answer:

Oxygen will enter the body tissue cell through diffusion

Explanation:

Diffusion refers to the process where particles travel from areas of higher concentration to those of lower concentration.

Given that the oxygen level in the blood around the cell is greater, oxygen will move into the body tissue cell which has a lower concentration.

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Answer:

Paraquat serves as a herbicide.

Explanation:

Coral bleaching wasn't induced by paraquat since it is a herbicide aimed at eliminating weeds, not algae. Coral hosts small algae essential for its coloration, hence applying paraquat wouldn't affect these algae, thus preventing coral bleaching. In contrast, if a different chemical that targets algae is used, it results in coral bleaching and turns the coral white.

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1 month ago
The rate of demand for energy in the body determines whether the body will use aerobic or
Rainbow [1731]

Explanation:

Isabella: 50-meter freestyle - limited oxygen supply over a brief duration

  • anaerobic cellular metabolism
  • partial breakdown of glucose results in: lactic acid
  • yields 2 ATP molecules per gram of glucose

Tyler: half marathon- sufficient oxygen supply to tissues over an extended period

  • aerobic cellular metabolism
  • full glucose breakdown
  • yields 36 ATP molecules per gram of glucose
  • waste products: H2O, CO2

Further Explanation:

in summary: C6H12O6 (glucose) + 6 O2 → 6 CO2 + 6 H2O + ≈38 ATP

Mitochondria, which are small membrane-bound organelles in all eukaryotic cells, generate most of the chemical energy necessary for cellular biochemical processes. This energy is stored as ATP, which is synthesized in the mitochondria. ATP production through respiration in the mitochondria involves oxygen in the Krebs’ or Citric acid cycle, utilizing pyruvate oxidation (which occurs through glycolysis in the cytoplasm).

Oxidative phosphorylation refers to a mechanism where the NADH and FADH2 produced earlier in the respiration process donate electrons to the electron transport chain, reverting to their original forms, NADH+ and FAD. The flow of electrons through the chain releases energy that is utilized to pump protons out of the mitochondrial matrix.

This creates a gradient with a varying number of protons on each side of the membrane, allowing protons to flow back into the matrix via the ATP synthase enzyme, converting ADP into ATP. At the electron transport chain's conclusion, three oxygen molecules accept electrons and protons, culminating in water formation...

  • Glycolysis happens in the cytoplasm, using 2 ATP to split glucose into 2 pyruvates, yielding 4 ATP and 2 NADH molecules (resulting in a net ATP gain of 2)
  • The Citric acid or Krab cycle occurs in the mitochondrial matrix, producing 6 CO2 by combining oxygen with carbon from pyruvate, along with 2 ATP, 8 NADH, and 2 FADH2.
  • The electron transport chain operates at the inner mitochondrial membrane, generating 34 ATP, with electrons merging with H+ derived from 10 NADH and 4 FADH2, replenishing electron acceptors and 3 oxygens to yield 6 H2O, 10 NAD+, and 4 FAD.

In specific cellular conditions, aerobic respiration may be impeded due to various reasons:

  • - absence of inorganic final electron acceptors
  • - incomplete or non-existent electron transport system
  • - lack of necessary genes for enzymes in the Kreb's cycle

Consequently, cells resort to alternative methods for ATP energy production and to regenerate NAD+, an oxidized form of NADH that serves as the primary electron carrier during glycolysis. Pyruvate, generated in the cytoplasm through glycolysis, also acts as an electron acceptor in the fermentation process.

Learn more about cellular life at

Learn more about cellular respiration at

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1. rivers and streams 2. groundwater seepage
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"Sunlight is required for plant growth. When light energy is absorbed by a leaf, after a series of chemical reactions, the light
inysia [1669]

Answer:

TRUE

Explanation:

Green plants possess chlorophyll, a green pigment in their leaves. Chlorophyll can absorb the sunlight required for photosynthesis to occur. Photosynthesis refers to the process by which green plants produce food in the presence of light, water (H₂O), and carbon dioxide (CO₂), resulting in the release of glucose and oxygen (O₂) needed for the survival of all living beings.

The reaction that occurs during photosynthesis is illustrated below-

6CO₂ + 6H₂O → C₆H₁₂O₆ + 6O₂

This method converts light energy into chemical energy, which is stored in glucose molecules.

Consequently, the statement is TRUE.

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13 days ago
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