the histamine h1 receptor is one of several existing histamine g protein-coupled receptors. depending on many factors, including the type of receptor, histamine can trigger a variety of responses, including vasodilation, smooth muscle contraction, stimulation of gastric secretion, cardiac stimulation, and increased vascular permeability (causing runny nose and watery eyes).which of the following could account for the different cellular responses to histamine? select all that apply.

Answers

Answer 1

H(1)-receptors in the lung mediate histamine's bronchoconstrictive actions and increase vascular permeability, which result in plasma exudation.

The H1 receptor is stimulated by what?

A member of the family of rhodopsin-like G-protein-coupled receptors, the H1 receptor is a histamine receptor. Histamine, a biogenic amine, activates this receptor.

The G-protein-coupled status of histamine receptors ?

G protein-coupled receptors (GPCRs) called H1 histamine receptors promote the production of IP3 and diacylglycerol, which are second messengers (14, 15). IP3 synthesis triggers the release of Ca2+ from intracellular reserves, which starts the contraction of smooth muscle (16, 17).

By triggering H1-receptors, histamine causes the smooth muscle of the bronchioles and the gut to contract.

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Related Questions

Which list the provides the correct enzyme order required for nucleotide excision repair of a thymine dimer? 1.helicase, DNA polymerase, DNA ligase 2.nuclease, DNA polymerase, DNA ligase 3.DNA ligase, nuclease, helicase 4.nuclease, DNA polymerase, RNA primase

Answers

list the provides the correct enzyme order required for nucleotide excision repair of a thymine dimer is nuclease, DNA polymerase, DNA ligase.

Base excision repair (BER) involves the removal of the damaged base by the glycosylase enzyme followed by the removal of the phosphate in the backbone by AP endonucleases. The proper nucleotide is then replaced by DNA polymerase beta (), and the break is then repaired by DNA ligase enzymes.

Five fundamental processes comprise the repair procedure: (1) base excision; (2) incision; (3) end processing; and (4) repair synthesis, including gap filling and ligation. Image 3. The structural underpinnings of how BER enzymes interact with their DNA substrates.

To repair DNA with AP sites or base damage, BER only needs four or five enzymes in the fundamental reaction steps. One DNA glycosylase, one AP endonuclease, one DNA polymerase, and one DNA ligase are among these. BER begins with the removal of a damaged base by the DNA glycosylase.

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Which of the following is NOT a bacterial pathogen transmitted by the bite of an animal? Bartonella henselae Plasmodium vivax Pasteurella multocida Streptobacillus None of the answers is correct; all of these bacterial infections can be transmitted by dog or cat bites

Answers

Animal bites do not spread the bacterial infection Plasmodium vivax. Here option B is the correct answer.

A protozoal infection called Plasmodium vivax is transmitted by the Anopheles mosquito. The parasite Plasmodium, which causes malaria, is a single-celled parasite that reproduces both in human red blood cells and in the stomach of mosquitoes.

Plasmodium vivax is a protozoal parasite and human disease. The most common and widely disseminated cause of recurrent malaria is Plasmodium vivax, one of the six types of malaria parasites that normally infect people. Malaria is brought on by the protozoan Plasmodium vivax. As a parasite, it. Female Anopheles mosquitoes transmit it to humans.

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The louse leg is tipped by claws formed from the tibia and tarsus. We call these the ____________claws.

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Claws made of the tibia and tarsus tip the louse leg. These are referred to as tibiotarsal claws.

The tibiotarsal joint connects the tibia and the tarsus in the anatomy of people and many other species.  It corresponds to the ankle in avian anatomy.

Bog spavin is the term used in equine veterinary science to describe synovial distension of the tibiotarsal joint in horses.

The big bone in a bird's leg between the tarsometatarsus and femur is called the tibiotarsus. It involves the proximal tarsus and tibia joining together.

The Mesozoic Heterodontosauridae also had a similar structure. The similarity of their foot bones is best explained by convergent evolution in these small ornithischian dinosaurs, which were unrelated to birds.

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What would happen if mitosis went wrong?

Answers

When there are either too few or too many chromosomes in the daughter cells created during mitosis, it is known as aneuploidy.

What occurs if meiosis fails?

However, if meiosis is abnormal, a newborn may be born with additional chromosomes (trisomy) or without chromosomes altogether (monosomy). Pregnancy loss may result from these issues. They might also harm a child's health. A woman who is at least 35 years old runs an increased risk of giving birth to a child who has a chromosomal defect.

What would occur if mitosis was unchecked?

Cells can divide randomly and collect genetic mistakes that can result in a malignant tumor when the cell cycle is out of control.

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Tides will be most visible:


-on shores and coasts

-in the middle of the ocean

-wherever the water temperature is warmest

-in freshwater bodies, such as lakes, rivers, and streams

Answers

Tides will be most visible on shores and coasts.

What are Tides?

Sea levels rise and fall during tides as a result of the gravitational pull of the Moon (and to a much lesser extent, the Sun) paired with the Earth and Moon's orbiting one another.

To determine the anticipated times and amplitude for any location, tide tables can be employed (or "tidal range").

The Sun and Moon alignment, the phase and amplitude of the tide (the pattern of tides in the deep ocean), the amphidromic systems of the oceans, the form of the shoreline, and near-shore bathymetry are only a few of the variables that affect the predictions (see Timing).

They are simply estimates, however, as wind and tide are factors that impact the tide's exact timing and height.

Therefore, Tides will be most visible on shores and coasts.

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1) Compare the supraorbital ridge thickness. (This is the area above the orbits)
2) Compare and contrast the orbits. How much spaces is between them? Do some look more similar than others?
3) What is the shape of the orbits? Compare and contrast.
4) Compare and contrast the size of the zygomatic arch.

Answers

The zygomatic arch is a bridge of bones that connects the temporal bone just at side of the head to the maxilla (upper jawbone) in front, with the zygomatic (cheek) bone making up a significant percentage of the structure.

The size of the muscle which connects to the zygomatic arch determines how big it is in comparison to the rest of a skull. By comparison to the muscle that linked to Skull bone 2, a greater zygomatic arch suggests that the muscle that used to attach to the skull was fairly large. The majority of experts, however, were persuaded in the 1980s by new Sivapithecus discoveries and the reinterpretation of existing remains that Sivapithecus was indeed the ancestor of the modern orangutan and had separated from the common ancestry of humans and African apes (chimpanzees and gorillas) more than 13 million years earlier.

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What cellular process does telophase occur?; What happens in the telophase stage?; What happens in telophase ?; What is the process after telophase called ?

Answers

Telophase is a stage of the eukaryotic cell cycle, which is composed of interphase, mitosis, and cytokinesis.

What is a eukaryotic cell?

A eukaryotic cell is a type of cell that contains a nucleus and other organelles enclosed within a membrane. Eukaryotic cells are found in all multicellular organisms, including plants, animals, fungi, and protists. They are distinct from prokaryotic cells, which are found in single-celled organisms, such as bacteria.

Telophase is the final stage of both mitosis and meiosis, which are processes that divide the nucleus of a single cell into two daughter nuclei.

During telophase, the two daughter nuclei form and the nuclear envelope begins to reform around each daughter nucleus. The chromosomes also condense into chromatin and the spindle fibers begin to break down.

The process after telophase is called cytokinesis, which is the process in which the cytoplasm of the cell is divided up into two daughter cells.

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Will a point mutation affect the polypeptide that forms?; Does point mutation change amino acid?; Can point mutations change a specific codon?; How does the mutation affect the amino acid sequence in the polypeptide?

Answers

A single base pair that is inserted, removed, or modified in a genome is known as a point mutation. The majority of point mutations are harmless.

How can point mutations impact the sequences of amino acids?

One of three outcomes from a point mutation on a protein is possible: (1) an alteration to a different amino acid known as an amisense mutation a mutation known as a nonsense mutation that affects a termination codon.

What effects does the point mutation have on the polypeptide?

A point mutation will frequently result in the same amino acid being included in the resultant polypeptide despite the sequence change because of the degeneracy of the genetic code. Silent mutations are those changes that don't affect the structure of the protein.

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Postganglionic neurons of the sympathetic nervous system can be characterized as having which of the following receptor type?A. Muscarinic acetylcholine receptorsB. Nicotinic acetylcholine receptorsC. Adrenergic receptors

Answers

The receptor type is Adrenergic Receptors. As mentioned, neurons that produce and release the neurotransmitter NE are known as adrenergic neurons.

NE is secreted by postganglionic neurons of the sympathetic nervous system and binds to adrenergic receptors expressed on effector cells. Postganglionic neurons of the sympathetic nervous system use adrenergic receptors to respond to signals from the central nervous system. These receptors are activated by either epinephrine (adrenaline) or norepinephrine (noradrenaline) hormones. The hormones are released from the adrenal medulla and activate the postganglionic neurons to initiate the fight-or-flight response. The adrenergic receptors are divided into two major groups, alpha and beta. Alpha receptors are responsible for constriction of the blood vessels, bronchi, and other organs, while beta receptors are responsible for increased heart rate and contraction of the skeletal muscles.

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which of the following communities is the least diverse?group of answer choices50 squirrels, 75 oak trees, 60 maple trees15 lions, 100 zebras, 80 giraffes40 bass, 60 minnow, 55 blue gill4 crab spiders, 76 goldenrod, 60 echinacea5 elm trees, 7 beech trees, 6 birch trees

Answers

4 crab spiders, 76 goldenrod, 60 echinace communities is the least diverse among the given options resulting in species count among the community.

A species is a unit of biodiversity and a fundamental taxonomic classification for an organism in biology. A species is the largest collection of organisms in which any two individuals of the appropriate sexes or mating types can produce fertile offspring, typically by sexual reproduction. In addition, a species can be recognized by its karyotype, DNA pattern, anatomical features, behavioral traits, or ecological niche. Additionally, paleontologists support the chronospecies theory since fossil reproduction cannot be investigated.

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. small, nonpolar solutes can pass directly through the selectively permeable membrane of a cell, this is described as the of solutes.

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Small, nonpolar, lipid-soluble compounds can quickly pass through the plasma membrane's phospholipids.

What is a membrane in a human?

Body membranes are incredibly thin cell sheets that line body cavities, cover organs inside of hollow organs, and cover the body's surface. They can be divided into connective tissue membrane or epithelial membrane.

What is an example of a membrane?

Your don't have to look far to find an example of a membranes: your skin is a type of membrane. Although thin and flexible, membranes are often robust enough to protect whatever is inside of or beneath them. Membranes, such as those that enclose your cells and organs, are frequently studied by biologists.

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If a hom.ozygous white horse and a hom.ozygous black horse are bred together, what is the likelihood that their offspring will be roan with both colors represented in their hair if this gene follows a codominant inheritance pattern?
A.) 50%
B.) 25%
C.) 100%
D.) 0%

Answers

The offspring's hairs adopt the coat colours of both of its parents. This is a co-dominance arrangement. The codominant inheritance pattern will be 100% in the heterozygous children as a result.

The two distinct alleles interact with one another in a heterozygous genotype. Their trait expression is determined by this. Usually, dominance is the basis of this connection. The other allele, which is suppressed by the dominant one, is referred to as "recessive," whereas the dominant allele is referred to as "dominant." A heterozygous genotype may include one or more of the following depending on the interaction between the dominant and recessive genes: An allele is a name for each variant. There are two alleles per gene that you inherit from your biological father and your mother.

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which of the following double mutants could show synthetic genetic enhancement? select all that apply. A) Two null mutants (A, B) in genes with redundant function (A -> C, B -> C). B) Two hypomorphic mutants (A, B) in the same linear pathway (A -> B -> C). C) A constitutively-active mutant (A) and a null mutant (B) in genes with redundant function (A -> C, B -> C). D) Two null mutants (in A and B) in the same linear pathway (A -> B -> C)

Answers

The correct option in which double mutants could show synthetic genetic enhancement is B)Two hypomorphic mutants (A, B) in the same linear pathway (A -> B -> C).So, correct option is B.

Double mutants  portrays a person that is conveying homozygous transformations in two distinct qualities. With regards to mouse hereditary qualities, a twofold freak is generally delivered by crossing individual heterozygous for transformations in two distinct qualities.

In science, and particularly in hereditary qualities, a freak is a life form or another hereditary person emerging or coming about because of a case of change, which is by and large a modification of the DNA succession of the genome or chromosome of a creature. A trademark wouldn't be noticed normally in an example.

The term mutant is likewise applied to an infection with a modification in its nucleotide succession whose genome is in the atomic genome. The regular event of hereditary changes is indispensable to the course of development.

Hence, correct option is B.

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Researchers have found a human protein (Protein X) that is a useful therapeutic for certain diseases. Protein X doesn't have any significant post-translational modifications and is a relatively small and water-soluble, globular protein. Therefore, Protein X can be expressed in its active form in the bacteria Escherichia coli. Expressing Protein X in and purifying it from E. coli will make it a much more affordable therapeutic. In order to do this, the researchers sequenced the mature mRNA that translates for Protein X in order to get the nucleotide sequence for the mature mRNA that codes for Protein X. They are now going to insert this sequence into a plasmid and transform that plasmid into E. coli , and then express and purify the protein. Which of the following should they also do before they insert the sequence into a plasmid and then into E. coll? Choose one or more: O A. If the mRNA contains a UGA stop codon, then change it to a UAA stop codon. O B. Add a sequence to encode an affinity tag (such as 6 histidine amino acids) at one end of the gene for Protein X. O C. Synthesize the DNA that is complementary to the mature mRNA sequence, and insert that into the plasmid instead of RNA. O D. Change most of the AAA codons that encode for the amino acid lysine to AAG codons.

Answers

The step which they also do before they insert the sequence into a plasmid and then into E coli is b)Add a sequence to encode an affinity tag (such as 6 histidine amino acids) at one end of the gene for Protein X. So, correct option is b.

The second step is needed because the grouping of amino acids deposits in a protein is characterized by the succession of a quality, which is encoded in the hereditary code. By and large, the hereditary code determines 20 standard amino acids; yet in specific living beings the hereditary code can incorporate selenocysteine and — in certain archaea — pyrrolysine.

Not long after or in any event, during union, the deposits in a protein are in many cases synthetically changed by post-translational change, which modifies the physical and substance properties, collapsing, strength, movement, and at last, the capability of the proteins. A few proteins have non-peptide bunches connected, which can be called prosthetic gatherings or cofactors. Proteins can likewise cooperate to accomplish a specific capability, and they frequently partner to shape stable protein buildings.

Hence, correct option is b.

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What is the probability of the offspring having hemophilia for the cross?; What is the best evidence to prove that Irene was heterozygous for hemophilia?; Is hemophilia recessive?

Answers

The fact that two of her sons have hemophilia and one does not would be the best proof, the probability of the offspring having hemophilia for the cross

A sex-linked recessive condition, hemophilia. This means that whereas males can either be normal or affected, females can either be homozygous normal, heterozygous, or impacted by the condition. This is due to the fact that females have two X chromosomes (XX) while males only have one (XY). Additionally, males always inherit their X chromosomes from their mothers, whereas females inherit their Y chromosomes from their fathers. Therefore, if Irene's two X chromosomes are normal for hemophilia, none of her sons should be affected. All of her boys will have the problems if both X chromosomes are defective. If just one X chromosome is affected and the other is normal, some of her kids may not.

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the culmination of sexual stimulation is called, a pleasurable feeling of physiological and psychological release that is accompanied by ejaculation and ___

Answers

Orgasm is a satisfying sensation of physical and emotional release that, in men, is accompanied by emission and ejaculation.

What timeframe does sexual development and fertility occur?

The period of puberty is when a person reaches sexual maturity and fertility. Puberty can start at a variety of ages, but it typically happens between the ages of 10 and 14 for females and between the ages of 12 and 16 for boys.

What hormones are present in the male and female reproductive systems and what do they do?

Oestrogen and testosterone are the two primary reproductive hormones. Once a female reaches puberty, estrogen induces the eggs in her ovaries to develop. These are then periodically secreted throughout the menstrual cycle. Males that take testosterone have increased sperm production.

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Which gland is responsible for initiating the menstrual cycle ?

Answers

Every 60 to 120 minutes, it is rhythmically discharged. Follicle stimulating hormone (FSH), which initiates the formation of follicles (eggs) and influences the level of estrogen, the main female hormone, is produced by the pituitary gland when GnRH stimulates it.

Which hormone is identified by a nurse as being the one that starts the menstrual cycle when discussing the hormones involved in it?

The anterior pituitary gland secretes the hormones luteinizing and follicle-stimulating.

The menstrual cycle is caused by which hormone?

The three phases of the menstrual cycle are follicular (before egg release), ovulatory, and are controlled by a complex interplay of hormones including luteinizing hormone, follicle-stimulating hormone, and estrogen and progesterone (egg release)

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instantaneous speciation: (select all correct choices) instantaneous speciation: (select all correct choices) often involves multiple chromosome sets, or polyploidy. can occur when hybridization between species produces fertile, viable offspring that are reproductively isolated from both parental species. is relatively common in plants but not in animals. is, by definition, a type of sympatric speciation. none of these

Answers

Instantaneous speciation, which is relatively common in plants but not in animals, frequently involves multiple chromosome sets or polyploidy; can happen when hybridization between species produces fertile, viable offspring that are reproductively isolated from both parental species; and is, by definition, a type of sympatric speciation.

A single person (or the progeny of a single mating) that is reproductively distinct from the species to which the parental stock belongs and is capable of founding a new species population is said to have undergone instantaneous speciation.

A fundamental unit of evolution is the species. Multiple populations that are connected by gene flow but that are individually modified by mutation, selection, and genetic drift make up most species. As a result, species act as a physical barrier to the spread of alleles. Although the idea of a species is straightforward in theory, establishing its boundaries is more difficult.

As a result, choices A, B, C, and D are the best ones.

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In fruit flies, red eyes (E) is dominant over white eyes. Give the three possible genotypes that fruit flies could have and the phenotype that goes with each.

Answers

The possible genotypes that fruit flies could have EE, Ee and ee.

What are genotypes?

The genotype of an organism is its complete set of genetic material. Genotype can also be used to refer to the alleles or variants an individual carries in a particular gene or genetic location.

A genotype is a scoring of the type of variant present at a given location (i.e., a locus) in the genome. It can be represented by symbols. For example, BB, Bb, bb could be used to represent a given variant in a gene.

The different types of genotypes are- homozygous recessive (pp), homozygous dominant (PP), and heterozygous (Pp).

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What is the purpose of a
functional group?
A. to make molecules non-polar
B. to help molecules separate from
water
C. to build inorganic molecules
D. to assist molecules in chemical
reactions this is the answer

Answers

Answer:

D

Explanation:

functional groups are atoms or group of atoms that are made responsible for the physical and chemical properties in an organic compound

Answer:

D

Explanation:

to assist molecules in chemical reaction this is the answer

what is the difference between active and passive transport across the plasma membrane?; three main differences between active and passive transport; difference between active and passive transport with examples; similarities between active and passive transport; types of passive transport; which best describes the role of endocytosis in cell transport?; active and passive transport examples; is osmosis active or passive transport

Answers

Active and passive transport are systems that are meant for transporting molecules through the cell membrane.

Active transport necessitates the movement of molecules, whereas passive transport does not necessitate the movement of molecules. Active transport involves molecules moving against a concentration gradient, whereas passive transport involves molecules moving along a concentration gradient.

There are three main active transport methods - ion pumps, exocytosis and endocytosis.

What is the main difference between active transport and passive transport?

There are two major ways that molecules can be moved across a membrane, and the distinction has to do with whether or not cell energy is used. Passive mechanisms like diffusion use no energy, while active transport requires energy to get done.

Four Main Kinds of Passive Transport are Found:

Osmosis

Simple diffusion

Facilitated diffusion

Filtration

Osmosis is a type of passive transport in which water molecules move from low solute concentration to high solute concentration or low water concentration across a membrane that is not permeable to the solute.

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An animal cell placed in a sugar solution is shown in the diagram. Which statement best describes how osmosis will affect this animal cell?

Water will move out of the cell and the cell will shrink
Water will move into the cell and the cell will expand
Sugar will move out of the cell and the cell will expand
Sugar will move into the cell and the cell will expand

Answers

The cell will shrink as the Water will move out of the cell and the cell will shrink in the animal cell placed in a sugar solution.

Osmosis is a kind of diffusion that refers back to the motion of a solvent throughout a semipermeable membrane from a place of decrease solute awareness to better solute awareness.

If we area a mobileular withinside the hypertonic answer like in sugar or salt solution, the mobileular will shrink. It is due to the fact the motion of water takes area from decrease solute awareness to better solute awareness i.e from interior sugar option to achieve equilibrium. It outcomes in shrinkage of the cell.

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nilsson-ehle found that three loci contributed to kernel color in wheat, resulting in purple, dark-red, red, light-red, and white kernels. if there were more loci involved in controlling this trait, the number of possible kernel colors would . please choose the correct answer from the following choices, and then select the submit answer button. answer choices increase decrease stays the same not enough information given

Answers

Nilsson-ehle found that three loci contributed to kernel color.If there were more loci involved in controlling this trait, the number of possible kernel colors would increase.

There were all gradations from the deep red of one parent to the pure white of the other parent so that the plants could be divided into 7 different color classes in the ratio of 1:6:15:20:15:6: 1. Nilsson-Ehle was able to distinguish 6 phenotypic classes with different intensities of red as follows: 1 dark red (like a parent), 6 dark red, 15 red, 20 medium red, 15 light red and 6 very light red (Fig. 4.1). Only one of 64 plants produced completely white seeds and another of 64 had red seeds identical to the parents of the first cross.

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Which of the following processes do glycolysis link reaction citric acid cycle and electron transport chain belong to?

Answers

Glycolysis, the citric acid cycle, and the electron transport chain are three distinct metabolic pathways that work together to form cellular respiration. While the other two mechanisms are aerobic, glycolysis is anaerobic.

The process known as pyruvate oxidation is required in order to convert pyruvate molecules—a product of glycolysis—into the citric acid cycle. The first pathway in cellular respiration is glycolysis. This anaerobic route operates within the cell's cytoplasm. This process yields two pyruvate molecules and disintegrates one glucose molecule. Glycolysis consists of two halves, each with five stages. The "energy needing" steps are the ones in the first half.

This portion divides the glucose and consumes two ATP. The second half of glycolysis can start if pyruvate kinase levels are high enough. In the "energy releasing" stages in the second half, 4 ATP molecules and 2 NADH molecules are released. There is a net gain of 2 ATP and 2 NADH from glycolysis. Some cells (like mature mammalian red blood cells) are unable to respire aerobically, therefore their only source of ATP comes from glycolysis. However, most cells oxidize pyruvate before moving on to other cellular respiration pathways.

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Correct Question:

Which processes does glycolysis link reaction citric acid cycle and electron transport chain belong to?

Dietary fat is absorbed through the intestinal endothelial cells and then transported in the lymph system in the form of _______ bound to or part of _______ A. Fatty acids; serum albumin B. Fatty acids; chylomicrons C. Fatty acids: apolipoproteins D. Triacylglycerides; serum albumin E. Triacylglycerides; chylomicrons F. Acetyl-CoA

Answers

Dietary fat is absorbed through the intestinal endothelial cells and then transported in the lymph system in the form of triacyl glycerides bound to or part of chylomicrons

Because lipids, such as cholesterol and triglycerides, are insoluble in water these lipids must be carried in conjunction with proteins (lipoproteins) in the circulation. Large quantities of fatty acids from meals must be delivered as triglycerides to avoid toxicity. These lipoproteins are essential for the small intestine to absorb and transport dietary lipids, for lipids to travel from the liver to peripheral tissues, and for lipids to travel from peripheral tissues to the liver and intestine.

Hence, triacyl glyceride and chylomicron are two mode of lipid transport in intestine.

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briefly summarize, in approximate chronological order, the steps in the innate response to a bacterial infection. include both the cells and the molecules that are involved in the response to the bacteria and what each does. g

Answers

Both innate and adaptive immune responses are part of the immune system.

Natural innate immunity develops as a result of genetics or physiology; it is unrelated to illness or immunization and serves to lighten the strain on the adaptive immune system. Intricate cell-to-cell communication, secreted proteins, and receptor-mediated signaling are all components of the immune response at both the innate and adaptive levels. Around a billion years ago, the innate immune system began to evolve in animals as an important defense against infection. A small number of distinct pathogens are the only targets for innate immunity; each pathogenic threat sets off a predictable chain of processes that can detect the pathogen type and either clear the infection on its own or mobilize a highly focused adaptive immune response. For instance, mucus and tears have microbicidal properties.

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Based on information provided in the tutorial, which of the following describes the type of radiation that could be absorbed and emitted by Earth?
A. Earth absorbs long-wave infrared radiation and emits short-wave visible and ultraviolet radiation.
B. Earth absorbs long-wave visible and ultraviolet radiation and emits short-wave infrared radiation.
C. Earth absorbs short-wave infrared radiation and emits long-wave visible and ultraviolet radiation.
D. Earth absorbs short-wave visible and ultraviolet radiation and emits long-wave infrared radiation.

Answers

The earth absorbs long-wave visible and ultraviolet radiation and emits short-wave infrared radiation. The ground heats up and re-emits the energy as longwave radiation in the form of infrared rays. Earth emits longwave radiation because Earth is cooler than the sun and has less energy available to give off.

Dark-colored surfaces such as gravel and asphalt absorb most of the sunlight and have low albedo values closer to 0. The greater temperatures on surfaces with darker hues are also explained by this.

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starting in the spinal cord, trace an impulse through the sympathetic division of the ans until it reaches a target organ in the abdominopelvic region.

Answers

In the abdominopelvic cavity, there are preganglionic neurons, T5-L2 neurons, collateral ganglia, postganglionic fibers, and visceral effectors.

Can a cavity be filled?

Phosphate from mouthwash or other sources, together with minerals from saliva, can help the enamel heal itself. But additional minerals are lost as the dental caries process progresses. The enamel weakens and breaks down with time, creating a cavity. A filling is required by a dentist to fix a cavity since it is lasting harm.

Can you ignore a cavity?

Untreated cavities may result in discomfort and infections that make it difficult to eat, speak, play, or study. Cavities that go untreated can develop in an abscess (a dangerous infection) behind the gums, which might spread to other areas of the body but have significant, and that in rare cases deadly, effects.

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classify the following examples based on whether they were ideas proposed by the keynesian theory or by financial and monetary theories. assume that there exists a downward wage rigidity.

Answers

Assume that wages are rigidly declining. Think about a stable economy. Let's say that at this point, households in this economy anticipate continued economic growth. Complete the feedback loop that follows to reflect the multiplier effects of this shock on a modern economy.

What does the Keynesian theory say?

According to Keynesians, since prices are somewhat rigid, changes in any spending component—consumption, investment, or government spending—cause output to change. For instance, if government spending rises while all other spending factors stay the same, the output will rise as well.

Keynes' theory led him to recommend lowering taxes and increasing government spending in order to boost demand and rescue the world economy from the Great Depression.

The idea that the best economic performance could be obtained and economic downturns could be avoided—by influencing aggregate demand through governmental economic intervention a concept known as Keynesian economics was later used to describe this idea. The full employment and price stability that Keynesian economists think are achievable through such action.

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What are 2 stages of cell division?; What are the 2 main stages of mitosis called?; What are the 2 main stages of meiosis?; What is the division of two cells called?

Answers

Answer:

1. interphase and the mitotic (M) phase.

2. the two daughter ells made

Explanation:

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