What type of hormones use second messengers in a cascade of reactions that trigger a cell response?.

Answers

Answer 1

The hormones that use second messengers to trigger a cell response are glucagon, calcitonin and thyroid-stimulating hormone which achieve the result through cAMP.

Glucagon takes part in levels regulating the levels of blood glucose .

Calcitonin helps in construction of bones and regulation of blood calcium levels.

Thyroid-stimulating hormones releases T3 and T4 from the thyroid gland .

There are three types of second messengers namely;

calcium ions cyclic nucleotides that include  cAMP and cGMP inositol trisphosphate and diacylglycerol.

The above are molecules  transfer signals that are received at the receptors on the surface of the cell.

The cell response is triggered by the cyclic AMP which is activated by the G-proteins.

The cell responses to hormones involve; protein and enzyme production.

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Related Questions

The adrenal medulla is different from the remainder of the sympathetic division because __________.

Answers

The adrenal medulla is different from the remainder of the sympathetic division because it secretes epinephrine and norepinephrine, which act as hormones, rather than as neurotransmitters.

The correct option is c.

The inner portion of an adrenal gland called the adrenal medulla regulates the hormones that start the flight or fight response. Both epinephrine (adrenaline) and norepinephrine (noradrenaline), which have comparable roles, are the primary hormones released by the adrenal medulla.

Preganglionic sympathetic fibres stimulate the adrenal medulla, triggering the release of dopamine, norepinephrine, and epinephrine. The fight-or-flight reaction, fear, mental stress, upright posture, pain, cold, hypotension, hypoglycemia, and other stressors all enhance sympathetic neuronal output.

The complete question is:

The adrenal medulla is different from the remainder of the sympathetic division because __________.

a. postganglionic neurons of the adrenal medulla secrete acetylcholine

b. it has short preganglionic fibers and long postganglionic fibers

c. it secretes epinephrine and norepinephrine, which act as hormones, rather than as neurotransmitters

d. it is the only structure of the sympathetic division whose preganglionic cell bodies are not in the lateral horns of the spinal

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Answer all please I need it asap
1. A(n) _____________________ transports electrons, along with their energy, to another molecule.

2. What is the equation for photosynthesis?


3. In the __________________________, NADPH and ATP combine with carbon dioxide to produce sugars.


4. In the _________________________, light energy from the sun splits water and generates ATP and NADPH.


5. True / False: Chloroplasts are organelles found in the cells of heterotrophs.


6. True / False: Autotrophs need light in order to carry out photosynthesis.

Answers

1. A(n) electron-carrier molecule transports electrons, along with their energy, to another molecule.

2. The equation for photosynthesis is given below as follows:

6 CO₂ + 6 H₂O + light energy ----> C₆H₁₂O₆ + 6 O₂

3. In the light-independent reaction, NADPH and ATP combine with carbon dioxide to produce sugars.

4. In the light-dependent reaction, light energy from the sun splits water and generates ATP and NADPH.

5. Chloroplasts are organelles found in the cells of heterotrophs is False.

6. Autotrophs need light in order to carry out photosynthesis is True

What is photosynthesis?

Photosynthesis is the process by which plants produce sugars from carbon dioxide and water molecules using the energy of sunlight.

Photosynthesis occurs in two stages:

light stage or light-dependent reactiondark stage or light-independent reaction

Organisms that produce their own foods are called autotrophs whereas organisms that depend on already-made food are heterotrophs.

Autotrophs have chloroplasts in their cells whereas heterotrophs lack chloroplasts in their cells.

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g at which point would you expect the largest number of voltage-gated sodium channels to be in an inactivated state?

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Voltage-gated sodium channels are observed in lots of one of a kind mobileular sorts during the body, while epithelial sodium channels are mainly observed withinside the pores and skin and kidney.

The activation gates open whilst the membrane potential rises to about 55 mV (in this situation added on via way of means of an motion potential), permitting positively charged Na+ ions to go into the neuron thru the channels and elevating the voltage throughout the neuronal membrane in human neurons to +30 mV.

Voltage-gated Na(+) channels (VGSCs) begin motion potentials, which ends up in short electric sign transmission throughout mobileular membranes and among cells. In addition to commencing VGSCs, depolarization of the mobileular membrane additionally outcomes in a nonconducting circumstance acknowledged as inactivation.

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if an organism with 64 chromosomes mates with a closely related organism with 62 chromosomes, the most likely result will be .

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If an organism with 64 chromosomes mates with a closely related organism with 62 chromosomes, the most likely result will be sterile offspring due to hybrid sterility.

The DNA molecule is housed in chromosomes, which are shaped like threads and are found in the nucleus of every cell. To support its shape, the DNA that makes up each chromosome has been repeatedly tightly wound around proteins called histones.

Chromosomes cannot be seen in the nucleus of a cell that is not dividing, not even under a microscope. The DNA that makes up chromosomes, however, becomes more densely packed and is made visible under a microscope during cell division. Scientists have mostly learned about chromosomes by observing them during cell division.

The most prevalent type of postzygotic reproductive isolation in plants is hybrid sterility. Perhaps the most well-known instance is the indica-japonica hybrid sterility of Asian cultivated rice (Oryza sativa L.). Significant progress has been made in locating and cloning hybrid sterility genes in rice at two loci that control male and female fertility, respectively. The results from other model species, particularly Drosophila, along with genetic analysis and molecular characterization of these genes have increased our understanding of the mechanisms underpinning reproductive isolation and speciation. By demonstrating the viability and offering methods for overcoming intersubspecific hybrid sterility and enabling the generation of intersubspecific hybrids, these findings also have important implications for crop genetic improvement.

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If an organism with 64 chromosomes mates with a closely related organism with 62 chromosomes, the most likely result will be _____.

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the nutritive seed tissue that enhances the efficiency of food storage in the seeds of flowering plants is known as

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The nutritive seed tissue that enhances the efficiency of food storage in the seeds of flowering plants is known as the endosperm.

The endosperm is a tissue produced inside the seeds of most flowering plants following double fertilization. It surrounds the embryo and gives nutrition in the form of starch, though it can also carry oils and protein.

There are three types of endosperm:

Nuclear: Primary endosperm nuclear division and subsequent nuclear divisions do not occur at the same time as the cell wall formation in nuclear endosperms.

Cellular: Nuclear divisions and cell wall development occur simultaneously in cellular endosperms and the endosperm has a cellular shape from the beginning.

Helobial: The cell wall is placed between the first two nuclei in this type of endosperm formation.

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during exercise, the blood flow to the active skeletal muscles is increased by autoregulation. how does this work? what other controls on blood flow operate?

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During exercise the skeletal muscles require more ATP which in turn requires more oxygen. This autoregulation is mediated by the cerebral resistance which causes dilation of arteries. When the demand of excessive oxygen is reduced, neurotransmitters are released that constrict the blood vessels.

Cerebral resistance is the relation between cerebral perfusion pressure and CBF. It functions to mediate a normal blood flow rate to any organ. If the demand of oxygen is more at any organs, it facilitates the dilation of arteries so that the blood flow rate remains nearly constant.

Neurotransmitters are the chemicals that carry the chemical signals from one neuron to another. Thus, they act as messengers.

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true or false? generally, the more food in the stomach, the faster the absorption rate of alcohol

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Generally, the more food in the stomach, the faster the absorption rate of alcohol the statement is false.

A serving of alcohol needs between 30 and 2 hours after intake to completely enter the bloodstream. Alcohol is metabolized by the body at a rate of 0.25 ounces per hour. It is significant to remember that gender might affect how quickly alcohol is absorbed.

A person's ability to absorb alcohol can vary depending on their gender; for instance, a 140-pound male can consume two drinks in an hour and have a blood alcohol level of 0.038, whereas a 140-pound female can consume two drinks in an hour and have a blood alcohol level of 0.048. Women's BACs are greater than men's after consuming the same quantity of alcohol because they have less dehydrogenase, an enzyme that breaks down alcohol in the stomach.

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Analyze factors that affect carrying compacity

Answers

The factors that affect carrying capacity include the following:

FoodShelterWater etc.

What is Carrying capacity?

This is an ecological term which refers to the maximum number of individuals of a species that the environment can carry and sustain and is dependent on some factors such as food, shelter etc.

In the case of food, shelter and water , their availability in large proportion means that the number of species which the environment can sustain will be higher due to them having a direct relationship.

In the case of the organisms eating well and having a safe shelter , their reproductive rate will increase which will lead to more number of organisms being present in the environment and will therefore increase the carrying capacity in this scenario.

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b) The correlation coefficient for all of the data (r) was calculated as 0.85. What type
of correlation does this show? Explain. (2 points)
DELL

Answers

A strong correlation between independent and dependent variables is indicated by a coefficient of correlation of 0.85.

What type of correlation is this?

Correlation coefficients serve as measures of how strongly two variables are related linearly. Positive relationships are shown by correlation coefficients greater than zero. A value less than zero denotes an negative association. Lastly, a value of 0 denotes that there is no correlation between the two variables, x and y.

On dividing the covariance by the sum of the standard deviations of the two variables, one may calculate the correlation coefficient. Here, the given correlation value of the data is 0.85. So, the more severe (closer to -1 or 1) the correlation coefficient, the stronger the association. This also signifies that a correlation that is close to zero denotes the independence of the two variables, i.e., that neither variable tends to drop nor rise as the other does.

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when the amygdala jumpstarts stress-related networks peripheral to the central nervous system, what part of the body releases the chemicals such as adrenaline that produce energizing effects?

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Adrenaline is produced in the medulla by the adrenal glands as well as by some neurons in the central nervous system. During a stressful situation, adrenaline is quickly released into the bloodstream, sending impulses to organs to create a specific response.

The adrenal medulla, the innermost part of the adrenal gland, regulates the hormones that initiate the flight or fight response. The adrenal medulla secretes two main hormones: epinephrine (adrenaline) and norepinephrine (noradrenaline), which have similar functions. Adrenaline is produced by your adrenal glands and released into your bloodstream. Adrenaline, a hormone produced by your adrenal glands, serves a purpose. It assists you in dealing with dangerous situations by causing temporary changes in your body. As part of the process, your heart rate and breathing rate increase.

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if you made a change in the promoter sequence in the dna that inactivates the promoter, what would happen at the rna level? group of answer choices nothing, the rna would be made as usual. the mutation of the dna would be carried through to the rna sequence.

Answers

If the Promoter in DNA is inactivated, then the gene's transcription (production of RNA) under the control of that inactivated Promoter will halt.

The Promoter is a DNA sequence upstream to a gene, and it regulates the production of RNA of the immediate gene (a process called transcription). In transcription, the enzyme RNA polymerase binds to a promoter and starts producing RNA. If Promoter is inactivated, then RNA polymerase will not be able to bind to it, leading to no RNA production.

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you have an enzyme solution and you add an inhibitor molecule and observe a marked decrease in enzyme activity. you increase the substrate concentration but this does not lead to any observable increase in enzyme activity. what can you conclude about your inhibitor?

Answers

Non-competitive inhibitor, does not cause an increase in enzyme activity when the concentration of the substrate is increased.

Noncompetitive inhibition is a special sort of allosteric regulation that occurs when an inhibitor binds to an allosteric site, reducing the enzyme's effectiveness.

Simply put, an allosteric site is one that differs from the substrate-binding active site. Comparable to competitive, uncompetitive, and mixed-type inhibition, noncompetitive inhibition is distinct from the others.

The inhibitor shares the same affinity for both the enzyme and the enzyme-substrate complex in noncompetitive inhibition because it binds at the allosteric site independently of substrate binding.

Noncompetitive inhibition is distinguished from uncompetitive inhibition by this activity, in which an inhibitor only binds to the enzyme-substrate complex.

The reaction rate won't change even if the substrate concentration is increased, and enzyme activity will still be suppressed.

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9. explain how nucleotide incorporation errors by dna polymerase can be repaired, and the role of methylation in the process.

Answers

Nucleotide incorporation errors can be repaired either by proofreading by DNA polymerase or mismatch repair.

1. DNA polymerase performs poofreading to ensure that its operations are accurate. A nucleotide that is incorrectly hydrogen bound to the opposite nucleobase in the template strand can be backed up and excised (removed) by the enzymes. The appropriate nucleotide is then inserted by the DNA polymerase.

2. Mismatch Repair corrects faults that DNA polymerase's proofreading process missed. An enzyme is then instructed to cut the sugar phosphate backbone of the new DNA strand by a specific protein that binds to the location of the mismatched nucleobase. The incorrect nucleotide is then eliminated when another enzyme breaks down a brief section of that DNA strand.

Methylation explains how cells may recognise which strand is new. Some nucleobases receive methyl groups shortly after an enzyme adds them to a DNA strand. The new strand is not instantly methylated since this process takes time.

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Nucleotide addition errors are possible with DNA polymerase.

Nucleotide incorporation by DNA polymerase is imprecise. It proofreads each newly inserted base to alter the DNA. Correct bases are inserted after removing incorrect bases, followed by the addition of another base. Although most errors are fixed during replication, the mismatch repair process is used when this does not take place.

The incorrect base is excised from the DNA by mismatch repair enzymes, which then replace it with the right base. In a different sort of repair called nucleotide excision repair, the erroneous base and a few bases on the 5′ and 3′ ends are taken out and replaced.

DNA  polymerase is used to duplicate the template in order to replace the wrong base and the excised bases. The freshly created fragment's ends are joined to the remainder of ligase, which builds a phosphodiester bond, of the DNA.  

The majority of DNA methylation is required for normal development and plays a critical role in a variety of vital processes such as genomic imprinting, X-chromosome inactivation, and repression of repetitive element transcription and transposition, and when dysregulated, contributes to illnesses such as cancer.

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research has demonstrated that when siblings have similar personalities, this similarity is largely the result of:

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Research has demonstrated that siblings have similar personalities, and this similarity is largely the result of: genetics.

What is genetics and how is it important?

The study of genes, genetic variation, and heredity in organisms is termed as genetics. It is an important branch in biology because heredity is vital to  evolution of organism.

DNA is responsible for building and maintaining the human structure. Genes are segments of DNA which gives physical characteristics that make you unique and every body has a complete instruction manual that tells your cells how to behave.  In humans, genes vary in size that ranges from a few hundred DNA bases to more than 2 million bases.

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the expenditure of energy to produce heat in response to a cold environment and as a result of overfeeding is called multiple choice heat metabolism. thermic effect of cold. thermic metabolism. adaptive thermogenesis.

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The expenditure of energy to produce heat in response to a cold environment and as a result of overfeeding is called adaptive thermogenesis.

Thermogenesis is generally defined as any metabolic process that releases heat occurs in specialized tissues including brown adipose tissue and skeletal muscle.

Thermoregulation is important for regulating the body temperature . In Daily life activities body maintains it temperature within the comfortable limits in response to change in temperature ,shelter, and climate. Hence, thermoregulation is only a very small part of daily energy expenditure.

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an island has a population of 100,000 moths that has 98% gray individuals and 2% black individuals. generation after generation, this ratio and population size remains basically the same. after a hurricane, 15,000 black moths are blown onto the island. after 2 years, a. the percentage of gray moths will increase. b. all of the black moths will be killed off. c. the black moths will emigrate back to their original habitat. d. the percentage of black moths will increase. e. all the white moths will be killed off.

Answers

When 15,000 black moths are blown onto the island the percentage of black moths will increase because high gene flow increases the size of the population and of the geographical area in which genetic material occurs.

What is gene flow?

It is also called gene migration. It is the transfer of genetic material from one population to another and takes place between two populations of the same species through migration, and is mediated by reproduction and vertical gene transfer from parent to offspring. It is important to counteract the evolutionary forces.

Factors affecting gene flow:

Natural selectionMutationGenetic driftmigration

Allele frequency or gene frequency is the relative frequency of an allele at a particular locus in a population.

After a hurricane, the addition of 15000 moths onto the island is an example of gene flow.

Here, after the hurricane, 15000 black moths are blown onto the island so the percentage of black moths increased from 2% to a higher rate. in this way gene flow occurs and the population of black moths increases.

Hence, Gene flow is the reason for the increase in the population of black moths.

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describe the human life cycle, using the words mitosis, meiosis, sperm, egg, zygote, and fertilization.

Answers

Human life is the biological process that starts when a human egg is fertilized by a human sperm and continues as a living organism. It refers to a human person and is the biological development of the species Homo sapiens.

What is Mitosis?

A single cell divides into two identical daughter cells during the process of mitosis (cell division). One cell divides once into two identical cells during mitosis. It is mostly used for cell growth and replacement during times of stress. There are five distinct stages of mitosis:

Interphase, Prophase, Metaphase, Anaphase and Telophase.

What is Meiosis?

In sexually reproducing organisms, meiosis is a kind of cell division that results in a reduction in the number of chromosomes in gametes (the sex cells, or egg and sperm). Body (or somatic) cells in humans are diploid, meaning they have two sets of chromosomes (one from each parent).

What is sperm?

A sperm is a cell which is produced in the sex organs of a male animal and can enter a female animal's egg and fertilize it.

What is egg?

Eggs are formed through the process of meiosis. Each egg is haploid, it contains a single copy of each chromosome with the sex chromosome always an X chromosome.

What is zygote?

The fusion of both the male and female gamete results into a zygote. It is the first cell formed leading to a human life. Zygote is unicellular

What is fertilization?

A single cell is created during fertilization when a man's sperm and a woman's egg come together. It's one of the initial steps to becoming pregnant.

Therefore, the process begins from mitosis to fertilization and leading to a new human life  

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On the ventral surface of the brain, you can observe the optic nerves and chiasma, the pituitary gland, and the mammillary bodies. These externally visible structures form the floor of the __________.

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On the ventral surface of the brain, you can observe the optic nerves and chiasma, the pituitary gland, and the mammillary bodies. These externally visible structures form the floor of the diencephalon.

Where is the exact location of the diencephalon?Diencephalon is one part that is located behind the forebrain, which part includes the thalamus, hypothalamus, and also the epithalamus.The diencephalon itself is one of the main parts of our brain. Its location is quite hidden and its size is quite small, the exact location of this diencephalon is between the hemispheres of the brain and just above the brainstem.Despite its small size, the diencephalon plays an important role in brain health and body function because the diencephalon is the part of the brain that sends signals and cooperates with our bodies.Some of the things controlled by the diencephalon, they are senses (hearing, seeing, smelling, feeling), body movements, motor functions, homeostasis, touch perception and so on.

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how does blocking retrograde axoplasmic transport in an axon affect the activity of a neuron?

Answers

The soma becomes unable to respond to changes in the distal end of the axon this way axon affects the activity of a neuron.

Retrograde trophic assistance for growing neurons can interfere with their growth and frequently results in their death. Here, we describe the results of removing retrograde support from the isthmo-optic projection in chick embryos by preventing axoplasmic transport at the terminal sections of the axons, an action that is known to kill the isthmo-optic neurons in the long run. Neuron survival in the isthmo-optic nucleus was reduced even more swiftly. This unique effect persisted at 6 and 9 h after injection, but at longer survival durations, as was expected, the number of dead neurons rose significantly above control levels. According to our understanding of the temporary decrease in neuronal death, retrograde trophic signals contain both life- and death-promoting elements, with the former acting more quickly in this system.

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what are micelles? what are micelles? emulsifiers used to break fat globules into small droplets during digestion clusters of fatty acids, monoglycerides, and other lipids surrounded by bile salts that transport lipids across the cell membrane of the villi a type of lipoprotein needed to absorb lipids lipid-digesting enzymes located in the small intestine

Answers

Micelles are clusters of fatty acids, monoglycerides, and other lipids surrounded by bile salts that transport lipids across the cell membrane of the villi.

Micelles are carriers made of bile and phospholipids that could entice monoglycerides and fatty acids and shipping digested fat from meals to the enterocytes. When fats enters the small intestine, the gallbladder releases an emulsifier referred to as bile to interrupt up the big fats globules into smaller fats droplets.

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Briefly
explain how the carbon
and oxygen cycles are
dependent on one another.

Answers

Explanation:

Oxygen cycle refers to the movement of oxygen through the atmosphere, biosphere and the lithosphere. T

On the ventral surface of the brain, you can observe the optic nerves and chiasma, the pituitary gland, and the mammillary bodies. These externally visible structures form the floor of the __________.

Answers

On the ventral surface of the brain, you can observe the optic nerves and chiasma, the pituitary gland, and the mammillary bodies. These externally visible structures form the floor of the diencephalon.

Diencephalon is one component that is located in the back of the forebrain, which component includes the thalamus, hypothalamus, and additionally the epithalamus. The diencephalon itself is one in every of the fundamental parts of our mind. Its place is pretty hidden and its length is pretty small, the precise place of this diencephalon is among the hemispheres of the mind and simply above the brainstem.

Despite its small length, the diencephalon performs an crucial function in mind fitness and frame feature due to the fact the diencephalon is the a part of the mind that sends alerts and cooperates with our bodies.

Some of the things managed via way of means of the diencephalon, they may be senses (hearing, seeing, smelling, feeling), frame movements, motor functions, homeostasis, contact notion and so on.

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Identify the allele that is expressed in a heterozygous individual.

Answers

In a heterozygous genotype, the dominant allele overrules the recessive one. Therefore, the dominant trait will be expressed.

a bird occupies a territory in which there are abundant food sources but also high levels of predation. this is an example of

Answers

a bird occupies a territory in which there are abundant food sources but also high levels of predation. this is an example of economic defensibility

The economic defensibility replica describes human territoriality by considering the values and advantages of saving assets that differ in solidity and sureness. A human would also occupy the territory with abundant food sources where a bird does in high levels of predation. We conducted a relative study of 30 pastoral societies in Africa to describe the difference in holding systems using the economic defensibility replica. Mainly, we tested under what ecological conditions we find open property authorities against common property authorities. ,More over we considered how pastoralists’ connection with the outside world shaped property authorities by considering the role of limitations and synopsis. Our outcome  didn't carry for the economic defensibility model across African pastoral societies: open and common property authorities are found under same ecological conditions. Instead, we find that pastoral societies that are circumscribed are more likely to have common property authorities. We suggest that open property authorities are the default regime in pastoral societies and that common property regimes are a response to circumscription by other groups.

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Why isn't there more information about the dangers of sugar?

Answers

Answer:

It's wide use in consumable goods

Explanation:

Why there is little information is because Sugar is vastly use in most consumed goods, which if its dangers are being regularly announced may decline it's demand and cause a great downfall for those engaging in its trade

Two hundred students were surveyed to find out what color to use for the school uniform. The results of the survey are shown in the following graph. What percent of students chose the color red? A. 12% B. 8% C. 32% D. 40%

Answers

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during the pcr lab, an ls23l student got lazy and decided not to put chelex inside the microcentrifuge with the student's dna. what would you expect to happen from this?

Answers

The DNA would be degraded by the DNAse due to the laziness of the student to not put Chelex inside the microcentrifuge.

Chelex 100 molecular-grade resins can be used to quickly and easily prepare nucleic acids from a wide range of samples, including cell, blood, and tissue cultures. DNA and RNA were prepared with Chelex 100 suitable for detection by PCR, RT-PCR, ddPCR, or LAMP.

The Chelex method of DNA extraction is suitable for the extraction of DNA from a smaller number of samples. This method is quick, and easy and does not involve any toxic organic solvents. The basic procedure involves the extraction of DNA by adding the sample to a warm suspension of Chelex at pH 10-11.

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exposure of zebrafish nuclei to cytosol isolated from eggs at metaphase of mitosis resulted in phosphorylation of nep55 and l68 proteins by cyclin-dependent kinase 2. nep55 is a protein of the inner nuclear membrane, and l68 is a protein of the nuclear lamina. what is the most likely role of phosphorylation of these proteins in the process of mitosis? exposure of zebrafish nuclei to cytosol isolated from eggs at metaphase of mitosis resulted in phosphorylation of nep55 and l68 proteins by cyclin-dependent kinase 2. nep55 is a protein of the inner nuclear membrane, and l68 is a protein of the nuclear lamina. what is the most likely role of phosphorylation of these proteins in the process of mitosis?

Answers

They are involved in disassembly of nuclear envelope.

A nucleus, as related to genomics, is the membrane-enclosed organelle inside a cellular that incorporates the chromosomes. An array of holes, or pores, in the nuclear membrane lets in for the selective passage of sure molecules (which includes proteins and nucleic acids) into and out of the nucleus.

The nucleus is composed of diverse systems namely nuclear envelope, nucleoplasm or nucleus sap nuclear matrix, chromatin and nucleolus. The nuclear membrane paperwork an envelope like structure around the nuclear contents and is normally referred to as a nuclear envelope.

The primary features of the nucleus are to store the mobile's DNA, maintain its integrity, and facilitate its transcription and replication.

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1. Evolutionary Theory
Which statement is NOT part of evolutionary
theory?
a All species are related through descent from
common ancestors.
b. Species change over time, sometimes
developing into new species.
c. Species develop traits they need to survive in
their environment.
d. Species have adapted to environmental
changes over billions of years.

Answers

Answer: c. Species develop traits they need to survive intheir environment.

As you drive along a roadside you and your friend notice a dead deer that apparently was struck by a car. your friend comments that she has never seen a deer so rigid. as a student in forensics how would you describe the rod of the deer

Answers

The bacteria in the body feed on the tissue when an organism dies, releasing CO2 into the body is how you should explain to your friend as a forensic student.

Because the abdomen housed the stomach and several visceral organs, it looked to be larger. Because the dead deer was left where it was after being struck by a car for several hours or even days without anyone clearing it, it appeared to be much larger than usual when it was discovered. The internal organs of the dead deer also grew larger than usual as a result of the sun's heat heating them up.

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Question correction:

As you drive along the road, you and your friend notice a dead deer that apparently was struck by a car. Your friend comments that she has never see such a fat deer. As a student of forensic, how would you explain to your friend why the abdominal region of the dead deer was so large?

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