Exercise training can improve homeostatic control via

O an increase in positive feedback
O an increase in negative feedback.
O a decrease in negative feedback
O cellular adaptation

Answers

Answer 1

Exercise training can improve homeostasis via a decrease in negative feedback, which is the third option and refers to the process by which a physiological change initiates a response that counteracts the initial change.

What is exercise training?

It is designed for the betterment of health and the physique and includes cardiovascular exercise, strength training, flexibility, and balance training that improve cardiovascular health, increase muscle and bone strength, and maintain the physique of the individual.

Hence, exercise training can improve homeostasis via a decrease in negative feedback, which is the third option and refers to the process by which a physiological change initiates a response that counteracts the initial change.

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Related Questions

Why did scientists once think that DNA was too
simple to contain the genetic information of liv-
ing things? Explain why their reason was not
correct.

Answers

Compared to proteins, DNA was made up of only 4 bases. Due to its simplicity, scientists thought DNA was too simple to contain genetic information.

Why the reasoning behind DNA's simplicity was incorrect?

Deoxyribonucleic acid also known as DNA is the genetic material of organisms. It is made up of 4 nucleotide bases, Adenine, Guanine, Thymine, and Cytosine.

Proteins are made up of 20 different amino acids. Amino acids are the building blocks of proteins and the variety of arrangement gives rise to different functions of the protein.

As protein offered more varieties when compared to DNA, scientists initially thought it was too simple to carry genetic information.

The reasoning was wrong as it was later found out that DNA, not proteins conferred heritable traits. These traits were passed down through generations successively. DNA also had the ability to replicate and showed the property of transcription and translation.

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A star is mainly made of hydrogen gas, but most classes of stars include other elements such as helium, calcium, and other heavier elements and molecules. True false.

Answers

A star is mostly composed of hydrogen gas, although most classifications of stars also contain helium, calcium, and other heavy elements and molecules is a true statement .  

Stars are massive celestial entities composed primarily of hydrogen and helium that generate light and heat from the churning nuclear forges inside their cores. Aside from our sun, the luminous spots we see in the sky are all light-years away.

Most stars have compositions that are extremely similar to the Sun, consisting mostly of hydrogen and helium. Stars are composed of extremely hot gas. This gas is largely made up of hydrogen and helium, the two lightest elements. Stars shine by converting hydrogen into helium in their cores and then producing heavier elements later in their lifetimes.

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PLEASE ANSWER THIS ASAP

Answers

The amino acid chain formed from the sequence AAU AAG GAC is Asn Lys Glu (Option A).

What are the nucleotide triplet codons of the genetic code?

The nucleotide triplet codons of the genetic code are represented by three different consecutive nucleotides that specify the amino acids that will be added to the growing polypeptide chain in the process of encoding of the genetic material

This code (the nucleotide triplet codons of the genetic code) is fundamental because all info requires to generate the protein composed in living systems is provided by the DNA sequence.

Therefore, with this data, we can see that the nucleotide triplet codons of the genetic code are three consecutive nucleotides in the DNA sequence that indicate specific amino acids which are added according to the genetic code to the growing protein during the successive processes of transcription from DNA to translation from mRNA.

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What do you think would happen if all inertia disappeared from our solar
system?

Answers

Answer:

The planets could either stop moving, or accelerate to a drastic speed.

Suppose that 71% of the surface of the earth is covered in water, and a random number generator uses latitude and longitude to select a random location on the earth. If 6 such locations are generated, what is the probability that all 6 locations are in water? 0. 0006 0. 1281 0. 8719 0. 9994.

Answers

The likelihood that there is water at each of the six places is; B: 0.1281

We're informed that;

Water covers 71% of the Earth's surface, or 0.71 percent.

We are informed that a random generator chooses 6 water-covered places at random.

Therefore, the likelihood that water is present at all six sites is;

0.71^(6) = 0.1281

The area of mathematics known as probability deals with numerical representations of the likelihood that an event will occur or that a statement is true. An event's probability is a number between 0 and 1, where, broadly speaking, 0 denotes the event's impossibility and 1 denotes certainty. The likelihood that an event will occur increases with its probability. A straightforward illustration is flipping a fair (impartial) coin.

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Which process does NOT release energy from glucose?
O photosynthesis
Ofermentation
Ocellular respiration
O glycolysis

Answers

Answer:

The process which does not release energy from glucose is Photosynthesis

How tissue culture is done step by step?

Answers

The tissue culture process typically begins with the selection of an appropriate cell or tissue source. This is often from an animal, but can also be from a plant or even a human source.

Once in the laboratory, the tissue is then treated with a series of steps to prepare it for culture. This process may include the removal of unwanted materials, such as proteins and other compounds, that can interfere with the culture process. The tissue is then placed in a sterile environment and incubated, usually at a temperature of 37°C, and a nutrient medium is added to provide the cells with the necessary nutrition to grow.

Once the cells are grown, they can then be manipulated to produce a desired outcome. This can include the introduction of external factors, such as hormones or drugs, which can alter the behavior of the cells. Cells can also be genetically modified to produce a desired result.

The tissue culture process is highly important in the field of biotechnology. It is used to produce large quantities of cells for use in research, as well as for the production of medicines and other products. Tissue culture also provides a platform for studying the behavior of cells and tissues in a controlled environment, allowing for the study of diseases and other conditions.

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Biology questions please help

Answers

Ribosome is the organelle which is involved in translation. Ribosome is responsible for the formation of proteins. The one feature common to plant cell and bacterial cell is the cell wall.

What is Ribosome?

Ribosomes are the macromolecular machines. Ribosomes are the organelles which are found within all the cells, that perform biological protein synthesis in the cell. Ribosomes are responsible for linking amino acids together in the order which is specified by the codons of messenger RNA (mRNA) molecules to form polypeptide chains. Ribosomes consist of two major components which include one small and one large ribosomal subunits.

The one feature which is common to both the plant cell and bacterial cell is the cell wall. Cell wall is not found in animals cells. The cell wall in plants is made up of cellulose and in bacteria, it is made up of peptidoglycan molecules.

Chloroplast are the organelles which is present in the plant cell, it is responsible for photosynthesis. Chloroplast is located in the cytoplasm of the plant cells. Chloroplasts are located in the mesophyll cells which is present between the upper and the lower epidermis of leaves.

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WILL GIVE BRIANLIST TO BEST ASNWER
A biome's climate can be described by a graph of its average monthly temperature and average monthly precipitation. What information can be determined from one of these graphs?

Answers

Answer:

look for seasonal variation in precipitation for ur answer

Explanation:

i cannot fully answer this question without seeing the graph.

Which part of the prokaryotic and eukaryotic cells contain the genetic material?

Answers

CELLS

In a prokaryotic cell the genetic material is found at the cytoplasm while in a eukaryotic cell the genetic material is found at the nucleus.

RX: HIV Treatment Regimen
Abacavir 300mg iii PO BID Lexiva 700mg one PO QAM and two PO QPM
Raltegravir 100mg iv PO QID
Truvada one PO TID Abacavir is only available in 100 mg tablets. How many tablets are needed to fill a 20-day supply? Lexiva is available in 350mg tablets. How many mg will the patient take in 22 days?
Transcribe the Sig for fosamprenavir. Transcribe the Sig for Isentress? What are the drugs that comprise Truvada?

Answers

(1) To fill a 20-days supply is needed for HIV treatment regimen = 268 tablets.

(2) The patient will take 68200 mg in 22 days

(3) The drugs that comprise Truvada is tenofovir and emtricitabine.

Abacavir: 300 mg twice daily equals 600 mg per day over 20 days, 12,000 mg over 1 tab at 100 mg, and 120 tabs.

Lexiva: 1 morning dose of 700 mg equals 700 mg.

2 in evening of 700 mg equals 1400 mg.

Total = 2100 mg each day x 22 days, which comes to 46,200 mg in 22 days.

The recommended dosage for fosamprenavir (Lexiva) is one 700 mg tablet taken orally in the morning and two 700 mg tablets taken orally in the evening.

Take 4 tabs of 100 mg of the medication Isentress (raltegravir) orally 4 times per day.

Hence, to fill a 20-days supply is needed for HIV treatment regimen = 120 tabs + 60 tabs + 88 tabs) = 268 tablets

ANd in 22 days:

Abacavir (600 mg x 22) = 13200 mg

Lexiva (2100 mg x 22) = 46200 mg

Isentress (400 mg x 22) = 8800 mg

Total = 68200 mg

Tenofovir and emtricitabine, the two drugs that combine to form Truvada, block crucial pathways that viruses utilize to initiate infection. If you take Truvada as PrEP every day, the drug's presence in your bloodstream may occasionally prevent the virus from setting up shop and halt the progression of HIV in your body.

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Why do we need to improve cardiovascular fitness and muscular endurance?

Answers

We need to improve cardiovascular fitness and muscular endurance so as to improve our capability to perform various regular physical activities.

The ability to perform exercises involving your entire body at moderate to high intensities for an extended period of time is known as cardiovascular endurance. Your ability to complete daily tasks more easily can be increased by increasing your cardiovascular endurance. Additionally, it can lower your risk of developing conditions including diabetes, heart disease, and stroke.

Your heart, lungs, and circulatory system stay healthy with endurance exercise, which also boosts your general fitness. As a result, those who engage in the prescribed amount of physical exercise on a daily basis can lower their chance of developing a variety of illnesses, including diabetes, heart disease, and stroke.

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Why skin colour is quantitative inheritance?

Answers

Three genes control human skin color. As a result, it is an illustration of quantitative inheritance, also known as polygenic inheritance, in which multiple genes control a phenotypic trait. Polygenes or cumulative genes are genes that control many traits.

Quantitative inheritance, also known as polygenic inheritance, is the inheritance that is controlled by one or more genes. In this type of inheritance, the dominant alleles have a cumulative effect, with each dominant allele expressing a portion of the trait or a unit of it, and the full trait can only be seen when all of the dominant alleles are present.

The environmental conditions can have a variety of effects on the quantitative traits, which are typically governed by a large number of factors or genes (perhaps ten, one hundred, or more), each of which contributes such a small amount to the phenotype that their individual effects cannot be detected using Mendelian methods but only statistical ones. Polygenes or cumulative genes are those that have an impact on a single quantitative trait and are nonallelic. Quantitative inheritance refers to the transmission of quantitative traits or polygenes.

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fluoroquinolones are the treatment prescribed for otitis externa, which is due to a __________.

Answers

Dead cells make up the outer layer of the body. Otitis externa, a bacterial infection-related condition, is treated using fluoroquinolones.

Antiviral therapy, whether it takes the form of topical antiviral drugs for 10 to 14 days or oral administration of acyclovir, valacyclovir, or famciclovir, is the cornerstone of treatment. Since 2009, topical ganciclovir 0.15% has been FDA-approved for the treatment of acute herpetic keratitis.

Through tainted food and water are a few of these causes. by having sex with a person who is contaminated. through sharing contaminated surgical instruments, tattooing needles, or other types of contaminated needles. via bodily fluids or contaminated feces

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One gender-related characteristic of peer evaluations is that

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One gender-related characteristic of peer evaluations is that women tend to receive lower ratings than men in peer evaluations, even when their performance is equal.

Research has shown that in peer evaluations, women tend to receive lower ratings than men, even when their performance is equal. This bias is known as the "likeability bias" and it can have negative effects on the career progression and opportunities of women in the workplace.

The bias is rooted in societal stereotypes about women, which lead evaluators to view women who assert themselves or display confidence as unlikeable or unfeminine, while similar behavior in men is viewed as assertive and leadership material. This bias can also be exacerbated by a lack of diversity in the workplace, as evaluators may be more likely to unconsciously rely on stereotypes when evaluating individuals who are different from themselves.

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one of the _________ effective ways to stabilize populations is to _________.

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One of the most effective ways to stabilize populations is to decrease child mortality.

When the population's size is stable, the population is said to be in a stable stage. The population growth phase is another name for it. Births plus immigration equaling deaths plus emigration results in population stability at the national level. The probability of newborn and child mortality is lower when there is greater education, a higher legal marriage age, and investment in stabilizing programs.

After China and India, America has the third-highest population worldwide. In the previous two decades, its population has expanded by 50 million, making it twice as populous as Australia at the moment. California already has a population density that is a third higher than that of the Old World of Europe.

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The most significant factor leading to exhaustion during intense endurance exercise lasting two to three hours is:

a. dehydration.
b. depletion of muscle glycogen.
c. the loss of electrolytes.
d. an increase in lactate production.

Answers

The most significant factor leading to exhaustion during intense endurance exercise lasting two to three hours is muscle glycogen depletion.

Glycogen is a carbohydrate reserve in the body made from glucose. Generally, glycogen is stored in the muscles and liver. Glycogen in the muscles is usually used by the muscles themselves, while those stored in the liver will be distributed throughout the body, especially to the brain and spinal cord.

When glucose levels start to decrease, for example after exercising, insulin levels will also decrease. When this happens, the enzyme glycogen phosphorylase begins to break down glycogen to supply your body with glucose. This then becomes the main source of energy for the body.

Intensive resistance training in a few hours burns a lot of calories, and the amount of stored glucose can be a limiting factor. When athletes run out of glycogen, their training performance begins to decline, and exhaustion occurs.

So, the correct answer is B.

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How does water hardness affect disinfectant?

Answers

Because of interactions between the divalent cations (such as calcium and magnesium) in the hard water and the disinfectant .

That result in the formation of insoluble precipitates, water hardness (i.e., high concentration of divalent cations) lowers the rate of kill of some disinfectants.

Bacterial inactivation was slowed by increasing water hardness. Wuhrmann and Zobrist found that for each 10 mg/liter increase in hardness, an additional 3 minutes were needed to achieve 99.9% bacterial inactivation (at 20°C and pH 7.0). Similar to chlorides, silver's activity was hampered by them.

A chemical agent or compound known as a disinfectant is used to inactivate or eradicate bacteria on inert surfaces.

Disinfection is less effective than sterilization, which is an extreme physical or chemical process that eliminates all forms of life, although it does not necessarily kill all microbes, particularly resistant bacterial spores.

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Water hardness affect disinfectant because of interactions between the divalent cations (such as calcium and magnesium) in the hard water and the disinfectant .

Bacterial inactivation was slowed by increasing water hardness. Zobrist found that for each 10 mg/liter increase in hardness, an additional 3 minutes were needed to achieve 99.9% bacterial inactivation (at 20°C and pH 7.0). Similar to chlorides, silver's activity was hampered by them. A chemical agent or compound known as a disinfectant is used to inactivate or eradicate bacteria on inert surfaces. Bacterial inactivation is a process by which we can kill bacteria in a more efficient and better way and we can also kill them in a very different way from the traditional method that we are using in nowadays. we can clean the surface of any object by the use o water hardness because it is having ions of calcium and magnesium that form lather by reacting with water. Disinfection is less effective than sterilization, which is an extreme physical or chemical process that eliminates all forms of life, although it does not necessarily kill all microbes, particularly resistant bacterial spores.

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a type of invisible energy from the sun that we need

Answers

Organisms need  Ultraviolet Light to make Vitamin D, a vitamin that is necessary for strong bones and a healthy immune system.

What is  Ultraviolet Light?

Ultraviolet light is Invisible rays that are part of the energy that comes from the sun. Ultraviolet radiation that reaches the Earth's surface is made up of two types of rays called UVA and UVB. Ultraviolet radiation also comes from sun lamps and tanning beds.

Therefore ultraviolet radiation is widely used in industrial processes and in medical and dental practices for a variety of purposes such as killing bacteria creating fluorescent effects. Different UV wavelengths and intensities are used for different purposes

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A 1:2:1 phenotypic ratio in the F2 generation of a monohybrid cross is a sign of the gene having more than two alleles in individuals of the F1 generation incomplete dominance of the two alleles toward each other. O complete dominance of one allele over the other. a and b, but not a and c, but not b

Answers

A 1:2:1 phenotypic ratio in the F2 generation of a monohybrid cross is a sign of incomplete dominance of the two alleles toward each other.

Thus the correct answer is B.

The process in which two true-breeding pаrents crossed to produce аn intermediаte offspring is cаlled incomplete dominаnce. Incomplete dominаnce is referred to аs pаrtiаl dominаnce or intermediаte inheritаnce. In incomplete dominаnce, the vаriаnts, аlso cаlled аlleles, аre not expressed аs dominаnt or recessive. Insteаd, the dominаnt аllele is expressed in а reduced rаtio.

In incomplete dominаnce, the F2 generаtion from heterozygous plаnts will hаve а rаtio of 1:2:1 with the phenotypes red, white аnd spotted flowers.

Your question is not well arranged, but most probably your full question was

A 1:2:1 phenotypic ratio in the F2 generation of a monohybrid cross is a sign of                 .

a. the gene having more than two alleles in individuals of the F1 generation

b. incomplete dominance of the two alleles toward each other.

c. complete dominance of one allele over the other.

d. a and b, but not a and c, but not b

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The epidermis is composed of; A) stratified squamous epithelium B) layers of areolar tissue C) connective tissue and simple squamous epithelium D) collagen and elastic fibers, smooth muscle tissue, and blood E) simple cuboidal epithelium

Answers

A stratified squamous epithelium composes the epidermis.

The outermost of the three layers that make up the skin is the epidermis; the interior layers are the dermis and hypodermis. Plants have epidermis, which is a single layer of cells that covers their leaves, flowers, roots, and stems. Squamous epithelium is stratified and makes up the epidermis. A single base layer containing stem cells, two to three layers of proliferating basaloid cells in the suprabasal region, and bigger keratinized cells toward the surface make up stratified squamous epithelium. The esophageal squamous epithelium lacks a stratum corneum because it is non keratinizing.

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how far away does an S wave travel in 3 minutes

Answers

S waves can travel as far as 684km in three minutes.

What is S wave?

This is also referred to as secondary waves and shear waves and they are known as lateral waves that move side to side as a sine wave perpendicular to the direction of the wave.

We should also note that the Shear waves travel at a distance of 3.8kilometers per second and we are ware that 180 seconds make up three minutes. Then we multiply 180 seconds by 3.8 kilometers which will result in 684km and is therefore the reason why it was chosen as the correct choice.

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Dietary fats after absorption appear in the circulation as (A) HDL (B) VLDL (C)LDL(D) Chylomicron

Answers

Dietary fats after absorption appear in the circulation as Chylomicrons. Here option D is the correct answer.

Dietary fats, such as triglycerides, are absorbed into the bloodstream after digestion. They are packaged in the lymphatic system as chylomicrons, which are small droplets of fat and protein.

Chylomicrons are transported in the bloodstream to adipose tissue and muscle cells, where they are broken down and stored as triglycerides. Chylomicrons also transport other lipids such as cholesterol, phospholipids, and fat-soluble vitamins.

HDL, VLDL, and LDL are lipoproteins that transport cholesterol and triglycerides in the bloodstream, but they are not the form in which dietary fats appear in circulation after absorption. HDL (High-density lipoprotein) is known as "good cholesterol" because it helps remove excess cholesterol from the blood.

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How is polyploidy different than the mutation of one or two genes, such as those that gave rise to cauliflower?.

Answers

One or two genes can be mutated, but polyploidy involves the entire set of chromosomes, whereas one or two genes can be mutated to give rise to cauliflower.

Polyploidy: the state in which a normally diploid cell or organism gains one (triploid, 3N), two (tetraploid, 4N), or more extra sets of chromosomes. When the chromosomes are completely non-disjunct during the metaphase of mitosis or meiosis, when the cell divides without separating the chromosomes, polyploidy results.

Mutation: An individual's genetic makeup might change in a heritable way, and this is known as a mutation. The mutation of one or two genes differs from polyploidy because polyploidy affects the entire set of chromosomes, whereas white mutation can affect a single gene, two genes, or a large number of genes. Because a mutation in one or two genes does not affect the entire set of chromosomes as in polyploidy, it differs from mutations in one or two genes.

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ENZYME CATALYSIS LABORATORY REPORT SHEET ACTIVITY 1: ENZYME CONCENTRATION 1. Construct a hypothesis addressing the effect concentration will have on rate of reaction. 2. What chemical reaction is being catalyzed in the experiment? Label the substrate(s), enzyme, and product(s). 0% 25% 50% 75% 100% Depth of H2O2 Solution 2.1 cm (d) 2.1 cm 2.1 cm 2.1 cm 2.1 cm Trial 1 Time 180 sec 84.61 sec 43.52 sec 36.90sec 25.90 sec Trial 2 Time 180 sec 92.25 sec 38.16 sec 34.36 sec 23.57sec Trial 3 Time 32.53 sec 18.82 sec Average Time (t) 180 sec 88.43 sec 40.84 Sec 34.5 sec 22.76 sec Rate of the Reaction (R = d/t) 0.012 cm/sec 0.02 cm/sec 0.051 cm/sec 0.061 cm/sec 0.0923cm/sec 4. Using the computer, graph rate of reaction on the y-axis and percent concentration of enzyme on the x-axis. If the points are linear, draw a "best-fit" straight line through or near all the data points. 0.1 0.09 0.08 8 0.07 0.06 Rate of Reaction cm/sec 0.05 0.04 0.03 0.02 0.01 0 0% 20% 100% 120% 40% 60% 80% Concentration of Enzyne 5. Based on the information in the data table and your graph, explain the relationship between percent concentration of catalase and rate of reaction. 6. Did your actual results match your hypotheses? If not, why? 7. Using the graph, you created, predict the rate of the reaction if catalase concentrations are 10%, 60% and 85%. This will be done by extrapolating from the graph. In order to do this, take each catalase concentration above and locate it on the x-axis. From that point, draw a vertical line until it intersects the "best fit" line. From that point of intersection, draw a horizontal line to the y-axis. Where this intersection occurs would be the approximate rate of reaction.

Answers

Answers from numbers 1, 2, 5, 6 and 7

I hypothesize that the rate directly increases with the increase in substrate concentration saturation. Then after, since all the active sites of the enzyme would be saturated so the increase in further substrate won't accelerate the rate of reaction. So, in the graph, there is a direct relation between substrate concentration and rate of reaction saturation after which it is straight.As per the information or data provided, the specified substrate is hydrogen peroxide and the enzyme provided here is catalase also known as peroxidase. the known products are water and oxygen. It is seen from the given graph that with increasing concentration of the enzyme, the rate of reaction also increases. The reason is, as the number of enzymes increases, the number of active sites increases proportionally. Therefore, more substrates can bind to it and undergo reactions. So, the rate of reaction increases with an increasing number of enzymes.The hypothesis proposed is not by the data shown. The possible reason is that in the given data table, the ROR is seen to increase but there is no significant change in the H₂O₂ depth of the substrate. It always gets stuck at a depth of 2.1cm which is not accurate. So, the wrong reading should have caused a change in the results and the proposed hypothesis.At 10 % enzyme concentration, the ROR will be between 0.01 - 0.02 cm/s (probably closer to ~0.016 cm/s) Similarly, at 60% enzyme concentration, the ROR is between 0.05 - 0.06 cm/sec (close to ~0.054 cm/sec). At 85% enzyme concentration, the ROR will be between 0.07 - 0.08 cm/sec (close to ~0.076 cm/sec).

Enzyme concentration or high enzyme activity results in the ability of enzymes to degrade substrates to be more optimal, this results in an increase in the product produced. It can be said that the speed of the enzymatic reaction (v) is directly proportional to the concentration of the enzyme [E].

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The answer would be looking up Enzyme concentration

Which of the following is smallest?
mitochondrion
prokaryote
virus
protein
ribosome

Answers

The smallest thing in the list below is a protein, which may form part of a virus, a bacteria, or any organelles such as a mitochondrion or a ribosome.

What is the molecular size of a protein?

The molecular size of a protein is variable and it depends on the amount of amino acids that form such biomolecules, which are linked by peptide bonds to form the primary structure of the protein.

The molecular size of a protein is measured in Daltons which is a unit of mass that is equivalent to one-twelfth of free carbon C-12 atom at rest.

Therefore, with this data, we can see that the molecular size of a protein is variable and it depends on the relative amount of amino acids that such biomolecule contains, and this s molecular size is measured in a unit of mass called Daltons.

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when a bone breaks, a(n) ________ forms until later being replaced with bone.

Answers

When a bone breaks, a(n) hematoma  forms until later being replaced with bone.

A hematoma, also known as a haematoma or blood suffusion, is a localized bleeding outside of blood vessels caused by disease or trauma, such as injury or surgery, and may entail blood continuing to leak from shattered capillaries.

A hematoma is a harmless fluid that spreads across tissues, especially sacs between tissues, where it may coagulate and harden before blood is reabsorbed into blood vessels. An ecchymosis is a hematoma of the skin that is greater than 10 mm in diameter.  They can be found in a variety of places, including the skin and various organs, connective tissues, bone, joints, and muscle.

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The following is correct regarding integral proteins O A. They are embedded in the membrane and if they extend through the lipid bilayer they are called transmembrane proteins. O B. They are also called intrinsic. O C. They can be extracted from the membrane if the cells are treated with detergents. O D. All of these

Answers

Integral proteins, also known as intrinsic proteins, are embedded in the cell membrane and can extend through the lipid bilayer, in this case, they are called transmembrane proteins. They can be extracted from the membrane if the cells are treated with detergents. Here option D is the correct answer.

Integral proteins, also known as intrinsic proteins, are a type of protein that is embedded within the phospholipid bilayer of the cell membrane.

They can span the entire width of the membrane, or they can be partially embedded in the membrane. They are held in place by non-covalent interactions with the phospholipid tails and are not easily removed from the membrane.

Transmembrane proteins have specific domains that span the membrane, these domains have hydrophobic amino acids that interact with the hydrophobic tail of the phospholipid bilayer, and hydrophilic amino acids that interact with the hydrophilic head of the phospholipid bilayer.

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for every described currently living species of organism, there are about ________ fossil species

Answers

Fossil species have not changed since the Cambrian for every documented living species of life. This would bring the cumulative amount of species to 11,250,000.

How are species recognised in fossils?

A paleontologist will extract as many remains from a rock or mud as they can. The fossils are categorized by morphology after being processed by scraping and cleaning. Fossils with strikingly similar patterns are assumed to belong to the same species.

A living fossil is what?

An extant taxon that apparently resembles close relatives solely known from the fossil record is alluded to as a living fossil. The prehistoric species must be old in relation to the beginning of the current clade in order to qualify as a living fossil.

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All Living things are made from the same type of cell.

True / False

Answers

False, there are eukaryotic cells and prokaryotic cells
Other Questions
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