Did Jamie cheat on Claire with Malva?.

Answers

Answer 1

Claire and Jamie stop having children after Brianna. By the end of the second season/book, Claire is walking across the stones while carrying Brianna.

Faith Fraser, Claire and Jamie's firstborn, passed away while still in the womb. She gave birth in Paris, France, following a precarious pregnancy. She was laid to rest in the Hospital des Agnes cemetery by Mother Hildegarde. Faith was the stillborn child in France. Jamie was never allowed to meet Mother Hildegarde, who baptized the child despite it being against the law. While he was in the Bastille, Claire was on the verge of passing away from childbed fever. Master Raymond rescued her from that. Brianna was born in 1948, despite being conceived in 1746. Brianna didn't discover the truth until after Frank had passed away, but she was the child Frank would raise for the length of her youth as his own.

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Related Questions

yeasts can perform both aerobic respiration and fermentation. in fact, the homebrewer must be careful that oxygen is not introduced into the carboy once the yeast begin fermentation. what would be the products if o2 is allowed to enter the carboy?

Answers

If [tex]O_{2}[/tex] is аllowed to enter the cаrboy during fermentаtion, yeаsts would perform аerobic respirаtion.

In аerobic respirаtion, yeаst cells use oxygen аs the finаl electron аcceptor to produce energy. This process will produce cаrbon dioxide ([tex]CO_{2}[/tex]) аnd wаter ([tex]H_{2}O[/tex]) аs the mаin by-products. During fermentаtion, yeаst cells ferment sugаrs to produce energy without using oxygen. In the аbsence of oxygen, yeаst will ferment sugаrs аnаerobicаlly to produce ethаnol аnd [tex]CO_{2}[/tex] аs the mаin by-products. If oxygen is аllowed to enter the cаrboy during fermentаtion, yeаst will switch from fermentаtion to аerobic respirаtion. This cаn leаd to severаl potentiаl problems for the homebrewer.

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Which cells are involved in bone growth?

Answers

Bone morphogenetic proteins (BMPs), which are secreted and deposited into the extracellular matrix during bone formation, are the work of osteoblasts.

What kind of cells contribute to bone growth?

terms in this group (9) The secretion of an organic matrix and mineral salts by osteoblasts contributes to the development of new bone. are established bone tissue cells that have reached maturity.

Which two cells are crucial to bone remodeling?

Osteoclasts, multinucleated cells that break down the bone matrix, and osteoblasts, which have osteogenic functions, are the two main bone tissue cells that must operate properly for bone remodeling to occur.

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Are green leaves carbon or nitrogen?.

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High levels of carbon and low levels of nitrogen can be found in leaves. Nitrogen is necessary for the metabolism and growth of the microbes that break down organic matter such as leaves and other types of organic matter.

More consideration must be given to the carbon-nitrogen balance because leaves are primarily composed of carbon (60 parts carbon to 1 part nitrogen). The right ratio of leaves to green material or manure will not only result in a more nutrient-rich end product, but it will also speed up the production of compost.In plants, nitrogen makes up a portion of the chlorophyll. The green pigment in leaves and stems is called chlorophyll. Chlorophyll absorbs light energy and uses it to convert it into sugars that the plant can use.

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What would happen if a wave is absorbed by a material? I think the waves energy would transfer to the material

Answers

Answer The energy of the wave is transferred to the

Explanation:

Can RNA be synthesized in a lab?.

Answers

The capacity for self-reproduction is one of life's essential characteristics. The first ribonucleic acid molecules, a single-stranded relative of deoxyribose nucleic acid that can replicate almost any other RNA, have already been produced by scientists.

A ribozyme known as RNAP, also known as an all-RNA version of RNAP, was developed by scientists in 1993. It connected two short RNA strands on a different template strand. The issue with all of these RNAP ribozymes is that they can only reproduce specified nucleotide base sequences, which are the building blocks of RNA and DNA, and such sequences have no true biological importance in living cells. To encode the initial RNAP ribozyme, Joyce and his colleague first synthesized a sizable library of DNA strands. To ensure that each final RNAP was unique, the DNA sequence was altered at random. These RNAPs were a component of a vial that also included a number of short RNA fragments that the researchers intended to combine on another template strand. If the RNAP ribozyme was effective in producing the new RNA, the new strand would bind to a particular molecular target in its vial as proof. Each RNAP ribozyme was designed to remain attached to its unique, produced RNA strand, which allowed the researchers to identify any successes. Then, a new round of evolution was started from scratch using each captured RNAP ribozyme. The present product is an RNAP ribozyme known as 24-3 polymerase, which evolved in 24-round test tubes. The criteria for a productive RNAP ribozyme gradually increased during this procedure. The 24-3 polymerase can increase the abundance of some RNAs 10,000-fold by replicating already duplicated RNAs. As a result, the first RNA version of the widely utilized polymerase chain reaction, which copies DNA, was developed.

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Which hormone stimulates the mammary glands to produce milk after childbirth?

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The hormone that stimulates mammary glands to produce milk after childbirth is prolactin.

This hormone is produced by the pituitary gland, which is located in the brain. It is released into the bloodstream shortly after childbirth and helps the mammary glands to produce milk.

Prolactin not only helps the mammary glands to produce milk, but it also helps to regulate the amount of milk that is produced. It is essential for successful breastfeeding.

After childbirth, the hormone prolactin stimulates the mammary glands to produce milk. Prolactin is produced by the pituitary gland, and its release is regulated by the hypothalamus.

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those that carry impulses from the cns out to the muscles and glands.

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Motor nerves are those that carry impulses from the CNS out to the muscles and glands.

Muscle cells get impulses from the central nervous system through motor nerves. The nerves that send messages from the brain and spinal cord to all of the glands, organs, and muscles in the human body are known as motor nerves. All muscle-related movements are directly under the control of these motor neurons.

The CNS receives impulses from peripheral sense receptors through afferent, or sensory, neurons. They often have relatively short axons and lengthy dendrites. The CNS sends impulses via efferent, or motor, neurons to effector organs like muscles and glands.

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What are the main features of scientific research Mcq?.

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The main features of scientific research include:

Empiricism: The reliance on empirical evidence, or evidence obtained through observation or experimentation, to support or refute hypotheses and theories.

Objectivity: The use of unbiased and impartial methods to conduct research, in order to minimize the influence of personal opinions and beliefs on the outcome.

Replicability: The ability of other researchers to replicate the study and obtain similar results, in order to confirm the validity of the findings.

Parsimony: The use of the simplest explanation that fits the evidence, rather than invoking complex or unlikely explanations.

Self-correction: The ability of the scientific community to identify and correct errors or inaccuracies in the research, through peer review and replication.

In conclusion, scientific research is characterized by its use of empirical evidence, objective methods, replicability, parsimony, and self-correction, which together help to ensure the validity and reliability of the findings.

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Briefly describe how you set up a wet mount.

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A wet mount is a technique used in microscopy to view a sample suspended in a liquid. To set up a wet mount, you will need the following materials:

A microscope slideA coverslipThe sample you wish to view (in a liquid)A dropper or pipette

The basic steps to set up a wet mount are:

Obtain a microscope slide and a coverslip.

Using a dropper or pipette, place a small droplet of the liquid containing the sample on the center of the microscope slide.

Carefully lower the coverslip onto the droplet of liquid, making sure to avoid trapping any bubbles between the coverslip and the slide.

Use the microscope to view the sample.

Keep in mind that depending on the sample and the type of microscope you are using, you may need to adjust the focus, light intensity, and magnification settings.

It is also important to remember that some samples may require special staining or fixation techniques before being placed in the wet mount. Additionally, some samples may not be suitable for wet mount because they are not transparent enough or can't be preserved in a liquid medium.

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How did algae photosynthesis cause coral bleaching?.

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Two things induce coral bleaching: the first is the acidification of the water, which is strongly related to the carbon dioxide in the water dissolving to generate carbonic acid, which kills the coral polyps.

Carbon dioxide levels that are too high will always result in the creation of carbonic acid. The second factor is the rising temperature and intense sunlight, which has the effect of speeding up photosynthesis and increasing the rate at which oxygen is produced. According to another theory, too much oxygen in the water is detrimental and can even kill polyps. Therefore, the process of coral reef-forming reef bleaching involves algae photosynthesis to a significant extent. The gradual warming of the planet causes an increase in temperature.

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What are the possible abnormal gametes The male can produce with non disjunction?.

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Humans will create two gametes with additional chromosomes and two gametes without a chromosome if nondisjunction happens during Meiosis I.

50 percent of the gametes produced by meiosis II nondisjunction are normal. 50 percent of the gametes produced during meiosis I are normal due to nondisjunction.

They are brought on by nondisjunction, which takes place when sister chromatids or homologous pairs of chromosomes fail to separate during meiosis. The chance of nondisjunction increases with parent age.

The most frequent cause of abnormal chromosomes is a mistake made during cell division. Chromosome abnormalities frequently result from 1 or more of the following: errors that occur as sex cells divide (meiosis) errors that occur when other cells divide (mitosis).

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nervous system subdivision that is composed of the brain and spinal cord

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The brain and spinal cord are the two components of the central nervous system. The peripheral nervous system is composed of nerves that emerge from the spinal cord and cover the entire body.

What division are the brain and spinal cord?The peripheral nervous system (PNS) and the central nervous system (CNS) are two components of the human nervous system (PNS). The brain and spinal cord are two components of the CNS that are located in the cranial cavity of the skull and the vertebral canal, respectively.The peripheral nervous system (PNS) and the central nervous system (CNS) make up the entire nervous system (PNS).The term "peripheral nervous system" describes the portions of the nervous system that are not located in the brain and spinal cord. It contains the neuromuscular connections, peripheral nerves, spinal nerves, their roots, and branches.The cervical, thoracic, lumbar, and sacral portions of the spinal cord are the four distinct divisions.

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how does glucagon cause the blood glucose level to decrease

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By promoting hepatic glucose synthesis, the glucoregulatory peptide hormone glucagon works to offset the effects of insulin and raise blood glucose levels.

What is the structure and Synthesis of Glucagon?The pancreatic alpha cells primarily secrete the 29-amino acid peptide hormone known as glucagon. It comes from the precursor proglucagon, which is metabolized into a number of similar peptide hormones. Intestinal enteroendocrine L cells, pancreatic islet alpha cells, and brain stem and hypothalamus neurons all express proglucagon to varying degrees (8,9). Prohormone convertase 1/3 (PC1/3) and prohormone convertase 2 (PC2), which are processing enzymes, carry out the proglucagon processing, respectively. Proglucagon is converted to glucagon by PC2 in the pancreas, whereas PC1 is responsible for the conversion of proglucagon in the gut and the brain, resulting in the creation of GLP-1 and GLP-2 (9).

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how many chromosomes do humans have in each body cell

Answers

Answer:

46

Explanation:

Use evidence to explain the effects of draining a peatland on the ecosystem. Predict how these changes could affect global ecosystems if global temperatures continue to rise. Give specific examples to justify your prediction. Type your answer in the space provided.

Answers

A peatland's drainage for agricultural purposes and other human activities, as well as changes in weather patterns and sea levels, have an adverse influence on the ecology, which supports a vast range of plant and animal species.

Tell us about draining a peatland?

A peatland is a form of wetland environment that is characterized by the buildup of peat, a type of soil made up of partially decayed plant material, and is referred to as an ecosystem that has been drained. Bogs, fens, and mires are only a few types of peatlands that may be found all over the world.

Peatlands are special environments that sustain a broad diversity of plant and animal species, therefore draining one can have a tremendous influence on the ecology. The water table drops when a peatland is drained, which may result in the loss of wetland ecosystems and the species that rely on them. As the peat dries up and decomposes, this may also result in a rise in the amount of carbon dioxide emitted into the atmosphere.

The peatlands of Southeast Asia, which have been extensively drained for agriculture and other human endeavors, are one particular illustration of this. Due to this, habitats for rare species like the Sumatran rhinoceros and orangutans have lost their homes, and the release of large amounts of carbon dioxide into the atmosphere.

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identify the primary functions of areolar connective tissue.

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The two subclasses of connective tissue are loose and thick tissues. Areolar, adipose, and reticular tissue are further categories for loose connective tissues.

Areolar tissues are widely dispersed throughout the body and serve largely as a cushion between other tissues. All over the human body is connective tissue, including the areolar connective tissue. Organs, muscles, and many other tissues are supported and protected by it. It aids in keeping the skin together as well.

Areolar Connective Tissue's Purpose is:-

1. Offers a protective framework that supports and holds important structures in place.

2. Has mast cells that aid in infection prevention.

3. The collagen fibers in the areolar tissue are extremely thick, giving it strength and rigidity.

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Which list shows only SECONDARY consumers according to this photo?

a) penguins, other seals, phytoplankton

b) fish, carnivorous zooplankton, birds

c) krill, leopard seal, smaller toothed whales

d) elephant seal, fish, other herbivorous zooplankton

Answers

c is the right answer

minor items such as nails and glue are usually considered to be ______.

Answers

Minor items such as nails and glue are usually considered to be indirect materials.

Indirect materials refer to materials that are used in the production process but do not become part of the finished product. These materials may include items such as office supplies, cleaning supplies, and fuel for equipment. They are considered indirect because they are not directly traceable to the finished product and are typically used in support of the production process. Indirect materials are considered overhead costs, as opposed to direct materials which are direct costs associated with the production of a specific product.

Additionally, indirect materials can include items such as packaging materials, lubricants, and adhesives. They are typically considered indirect costs because they are not specifically identifiable with a particular product or job and cannot be easily traced to a specific unit of production.

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List the parts of a visceral reflex arc .

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A reflex arc consists of five components that, when combined, form a reflex loop:

Receptor for sensory information.Sensory neuron is a type of neuron.Center for integration.The motor neuron.The effector's target.

The output of a visceral reflex is a two-step pathway that begins with a preganglionic fiber emerging from a lateral horn neuron in the spinal cord or a cranial nucleus neuron in the brain stem to a ganglion, followed by a postganglionic fiber projecting to a target effector.

The viscerosomatic reflex arc begins after visceral dysfunction (i.e., myocardial ischemia), which increases the propagation of action potentials along visceral afferent fibers that terminate in the dorsal gray matter of the spinal cord.

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T/F a peripheral nerve passes from the spinal cord into the limbs

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True. A peripheral nerve passes from the spinal cord into the limbs.

What do you mean by spinal cord?

The spinal cord is a long, thin bundle of nerves that runs from the base of the brain down to the lower back. It is the main conduit for information between the brain and the rest of the body. It carries nerve signals to and from the brain and is responsible for relaying information about sensation and movement. It also plays a role in controlling involuntary body processes such as breathing, heart rate, and digestion.

Peripheral nerves are the nerves that connect the central nervous system (CNS) to the limbs and organs of the body. They pass from the spinal cord, which is part of the CNS, into the limbs and organs. These nerves carry both sensory and motor signals from the CNS to the limbs and organs, and vice versa. This allows the CNS to control movement, sense touch, and regulate organ functions.

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PLEASE HURRY




Universal Gravitation applies to _________________________________________________.


a mainly planets and moons

b all objects

c only our solar system

d only one direction




Why was Copernicus' model of the universe considered controversial?

a It was not supported by observations.
b It was mostly incorrect.
c It contradicted religious doctrine of the time.
d It was a complex model.

Answers

Answer:

Universal Gravitation applies to __B. All Objects___.

Why was Copernicus' model of the universe considered controversial?

B. It was mostly incorrect.

Explanation:

Hope it helps:)

Ptolemy's model first became a generally accepted model of the universe in the early days of astronomy. This model described the earth as being motionless and occupied the center of the universe.

A table shaking model was proposed by Copernicus, which has come to be referred to as the heliocentric model of the universe. In this model, the earth is depicted as orbiting the sun about its own axis, and so did other planets. The sun now lies at the center of the solar system, surrounded by the planets.

This theory removed the supposed "uniqueness" of the earth among other planets, which sparked outrage, especially from the Roman Catholic church, since the idea was diametrically opposed to the scientific ideas prevalent at that time.

Is an example of X-linked recessive trait *?.

Answers

Red-green color blindness and hemophilia A: Red-green color blindness are two examples of X-linked recessive diseases.

Red-green color blindness is simply the inability to distinguish between the many hues of red and green (usually blue-green). They can see with normal optical acuity.

An genetic bleeding ailment called hemophilia causes the blood to clot improperly. It results from insufficient levels of the clotting factor in the blood. The hemophilias A and B have an X-linked recessive inheritance pattern. One of the two sex chromosomes, the X chromosome, contains the genes linked to these diseases.

A mutation would need to occur in both copies of the gene in females (who have two X chromosomes) for it to result in the condition. However, boys have a higher risk of developing the condition since they only have one copy of the X gene.

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A culture of yeast grows at a rate proportional to its size. If the initial population is cells and it doubles after hours, answer the following questions.

Answers

The number of yeast cells will increase at the following rate at eight hours: 377

The expression for the number of yeast cells after t hours is - 3000 + 2t.

After 88 hours, there are 3016 yeast cells overall.

The number of yeast cells is increasing at a rate of 377 yeasts per hour after 8 hours.

The expression for the number of yeast cells after t hours is

= 3000 + (2 × t)

= 3000 + 2t

The quantity of yeast cells after 8 hours will be:

= 3000 + 2t

= 3000 + 2(8) (8)

= 3000 + 16

= 3016

The number of yeast cells will be increasing at the following rate at eight hours: = 3016/8 = 377

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Question:-

A culture of yeast grows at a rate proportional to its size. If the initial population is 3000 cells and it doubles after 2 hours, answer the following questions.

(a) Write an expression for the number of yeast cells after t hours.

(b) Find the number of yeast cells after 8 hours.

Match each image to the
correct step of the cell cycle.
MA
7605
Interphase
Prophase
Metaphase
Anaphase
Telophase
Cytokinesis

Answers

The matching of each image to the correct cell of the cell cycle is as follows: Interphase: Most Last picture. Metaphase: Third picture. Anaphase: Fourth picture.  Telophase: Second picture. Cytokinesis: First picture.

What are is a cell?

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.

Why it is called cell?

Robert Hooke suggested the name cell in 1665, from the Latin cell meaning storeroom or chamber, after using a very early microscope to look at a piece of cork.  is also said that he thought that the rectangular chambers looked like the cells in some monasteries.

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The following is how each picture is matched to the appropriate cell in the cell cycle: Interphase: The final image. Third image, the metaphase. Anagram: Fourth image. Second image: the telophase. Cytokinesis: the first image.

What exactly are cells?

the largest unit that can sustain life on its own and makes all living things, including the body's tissues. The epithelial tissue, the core, and the fluid are the three primary components of a cell.

How come it is called a cell?

Robert Hooke first up the idea for the eponymous cell in 1665 after using a very primitive camera to study a piece of cork. The term comes from the Latin word organelle, which denotes a chamber or storage area. It is also asserted that he thought the rectangle-shaped areas looked similar to certain monastery cells.

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this gland secretes melatonin, a hormone that may help regulate when you sleep at night

Answers

Pineal gland secretes melatonin, a hormone that may help regulate when you sleep at night.

The pineal gland in the brain is primarily responsible for producing the naturally occurring hormone melatonin. Your circadian rhythm and sleep–wake cycle are better under your control. There is still a lot that scientists don't know about all of its impacts on the human body. Your pineal gland, a tiny gland in your brain, is primarily responsible for producing the hormone melatonin, which is a natural steroid. Your endocrine system includes your pineal gland.

When it is dark outside, your pineal gland produces the most melatonin; when you are exposed to light, it produces less. This means that during the daytime, melatonin levels in your blood are low, while at night, they are at their highest. Your pineal gland releases melatonin for a longer period of time the longer the night.

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what is the difference between a reptile and an amphibian

Answers

Answer:

Reptiles have scales, and their skin is dry. Amphibians do not, and their skin is often moist with mucus, which keeps them from drying up.

What are the differences between clastic, chemical, and organic sedimentary rocks?

Answers

Clastic sedimentary rocks are formed from the accumulation and compression of fragments of preexisting rocks or minerals, chemical sedimentary rocks are formed by precipitation of minerals from a solution, and organic sedimentary rocks are formed from the accumulation and compression of remains of plants or animals.

What are sedimentary rocks?

Clastic, chemical, and organic sedimentary rocks are types of sedimentary rocks that form through different processes and have distinct characteristics.

Clastic sedimentary rocks are made up of fragments of other rocks, minerals, or fossils. These fragments, known as clasts, are transported by wind, water, or ice and then deposited in a new location. Examples of clastic sedimentary rocks include sandstone, shale, and conglomerate.

Chemical sedimentary rocks form through precipitation of minerals from water. They can also form by chemical precipitation from other fluids like mineral rich hot springs. Examples of chemical sedimentary rocks include limestone, dolomite, and rock salt.

Organic sedimentary rocks form from the accumulation and compression of organic material, such as plant or animal remains. Examples of organic sedimentary rocks include coal, oil shale, and some limestones.

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What is the chemical nature of neurotransmitters, and how can drugs
alter their function?

Answers

Neurotransmitters are the substances which act as signaling molecules in the body. Many drugs mimic these neurotransmitters by activating different cells in the body.

What are neurotransmitters?

A neurotransmitter is a signaling molecule which is secreted by a neuron to affect another cell or neuron across a synapse. The cell receiving this signal, any main body part, or the target cell, may be another neuron, however they could also be a gland or muscle cell.

Drugs interfere with the way neurons send, receive, and process signals via neurotransmitters in the nervous system. Some drugs, such as marijuana and heroin, can activate neurons in the body because their chemical structure mimics that of a natural neurotransmitter present in the body. This allows the drugs to attach onto and activate the neurons.

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Pick 5 important key features of the cell membrane and write about each and why they are
important.

Answers

A cell membrane, also known as a plasma membrane, is a thin, semipermeable barrier that surrounds the cytoplasm of a cell and separates the cell from its environment.

What do you mean by cytoplasm?

Cytoplasm is the fluid-like substance found in the interior of a cell, excluding the nucleus. It is composed primarily of water and contains a variety of organic and inorganic molecules, ions, and organelles. It functions as the cell’s metabolic center and plays important roles in many cell processes, such as energy production, protein synthesis, and cell division.

Five important key features of the cell membrane:

1. Phospholipid Bilayer:  The phospholipid bilayer is important for regulating the flow of substances both into and out of the cell, allowing the cell to acquire the nutrients it needs and expel waste.

2. Glycoproteins: They are important for cell-to-cell communication, as they bind to specific receptors on other cells to facilitate communication between the cells. They also act as recognition sites for hormones and other molecules that enter the cell.

3. Cholesterol: Cholesterol is a fatty molecule that helps stabilize the cell membrane and prevents it from becoming too rigid or too fluid. It also helps regulate the movement of substances across the cell membrane.

4. Integral Proteins: They are important for transporting molecules across the membrane, as well as for recognizing and interacting with other molecules.

5. Peripheral Proteins: They play an important role in cell signaling and regulation, as they can interact with other proteins or molecules on the cytoplasmic side of the cell membrane. They are also important for anchoring the membrane to the cytoskeleton.

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What happens if the undigested food is stored in large intestine?.

Answers

Which happens when undigested food is stored in the large intestine is that food forms waste and is excreted by the body.

The digestive system is a process carried out by the digestive organ system to process food through mechanical and chemical digestion. So food can be absorbed by the body and converted into energy. The digestive system consists of the alimentary canal and glands associated with the digestive process.

The large intestine is covered by a mucous membrane without folds except the rectum. The large intestine functions to absorb water, form faecal masses, and form mucus to lubricate the mucosal surfaces. In the large intestine, the process of digestion, both chemical and mechanical, does not occur. Therefore, food that is not digested by the small intestine and then enters the large intestine will only be absorbed by the water and then formed into feces. Stool that is formed will be pushed into the rectum periistally and then expelled through the process of defecation.

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if you were to apply herzberg's two-factor theory, which one of the following would be considered a motivator?a. Low Hygiene and High Motivationb. Motivating Factors and Hygiene Factorsc. High Hygiene and High Motivationd. High Hygiene and Low Motivation How do you find the bisector of an equilateral triangle?. 5 Work with a partner. Correct the mistakes in the sentences. Check theadjectives in the noun phrases and after the verbs be and have.1 Cuba has a season rainy.2 Yakutsk has a autumn cold.3 In summer, we have weather sunny.4 The dry season windy is.5 In spring, the rainfall high is.Can someone help me out What is the name of the process that converts RNA into amino acids chains and then proteins?. What is Jefferson's main point in the Declaration of Independence?. KLS381388Oem ouOCILL CHA500ON 100The person is 8 feet tall and casts a shadow of 4 feet. The building casts a shadow of 15 feet. Which ratio can be used to calculate the height of thebuilding?||11APR||15E-LED15MRS Write a balanced chemical equation describing the dissolution (dissolving) of strontium fluoride. Determine the molar solubility of SrF2 in a 0.5 mol/L solution of Sr(NO3)2. (Strontium nitrate is a highly soluble salt) Help Me Please : a benign and a malignant tumor differ in that _____. Which values are within the range of the piecewise-defined function? How doe the location of the negative make value of 5. 3 x 10^-4 different from -5. 3 x 10^4 What were the main compromises of the Constitution?. The interaction of which two systems provides the molecules needed for the metabolic activity that takes place at ribosomes?. briefly explain the ways in which black families, churches, schools, and other institutions contributed to the development of african-american culture and political activisms in period 1865-1877 in atleast three sentences, explain why we have seen a decrease in labor unions Which of the following best describes a disadvantage of using genetically engineered crops over crops that are not genetically modified? Genetically engineered plants can decrease the genetic diversity of the crop. solve the following equation for g:m+n^2 = g5M What did Congress do during ww2?. A materials engineer wishes to compare the durability of two different types of paving material. She has 40 different one-mile stretches of interstate highway that shes been authorized to repave for this study. She decides to carry out a matched pairs experiment. Which of the following is the best way for her to carry out the randomization for this study?answer choicesO Use a table of random digits to divide the 40 roadways into 20 pairs and then, for each pair, flip a coin to decide which pavement to use on which member of the pair.O Subjectively divide the 40 roadways into 20 pairs (making the roadways within each pair as different as possible) and then, for each pair, flip a coin to decide which pavement to use on which member of the pair.O Use a table of random digits to divide the 40 roadways into two groups of twenty, and then use the table of random digits a second time to decide which pavement to use on which group.O Let each of the 40 roadways act as its own pair, dividing each roadway into the first half-mile and the second half-mile. Flip a coin for each of the 40 roadways to decide which half-mile gets which pavement.O Let each of the 40 roadways act as its own pair, dividing each roadway into the first half-mile and the second half-mile. Flip a coin once to decide which pavement is put on the first half-mile of all the roadways. How did the national banking Act of 1863 purpose and impact on economy