Researchers condition a flatworm to contract its body to a light by repeatedly pairing the light with electric shock. the stage in which the flatworm's contraction response to light is first established and gradually strengthened is called

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Answer 1
This is the acquisition stage. During this stage, the learned behavior is being taught and the learner begins to link the stimulus with the response. After a time, the behavior does not need to be linked to the stimulus (the shock) for it to take place and it can automatically occur whenever the light is presented.

Related Questions

Semipermeable cell membranes are made of phospholipids that form a bilayer. What major benefit does this arrangement of the membrane provide to the cell?

a. The cell is able to easily change shape and size
b. Both surfaces of the membrane are nonpermeable
c. The cell has a greater level of structural support
d. Both surfaces of the membrane can interact with water and other molecules.

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Answer:

The correct answer is D) Both surfaces of the membrane can interact with water and other molecules.                                                                                                                                                                

Explanation:

Phospholipids provide barriers in cellular membranes to protect the cell, and they make barriers for the organelles within those cells.

Phospholipids work to provide pathways for various substances across membranes. Membrane proteins stud the phospholipid bilayer; these respond to cell signals or act as enzymes or transporting mechanisms for the cell membrane.

The phospholipid bilayer readily allows essential molecules such as water, oxygen and carbon dioxide to cross the membrane, but very large molecules cannot enter the cell in this way or may not be able to at all.

Cheers!

 

Answer:

D) Both surfaces of the membrane can interact with water and other molecules.                                                                                                                                    

Explanation:

I took the test and got a good grade

List the four (4) major groups for the antidepressant medications and the prototype of each one. what are the major differences between the four (4) classes?

Answers

The 4 major groups of Antidepressants are:

1.       Selective serotonin reuptake inhibitors may comfort depression by aggregating intensities of serotonin in the brain.  Examples of this are: Citalopram, Escitalopram, Paroxetine, Fluoxetine, Fluvoxamine, and Sertraline.

2.       Atypical Antidepressants aims other neurotransmitters either alone or in accumulation to serotonin. Examples of this are: Bupropion, Mirtazapine, and Trazodone.

3.       Tricyclic Antidepressants upsurge levels of norepinephrine and serotonin. Examples of this are: Amitriptyline, Amoxapine, Desipramine, Doxepin, Imipramine, Nortriptyline, Protriptyline, and Trimipramine.

4.       Monoamine oxidase inhibitor eliminates the neurotransmitters from the brain. Examples of this are: Rasagiline, Selegiline, Isocarboxazid, Phenelzine, and Tranylcypromine.

Sally was diagnosed with _____ diabetes, which places her pregnancy at a higher risk.

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The answer is pregestational diabetes-- this will likely be put her pregnancy at high risk because having this type of diabetes is likely to focus on the glycemic control in pregnancy of which should be maintained and controlled as if it is not, it could place her pregnancy into risk.

Nearly ____ % of people with type 2 diabetes are overweight when diagnosed.

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That would be 90%. Having said, the other 10 percent could be on the edge of being overweight too.

An unknown cell is placed in an unknown solution. the cell ends up swelling and then lysing, explodes. which type of solution was this cell placed in? draw your own example of this below.

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A solution with more water percentage than the cell, either hypo and hyper tonic , look them up and see which is which.

What passive and active processes are involved in the electron transport chain?

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The electron transport chain occurs in the mitochondria and during the process, electrons are transferred via reduction oxidation reactions coupled with the transfer of proton across the membrane.
The active process that occur in the electron transport chain is the movement of the protons across the inner mitochondria membrane against their concentration gradients. The passive process that occur in the electron transport chain is the natural movement of ions along their concentration gradient.
Final answer:

The electron transport chain involves both passive and active processes. Passive processes include the movement of electrons and protons along the chain, while active processes include the transport of protons and the transfer of electrons to the electron acceptor.

Explanation:

The electron transport chain (ETC) involves both passive and active processes. Passive processes include the movement of electrons along the chain from higher to lower energy states, as well as the flow of protons (H+) down their concentration gradient, back into the matrix, through ATP synthase. Active processes include the active transport of protons (H+) across the membrane to create a proton gradient, as well as the active transfer of electrons from reduced electron carriers (NADH, FADH2) to the electron acceptor (O2) at the end of the chain.

Why is bamhi a good choice for this experiment?

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BamHI is a type II restriction endonuclease, ensuring the dimensions for recognizing short arrangements of DNA and cutting them at a target site. It transmits various type II endonuclease, replicating DNA, and possibly handling DNA mutation-derived infections through genetic therapy. 

What is one way that a person can help to reduce the level of carbon dioxide in the atmosphere?

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stop the pollution . or stop using alot of paper.

Solar power is the one way that a person can help to reduce the level of carbon dioxide in the atmosphere.

What is Solar power?

Solar power is the use of the solar energy either directly in the form of thermal energy that is heat or through the use of photovoltaic cells in the solar panels and transparent photovoltaic glass to generate electricity.

Solar power is found to work by the conversion of energy from the Sun into power. There are two main forms of energy which are generated from the Sun for our use which include electricity and heat. Both of these forms are generated through the use of solar panels, which range in the size from residential rooftops to solar farms which stretching over acres of rural land areas.

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For oi, how is collagen transported across the cell membrane

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through the cytoplasm

Collagen is transported across a cell membrane via vesicular transport.

What is collagen?

Extracellular proteins are those that carry out their functions in the cell's surrounding matrix outside of the cell.

Since they are created inside the cell yet secreted outside to perform their function, they are known as secretory proteins. They play a part in cell communication, immunology, and homeostasis.

The strength and structural integrity of tissues are largely due to collagen. The most prevalent protein in the body is collagen.

Therefore, Collagen is transported across a cell membrane via vesicular transport.

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What types of plasmids are found in prokaryotes? what significance have plasmids in medicine?

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Naturally occurring plasmids are the type that are found in prokaryotic cells. These same naturally occurring plasmids are also found in some eukaryotic cells. In the field of medicine, they are used in genetic engineering and are known as vectors. They are used to multiply particular genes.

The oils found in walnuts, soybeans, flaxseed, and wheat germ represent a good source of preformed ____.​

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The answer is Linolenic Acid. Oils found in walnuts, soybean or even in flaxseed are a good source of performed linolenic acid. Linolenic Acid is considered to be a fatty acid. A good source of Linolenic acid is vegetable oil.

This pedigree chart tracks the inheritance of a recessive trait that is not sex-linked. Based on the information in the chart, which of the following statements is true?
A. Individual #8 must be heterozygous for the trait.
B. Individual #10 must be heterozygous for the trait.
C. Individual #13 must be homozygous dominant.
D. Individual #3 must be homozygous dominant.

Answers

Answer:

A. Individual #8 must be heterozygous for the trait.

Explanation:

Since the given trait is autosomal recessive, two normal but carrier (heterozygous dominant) parents can have the affected progeny. Individual 8 and individual 9 have affected son and daughter. Hence, both of them should be heterozygous dominant and carry one recessive allele to transmit to the affected progeny.

Individual 10 is affected with autosomal recessive trait and hence is homozygous recessive. Since individual 13 has two heterozygous recessive parents, it may or may not be homozygous for the dominant trait. Individual 3 have affected progeny and hence should be heterozygous dominant for the trait.

Final answer:

The inheritance of a recessive trait in a pedigree chart can reveal whether individuals are homoygouzs or heterozygous for the trait. An individual that does not express the trait but has offspring that do must be heterozygous. They carry one recessive allele, which is passed on to their offspring.

Explanation:

Without the specific pedigree chart, it is hard to definitively answer this question. However, some general principles can be applied in relation to your question. In a pedigree that tracks the inheritance of a recessive trait, individuals that express the trait are homozygous for the recessive trait. Individuals that do not express the trait could be either homozygous dominant or heterozygous, possessing one dominant and one recessive allele.

Individuals that do not express the trait, but whose offspring do, must be heterozygous for the trait. This is because they must carry one recessive allele in order to pass it to their offspring who express the trait. For instance, if their genotype was homozygous dominant, they could not pass on the recessive trait. Only a genotype of heterozygous, consisting a dominant and a recessive allele, could pass on a recessive trait.

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The nurse inspects the thorax of a patient with advanced emphysema. what does the nurse expect the chest configuration to be for this patient?\

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it expects malfucntions

Which characteristic was true of Mendel’s F1 generation plants?

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Mendel’s F1 generation plants were dominant .

What did Mendel find in the F1 generation?

Mendel found that crosses between parents that differed for one trait produced F1 offspring that all expressed one parent's traits. The traits that were visible in the F1 generation are referred to as dominant, and traits that disappear in the F1 generation are described as recessive.

Why is Mendel called the F1 generation?

The F1 generation helps scientists determine which alleles are going to be recessive and which will be dominant in further crosses.

What do you mean by F1 generation?

F1 generation is the first filial generation, whereas F2 generation is the second filial generation obtained by crossing the F1 generation.

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Know the difference between light dependent and light independent reactions (what is involved in both reactions? what is produced in both reactions? where do these reactions take place? how are they different, you need to compare and contrast.

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Can you list the answers please?

The ________ is a procedure that is used to determine the number of each of the various types of white blood cells.

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1. examining hematocrit 
2. looking at the reticulocyte count
3. seeing the total blood count
4. And seeing the mean corpuscular colume

This is how you find the amount of each white blood cell type.

In castrated male rats, the medial preoptic area ____.​

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In the case of castrated or neutered male rats, the medial preoptic area has as much dopamine as normal rats, but the presence of a receptive female does not evoke much release of dopamine. Dopamine helps male sexual behavior in many species and is released just before and/or during copulation in three neural systems. 

 

In castrated male rats, the medial preoptic area is essential for initiating sexual behavior, but not for sexual motivation. Damage to this area diminishes the rat's willingness to initiate sex, despite an unchanged motivation to seek sexual partners. This highlights distinct neural mechanisms for sexual behavior execution and motivation.

In castrated male rats, the medial preoptic area plays a key role in sexual behavior. This area, located in the anterior hypothalamus, is critical for initiating sex in males. If this area is damaged or lesioned, male rats exhibit a decrease in their inclination to initiate sex, even if they still seek out a sexual partner. However, the motivation to seek out a sexual partner does not seem to be diminished, suggesting that sexual motivation and the execution of sexual behavior are regulated by distinct neural mechanisms.

For comparison, in females, the ventromedial hypothalamus determines sexual receptivity, while the preoptic area is more involved with eating behaviors. The preoptic area in males corresponds to aggression-related areas, whereas in females, it overlaps with areas associated with nurturance.

Overall, the medial preoptic area is crucial for male sexual activity, while the ventromedial hypothalamus is key for female sexual behavior. This illustrates the gender differences in brain regions responsible for sexual behavior and motivation.

What role do currents play in meeting the nutritional needs of the ocean's inhabitants?

Answers

Currents play a vital role in the nutritional needs of the ocean's inhabitants. Currents create a process called upwelling that carries organic matter from deep waters and the sea floor to the surface. The nitrogen and phosphate help to fuel blooms of algae and other plants which are eaten by creatures such as krill. Krill and other small ocean inhabitants serve to feed larger surface ocean life. Upwelling then causes downwelling which carries oxygen-rich surface water below, without which the deep sea life would not survive the toxic waters.

why does DNA need to replicate before cells divide?

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DNA needs to replicate before cells divide to give the complete set of genetic instructions to its daughter cells, (or ensures that each new cell inherits all of the genetic traits of the parent cell). 

Hope this helps! :D

~PutarPotato 

DNA needs to replicate before cells divide so that each daughter cell will have the same and equal number of chromosomes.

DNA REPLICATION:

DNA replication is the process whereby living organisms copy their genetic material (DNA) to produce two identical DNA molecules.

Prior to DNA replication, the double-stranded DNA separates into two single strands. Each strand then serves as a template for two new complementary strands added by DNA polymerase.

At the end of replication, each DNA molecule will consist of one new stand and one old strand.

DNA replication is paramount for every cell before undergoing division because the daughter cells of an organism produced must contain the same type and amount of genetic material as their parent.

Note that, DNA replication takes place in the synthesis (S) phase of mitosis/meiosis.

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Can someone please help me with this? And can you please explain why that answer is right because im really confused and need clarification on this.

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2 1 are correct for more information contact me.

Describe two common waxes produced by organisms

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Animal Wax - common example is beeswax. It is mainly composed of ester myricyl palmitate which is used to make honeycombs. Other insects/animals secrete or release waxes.

Plant Wax - waxes are secreted on the cuticle surfaces. It often composed of mixtures of substituted aliphatic hydrocarbons which consist of alkyl esters, alcohols, aldehydes and etc.

The nurse is caring for a client who had a massive myocardial infarction and developed cardiogenic shock. which clinical manifestations support these diagnoses?

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The clinical manifestation that support these diagnose is both rapid pulse and decreased urine output. Rapid pulse and decreased urine output will be the best clinical manifestations that support these diagnose. When the client or the patient had a massive myocardial infarction and developed cardiogenic shock, the best clinical manifestation is rapid pulse and decreased urine output.

Swelling occurs around the area of a scratch is what immune response?

A. Innate response
B. Adaptive response

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Adaptive, its making me put at least 20 characters to explain why. This is kind of a waist of time lol but yeah lit :) i hope this helps out maybe
Answer : B. Adaptive response


Have a wonderful day !

Which elements are recycled during the processes of photosynthesis and cellular respiration?

Answers

There are a total of three elements that are recycled during photosynthesis. During photosynthesis two molecules CO2 and H2O are recycled which means that the elements that are recycled are oxygen, carbon and hydrogen.

Final answer:

Photosynthesis and cellular respiration are two processes that work together to recycle elements in living organisms. In photosynthesis, carbon dioxide and water are used to produce glucose and oxygen. In cellular respiration, oxygen and glucose are used to produce carbon dioxide and water.

Explanation:

Photosynthesis and cellular respiration are two processes that work together to recycle elements in living organisms. In photosynthesis, carbon dioxide and water are used to produce glucose and oxygen. In cellular respiration, oxygen and glucose are used to produce carbon dioxide and water. The oxygen produced during photosynthesis is used in cellular respiration, while the carbon dioxide produced during cellular respiration is used in photosynthesis.

What are the only fully formed organs on cnidarians?

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Digestive organs are the only fully formed organs

Which system controls the coordinated movement of animals? A. skeletal B. nervous C. muscular D. digestive

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The correct answer is nervous system.

The system that controls the coordination movements of animals is known as the nervous system.

Information from the receptor passes along the neurons in the form of electrical impulses to the co-ordinator such as the central nervous system.

Stimulus → receptor → coordinator → effector → response

The CNS consists of brain and spinal cord. The muscle contraction and the gland secreting hormone are considered as the responses of the effector.

The nurse is planning to use a newborn's foot to obtain blood for the required newborn metabolic testing. which part of the foot is the best site to use for the puncture?

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The nurse is meeting with a 36-year-old client who wishes to begin using contraceptives. the client reports being in a long-term, monogamous relationship, runs 2 miles per day, and smokes a pack of cigarettes each day. which method will the nurse be least likely to suggest to the client?

All living things are made up of carbon. this is because..?

Answers

Carbon is a key component of all known life on Earth. Complex molecules are made up of carbon bonded with other elements, especially oxygen, hydrogen and nitrogen.Carbon is abundant on Earth.

The endocrine gland that is often called the "master gland" because it affects the output of the other endocrine glands is the ____________ gland
a. pituitary
b. pineal
c. thyroid
d. adrenal

Answers

i wanna say its A but im not 100 percent sure.

What is solar wind? a constant stream of charged particles flowing away from the sun a stream of wind coming from the sun wind that constantly circles the surface of the sun a shield that prevents radiation from reaching the Earth’s surface

Answers

a constant stream of charged particles flowing away form the sun

Answer: a constant stream of charged particles flowing away form the sun

Explanation:

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