Gluconeogenesis uses the same enzymatic reactions of glycolysis except for the?

Answers

Answer 1

With the exception of the three irreversible events in glycolysis, gluconeogenesis utilizes the same enzyme processes as glycolysis.

Glycolysis & Gluconeogenesis:

In contrast to gluconeogenesis, which is crucial for sustaining blood glucose levels during hunger, glycolysis is a catabolic process that hydrolyzes glucose to produce energy and biosynthetic intermediates.In the catabolic route of glycolysis, glucose is converted to pyruvate. The anabolic route known as glucose conduction produces glucose from non-carbohydrate sources like glycerol and glucogenic peptides. Pyruvate turns into glucose during the process of gluconeogenesis.The general consensus would be that glycolysis and gluconeogenesis don't happen at the same time within similar cells, instead, that metabolic circumstances or allosteric effectors that drive flux along one pathway repress flow in the other direction.

Original question:

1) Gluconeogenesis uses the same enzymatic reactions of glycolysis except for the ________.

A) pyruvate kinase catalyzed step

B) 4 irreversible reactions in glycolysis

C) 3 irreversible reactions in glycolysis

D) 2 irreversible reactions in glycolysis

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Related Questions

If a cell has a normal osmotic pressure of 4500 mmhg and is placed into a solution with an osmotic pressure of 3500 mmhg. What will happen to the cell?

Answers

The cell will lose water and its osmotic pressure will decrease. If a cell  has a normal osmotic pressure of 4500 mm Hg and is placed into a solution with an osmotic pressure of 3500 mm Hg

What is osmosis?

The pressure created by a liquid or solvent diffusing through a membrane is known as osmotic pressure.

What is osmotic pressure?

Osmotic pressure is the lowest amount of pressure that must be applied to a solution in order to stop solvent molecules from passing through a semipermeable membrane (osmosis). Its existence is a collaborative property that is reliant on the quantity of solute particles in the solution.

Example:

You are mixing salt water into a solution. The mixture will be made up of water and salt (solute) (solvent).Effects of osmotic pressure:

The membrane separating the two solutions allows the solvent to go from the diluted to the more concentrated solution.

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The coleman report and other studies have found that ______ is the most powerful factor in determining students' level of school achievement.

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The Coleman report and other studies have found that neighborhood and peer environment is the most powerful factor in determining students' level of school achievement.

The Civil Rights Act of 1964 required the publication of the Coleman Report. The law assigned the U.S. Office of Education two years to write a report that would analyze the disparities in educational opportunities for elementary and secondary education across the country.Black and white schools have roughly equal access to regional resources. However, the researchers came to the conclusion from the research that neither the school's infrastructure nor its resources were the most crucial indicators of a child's academic achievement. Instead the Home life and neighborhood played an important role. Six community elements have been identified by study as influencing student achievement: financial situation, environment, educational level, communication with and support provided to schools, availability of community child care, and community cohesion (i.e., quality of education).

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Doctors are investigating the possible inheritability of a disease with no current known cause. What tool might be useful to help track the disease’s prevalence?

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Pedigrees tool might be useful to help track the disease’s prevalence.

A pedigree chart, which is most frequently used to represent people, show dogs, and race horses, depicts the incidence and manifestation of phenotypes of a specific gene or organism and its ancestors from one generation to the next. A pedigree reveals the connections between family members and identifies the members of a family who have particular genetic pathogenic variations, features, and diseases as well as their current health. A family's pedigree might reveal how diseases are passed down through the generations.

Pedigree analysis is used to identify the mode of inheritance, which may be autosomal, mitochondrial, dominant, partial dominant, or sex-linked. Additionally, it calculates the likelihood that a person or their progeny will be impacted by the particular cross.

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Disease that is characterized as having lack of energy and protein is called?

Answers

Answer:

Sounds closest to:  Kwashiorkor

Explanation:

Kwashiorkor is a disease brought on by severe protein malnourishment. In Kwashiorkor, extended breastfeeding and late, insufficient weaning lead to low calorie intakes but significantly superior biological value. As a result, a kid with kwashiorkor will likely experience compromised organ function and development. Sudden outbreaks of diseases like the measles, gastroenteritis, or pneumonia exacerbate the issue by increasing needs while maintaining low intakes. The kid may exhibit oedema of the face and lower limbs, failure to grow, anorexia, diarrhea, lethargy, dermatosis, flaky-looking skin, scant, soft, and thin hair, angular stomatitis, cheilosis, and anemia as a result of this scenario.

This is a bit similar to Marasmus.

But there is a difference.

But ⇒ how does kwashiorkor and marasmus differ?

Kwashiorkor is predominantly a protein shortage, despite adequate calorie intake. When a youngster is weaned off of protein-rich breast milk, it frequently happens. The patient will show signs of oedema, an enlarged abdomen, and other conditions.

Marasmus is a total energy shortage that causes a body weight that is at least 60% below normal. The victim will only be malnourished.

What are the phagocytic specialists?
a. basophils and monocytes
b. basophils and erythrocytes
c. neutrophils and eosinophils
d. neutrophils and macrophages
e. eosinophils and macrophages

Answers

The Phagocytic specialists are neutrophils, monocytes and macrophages.

What is Phagocyte?A phagocyte is a special kind of cell that can take in and occasionally digest foreign substances like bacteria, carbon, dust, or dye. By producing vacuoles (cytoplasmic extensions that resemble feet) around the foreign particle, it engulfs foreign materials by extending its cytoplasm into pseudopods. While the bacteria are still inside the vacuole, where digestion occurs, phagocyte enzymes are produced, protecting the phagocyte from any poisons that may be present in the ingested bacteria.Monocytes (macrophages) and neutrophilic leukocytes (microphages), two different subtypes of white blood cells, are phagocytic. Small, granular leukocytes known as neutrophils soon appear at the site of a wound. About three days after infection, monocytes start to appear.They are bigger cells with a large, kidney-shaped nucleus that scavenge for bacteria.

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What was an unexpected consequence of the green revolution? a. the overuse of fertilizer lead to reduced crop yields over time. b. crop yields were increased. c. modern agricultural techniques were implemented. d. new crop varieties were developed. please select the best answer from the choices provided a b c d

Answers

Answer:

The correct answer is A

Explanation:

A. the overuse of fertilizer lead to reduced crop yields over time.

Answer:

I also think the answer is A

What is a refractive error involving an abnormally shaped cornea and irregularly focused light rays called?

Answers

A cornea with an irregular shape causes astigmatism, which causes blurry vision. The cornea is less spherical and more shaped like a football or an egg in patients with astigmatism.

When light enters an astigmatic eye, it is bent and refracted to several focus sites inside the eye as opposed to only one focus point on the retina. The two different types of astigmatism.

Regular astigmatism, in which the eyeball is not spherical but is symmetrical.Irregular astigmatism, in which the eyeball is not spherical and not symmetrical.

Astigmatism that is regular as opposed to irregular is far more prevalent.

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What are the two major modes of glycolysis and what is the purpose of each mode?

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The two major modes of glycolysis are aerobic and anaerobic glycolysis.

Glycolysis is the method by which glucose is broken down to produce energy. It generates two pyruvate molecules, ATP, NADH, and water. There is no need for oxygen throughout the process, which occurs in the cytoplasm of a cell.

Both anaerobic and aerobic conditions can result in glycolysis.

Pyruvate enters the citric acid cycle under aerobic conditions and proceeds through oxidative phosphorylation, which results in the net synthesis of 32 ATP molecules. Pyruvate is converted to lactate in anaerobic conditions by anaerobic glycolysis. During anaerobic respiration, two ATP molecules are produced.

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after it is released a mature egg travels by the means of

Answers

Answer:

Muscle Contractions

*EDUCATIONAL PURPOSES*

Ovulation Process:
The pituitary gland, located in your brain, releases a hormone once every month. This hormone instructs the ovaries to create many follicles, which are fluid-filled cysts. The hormone oestrogen is secreted by the growing follicles. In order to prepare for pregnancy, oestrogen causes the uterine membrane to thicken.

The follicles cease developing on day seven of your cycle, with the exception of one. This follicle keeps expanding and nourishes an oocyte (egg) that is developing within.

On day 12, a surge of oestrogen is released into the bloodstream by the developing follicle. Your blood carries the oestrogen along. The pituitary gland in your brain releases luteinizing hormone in response to the oestrogen reaching it. This hormone causes a quick growth spike in the follicle.

The egg within the follicle separates from the follicle just before ovulation. The neighboring fallopian tube begins to migrate toward and around the follicle as the follicle begins to produce chemicals.

The egg and fluid are ejected into the abdominal cavity when the follicle expands to the point of breaking open.

Fimbriae, or tiny finger-like projections at the termination of the fallopian tube, move over the ruptured follicle and seize the egg.

The egg is moved to the fallopian tube's opening. Muscle contractions push the egg gently towards the direction of the uterus once it has entered the fallopian tube's walls.

Either sperm will contact the egg as it travels down the fallopian tube, resulting in fertilization, or the egg will arrive in the uterus unfertilized and be reabsorbed into the body.

Conception Process:

A woman must fertilize her egg within the 12 to 24 hours following ovulation if she wants to get pregnant.

The surge of oestrogen right before ovulation also creates the protein-rich transparent jelly that covers the vagina during intercourse within the neck of the uterus (the cervix). Thus, the vagina became acidic (which prevents thrush and other infections). Sperm can survive in this environment as well. Rapidly moving sperm swim up and into the cervix, where they can live for up to five days in the mucus until an egg is produced.

The fallopian tube might grab the egg because it is wrapped in sticky cells when it is released after ovulation. The sperm begin to break down the adhesive cells when they encounter the egg in the fallopian tube. While only one sperm is required to create a baby, numerous are required to cling to the egg's membrane and outer shell before one may penetrate and fertilize it.

After fertilization, substances are produced to prevent the entry of more sperm before the egg and sperm swiftly combine and split to form an embryo.

The fertilized egg continues to divide and move toward the uterus throughout the course of the following four to five days.

The burst follicle (now known as the corpus luteum), which releases the hormone progesterone into your bloodstream, primes the uterus for the egg to implant.

The pregnancy is sending an increasingly potent signal to the ovary to prolong and boost the production of progesterone, which the pregnancy needs to live, while it develops and installs itself into the mother's uterine lining and blood vessels.

Thank you,

Eddie

Smaller neurons require more current to change their membrane potential.
a) true
b) false

Answers

This is false that Smaller neurons require more current to change their membrane potential.

A potential gradient known as membrane potential causes ions to passively migrate in one direction: positive ions are drawn to the "negative" side of the membrane, while negative ions are drawn to the "positive" side. Human life is impossible without membrane potentials. Over their membrane, every living cell maintains a potential difference. Simply said, differences in the concentration and permeability of significant ions across a membrane are what cause membrane potential.

A change in membrane potential results from a change in ion permeability. The membrane potential moves closer to the ion's Nernst equilibrium potential as permeability to that ion increases. The membrane potential is shifted away from the ion's Nernst equilibrium potential as permeability to that ion decreases.

The less probable it is that the arriving ions will collide with something that might cause them to bounce back, the bigger the axon's diameter of a neuron. Positive ions must continuously move away from the cell body in order for the action potential to exist, and this is made much simpler in a bigger axon.

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Maintain population numbers close to the habitat carrying capacity are called _______ species

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Animal species that exhibit long gestation periods, give birth to relatively large offspring, and maintain population numbers close to the habitat carrying capacity are called K-selected species.

In nature, a given habitat contains sufficient resources such as food, water, etc. to support a maximum possible number of biological species, beyond which no further growth is possible. It is termed as nature's carrying capacity for that species in the habitat.

MacArthur and Wilson proposed that there are two life-history strategies i.e. K-selected and r-selected. K-selected species exhibit a proportionately stable population that gives rise to a low number of offspring which tend to be very large. For example the African elephant is included among K-selected species.

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What interventions could increase monogamy among meadow voles?

Answer choices:
Introduction of a viral vector that upregulates spontaneous vasopressin release


Introduction of an oxytocin-like drug


Introduction of a viral vector that increases oxytocin receptor density in the reward pathway


Introduction of an oxytocin blocker


Upregulation of vasopressin and oxytocin in the spinal cord using a microcatheter

Answers

Upregulation of vasopressin and oxytocin in the spinal cord using microcatheter interventions could increase monogamy among meadow voles. the correct answer is option(e).

In contrast to non-monogamy, monogamy is a type of dyadic interaction in which an individual has only one partner during their lifespan or, alternatively, just one partner at any given moment. The phrase is also used to describe how some animals behave in social situations, specifically the status of having just one mate at any given time.

Inhibitory interneurons may be activated by oxytocin and vasopressin across subcortical and possibly cortical networks, including reward pathways, to moderate their effects. Brain areas that are important for maintaining behavioral and physiological equilibrium are where oxytocin and AVP are largely produced. These two peptides are produced by several cells in distinct areas of the brain, including the supraoptic nucleus (SON) and paraventricular nucleus (PVN) in the hypothalamus.

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The poisonous chemical carbon monoxide inhibits the electron transport chain of cellular respiration. as a result:____.

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Carbon monoxide inhibits mitochondrial respiration by binding the ferrous heme a3 in the active site of COX, effectively shutting down oxidative phosphorylation .

Aerobic respiration is a process that utilizes the electron transport chain in order to oxidize glucose into energy. If a chemical were added that inhibited the electron transport chain, the cell would no longer be able to fully oxidize glucose. Carbon monoxide specifically inhibits cytochrome c oxidase of human mitochondrial respiratory chain.CO inactivates cytochrome oxidase. This leads to decreased ATP production, especially in tissues with high metabolic demands (brain, heart). The electron transport chain continues, generating superoxide radicals, leading to further damage.

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Growth is accompanied by two factors...

a) by increase in ___ b) increase in ___

Answers

The correct answers are sex hormones and thyroid hormones.

Hormones

In multicellular animals, a hormone is any member of a class of signaling molecules that is carried by complex biological mechanisms to distant organs to control physiology and behavior. The proper development of fungi, plants, and animals depends on hormones. The broad definition of a hormone (a signaling molecule that functions beyond from its point of production) allows for the classification of a wide range of molecular classes as hormones. Eicosanoids (such as prostaglandins and thromboxanes), steroids (such as oestrogen and brassinosteroid), amino acid derivatives (such as epinephrine and auxin), protein/peptides (such as insulin and CLE peptides), and gases are among the substances that can be termed hormones (e.g. ethylene and nitric oxide).

Growth is accompanied by two factors...

a) by increase in ___ b) increase in ___

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Most scientists use scientific methods in which of the following orders?
A. Conduct an experiment, collect the data, and analyze data
B. Conduct an experiment, draw conclusions, and form a hypothesis C. Conduct an experiment, analyze data, and state the question
D. Conduct an experiment, form a hypothesis, and state the question​

Answers

The answer to this question is C
The answer to this solution c

Unconsolidated, granular materials such as gravel and sand will support maximum slope angles of about 33 to 35 degrees. what is the name for this maximum slope angle?

Answers

Unconsolidated, granular materials such as gravel and sand will support maximum slope angles of about 33 to 35 degrees hence, angle of repose is the name for this maximum slope angle

The angle of repose is the angle formed by the plane of contact between two bodies when the upper body is just on the verge of sliding: the angle whose tangent is the coefficient of friction between the two bodies.

tan-1(2h/d) - where h is the height of the powder pile and d is its diameter Multiply the height by 2 and divide the result by the diameter using a scientific calculator. Then, press the inverse tan key, or tan-1, to get the result you just calculated. This will provide you with the angle of repose. The angle of repose is critical in the design of particulate material processing, storage, and conveying systems. The angle of repose is low when the grains are smooth and spherical.

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What is bone made of? List and give the percentages of the cellular and extracellular components of bone.

Answers

Almost 70% of bone is made up of bone mineral called hydroxyapatite

Specialized ganglionic sympathetic neurons that release hormones into the bloodstream are found within the collateral ganglia. adrenal glands. intramural ganglia. brainstem. chain ganglia

Answers

Specialized ganglionic sympathetic neurons that release hormones into the bloodstream are found within the adrenal glands.

What is adrenal gland?A little gland that produces noradrenaline, adrenaline, and steroid hormones. These hormones assist in maintaining healthy blood pressure, heart rate, and other vital bodily functions.Immune system, blood pressure, stress response, metabolism, and other critical processes are all controlled by hormones that are produced by adrenal glands. The cortex and the medulla, the two components that make up an adrenal gland, are each in charge of manufacturing a separate hormone.Problems with one, both, or other glands, such as the pituitary gland, can result in diseases of the adrenal glands. When the adrenal glands create either an excessive amount of hormones or an excessive amount of hormones from external sources, several diseases may arise.Since the adrenal glands are essential for human survival, if both are destroyed, the patient will need to take drugs and hormone supplements.

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What should you do if every dilution of your sample results in a plate that is too few to count (tftc)?

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When every dilution of your sample results in a plate that is too few to count we should filter the original sample and use most probable number method .

Probable number method count and determine the number of bacteria in a culture, plate aliquots of the dilutions onto agar with sterile pipettes, spread with glass sticks, incubate at 37°C and count the number of colonies. It is imperative that you utilize your best culture technique.

Not all bacterial cells produce colonies, as some bacteria tend to clump or aggregate, and some are nonviable. For this reason results are reported as colony forming units (CFU)/ml of bacterial culture. Ideally only plates with 25-250 colonies are used.

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For a biology project, you measure the weight in grams, and the tail length, in millimeters (mm), of a group of mice. the equation of the least-squares line for predicting tail length from weight is:________

Answers

The equation of the least-squares line for predicting tail length from weight is: predicted tail length = 20 + 3 × weight .

Determining how variation in morphology affects animal performance (and ultimately fitness) is key to understanding the complete process of evolutionary adaptation. Long tails have evolved many times in arboreal and semi-arboreal rodents; in deer mice, long tails have evolved repeatedly in populations occupying forested habitat even within a single species (Peromyscus maniculatus).

We use a combination of functional modeling, laboratory studies, and museum records to test hypotheses about the function of tail-length variation in deer mice.

First, we use computational models, informed by museum records documenting natural variation in tail length, to test whether differences in tail morphology between forest and prairie subspecies can influence performance in behavioural contexts relevant for tail use. We find that the deer- mouse tail plays little role in statically adjusting centre of mass or in correcting body pitch and yaw, but rather it can affect body roll during arboreal locomotion.

In this context, we find that even intraspecific tail-length variation could result in substantial differences in how much body rotation results from equivalent tail motions (i.e., tail effectiveness), but the relationship between commonly-used metrics of tail-length variation and effectiveness is non-linear.

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Proteins may be classified according to their three-dimensional shapes. Determine whether the following examples and descriptions refer to fibrous proteins, globular proteins, or both fibrous and globular proteins. True or false?.

Answers

Often function as enzymes or transport proteins → globular proteins

peptide chains arranged in long strands, or fibers → fibrous proteins

peptide chains highly folded into spherical shapes → globular proteins

keratins → fibrous proteins

hemoglobin → globular proteins

water-soluble → globular proteins

collagens → fibrous proteins

insoluble in water → fibrous proteins

What is Fibrous protein ?

Polypeptide chains in fibrous proteins are arranged almost parallel along a single axis, resulting in long fibres or broad sheets. These proteins frequently exhibit mechanical strength and resistance to water solubilization. In nature, fibrous proteins frequently perform a structural role.

What is Globular proteins ?

Soluble in water solutions, globular proteins are often. The wide range of activities carried out by globular proteins, including binding, catalysis, regulation, transport, immunity, and cellular signalling, is reflected in the diversity of protein shapes.

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In drosophila development, pattern development in the late embryo, larva, and adult is controlled by?

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In drosophila development, pattern development in the late embryo, larva, and adult is controlled by  homeotic type of gene.

In Drosophila, development is controlled by homeotic type of gene. The beginning phases of development are controlled by homeotic genes. The general body plan of Drosophila is the same in the embryo, the larva, and the adult, each of which has a distinct head end and a distinct tail end, between which are repeating segmental units .

Three of these segments form the thorax, while another eight segments form the abdomen. Two different sets of genes control embryonic development in Drosophila maternal-effect genes and zygotic genes.

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Living in a tropical environment where one learns to orient oneself through a vertical landscape of tall trees and speckled light is part of:_______.

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Living in a tropical environment where one learns to orient oneself through a vertical landscape of tall trees and speckled light is part of spatial orientation.

What is the rain forest zone?

The tropical rain forest zone is the zone that is known to have a very high amount of rainfall for most of the year. The rain forest zone often has a lot of luxuriant trees that blossom all year round and serve as a breeding ground for many insects such as mosquitoes.

Most of the trees in the tropical rain forest zone are arranged in strata where the tallest trees often form a sort of canopy in the area thereby reducing the light that gets to the pants that are found below and keeping the area cool.

Hence, living in a tropical environment where one learns to orient oneself through a vertical landscape of tall trees and speckled light is part of spatial orientation.

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As a forest becomes fragmented into smaller and smaller patches, the effects of fragmentation on these patches.

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As a forest becomes fragmented into smaller and smaller patches, the effects of fragmentation on these patches might result in the Edge effect.

What are the effects of Fragmentation?The fragmentation of habitat is a serious issue all across the planet. Even a small reduction in the total area of wild areas is unacceptable.However, it can compromise the integrity of entire ecosystems when fragmentation is present.The so-called "edge effect" can also result from fragmentation. Some species prefer moist, shaded environments, including some mosses and lichens. As a forest area gets smaller, it's possible that they'll become exposed to too much light or a drying wind and vanish.The species with the largest home ranges can survive in a healthy forest because it is big enough for them. They can be quite vulnerable to fragmentation because they are typically the top predators.Many species may be unable to travel if their natural habitat is fragmented, leading to their extinction.

Hence, the Edge effect may occur as forest fragments into ever-tinier patches as a result of the impacts of fragmentation on these patches.

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How is information from a signal molecule present outside the cell elicits intracellular response? Explain with suitable example. What features are exhibited by signal transduction?

Answers

The information from a signal molecule present outside the cell elicits intercellular response when the G protein coupled receptors interact with the wide variety of molecules on the outer surface of the cells.

G Proteins are the specialized proteins having the ability to bind GTP and GDP and is of three units called Alpha, Beta and Gamma subunits which together formed G proteins.

When G protein is activated it will bind GTP and each receptor binds in lock and key method and binding result into conformational change which will trigger a complex chain of events influencing different cell function.

Features exhibited by Signal Transduction System are:

1. Specificity- Signal molecules fits binding site on its complementary receptor. Other signal do not fit

2. Amplification- When enzymes activates enzymes, the number of affected molecules increases.

3. Desensitization- Receptor activation triggers a feedback circuit that shuts off the receptor or removes it from the cell surface.

4. Integration - When two signals have opposite effects on a metabolic characteristics outcome results from the integrated input from both the receptor.

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A dull colored flower that does not produce nectar, flowers during the day or night with a funnel-like blossom and usually smells really awful is most likely pollinated by what type of organism?

Answers

Nectar is sweet viscous secretion from the nectarines or glands, in plant blossoms, stems and leves which is sugar solution composed of one disaccharide and two hexoses. Rose flower does not have any nectar and   sunflower , goldenrod, cosmos, mint , etc are good examples of nectar.

Both water as well as wind for pollination are not very colorful and do not produce nectar because there is no need to attract the pollinating agents.These plants produce enormous numbers of small pollen grains , wind pollinated plants may be allergens, but seldom are animal pollinated plants allergenic.

Moths are the nocturnal pollination because they pollinate flower that only bloom at night.Bees or butterflies pollinate plants whose scent is high during the day, moths and bats pollinate plants whose fragnace is greatest at night.

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What organism began to grow in large numbers in lake washington as a result of the relaase of effluent from sewage treatment plans?

Answers

Cyanobacteria (blue-green algae) began to grow in large numbers in lake Washington as a result of the release of effluent from sewage treatment plans. Human activities have a big impact on water quality, but other, more subtle biological processes are also quite important.

An intriguing illustration of how anthropogenic factors and biological processes can change water quality is Lake Washington. The late Dr. W.T. Edmondson, spent many years researching the biology and chemistry of Lake Washington.Between 1941 and 1963, the lake received growing amounts of secondary processed sewage, which led to eutrophication and a decrease in the lake's water quality. From 1955 to 1973, cyanobacteria dominated the planktonic algae community.

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A scientific claim answers a question or offers a solution to a problem. Reflect on the Encounter the Phenomenon question and brainstorm potential answers. Use your observations from the Inquiry Activity to formulate your claim about the phenomenon

Answers

A scientific claim is developed by answering questions raised through suitable hypotheses that allow making predictions, which can be tested by experimental procedures.

What is a scientific claim?

A scientific claim is a body of knowledge obtained by answering the equation formulated through the observation of the real world.

These observations are capable of raising plausible explanations or hypotheses that can be tested (confirmed or rejected) by using the scientific method.

An inquiry activity may be, for example, the observation of the movement of a cylinder in aqueous solution.

In conclusion, a scientific claim is developed by answering questions raised through suitable hypotheses that allow making predictions, which can be tested by experimental procedures.

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Why did temujin take the name genghis khan after founding the mongol empire? he chose the name to intimidate other tribes. it was his given mongol name at birth. it was the name given to him through the mandate of heaven. he chose a name that would identify him as a universal leader.

Answers

Genghis Khan (aka Chinggis Khan) was the founder of the Mongol Empire which he ruled from 1206 until his death in 1227. Born Temujin, he acquired the title of Genghis Khan, likely meaning 'universal ruler’, after unifying the Mongol tribes. Utterly ruthless with his enemies, countless innocents were slaughtered in his campaigns of terror - millions according to medieval chroniclers.

Genghis Khan attacked the Xi Xia and Jin states and then Song China. In the other direction, his fast-moving armies invaded Persia, Afghanistan, and even Russia. Genghis Khan had a fearsome reputation but he was an able administrator who introduced writing to the Mongols, created their first law code, promoted trade and granted religious freedom by permitting all religions to be freely practised anywhere in the Mongol world. In this way, Genghis Khan built the foundations of an empire which would, under his successors, ultimately control one-fifth of the globe.

Temujin, acquired the title of Genghis Khan, likely meaning 'universal ruler’, after unifying the Mongol tribes.

Genghis Khan and the Mongol Empire:

Genghis Khan, aka Chinggis Khan, was the founder of the Mongol Empire which he ruled from 1206 until his death in 1227. Utterly ruthless with his enemies, countless innocents were slaughtered in his campaigns of terror - millions according to medieval chroniclers.Genghis Khan attacked the Xi Xia and Jin states and then Song China. In the other direction, his fast-moving armies invaded Persia, Afghanistan, and even Russia. Genghis Khan had a fearsome reputation but he was an able administrator who introduced writing to the Mongols, created their first law code, promoted trade and granted religious freedom by permitting all religions to be freely practised anywhere in the Mongol world. In this way, Genghis Khan built the foundations of an empire which would, under his successors, ultimately control one-fifth of the globe.

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If a 0. 2-ml blood sample with a paco2 of 40 mm hg diffuses across a membrane into the e2 electrode containing 0. 3 ml of solution, the final paco2 in the blood sample will be::________

Answers

If a 0. 2-ml blood sample with a paco2 of 40 mm hg diffuses across a membrane into the e2 electrode containing 0. 3 ml of solution, the final paco2 in the blood sample will be less than 16 mm Hg.

What is paco2?

The partial pressure of carbon dioxide is specifically evaluates the carbon dioxide level in blood.

It is a determined by using  a popular test called arterial blood gases (ABG) test.

It also also evaluates the partial pressure of oxygen (PaO2), bicarbonate (HCO3), and pH level of blood.

This test is performed on patients of lung diseases, neuromuscular diseases and also useful for getting a clear picture of the body's metabolic and respiratory conditions.

Hence the answer is less than 16 mm Hg.

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