The observation that NMDA receptor blockade interferes with performance in the Morris water maze provides an example of a _______ supporting the connection between LTP and memory.

Answers

Answer 1

The observation that NMDA receptor blockade interferes with performance in the Morris water maze provides an example of a somatic intervention experiment supporting the connection between LTP and memory.

What is a somatic intervention experiment?

Somatic Intervention is a technique that allows you to recognize and interrupt habitual patterns (such as anxiety, anger, stress, or fear), release bodily tension and associated memories, and move forward in a more calm and focused manner.

You will learn a new language through Somatic Intervention.

Thus, the correct option is somatic intervention experiment.

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Related Questions

Is melanin a gene or protein?

Answers

Answer:

Protein

Explanation:

Melanin is a protein that affects the color of our hair, skin, or animals fur.


I hope it helps! Have a great day!

Pan~

Answer:

Protein

Explanation:

Melanin is a protein that causes color.


I hope it helps! Have a great day!

Moronic~

Which of the following is a learned behavior? question 7 options: a person touching a red burner on the stove and pulling it back quickly. baby ducks follow their mother immediately after birth. infant babies breathing as soon as they are born

Answers

Answer:

baby ducks follow their mother immediately after birth.

Explanation:

How are organisms that have alternating generations different from most plants and animals?​

Answers

Answer:

plant organisms can alternate between diploid sporophyte and haploid gametophyte phases.

Explanation:

Once mature, the gametophyte produces male and female gametes. When haploid gametes unite, they form a diploid zygote. The zygote grows via mitosis to form a new diploid sporophyte,Thus unlike in animals.

How does energy from cellular respiration ultimately comes from the sun

Answers

In photosynthesis, solar energy is harvested as chemical energy in a process that converts water and carbon dioxide to glucose. Oxygen is released as a byproduct. In cellular respiration, oxygen is used to break down glucose, releasing chemical energy and heat in the process.
In photosynthesis, solar energy is harvested as chemical energy in a process that converts water and carbon dioxide to glucose. Oxygen is released as a byproduct. In cellular respiration, oxygen is used to break down glucose, releasing chemical energy and heat in the process.

Which of these is an example of both an acquired and inherited trait?

Answers

which of what i cant tell

Smelts are the primary food source for lake trout and salmon in Moosehead. In the late 1980s, we documented a dramatic increase in the abundance of wild lake trout in Moosehead Lake. Swelling lake trout numbers taxed the forage base and the smelt population took a dive. What was the result of depletion of the smelt population? Choose all that apply.
A) salmon populations declined
B) all three populations increased
C) all three populations would decrease
D) growth rates of both lake trout and salmon suffered
E) salmon population would decrease but the others would remain unchanged

Answers

Answer:A and D

Explanation: trust me don’t put c

In the late 1980s, a dramatic increase in the abundance of wild lake trout decimated the salmon population. The salmon population declined the most in the late 1980s. Option A is the correct answer.

 

     

What is the prey-predator relationship?

In an ecosystem, there are predators and prey. If the predator population grows, they will consume more prey more quickly, causing the prey population to decline rapidly. When there are more prey in an ecosystem, it would be advantageous for the predator, and after some time, the prey will decrease in number and the predator will increase.

Salmon, mouth bass, and lake trout feed on smelt in the lake. Lake trout populations increased in the late 1980s, and as a result, they began feeding on smelt. The other two predators were also affected. The salmon population declined for some time, but later their number increased too. The mouth bass population got affected a lot, and their number kept on declining. The other two species chose different prey and multiplied.

Hence, for some time, the salmon population declined. Option A is correct.

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How do plants return nitrógen to the soil

Answers

Answer:

I think when plants decompose, nitrogen gets realesed back into the soil.

Answer:

Plant and animal wastes decompose, adding nitrogen to the soil. Bacteria in the soil convert those forms of nitrogen into forms plants can use. Plants use the nitrogen in the soil to grow. People and animals eat the plants; then animal and plant residues return nitrogen to the soil again, completing the cycle.

help lol thankyou very much

Answers

Answer:

Climate, seasons, summer, winter, wet, solar, tilt, revolution, direct, day

Explanation:

Answer:

1- seasons

2-summer

3- spring

4-winter

5-wet

6-solar

7-tilt

8- revolutions

9- dirsct

10- day

How do you think actions in the human body
might be like the system the ants use to transport food?

Answers

Answer

Ants bring food to one location, the food they bring in helps to make more ants and keep the cycle going. Like ants our blood cells break down the nutrients we get from food into nutrients and other beneficial things we need in our body, those same blood cells as well as new ones, use energy to make more cells. This almost neverending cycle helps sustain our human bodies so we can keep living and create more humans.

2. Describe the different ways that a system can be efficient. For example, time
efficiency, economic efficiency, and resource efficiency.

Answers

What Is Economic Efficiency?

Economic efficiency is when all goods and factors of production in an economy are distributed or allocated to their most valuable uses and waste is eliminated or minimized.

KEY TAKEAWAYS

Economic efficiency is when every scarce resource in an economy is used and distributed among producers and consumers in a way that produces the most economic output and benefit to consumers.

Economic efficiency can involve efficient production decisions within firms and industries, efficient consumption decisions by individual consumers, and efficient distribution of consumer and producer goods across individual consumers and firms.

Pareto efficiency is when every economic good is optimally allocated across production and consumption so that no change to the arrangement can be made to make anyone better off without making someone else worse off.

1:17

Economic Efficiency

Understanding Economic Efficiency

Economic efficiency implies an economic state in which every resource is optimally allocated to serve each individual or entity in the best way while minimizing waste and inefficiency. When an economy is economically efficient, any changes made to assist one entity would harm another. In terms of production, goods are produced at their lowest possible cost, as are the variable inputs of production.

Some terms that encompass phases of economic efficiency include allocative efficiency, productive efficiency, distributive efficiency, and Pareto efficiency. A state of economic efficiency is essentially theoretical; a limit that can be approached but never reached. Instead, economists look at the amount of loss, referred to as waste, between pure efficiency and reality to see how efficiently an economy functions.

Economic Efficiency and Scarcity

The principles of economic efficiency are based on the concept that resources are scarce. Therefore, there are not sufficient resources to ensure that all aspects of an economy function at their highest capacity at all times. Instead, scarce resources must be distributed to meet the needs of the economy in an ideal way while also limiting the amount of waste produced. The ideal state is related to the welfare of the population with peak efficiency also resulting in the highest level of welfare possible based on the resources available.

Efficiency in Production, Allocation, and Distribution

Productive firms seek to maximize their profits by bringing in the most revenue while minimizing costs. To do this, they choose the combination of inputs that minimize their costs while producing as much output as possible. By doing so, they operate efficiently; when all firms in the economy do so, it is known as productive efficiency.

Consumers, likewise, seek to maximize their well-being by consuming combinations of final consumer goods that produce the highest total satisfaction of their wants and needs at the lowest cost to them. The resulting consumer demand guides productive (through the laws of supply and demand) firms to produce the right quantities of consumer goods in the economy that will provide the highest consumer satisfaction relative to the costs of inputs. When economic resources are allocated across different firms and industries (each following the principle of productive efficiency) in a way that produces the right quantities of final consumer goods, this is called allocative efficiency.

Finally, because each individual values goods differently and according to the law of diminishing marginal utility, the distribution of final consumer goods in an economy are efficient or inefficient. Distributive efficiency is when the consumer goods in an economy are distributed so that each unit is consumed by the individual who values that unit most highly compared to all other individuals. Note that this type of efficiency assumes that the amount of value that individuals place on economic goods can be quantified and compared across individuals.

Economic Efficiency and Welfare

Measuring economic efficiency is often subjective, relying on assumptions about the social good, or welfare, created and how well that serves consumers. In this regard, welfare relates to the standard of living and relative comfort experienced by people within the economy. At peak economic efficiency (when the economy is at productive and allocative efficiency), the welfare of one cannot be improved without subsequently lowering the welfare of another. This point is called Pareto efficiency

An abiotic factor is a part of the environment that is not living and has never

Answers

Answer:

Ecology is the study of how living organisms interact with each other and with their environment. Abiotic factors are the parts of the environment that have never been alive, while biotic factors are the parts of the environment that are alive, or were alive and then died

Explanation:

hope this helps


3. What is the most common way for a system to lose energy?

Answers

Answer:

Heat energy

Explanation:

Maybe ..this can be

When does the total number of chromosomes get reduced from 46 pairs to 23 individual chromosomes?.

Answers

Explanation:

The other type of cell division, meiosis, ensures that humans have the same number of chromosomes in each generation. It is a two-step process that reduces the chromosome number by half—from 46 to 23—to form sperm and egg cells.

The living parts of an ecosystem are referred to as.

Answers

Answer:

"Biotic factors" is the awnser

Explanation:

If a cell with a 7% glucose solution is placed into an environment with a 15% glucose solution, which if the following would be correct:

A. The environment solution is hypertonic when compared to the cell.
B. The cell is hypertonic when compared to the environment.
C. When placed into the environment, the cell will gain water by osmosis.
D. When placed into the environment, the cell will neither lose nor gain water

Answers

Answer:

A. The environment solution is hypertonic when compared to the cell.

Explanation:

this is the only thing i need thanks

Answers

Answer:

1. C

2.hypo

3.d

4.hyper

5. I don't know about that

what is cell?

hello friends!
I will leave brainly soon​

Answers

Answer:

Listen to pronunciation. (sel) In biology, the smallest unit that can live on its own and that makes up all living organisms and the tissues of the body. A cell has three main parts: the cell membrane, the nucleus, and the cytoplasm.

Explanation:

or do you mean phone number?

How do plants get nutrients?​

Answers

Explanation:

Plants get nutrients from the soil in the form of nitrates , nitrites also they obtain minerals from it .

Answer:

Plants get nutrients from air, water and soil. There are, sixteen nutrients essential for the growth of plants. Carbon and Oxygen are supplied by water. The remaining thirteen nutrients are supplied by soil.

What is the effect of artificial light on plant growth?

Answers

Explanation:

The study highlights that interrupting seasonal light stimulation with artificial light has a wide range of effects, including: temporal differences with herbivores; changes in crop development; suppression of flowering in wild species; reduction of dark periods from the environment required for phytoremediation

What would the phenotype be for a person with the genotype Tt and tt?​

Answers

Answer:

If the genotypes are Tt and tt then the person phenotype would be tall.

Explanation:

TT=tall

Tt=tall

tt=short

Adequate vegetation in certain areas can___.

Answers

A is the answer roots hold soil in place think of the dust bowl in history caused by over farming that’s the same concept

What is the matching base sequence to 5’ TGCTCGCTG 3’ ?

PLEASE ANSWER ASAP!!!!

Answers

Answer:

3' ACGAGCGAC 5'

Explanation:

since Adenine and Thymine pair together you would just switch them, also Guanine and Cytosine pair together so you also switch them. Finally, when you switch all of these you will have to switch the two numbers and that's it! :)

Hello people ~
Point out the odd one

a) nucellus
b) embryo sac
c) micropyle
d) pollen grain

Answers

Answer:

pollen grain

Explanation:

all of those answer choices are related to ovules except for the pollen grain

the pollen grain is like the sperm for flowers

mark brainliest please!

New cells have a _______ mix than parent cell​

Answers

Answer: meiosis

Explanation:

new cells have a meiosis mix then parent cells

i might be wrong so i'ma also say try different because that also makes sense to me

new cells have a different mix than parent cell.

.
Which is the next structure to contact air after it passes from the nose to the nasal cavity?

the pharynx

the larynx

the bronchus

the trachea

Answers

Answer:

the pharynx

Explanation:

edge 2022

The next structure to contact air after it passes from the nose to the nasal cavity is the pharynx.

What is pharynx?

The pharynx is a muscular tube located behind the nasal cavity and mouth, connecting them to the esophagus and larynx. It serves as a shared pathway for both the respiratory and digestive systems.

In terms of the respiratory system, the pharynx plays a crucial role in the passage of air from the nasal cavity or mouth to the larynx. It acts as a conducting tube, allowing the air to flow smoothly towards the lower respiratory tract. The pharynx also houses the tonsils, which are part of the body's immune system and help protect against pathogens.

Additionally, the pharynx is involved in the process of swallowing. It facilitates the movement of food and liquid from the mouth to the esophagus, ensuring that they enter the digestive system and not the respiratory system.

Overall, the pharynx is a vital structure that serves as a passageway for both air and food, contributing to the proper functioning of the respiratory and digestive systems.

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The nutrient that serves in the regulation and maintenance of the human body by aiding in fluid balance, cell synthesis and repair, and visual processes is _____.

Answers

The nutrient that serves in the regulation and maintenance of the human body by aiding in fluid balance, cell synthesis and visual processes is protein.

What are proteins?

A protein is a fundamental biomolecule composed of amino acids linked by different types of peptide bonds.

Protein represents a fundamental macronutrient in a similar mode to carbohydrates and lipids (fats).

In conclusion, proteins serve in the regulation and maintenance of the human body by aiding in fluid balance, cell synthesis and visual processes.

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Cancer is caused by

A. out of control DNA replication.
B. Out of control cell cycle caused by damaged DNA
C. Out of control cell cycle caused by cyclins.
D. Tumors

Answers

The answer should be B the DNA is damaged so new cells grow and create tumors etc.

Answer:

B

Explanation:

cells die when new ones come they create tumors etc

"Explain how chemical energy for use in the cell is generated by electron transport and chemiosmosis"

PLEASE HELP!!

Answers

Answer:

Explanation:

The electron-carrier proteins are arranged in the inner mitochondrial wall. A dehydrogenase enzyme (think of it as the first protein of the electron-transport chain) oxidises NADH2 (which is the reduced coenzyme NAD) and/or FADH2 (reduced coenzyme FAD). The energy from the oxidation process is used to pump hydrogen ions from the matrix to the inter-membrane space of the mitochondrion. Because of this, gradient of hydrogen ion concentration builds up across the inner mitochondrial membrane, which generates a potential difference across the membrane. The protons then flow back to the matrix through an enzyme called ATP synthase (also called ATPase). (This is called chemiosmosis because a chemical substance (H+) moves across a membrane, down the concentration gradient.) This releases energy needed for the ATP synthase to phosphorylate ADP, i.e. make ATP (chemical energy for use in the cell) from ADP and inorganic phosphate.

Note: Bolded things are important, everything else is just additional clarification in case you need it. This is the last major phase of cellular respiration. If you want a deeper insight into the process, I suggest you read a bit about glycolysis and Krebs cycle.

The generation of an electric current in a closed circuit by a changing magnetic field is .

Answers

Electromagnetic induction! Have a nice day!

Answer:

Electromagnetic induction

Explanation:

edge

What type of reproduction is needed in order for there to be genetic variation?.

Answers

Answer: any sort of reproduction that isn't as3xual (it's censored )

Explanation: because As3xual reproduction only has one parent, the genes are the same.

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