Explain why the brain needs more information from some parts of the body.

Answers

Answer 1
Answer: OK so let me start you off with we don't use our whole brain. our brain is how we remember our family, multiplication and our brain is kind of the most important body part in our brain 

Related Questions

In the cell cycle, cytokinesis occurs at the end of
a human skin cell contains 46 chromosomes. A frog sprem cell conrains 12 chromosomes. which paie of number of a normal gamete from each of these species
A habitat is best described as _____.the place where organisms live, the organisms that live in a place, the factors controlling the organisms
You dilute your bacteriophage for plating 10^-6. You mix 0.1ml of the bacteriophage dilution with 0.3ml of bacteria and plate with top agar. The next day you count your plaques. You get 46 pfu at this dilution. What is the final concentration (pfu/ml) of the phage stock?
HELP ASAP!!!True of False: All species have the same number of chromosomes in the nuclei of their cells

There are some similarities between prokaryotic and eukaryotic cells. What structures is found in both prokaryotic and eukaryotic cells?

Answers

Answer:

DNA, ribosomes, plasma membrane and cytoplasm are the structures that are found in both.

Explanation:

Prokaryotes are the organisms that do not have a nucleus and other membrane-bound organelles and eukaryotes have a membrane-bound nucleus and another membrane-bound organelle.  

Apart from this there are some similarities between prokaryotic and eukaryotic cell like both have a highly selective cell membrane, they both have cytoplasm, both have DNA and ribosomes which is responsible for the expression of genes. Therefore DNA, ribosomes, plasma membrane, and cytoplasm are the structures that are common in both prokaryotes and eukaryotes.

Final answer:

Prokaryotic and eukaryotic cells, despite their differences, share four basic structures: the plasma membrane, cytoplasm, genetic material, and ribosomes.

Explanation:

The question you've asked pertains to the similarity between prokaryotic and eukaryotic cells. Despite their differences, all cells, whether they are prokaryotic or eukaryotic, share four basic structures. These include: the plasma membrane which acts as a barrier, cytoplasm which is a jelly-like substance inside the cell, genetic material (both DNA and RNA), and ribosomes where protein synthesis occurs. Prokaryotes and eukaryotes often come in different shapes, but these four structures always remain constant.


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The six kingdoms of life include bacteria that have cell walls with peptidoglycan, bacteria that have cell walls without peptidoglycan, protists, fungi, animals, and

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I think you have missed the Plant kingdom.
Bacteria with cell walls
Bacteria without cell walls
Protists
Fungi
Animals
Plants

The pictures i have attached might help you.

Energy sustainability can best be achieved by using ______.

Answers

Following are the choices:

a. nonrenewable energy sources b. renewable energy sources

c. carbon sequestration d. recycled plastics

The correct answer is:

b. renewable energy sources

Explanation:

Renewable energy is energy that is obtained from renewable resources, which are naturally provided on a human timescale, such as sunlight, wind, rain, tides, waves, and geothermal heat. Renewable energy compares to the provision of energy via renewable sources which are simply replaced fast enough as being used.

If this question has the same set of options like the previous ones, here are the following choices:
a. nonrenewable energy sources        b. renewable energy sources
c. carbon sequestration                       d. recycled plastics

The answer would be: 
Energy sustainability can best be achieved by using renewable energy sources.
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To create a sustainable future, we need to concentrate on renewable energy resources, such as wind power.

Recycling paper reduces water use.Please select the best answer from the choices provided

T
F

Answers

The statement is true that recycling paper reduces water use.

How does recycling paper reduce water use?

Recycling paper can indeed reduce water use in several ways. Producing paper from recycled fibers typically requires less water. The recycling process involves breaking down the used paper into pulp and removing impurities, which requires less water-intensive steps than starting from scratch with raw materials. Thus, recycling paper reduces the overall water consumption during paper production.

By recycling paper instead of disposing of it in landfills, the amount of paper waste sent for landfilling is reduced. Consequently, the potential for leachate formation and its associated water pollution risks can be minimized.

Overall, recycling paper helps conserve water by reducing water consumption during paper production, minimizing the need for extensive bleaching, and mitigating water pollution associated with landfilling.

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Answer:

It's True

Explanation:

Hope it helps :)

Explain how the Ocracoke ponies arrived to the island

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Answer:

Explanation:

National Park Service has been keeping the native ponies on Ocracoke Island since the 1960s. It is believed that these ponies arrived and left by the ships. These ships required to lower their load thus they left the ponies on the Island. These ponies are known as Ocracoke ponies and also called as Banker ponies. These ponies share a link to old Spanish horses genetically. The unique characteristics of the ponies include one fewer lumbar vertebrae, greater bone density, short necks, wide foreheads, and one fewer rib.

What base pairings normally occur during DNA replication

Answers

The base paring that occurs during DNA replication is Adenine to Thymine, Thymine to  Adenine, Cytosine to Guanine, Guanine  to Cytosine.

What base pairings normally occur during DNA replication?

During DNA replication, specific base pairings occur that ensure accurate and faithful duplication of the genetic information.

DNA consists of four nucleotide bases:

adenine (A),

thymine (T),

cytosine (C), and

guanine (G).

The base pairing rules are as follows:

Adenine (A) always pairs with Thymine (T).

Thymine (T) always pairs with Adenine (A).

Cytosine (C) always pairs with Guanine (G).

Guanine (G) always pairs with Cytosine (C).

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Adenine to thymine and cytosine to guanine are the base pairings during DNA replication.