Which list describes the path carbon dioxide takes to the nose? Bronchi, alveolar sacs, larynx, pharynx
Trachea, bronchi, capillaries, alveoli
Capillaries, trachea, bronchi, larynx
Alveolar sacs, bronchi, trachea, pharynx

Answers

Answer 1
Answer:

Alveolar sacs, bronchi, trachea, pharynx is the list that describes the path carbon dioxide takes to the nose. Thus, option D is correct.

What is the respiratory system?

The respiratory system has been refers to the system of the organs and tissues which would work together to take in oxygen into the cells and remove carbon dioxide from the body. Parts of the respiratory system include the lungs, the bronchi, trachea, etc.

The path of the carbon dioxide as it leaves the body describes the path through which carbon dioxide takes as it goes from the capillaries to be exhaled via the nose or mouth. During the inhalation through the nose or mouth the air first enters the "pharynx" which is also called as throat, then the air moves towards the "larynx" . Is a passage between the pharynx and the trachea.

Carbon dioxide would follows the following path on the leaves the capillaries: alveoli--->bronchioles--->bronchi---> trachea --->larynx --->pharynx---> mouth/nose

Therefore, Alveolar sacs, bronchi, trachea, pharynx is the list that describes the path carbon dioxide takes to the nose. Thus, option D is correct.

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Answer 2
Answer:

Answer:

D

Explanation:

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Ionic bonds are formed when when one or more electrons are transferred from one atom to another true or false

Answers

True, ionic bonds are formed when one or more electrons are transfer between atoms. Electron transfer produces negative ions called anions and positive ions called cations.

What is the phenotype of gg x gg

Answers

The phenotype of ggXgg is gg because You dont know what gg is

gg!

The phenotype would be the homozygous recessive trait.

Which characteristic do all these cells have in common? * 20 points Captionless Image Membrane-bound Organelles Vacoules Genetic Material Nucleus

Answers

Answer:

Thus, the common feature of the organelles within the list is that they are surrounded by a membrane. However, the membranes of each of the organelles are slightly different. For example, the nuclear membrane contains pores through which mRNA can travel to the cytoplasm in order for protein synthesis to occur.

Explanation:

How is burning fossil fules different from other processes that cycle carbon in enviornments on earth

Answers

Answer:

Burning fossil fuels is different from other processes that cycle carbon in environments on Earth in the following ways:

Speed: Burning fossil fuels releases carbon dioxide into the atmosphere much more quickly than other natural processes. For example, it takes millions of years for carbon dioxide to be released from rocks and sediments through natural processes, but fossil fuels can be burned in a matter of seconds.

Scale: The amount of carbon dioxide released into the atmosphere from burning fossil fuels is much greater than the amount released from other natural processes. In 2019, humans emitted about 38 billion tons of carbon dioxide into the atmosphere, of which about 89% came from burning fossil fuels.

Location: Burning fossil fuels releases carbon dioxide into the atmosphere in specific locations, such as cities and power plants. This can lead to high concentrations of carbon dioxide in certain areas, which can have negative impacts on human health and the environment.

Other processes that cycle carbon in environments on Earth include:

Photosynthesis: Plants use carbon dioxide from the atmosphere to produce food.

Respiration: Plants and animals release carbon dioxide into the atmosphere when they breathe.

Decomposition: When plants and animals die, their bodies are decomposed by bacteria and fungi, which release carbon dioxide into the atmosphere.

Weathering: Rocks and sediments are weathered over time, releasing carbon dioxide into the atmosphere.

Volcanic eruptions: Volcanic eruptions can release large amounts of carbon dioxide into the atmosphere.

These natural processes cycle carbon between the atmosphere, land, and oceans. The carbon cycle is a natural process that has been happening for millions of years. However, human activities, such as burning fossil fuels, are disrupting the carbon cycle and causing carbon dioxide levels in the atmosphere to rise. This is leading to climate change, which is having negative impacts on the planet and its inhabitants.

To reduce the impact of burning fossil fuels on the carbon cycle, we can transition to renewable energy sources, such as solar and wind power. We can also improve energy efficiency and reduce our reliance on fossil fuels.

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Why are decomposers necessary for the continuation of life on Earth?

Answers

Decomposer are very necessary for the continuation of life on Earth because they are the ones who decomposes the dead bodies of the living things and convert it into nutrients that is very useful for the plants to grow healthy.

What carbohydrates provide short-term energy storage?

Answers

Monosaccharide and disaccharide

Final answer:

Glucose and glycogen are carbohydrates that provide short-term energy storage.

Explanation:

The carbohydrates that provide short-term energy storage are glucose and glycogen. Glucose is a simple sugar that is readily available in the bloodstream and can be used for immediate energy. Glycogen is a complex carbohydrate that is stored in the liver and muscles and can be broken down into glucose when needed for energy.




  1. Glucose: Glucose is the primary source of energy for the body and is used by cells to produce ATP, the molecule that fuels cellular processes.

  2. Glycogen: Glycogen serves as a storage form of glucose in the body. When blood glucose levels are low, glycogen is broken down into glucose to maintain blood sugar levels and provide energy.

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