Explanation:
producers? O A. Producers and primary consumers compete with each other for food sources. B. Primary consumers eat secondary consumers, which rely on producers for food. C. Producers provide primary consumers with the chemical energy they need. D. Primary consumers provide producers with the chemical energy
The statements that are true concerning living organisms and how they acquire energy are;
- Cells, the basic unit of life, cannot survive on their own. Instead, all living organisms must obtain and use energy to live.
- The daily food consumption of an organism provides the energy to support all the metabolic process required for the organism to live.
<h3>What is are Living organisms?</h3>
Living organisms can be regarded as organisms that posses characteristics such as the ability to move and reproduce.
However, they acquire useful energy in different ways,and daily food consumption of an organism provides the energy to support all the metabolic process.
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Answer:
oxygen. And yes answer this 2.
Prepare a conversation (dialogue) between two friends explaining about the causes and effects of environment pollution and give it a suitable topic. (About 180 to 200 words)
Answer:
B
Explanation:
This H+ ion gradient is referred to as a proton motive force. It is created using energy from the Krebs cycle in the matrix of the mitochondria. As electrons are passed from one protein complex to another, reducing molecules such as NADH and FADH2, the protons are pumped to the intermembrane space of the mitochondria. ATP synthase uses this potential to generate ATP as the H+ ions move downgradient (back to the matrix) through channels in the protein enzyme.
In the Hardy-Weinberg principle, the values of p and q will not change if evolution is not occurring.
<h3>What is the Hardy-Weinberg principle?</h3>
The Hardy-Weinberg principle is a model used in population genetics to estimate genotypic and allele frequencies in a population.
The Hardy-Weinberg principle states that allele and genotypic frequencies remain constant in absence of evolutionary forces.
These evolutionary forces include nonrandom mating, gene drift, gene flow, mutation and natural selection.
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