Over a lifetime, a diet high in cholesterol can cause blood vessels to become less elastic. WHICH CAN LEAD TO HIGH BLOOD PRESSURE? WHAT DISEASE DESCRIBES THIS CONDITION? A. obesity
B. Heat stroke
C. Atherosclerosis
D.sickle cell anemia

Answers

Answer 1
Answer: A. obesity, is best. Option.
Answer 2
Answer: I think it is B.heat stroke

Related Questions

You have examined several body systems that rely and work with each other in order function properly. One very important task that amphibians and all living things need is to efficiently exchange gases in order to survive. Explain in a brief essay how the cardiovascular system and respiratory system work with each other based on your experience and observations from this virtual lab.
Traits/characteristics in an organism's population can be seen and/or unseen. If the traits being seen can be found in most of the organisms, it is referred to as........ a) Recessive traits b) Dominant traits c) Polygenic traits d) Common traits
solar radiation travels through the earth's atmosphere and warms the planet's surface. greenhouse gases like carbon dioxide in the earth's atmosphere reabsorb the heat and warm the planet. the amounts of greenhouse gases have been increasing over the past century, causing the earth's surface temperature to increase. this gradual temperature change is thought to have many negative environmental consequences. which of these might be a positive effect of the increase in carbon dioxide levels? a) rise in sea levels b) decrease in plant growth c) increase in plant growth d) increased melting of ice caps
List four types of stem cells
What information does the atomic number of an element provide? A. the number of neutrons in one atom of the element B. the total number of protons and neutrons in one atom of the element C. the total number of electrons and neutrons in one atom of the element D. the number of protons in one atom of the element

What are the primary structures for modifying and packaging of cellular secretions for export from the cell? a. lysosomes b. mitochondria c. Golgi bodies d. chloroplasts e. ribosomes

Answers

Answer:

c. Golgi bodies

Explanation:

The Golgi apparatus, often referred to as the Golgi bodies, plays a crucial role in modifying and packaging cellular secretions for export from the cell. It is a cellular organelle responsible for processing, modifying, and sorting proteins and lipids that are synthesized in other parts of the cell, such as the endoplasmic reticulum (ER).

Here's how the Golgi apparatus works:

Modification: Proteins and lipids synthesized in the ER are initially in an immature, non-functional form. The Golgi apparatus modifies these molecules by adding specific chemical groups, such as carbohydrates (glycosylation), to them. This modification is essential for their proper function.

Sorting: The Golgi apparatus also sorts these modified molecules into vesicles, which are small membrane-bound sacs. These vesicles can contain various substances, including enzymes, hormones, or other proteins that need to be exported or sent to other parts of the cell.

Packaging for Export: Once sorted, the Golgi apparatus packages these vesicles for export. They can merge with the cell's plasma membrane and release their contents outside the cell through a process called exocytosis. This allows cellular secretions to be transported outside the cell to perform their functions.

In summary, the Golgi apparatus is responsible for modifying, sorting, and packaging cellular secretions for export, making it a crucial organelle in the cell's secretory pathway. This process ensures that proteins and other molecules are correctly processed and delivered to their intended destinations within or outside the cell.

Is green light most or least useful in photosynthesis? Why?

Answers

Green is the least useful light for photosynthesis. We know that becsuse plants look green, so we know that the plant doesn't absorb green. It just discards it.
it is least useful or effective in photosynthesis,,,
 because
the chlorophyll where light is trapped is itself green in colour...
so when sunlight falls on it ,, it traps all lights but not the green colour... and reflects green light so this green is not used or least used as it is reflected....
also plants appear green due to this reflection....

I’m not to sure what the answer is

Answers

Recessive??? I think that is the answer

The classification system developed by Linnaeus in the early 1700s divided living organisms into plant and animal kingdoms. Today, that has been expanded into five kingdoms. Which of the following inventions was most responsible for creating the need for the additional three kingdoms and why?

Answers

How did Linnaeus classify living organisms in the 1700s?

In Systema Naturae, Linnaeus classified nature into a hierarchy. He proposed that there were three broad groups, called kingdoms, into which the whole of nature could fit. These kingdoms were animals, plants, and minerals. He divided each of these kingdoms into classes.

Why did Linnaeus developed a classification system?

It was developed by Swedish botanist Carolus Linnaeus in the 1700s. He tried to classify all living things that were known at his time. He grouped together organisms that shared obvious physical traits, such as number of legs or shape of leaves.

Living things are divided into five kingdoms:

  • animal
  • plant
  • fungi
  • protist
  • monera.

Learn more about  Linnaeus here: brainly.com/question/14037080

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Microscopes made it possible to learn more about single-celled organisms.

1) The generation of ATP occurs by which of the following? A - Osmosis
B - Mitosis
C - Meiosis
D - Chemiosmosis

2) The final product of _______ is glucose.
A - Cellular respiration
B - The light dependent reaction
C - The Calvin cycle
D - None of the above

Answers

Your answers would be 

1.) D
2.) I think C

Runners only have enough stored ATP in their muscle cells to run for about five seconds. Which answer correctly explains how will the runner’s body adjust to the longer distance, for example, a marathon (42.1 km)?The runner's body will convert stored fat molecules into energy.

The runner's body will create all of the needed energy through fermentation.

The runner's body will supply all of the needed energy through cellular respiration.


The runner's body will produce the ATP that is required through glycolysis.

Answers

The runner's body will produce the ATP that is required through glycolysis body adjust to the longer distance.