: which of the following processes would provide the best target for a new antibacterial antibiotic candidate compound? choose one: a. phospholipid biosynthesis for the cell membrane b. enzyme activities of the glycolysis pathway c. pyrimidine biosynthesis d. nuclear envelope transport e. purine biosynthesis f. ribosome function

Answers

Answer 1

The correct option is e.purine biosynthesis is antibacterial antibiotic candidate compound.

In particular, ribotides, or bases connected to ribose 5-phosphate, are how purines are biologically produced as nucleotides in the form of purines. Both adenine and guanine are generated from the nucleotide inosine monophosphate (IMP), which is the first substance in the route to have a fully formed purine ring structure.creating IMP fromscratch.the names of the substrates, metal ions, inorganic compounds, enzymes, coenzymes, and color schemes are.Through a complicated mechanism, inosine monophosphate is produced on top of the already-existing ribose-phosphate (as shown in the figure on the right). There are several origins for the purine ring's nitrogen and carbon atoms, 5 and 4, respectively.

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Related Questions

What do all organelles have in common?
Choose 1 answer:
(A) they all release energy for the cell to use.
(B) they all have a specific function in the cell.
(C) they all contain the organism's genes.

Answers

Answer:

B

I think

I hope this helped

All organisms basically have a certain function in the cell. The correct option is B.

What are cell organelles?

An organelle is a subcellular framework that, like an organ, has one or more particular tasks to do in the cell.

The nuclei, which stockpile genetic information, mitochondria, which generate chemical energy, and ribosomes, which assemble proteins, are among the more essential cellular organelles.

Organelles are complex particles in the cytoplasm that perform functions necessary for cell homeostasis.

They are engaged in a variety of processes, including energy production, protein and secretion formation, toxin elimination, and response to external signals.

Every cell organelle have particular function in the cell. Like mitochondria is responsible for release of energy and nucleus is the one to carry genetic information.

Thus, the correct option is B.

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_________________: A point used for comparison in motion calculations *

Answers

Answer:

A reference point ?

In some individuals, the thyroid does not produce enough hormone, so these individuals may take a replacement hormone, such as thyroxone. The concentration C(t) of thyroxone (in micrograms) in the person's body decays exponentially with a half-life of about seven days. Consider an individual who has taken 120 mcg of thyroxone. a) (1 point) Which of the following is true for the concentration of the drug in the individual's body? After 14 days, none of the hormone remains After 14 days, 30 mcg remains O After 14 days, 119 mcg remains O After 14 days, 106 mcg remains 0.099t > b) (3 points) The thyroxone concentration (in mcg) can be modeled by C(t) 120e where t is the time in days after the individual has taken the drug. When will the concentration be 12 mcg? Round your answer to the nearest day.

Answers

The following is true for the concentration of the thyroid drug in the individual's body is after 14 days 30 mcg remains, option B and the time when the concentration be 12 mcg is t = 23.23 sec.

The thyroid, or thyroid organ, is an endocrine organ in vertebrates. In people, it is in the neck and comprises of two associated curves. A thin band of tissue known as the isthmus connects the lower two-thirds of the lobes. The thyroid gland is a butterfly-shaped organ beneath the Adam's apple in the neck. The spherical thyroid follicle, which is lined with follicular cells (thyrocytes) and occasionally parafollicular cells and has a colloid-filled lumen, is the thyroid gland's functional unit at a microscopic level.

Three hormones are released by the thyroid gland: the two thyroid chemicals - triiodothyronine (T3) and thyroxine (T4) - and a peptide chemical, calcitonin. The metabolic rate, protein synthesis, and growth and development of children are all influenced by thyroid hormones. Calcium homeostasis is affected by calcitonin. The anterior pituitary gland secretes thyroid-stimulating hormone (TSH), which controls the two thyroid hormones. The hypothalamus makes thyrotropin-releasing hormone (TRH), which controls TSH.

C(t) = 120\(e^{-0.099t\)

So at 12cmg

12 = 120\(e^{-0.099t\)

1 = 10\(e^{-0.099t\)

1/10= \(e^{-0.099t\)

log1/10 = -0.099t

-2.3 = -0.099t

t = 2.3/0.099

t = 23.23 sec.

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True or false, White light is made up of the colors red, orange, yellow, green,
blue, and black

Answers

True. All of the colors in the color spectrum are combined to create white light.

White light, which is referred to as polychromatic light because it comprises all wavelengths, is actually composed of all the colors of the rainbow. This is best illustrated by the light from a torch or the Sun. Because laser light is monochromatic, it only emits one color. The "spectrum" refers to this systematic division of the color rays.

Red, orange, yellow, green, blue, and violet are the six primary colors that make up the spectrum of white light, which are ordered in a certain order. The seven colors of the visible spectrum violet, indigo, blue, green, yellow, orange, and red are all present in the sun's white light. This may be demonstrated to displace white light through a prism. according to the illustration below.

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1. A Muslim house of worship is called

Answers

mosque

alhamdulillah I am Muslim

Do the trees discussed in the article make their own energy every day? Use evidence from the article to support your statement.




A Change in Leaf Color
Leaves go to a lot of trouble to turn red in the fall.
By Emily Sohn
September 17, 2006 at 11:00 pm
Every autumn, traffic creeps along New England’s roads as visitors look everywhere but at the road. These tourists flock to the region as soon as leaves begin to change color from a summery green to spectacular shades of red, orange, yellow, and purple.
“Being in the Northeast during autumn is just about as good as it gets in this country,” says David Lee. He’s a botanist at Florida International University in Miami.
Lee studies leaf color, so he’s biased. But plenty of other people share his admiration. Areas of the United States with especially colorful fall displays attract thousands of leaf peepers.
Even as they “ooh” and “aah,” few people know what makes many plants blush in the autumn. Research has shown that leaves change color when their food-making processes shut off. The chemical chlorophyll, which gives leaves their green color, breaks down. This allows other leaf pigments—yellow and orange—to become visible.
No one knows exactly how global warming will alter forests and affect fall colors.
But “there’s still a lot we don’t know about this,” Lee says.
It isn’t clear, for example, why different species of plants turn different colors. Or why some trees become redder than others, even when they’re standing right next to each other. And no one knows exactly how global warming will alter forests and affect leaf-peeping season.
In summer, when a plant is green, its leaves contain the pigment chlorophyll, which absorbs all colors of sunlight except green. We see the reflected green light.
The plant uses the energy it absorbs from the sun to turn carbon dioxide and water into sugars (food) and oxygen (waste). The process is called photosynthesis.
When chlorophyll breaks down, yellow pigments in leaves become visible.
As days get shorter and colder in the autumn, chlorophyll molecules break down. Leaves quickly lose their green color. Some leaves begin to look yellow or orange because they still contain pigments called carotenoids. One such pigment, carotene, gives carrots their bright-orange color.
But red is special. This brilliant color appears only because the leaves of some plants, including maples, actually produce new pigments, called anthocyanins.
That’s a strange thing for a plant to do without a reason, says Bill Hoch of the University of Wisconsin in Madison. Why? Because it takes a lot of energy to make anthocyanins.

Answers

Answer:

No, they don't.

Explanation:

Trees need leaves for photosynthesis because leaves contain chlorophyll. As the article states, the food-making process stops after these trees lose their leaves. Some trees keep their leaves all year long.

According to the article, trees do not make their own energy every day. This is because the process of energy is accomplished by photosynthesis which is usually carried out by the leaves. But trees generally lost their leaves during a particular time of the year.

What process is used by plants to make energy?

The process that is used by the plant in order to make energy is known as Photosynthesis. With the help of this process, all green plants and some photosynthetic algae synthesize their own food in the form of glucose with the help of carbon dioxide and water in the presence of sunlight.

There are some plants that hold leaves for the entire year. In these plants, energy is made every day. But in nature, these plants are very few. Plants carry out the process of photosynthesis when they need energy in the form of glucose which is also transferred into the storage form of energy in starch.

Therefore, trees do not make their own energy every day. This is because the process of energy is accomplished by photosynthesis which is usually carried out by the leaves.

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Eukaryotic cells, when compared to
prokaryotic cells, tend to be which of the
following?
A. smaller and simpler
B. larger and more complex
C. larger, but simpler
D. Smaller, but specialized

Answers

Eukaryotic cells, when compared to prokaryotic cells, tend to be larger and more complex.

A eukaryotic cell posses plasma membrane, cytoplasm, and ribosomes, however a eukaryotic cell is generally larger than a prokaryotic cell . Its has a real nucleus and has different membrane-sure organelles that permit for compartmentalization of functions.

Prokaryotes are predominantly single-celled organisms of the domain names Bacteria and Archaea. All prokaryotes have plasma membranes, cytoplasm, ribosomes, a mobile wall, DNA, and absence membrane-certain organelles. Many additionally have polysaccharide capsules.

A eukaryotic cell is a mobile that has a membrane-certain nucleus and different membrane-certain booths or sacs, referred to as organelles, that have specialized functions. The phrase “organelle” means “little organ,” and, as already mentioned, organelles have specialized cell functions, simply because the organs of your frame have specialized functions.

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Answer:

largers and more complex

Explanation:

The length of the ear is equal to the distance from the normal hairline to the

Answers

The length of the ear is a measurement from the top to the bottom of the ear, typically taken along the outer curve.

The distance from the normal hairline to the ear is the measurement from the point where the hair starts growing on the forehead to the top of the ear. This distance can vary depending on the individual's hairline and the position of the ear on the head.

It is important to note that the length of the ear and the distance from the hairline to the ear are not directly related, as one measures the ear itself while the other measures the distance between two points on the head.

However, both measurements can be useful in determining the overall proportions of the head and face. It is also worth noting that the hairline can vary greatly between individuals, and may change over time due to factors such as age, hormonal changes, and hair loss.

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Is alfalfa gmo? Yes or no

Answers

Answer:

Yes, I'm pretty sure it is. Hopefully, this helps.

Explanation:

Answer:

yee

Explanation:

Selenium is a trace mineral that is part of the structure of certain proteins. One of these proteins is an antioxidant enzyme that neutralizes peroxides before they can form free radicals. What is the name of this protein?.

Answers

Selenium is a trace mineral that is part of the structure of certain proteins. One of these proteins is an antioxidant enzyme that neutralizes peroxides before they can form free radicals. Glutathione peroxidase, is the name of the protein.

What is protein?Proteins are found throughout the body, including muscles, bones, skin, hair, and almost every other body part or tissue.They make enzymes that facilitate many chemical reactions and hemoglobin, which carries oxygen in the blood. . At least 10,000  proteins  keep you on your toes. Proteins can be informally classified into three main classes that correlate with their typical tertiary structures.Globular proteins, fibrous proteins,  membrane proteins. All cells in the human body contain some or other type of proteins. The basic structure of proteins is a chain of amino acids. Protein is also important for the growth and development of children, adolescents, and pregnant women.

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what is the main difference between an open circulatory system and a closed one? multiple choice the blood within a closed circulatory system does not contain hemoglobin. an open system will have the blood leave the blood vessels and dump into the lungs or gills while the closed one will retain the blood within the hemocoel.incorrect an open system will keep the blood within the blood vessels while the closed one will dump the blood into the hemocoel. an open system will have the blood leave the blood vessels and dump into the hemocoel while the closed one will retain the blood within the system. an open system will have the blood leave the blood vessels and dump into the lungs or gills while the closed one will retain the blood within the system.

Answers

The main difference between an open circulatory system and a closed one is that in an open system, the blood will leave the blood vessels and dump into the hemocoel, while in a closed system, the blood will be retained within the circulatory system.

This means that in an open system, there is no clear distinction between the blood and the interstitial fluid, while in a closed system, the blood is contained within the vessels. Therefore, the correct answer is "an open system will have the blood leave the blood vessels and dump into the hemocoel while the closed one will retain the blood within the system."

                                           The main difference between an open circulatory system and a closed one is: an open system will have the blood leave the blood vessels and dump into the hemocoel while the closed one will retain the blood within the system.

                             The main difference between an open circulatory system and a closed one is that in an open system, the blood will leave the blood vessels and dump into the hemocoel, while in a closed system, the blood will be retained within the circulatory system.

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Use the
Color-Enhanced TEM Magnification: 15,000 x
6. The photomicrograph shows which kind of cell?
A. prokaryotic cell C. animal cell
B. eukaryotic cell D. plant cell

Use theColor-Enhanced TEM Magnification: 15,000 x6. The photomicrograph shows which kind of cell?A. prokaryotic

Answers

A. Prokaryotic Cell.

..............

i need help please !!!

i need help please !!!

Answers

Answer:

890? thats what i think...

Explanation:

sorry if im wrong, but im happy to help anyway:)

Assume that 2.5 ATPs are generated per NADH and 1.5 ATPs per FADH2. What is the total number of ATPs generated from 10 acetyl-SCoA molecules

Answers

The total number of ATPs generated from 10 acetyl-CoA molecules is 100 ATPs.

The citric acid cycle generates 1 ATP per acetyl-CoA through substrate-level phosphorylation. In addition, the citric acid cycle produces 3 NADH molecules and 1 FADH2 molecule per acetyl-CoA, which are oxidized by the electron transport chain to generate ATP. Since 2.5 ATPs are generated per NADH and 1.5 ATPs per FADH2, the total ATPs generated from 10 acetyl-CoA molecules would be:

10 acetyl-CoA × 10 ATP/acetyl-CoA (via substrate-level phosphorylation) + 10 acetyl-CoA × 3 NADH/acetyl-CoA × 2.5 ATP/NADH + 10 acetyl-CoA × 1 FADH2/acetyl-CoA × 1.5 ATP/FADH2 = 100 ATPs

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cisco dna center has multiple interfaces, though using some of them is optional. which interfaces are optional?

Answers

Cisco DNA Center has multiple interfaces, though using some of them is optional. The interfaces that are optional:

Cluster and Cloud interface (Option A)Management and Cloud interface (Option B)Enterprise and Cloud interface (Option C)Cisco Integrated Management Controller (IMC) and Cluster interface. (Option E)

What is the minimum requirement for configuring Cisco DNA Interface?

You must setup the Enterprise and Cluster port interfaces at a minimum since they are necessary for Cisco DNA Center functionality.

An interface is deemed configured if you provide an IP address for it, as well as a subnet mask and one or more associated gateways or static routes. If you miss an interface completely during setup, it is deemed unconfigured.

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Full Question:

Cisco DNA Center has multiple interfaces, though using some of them is optional. Which interfaces are optional?

- [ A] Cluster and Cloud interface

- [ B] Management and Cloud interface

- [C ] Enterprise and Cloud interface

- [D] Enterprise and Cluster interface

- [ E] Cisco Integrated Management Controller (IMC) and Cluster interface.

What is the maximum volume of blood that can be collected form a 110-lb donor, including samples for processing? A 450mL. B 500mL. C 525mL. D 550mL

Answers

The maximum volume of blood that can be collected from a 110-lb donor, including samples for processing, is typically limited to around

c. 525mL, or slightly less than 2 pints called maximum blood volume

This is known as the "maximum blood volume" or "maximum blood draw" limit, and it is established to minimize the risk of adverse effects, such as lightheadedness, fainting, or low blood pressure. The maximum blood volume is calculated based on various factors, including the donor's weight, height, and overall health. The amount of blood that can be collected also depends on the specific procedures being performed, as well as the presence of any underlying medical conditions that may affect the donor's ability to tolerate the blood draw. Overall, it is important to follow established guidelines and protocols when collecting blood from donors to ensure the safety and well-being of the donor.

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Frogs and toads belong to the order Anura. The smallest organism in this order is about 7 millimeters long, while the largest member is about 30

centimeters long. Which of these lists best describes this order?

Answers

Answer:

Correct question is:

Frogs and toads belong to the order Anura. The smallest organism in this order is about 7 millimeters long, while the largest member is about 30

centimeters long. Which of these lists best describes this order?

a. Order Anura:  338 families, 28 genera, 4360 species

b. Order Anura:  28 families, 338 genera, 4360 species

c. Order Anura:  338 families, 4360 genera, 28 species

d. Order Anura:  28 families, 4360 genera, 338 species

Answer:

b. Order Anura:  28 families, 338 genera, 4360 species

The families are biggest part followed by genera and then each genera has multiple species, this is described by nomenclature of biological species. Therefore option B is correct as the numbers are also increasing because families will be fewer than genera and genera will be fewer than species.

Complete the following sentence.
Sod is harvested and then shipped in the form of
often to local customers.

Answers

Answer:

Rolls

Explanation:

I took the test.

Complete the following sentence.Sod is harvested and then shipped in the form ofoften to local customers.


Which of the substances below are PRODUCTS of the overall chemical reaction of
photosynthesis?
A. ammonia
B. Unitrogen
C. carbon dioxide
D. water
oxygen
sugars

Answers

Answer:

essentially glucose and oxygen are the products of photosynthesis

Explanation:

during dna replication, dna pol iii synthesizes the lagging strand in segments, called

Answers

During DNA replication, DNA polymerase III synthesizes the lagging strand in short segments called Okazaki fragments. The lagging strand is synthesized in the opposite direction to the replication fork movement, making it necessary to synthesize it discontinuously.

The leading strand is synthesized continuously in the same direction as the replication fork movement. As the replication fork opens up, DNA polymerase III starts synthesizing the leading strand continuously by adding nucleotides in the 5' to 3' direction. However, on the lagging strand, synthesis occurs in the opposite direction. This requires DNA polymerase III to synthesize the lagging strand in short stretches, creating Okazaki fragments. These fragments are typically around 100-200 nucleotides long in prokaryotes.

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Describe the three stages of cellular respiration and identify the part of the cell in which cach
stage takes place.

Answers

Answer: 3 stages- glycolysis, pyruvate oxidation, the citric acid or Krebs cycle, and oxidative phosphorylation. In glycolysis, the beginning process of all types of cellular respiration, two molecules of ATP are used to attach 2 phosphate groups to a glucose molecule, which is broken down into 2 separate 3-carbon PGAL molecules. PGAL releases electrons and hydrogen ions to the electron carrier molecule NADP+.  A carboxyl group is removed from pyruvate and released as carbon dioxide. The two-carbon molecule from the first step is oxidized, and NAD+ accepts the electrons to form NADH. The oxidized two-carbon molecule, an acetyl group, is attached to Coenzyme A to form acetyl CoA.  The citric acid cycle, where acetyl CoA is modified in the mitochondria to produce energy precursors in preparation for the next step. Oxidative phosphorylation, the process where electron transport from the energy precursors from the citric acid cycle (step 3) leads to the phosphorylation of ADP, producing ATP.  The space between the inner and outer membrane is called the intermembrane space. The space enclosed by the inner membrane is called the matrix. The second stage of cellular respiration, the Krebs cycle, takes place in the matrix. The third stage, electron transport, takes place on the inner membrane.

Explanation:


Each summer, Janine spends two weeks visiting her grandparents, who live near a beach. She notices that the shore in
ne area appears to erode more each year than any other area. Which of the following would be the best way to determine if
different areas of this beach experience more erosion than others each year?

Answers

measuring the elevation of the sand of the affected area (to describe it not scientifically measure the area where the water hits the sand, then measure again later to see which area has the biggest decrease in height) hope this helps, and please give this brainliest!

If you can continuously eat without feeling full, what hormone
might a human be in deficit of?
1. Glucose
2. Neuropeptide Y
3. Testosterone
4. Glucagon
5. PYY
6. Leptin

Answers

If a human can continuously eat without feeling full, they might be in deficit of the hormone leptin, option 6 is correct.

Leptin is primarily produced by fat cells and acts as a satiety hormone, signaling to the brain that the body has sufficient energy stores. It helps regulate appetite and energy balance by suppressing hunger and increasing energy expenditure. When leptin levels are low or the body becomes resistant to its effects, the brain doesn't receive the signal that the body is satiated, leading to excessive food intake and a lack of feeling full.

While the other hormones listed, such as glucose, neuropeptide Y, testosterone, glucagon, and PYY, may play a role in appetite regulation and energy balance, leptin is specifically associated with signaling fullness and satiety. Its deficiency or resistance can disrupt the normal feedback loop between the body and the brain, resulting in continuous eating without feeling satisfied, option 6 is correct.

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if phosphorous concentrations were to suddenly increase in a marine ecosystem, which of the choices would likely occur? decreased primary productivity no change in the rate of primary productivity increased primary productivity

Answers

If phosphorous concentrations were to suddenly increase in a marine ecosystem it will lead to increased primary productivity.

Phosphorus has a very important role in the growth, maintenance and repair of the living organisms. It plays a key role in how the organisms uses carbohydrates and fats . In human and other animals it also have a role in the formation of bones and teeth.

It is usually considered as a limiting nutrients in marine ecosystem as they don't have access to adequate amount of phosphorus for the growth and repair.

If the concentration of the phosphorus is suddenly increased the primary productivity of the marine system is also going to increase.

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The ingredients described above are used to make a bonding agent. The most important safety precaution to take when applying this bonding agent is to...

Answers

Is to work in a well ventilated area since the fumes are very dangerous

What Heterotroph mean?

Answers

Answer:

below

Explanation:

An organism whose food needs are met by complex organic substances.

Answer:

an organism deriving its nutritional requirements from complex organic substances.

What would make it clear that a recessive trait is carried on the x chromosome in humans?

Answers

The recessive traits located on the X-chromosome of humans are always expressed in males e.g. color blindness is a recessive sex-linked trait in which the eye fails to distinguish red and green colors. The gene for the traditional vision is dominant. the traditional gene and its recessive allele are carried by X-chromosomes.

What is a recessive trait?

An inherited trait is outwardly obvious only two copies of the gene for that trait are present—as opposed to a dominant trait where one copy of the gene for the dominant trait is sufficient to display the trait.

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why can’t you see chromosomes in interphase cells?

Answers

Answer: they aren't visible during the interphase of cell cycle because of more water content in the nucleus

Explanation: as water content is more in the nucleus, they appear as fine thread like structures called chromatin, which condenses (loose water) to form compact structures called chromosomes

an antibiotic made by microorganisms and modified by chemists is called

Answers

Explanation:

An antibiotic made by microorganisms and modified by chemists is called. semi-synthetic. The antimicrobials produced by some molds and bacteria are generally called. antibiotics

Enamel is the hardest substance in the human body. Justify your answer.

Answers

Enamel is indeed the hardest substance in the human body. It is present in teeth of humans. It covers every tooth and provides the hard layer.

Tooth Enamel is hard glossy substance that is comprised of calcium and phosphate mineral crystals which in return makes our teeth more stronger. Teeth enamel care is extremely important to maintain the oral health of teeth.

Tooth Enamel is one of the major tissue that make up tooth in humans. It covers the top layer of the teeth known as Crown. Calcium hardens the tooth enamel. Enamel contains 96% of the minerals. The color of Enamel varies from light yellow to white.

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