Why do you think it is important for bear to be different

Answers

Answer 1

Analysis:
Bears are important links in food webs and help maintain populations of deer and other prey species through predation. At one time, bears were widespread across the United States. However, threats such as habitat loss and unregulated hunting greatly reduced the areas where they can be found.
Although the bear safety rhyme “If it's brown, lay down. If it's black, fight back. If it's white, goodnight” sounds like good advice, you have to know why a bear is attacking you before you can decide the best way to respond. It mainly describe each type of bear to maintain the ecosystem.
Bears are one of the most intelligent land animals in North America. They have the largest and most complex brains compared to other land mammals their size and they rely on this brain for a number of behaviors. Bears are among the most beloved wild animals.
Bear Symbol represents strength, family, vitality courage and health. The bear is thoughtful and independent, with little need for fellowship. The bear is also self-contained and strong-willed in nature.
For example:
1/ The extinction of the grizzly bears would leave a significant impact on an ecosystem. We know that grizzle bears feed on herbivores species. So, if there are no grizzly bears, the number of herbivores species will increase and as a result number of plant species will decrease since herbivores depend on plants.

2/ When attacking humans, black bears will rear up on their hind legs and knock victims over with their paws. They then make one or two bites on an arm or leg and finish with a snap to the head, this being the most dangerous part of the attack.

Amazing Facts About the Bear

Bears are extraordinarily intelligent animals. ...

Bears grieve deeply for others. ...

Bears have excellent senses of smell, sight and hearing. ...

Some species of Asiatic bear build nests in the trees. ...

Bears care deeply about family members.

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Related Questions

ethidium bromide is a dye that is used to stain the gel and allows the dna to be viewed under uv light.true
false

Answers

This statement is TRUE that Ethidium bromide is a dye that is used to stain the gel and allows the DNA to be viewed under UV light.

A low-molecular-weight blue dye that will swiftly flow through the gel when charged is used to add the test DNA to the gel. This gives a visual indication of the gel's development. The procedure is finished when the blue dye has traveled to the other side of the well. A running buffer known as TAE that is made up of Tris base, acetic acid, and EDTA (ethylene diamine tetra acetic acid)  is applied to the agarose gel. This gives the current an electrolyte and keeps the DNA in the gel in tact.

The DNA in the agarose gel is stained with an Ultra violet fluorescent dye so that it can be captured on camera and viewed under a UV light source. Ethidium bromide, the dye, is a fluorescent substance that, when employed as a stain, inserts itself between base pairs. Due of its severe toxicity, this has a disadvantage. There are guidelines for managing this material, and it should always be handled with caution.

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the compound that consists of ribose linked by an n-glycosidic bond to n-9 of adenine is:

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The emulsion that consists of ribose linked by an N- glycosidic bond to N- 9 of adenine is adenosine.


Adenosine is a purine nucleoside base, utmost generally honoredwith the patch adenosine triphosphate, or ATP, and is usedcompletely throughout the entire body in general metabolism.( 6) Adenosine’s use as a pharmacological medicine works through receptors called purinergic adenosine receptors set up throughout the body. Samsel etal. describe four types of adenosine receptors A1, A2a, A2B, and A3, affecting the vulnerable, nervous, circulatory, respiratory, and urinary systems.


Adenosine has a crucial part in the adaptive response in pulmonary hypertension and heart failure, with the most applicable goodsbeing decelerating of heart meter, coronary vasodilation and dwindling blood pressure.


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Radioactive carbon 14 was used to determine the geologic age of old would preserved in the glacier the amount of Steve 14 in the old wood is 1/8 the normal amount of C 14 currently found in the word of living  trees  what is the geologic age of the Old wood

Answers

The estimated age of the ancient wood would be 5,730 years if carbon from a sample of wood was discovered to have only half as much carbon-14 as that from a living plant.

What is half life?

Half life is defined as the amount of time it takes for a radioactive substance to break down or change. The half-life of a particular radioactive isotope is not influenced by the environment and is not dependent on the isotope's initial concentration.

The radioactivity of carbon-14 decays by 50% every 5,730 years. Radiocarbon dating depends on that half-life. Since carbon-12 doesn't deteriorate, it serves as a reliable indicator of carbon-14's impending demise. Older carbon-14 isotopes give off less radiation.

Thus, the estimated age of the ancient wood would be 5,730 years if carbon from a sample of wood was discovered to have only half as much carbon-14 as that from a living plant.

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Biomolecules that are used to transport large molecules across the cell membrane are identified as?

Answers

Answer:
Carrier proteins and channel proteins

Explanation:
they are the two major classes of membrane transport proteins.

The diagram shows the process of photosynthesis and cellular respiration in relation to each other.

What can be concluded from the diagram?
O Light energy is converted into chemical energy in photosynthesis.
O Light energy is converted into chemical energy in cellular respiration.
O Cellular respiration utilizes ATP to release energy in the form of heat.
O Photosynthesis releases oxygen and ATP that are used in cellular respiration.

Answers

Answer:

A

Explanation:

The diagram shows that light energy is converted into chemical energy in photosynthesis. This can be concluded from the fact that the diagram shows light energy being absorbed by chloroplasts in the process of photosynthesis, and that the process of photosynthesis produces glucose, which is a form of chemical energy.

Therefore, the correct answer is A) Light energy is converted into chemical energy in photosynthesis.

where is the reticular formation located? multiple choice question. the cerebellum only in the medulla oblongata brainstem and spinal cord

Answers

The reticular formation is located in the brainstem, which means option C is the right answer.

The reticular formation comprises a set of interconnected nuclei and neurons which are responsible for relay functions and assist in several coordinating functions important for survival. They are responsible for regulating the sleep wake cycle of the body. Any damage to the region can cause hype somnolence and drowsiness. The brainstem is the biological structure that connects the cerebrum of the brain to the spinal cord and cerebellum. It extends from the lower part of the medulla oblongata to the upper part of the midbrain. It carries extreme importance in sensory, cognitive and behavioral functions.

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a student is completing a punnett square for a trait (x/x) that is autosomal and inherited by the dominant allele. the father does not have it (xx), but the mother does (xx). if they had two children, a son and a daughter, what would the completed punnett square look like (i.e., would the son have the trait, would the daughter have the trait)?(1 point) responses both children would inherit the trait. both children would inherit the trait. one child would inherit the trait and one child would not. one child would inherit the trait and one child would not. each child has a 50% chance of inheriting the trait. each child has a 50% chance of inheriting the trait. both children would not inherit the trait.

Answers

In the punnett square analysis, each child has a 50% chance of inheriting the trait. Some genetic illnesses are caused by dominant alleles. The condition is caused by inheriting just one copy of such a dominant allele.

Huntington disease, achondroplastic dwarfism, and polydactyly are examples of this. Heterozygous (Aa) individuals are not healthy carriers.

The mother Xx has the trait and the father xx doesn't.

Using the punnet square

Xx                 xx

Xx   Xx  xx  xx

There are just two traits which are Xx and xx which are in equal frequency and proportion.

This therefore means that the children have a 50% chance of getting the trait.

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Protozoans are organisms that can reproduce asexually. Asexual reproduction can help species of protozoans survive because:

A. they do not use a lot of energy finding mates.

B. their populations have less genetic diversity.

C. their populations do not grow too quickly.

D. they use more cellular energy in reproduction.​

Answers

Answer: option A is correct

Explanation:

they don't have to spend time and energy finding a mate so they can just keep reproducing

which of the following is a characteristic of a lipid? group of answer choices most lipids are waxy. most lipids are soluble in water. lipids are found only in animals. most lipids are high density.

Answers

The optimal response is B. The majority of lipids are waxy.

Wax is an illustration of a lipid that is water-insoluble. Long-chain nonpolar lipids are this kind of lipid. The following explanations explain why the other options are incorrect:

A: Lipids generally have low density. Generally speaking, lipids float on water.

C : Lipids cannot dissolve in water.

D: Lipids are also present in plants.

Lipids are biomolecules that are not related to one another structurally but rather by their physical characteristics. Lipids serve as a source of metabolic energy, a component of membranes, and a regulator of gene expression. Fatty acids are one type of lipid that serves as metabolic fuel.

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the digestive tract is essentially one long tube. the order of the structures, beginning with the mouth, is

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The digestive tract is essentially one long tube. the order of the structures, beginning with the mouth, is

Pharynx-->esophagus-->stomach-->small intestine-->large intestine

The digestive system is made up of the liver, pancreas, and gallbladder as well as the gastrointestinal tract, commonly known as the GI tract or digestive tract. From the mouth to the anus, the GI tract is made up of several hollow organs connected by a protracted, twisted tube. The stomach, small intestine, large intestine, and anus are the hollow organs that make up the GI tract. The digestive system's solid organs are the liver, pancreas, and gallbladder.

Three sections make up the small intestine. The duodenum is the name of the first section. The ileum is at the end, while the jejunum is in the middle. The cecum, colon, rectum, and appendix are all parts of the large intestine. A finger-shaped pouch connected to the cecum is the appendix.

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Select the correct answer from each drop-down menu.
Chris in lives in a city that experiences heavy rainfall with average annual precipitation of 882 millimeters. It is warm all year.
Mark lives in city with an average annual rainfall of 40 millimeters. It has hot summers and cool winters.
Chris's city is in a
climate, while Mark's city is in a
climate.
Reset
Need

Answers

The climate in Chris' city is humid tropical. The climate of Chris's city appears to be of the tropical wet climatic type, as places near the equator typically experience high precipitation and warm, humid climates.

Which region is most likely to see above-average rainfall?

The equatorial zone and Southeast Asia's monsoon region are home to the areas with the most precipitation. Little rain falls in the desert areas of the subtropics and around the poles, while substantial amounts fall in the middle latitudes.

Which two places have tropical weather?

Between the Tropics of Cancer (23°27'N) and Capricorn (23°27'S), a region of the planet referred to as the tropics, is where the majority of tropical climates may be found. The tropics receive more solar energy overall than any other region of the planet.

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what is the target of thyroid hormones? what is the target of thyroid hormones? thyroid anterior pituitary hypothalamus cells of the body

Answers

The target of thyroid hormones is anterior pituitary.

The pituitary gland is frequently referred to as the body's "master gland." Such praise is merited because the anterior and posterior pituitaries secrete a variety of hormones that combined have an impact on practically every physiological activity and influence all cells.

For instance, anterior pituitary cells with receptors known as thyrotrophs emit thyroid-stimulating hormone, or TSH, when thyroid-releasing hormone from the hypothalamus binds to them. The anterior pituitary hormones circulate throughout the body and bind to receptors on various target organs. The thyroid gland is the organ that TSH is intended to affect.

Tyrosine-based thyroid hormones (T3, T4) are produced by the thyroid gland. A standard amino acid is 4-hydroxyphenylalanine, which is tyrosine.

Triiodothyronine (T3) has the following effects: raises heart rate, increases basal metabolic rate, brain development, and enhances protein and carbohydrate catabolism.

The hypothalamus is undoubtedly the force behind the throne, even though the pituitary gland may be the monarch. As was mentioned in the previous part, the hypothalamus contains neurosecretory neurons, which secrete hormones that carefully regulate the release of hormones from the anterior pituitary. Due to their impact on anterior pituitary hormones, the hypothalamic hormones are referred to as releasing hormones and inhibiting hormones, respectively.

The hypothalamus-hypophyseal portal veins deliver hypothalamic releasing and inhibitory hormones directly to the anterior pituitary gland. Distinct anterior pituitary cell receptors bind to specific hypothalamus hormones, controlling the release of the hormones those cells generate.

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if one strand of a dna molecule has the sequence of nucleotides 5' attgca 3', what would the sequence of the complementary strand be?

Answers

Answer:

it would be 3’ taacgt 5’

Cells that form most tissues and organs in an organism.

Answers

Answer:

yah

Explanation:

I don't understand..

Muscle Tissue: Muscle tissue consists of muscle cells which are specialised in such a way so that they can contract which allows movement. The heart consists of a large amount of muscle tissue which contracts to provide the force to pump the blood out.
Nerve Tissue: In order to ensure the heart muscle tissues contracts at the right frequency, your heart also contains nerve tissue which consists of nerve cells. Nerve cells are long and thin and can transmit impulses over long distances very quickly. We'll come back to nerve cells later in this unit.
Blood Tissue: A functioning heart obviously contains a large amount of blood tissue - both in the chambers to be pumped, but also in the blood vessels supplying the heart muscle tissue with the oxygen and glucose it needs in order to respire to produce the ATP energy it needs to contract. Blood tissue contains red blood cells which are specialised to absorb, carry and release oxygen. We'll revisit blood later in this unit.

A potential cause of male infertility is a blockage of the vas deferens. The blockage could be due to the build up of scar tissue along the vas deferens. What medical treatment would most likely be used to treat this type of infertility?

A.
surgery to remove the obstruction
B.
medication to stimulate sperm production
C.
implantation of semen into the testes
D.
hormone therapy to increase testosterone

Answers

Answer:

A

Explanation:

The most likely treatment for a blockage of the vas deferens due to scar tissue would be surgery to remove the obstruction. This would involve a surgical procedure to remove the scar tissue and unblock the vas deferens, allowing sperm to pass through and potentially restoring fertility. Options B and D are not appropriate treatments for this condition, and option C is not a standard treatment for any type of infertility.

asexual reproduction group of answer choices has advantages over sexual reproduction when the environment is changing. is an unsuccessful mode of reproduction. occurs in plants but not in animals. occurs in some animals when they split themselves in two. creates genetically diverse individuals.

Answers

Asexual reproduction (a) has advantages over sexual reproduction when the environment is changing.

Because the kids are all clones of the original parent, asexual reproduction results in offspring that are genetically identical to the parent. Asexually reproducing creatures have two benefits over sexually reproducing species: the ability to make huge numbers of offspring fast, and the ability to produce offspring one at a time.

Asexual reproduction is a successful method of reproduction when the environment is predictable or stable since all the children will be acclimated to it. Asexually reproducing organisms may be at an advantage in an unstable or unpredictable environment since all of their progeny are genetically similar and be able to adapt to various environments.

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in a certain forest community, fallen trees and dead animals take longer than normal to release their nutrients back into the ecosystem. this community probably has a low population of

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Fallen trees and dead animals in one forest community take longer than usual to discharge their nutrients back into the ecosystem. This community most likely has a small number of Decomposers.

Because nutrient recycling is the primary function of decomposers, a low number of decomposers will result in slow nutrient recycling.

Decomposers eat dead objects like leaf litter and timber, as well as animal carcasses and feces. As Earth's cleanup team, they provide a crucial service. Dead leaves, insects, and animals would build up everywhere if decomposers did not exist. Imagine what the world might look like!

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which one of the following statements about the glycerol phosphate shuttle is true?

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The true statement about glycerol phosphate shuttle is that it involves electron transfer from cytoplasmic NADH to DHAP to yield glycerol phosphate.

Glycerol phosphate shuttle is a biological mechanism to convert NAD+ into NADH by the process of glycolysis that is splitting of glucose into three carbon molecule. The glycerol-3-phosphate shuttle allows the NADH produced in the cytoplasmic matrix by glycolysis to assist in the oxidative phosphorylation pathway in the mitochondria (power house of cell) to generate ATP (adenosine triphosphate). During the process of respiration, it consumes 2 molecules of ATP and 36 ATP are generated in aerobic respiration via glycerol phosphate shuttle in eukaryotes. It is simply high energy transfer of electrons in the cytoplasm.

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although both pyruvate dehydrogenase and glyceraldehyde 3-phosphate dehydrogenase use nad as their electron acceptor, the two enzymes do no t compete for the same cellular nad pool. why?

Answers

Although both pyruvate dehydrogenase and glyceraldehyde 3-phosphate dehydrogenase use nad as their electron acceptor, the two enzymes do not compete for the same cellular nad pool. This is because the cytosol contains glyceraldehyde 3-phosphate dehydrogenase, while the mitochondrion has pyruvate dehydrogenase.

An enzyme called pyruvate dehydrogenase catalyses the reaction between pyruvate and a lipoamide to produce acetylated dihydrolipoamide and carbon dioxide. Thiamine pyrophosphate is needed for the conversion as a coenzyme. A part of the pyruvate dehydrogenase complex known as E1 is typically where pyruvate dehydrogenase is found (PDC). E2 and E3 are two more enzymes that make up PDC.

E1 through E3 work together to convert pyruvate, NAD+, and coenzyme A into acetyl-CoA, CO2, and NADH. The process of conversion is essential because acetyl-CoA may be employed to perform cellular respiration in the citric acid cycle thereafter. Pyruvate dehydrogenase is the official name for this enzyme to distinguish it from the PDC (acetyl-transferring).

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a genetic mutation that results in malformation of the myosin protein will directly effect the function of which type(s) of muscle tissue?

Answers

Genetic mutations that result in myosin protein malformations directly affect the function of smooth muscle, and cardiac and skeletal tissues.

Small genetic mutations in the myosin gene can change the shape of the protein. This can change how it interacts with actin, changing the molecular machinery that makes muscles contract. In some cases, a gene error can cause the heart muscle wall to thicken, a condition called hypertrophic cardiomyopathy.

Myosin is a thick filament-forming protein whose job is to pull on actin when muscle contraction occurs. In muscle tissue, there is a protein myosin which plays an important role in muscle contraction. Smooth muscle, cardiac muscle, and skeletal muscle have the protein myosin for contraction. If a mutation occurs in the myosin-forming protein, the function of smooth muscle, cardiac muscle, and skeletal muscle are also disrupted.

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The intensity of the earthquake that recently caused a devastating tsunami in Japan was measured using the ___________ scale.
A)
earthquake
B)
Richter
C)
tsunami
D)
tidal
E)
gauge


Please select the best answer from the choices provided

A
B
C
D
E

Answers

Answer:

B) Richter

Explanation:

The intensity of the earthquake that recently caused a devastating tsunami in Japan was measured using the Richter scale.

Explanation :

This is a stormy earthquake which occurred in Japan. This earthquake was 8.9 degrees. It shook at 2:46 p.m. local time in Japan.

Correct Paragraph B) Richter.

mycorrhizae are often found associated with the roots of vascular plants. where are fungal endophytes typically found in vascular plants?

Answers

Fungal endophytes are typically found in the leaf mesophyll in vascular plants.

Endophytes are organisms that live within a body of a plant for at least a part of its life cycle without causing any apparent damage. Most of the endophytes are either bacteria or fungi.

Fungal endophytes are generally categorized based on the mode of transmission, biodiversity, in planta colonization, and the host plant type. However, in vascular plants, fungal endophytes are most likely to be found inside the tissue spaces of plants (leaf mesophyll). They allow the plant to obtain additional moisture and nutrients, making their relationship with the host plant mutualistic.

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which statement about the nucleus is incorrect? a-the nucleus contains the instructions for copying itself b-the nucleus contains the genetic material of the cell c-the nucleus contains the information that ribosomes use to carry out cellular respiration d-the nucleus contains the information that ribosomes use to carry out protein synthesis

Answers

Answer:

The nucleus contains the information that ribosomes use to carry out cellular respiration.

elevated levels of which type of lipoprotein are clearly associated with atherosclerosis?

Answers

Atherosclerosis or elevated LDL type of lipoprotein levels are obviously related.

What are three symptoms of atherosclerosis?

You can experience sudden weakness or numbness in your arms and legs, speaking difficulties or slurred speech, a momentary loss of sight in one eye, with drooping face muscles if you suffer from atherosclerosis in the veins leading to your brain.

What happens when you have atherosclerosis?

Your arteries harden and narrow as a result of atherosclerosis, which is brought on by cholesterol plaques that gradually line the artery walls. When the arteries narrow, this could endanger flow of blood. It is also referred to as cardiovascular atherosclerosis and arteriosclerosis.

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substance found in eukaryotic chromosomes that consists of dna tightly coiled around histones

Answers

Chromatin is the answer. Chromatin is the material that makes up eukaryotic chromosomes and is made up of DNA tightly wound around histones.

Eukaryotic cells contain a combination of proteins and DNA called chromatin. Its primary job is to bundle DNA molecules into denser, more compact structures, which prevent the strands from tangling. Additionally, it supports the DNA during cell division, protecting it from deterioration. Histones are the main proteins that makeup chromatin. Gene activation and deactivation are regulated by histones. There are two different forms of chromatin: heterochromatin, which is denser, and euchromatin, which is less dense.

So, Chromatin is the answer, we might claim. Eukaryotic chromosomes are constructed of chromatin, which is composed of DNA that is tightly coiled around histones.

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a person cuts their finger. how does the process of mitosis help to repair the wound?

Answers

Answer:

IN EXPLANATION

Explanation:

Mitosis is the process by which somatic cells divide to reproduce when cells become damaged. Thus, mitosis is crucial in cell generation and thus the formatin of a woud, such as on a skin cell.

Answer:

Mitosis will create tons of new cells in periods of time to fill the gap and make the tissue bigger again.

Explanation:

When part of a tissue breaks, then there are cells lost. So, mitosis will create tons of new cells in periods of time to fill the gap and make the tissue bigger again. This ensures that the tissue is back to normal and can function properly. It's like a wound healing.

A. Looped domain, 30-nm chromatin fiber, nucleosome, 2 nm helix b. 2 nm helix, nucleosome, 30-nm chromatin fiber, looped domain c. Nucleosome, looped domain, 2 nm helix, 30-nm chromatin fiber d. Looped domain, nucleosome, 2 nm helix, 30-nm chromatin fiber e. 2 nm helix, nucleosome, looped domain, 30-nm chromatin fiber

Answers

Nucleosome, 30-nm chromatin fiber, looped domain. the following lists represents the order of increasingly higher levels of organization of chromatin.

How are nucleosomes positioned in 30 nm condensed fibers?

A 30-nanometer chromatin fiber made of folded nucleosomes creates loops that are 300 nanometers in length on average. A 250 nm-wide fiber, which is snugly wound into a chromosome's chromatid, is created by compressing and folding 300 nm fibers.

A looping domain is what?

The loop domain is widely acknowledged to be the fundamental structural component of eukaryotic chromatin involved in DNA replication, gene expression, and higher order packaging.

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Based on your knowledge about the chemical reaction that takes place when lactose is processed in the body, should it be eliminated from the human diet? EXPLAIN WHY

Answers

Lactose is a sugar that is found in milk and milk products. It is broken down in the body by the enzyme lactase, which is produced by cells in the small intestine. When lactose is consumed, it is absorbed into the bloodstream and used for energy.

In some people, the body does not produce enough lactase to fully break down lactose. This can lead to digestive symptoms such as bloating, gas, and diarrhea when they consume dairy products. This condition is known as lactose intolerance.

However, eliminating lactose from the diet is not necessary for most people. While some people may have lactose intolerance or choose to avoid dairy products for other reasons, such as allergies or personal preference, lactose is an important source of nutrients for many people. Dairy products are a good source of calcium, protein, and other important nutrients.

If you have lactose intolerance or choose to avoid dairy products, it is important to ensure that you are getting enough of these nutrients from other sources. There are many non-dairy sources of calcium and protein, such as leafy green vegetables, nuts, and fortified plant-based milks.

In summary, lactose should not be eliminated from the diet for most people. However, if you have lactose intolerance or choose to avoid dairy products, it is important to ensure that you are getting enough nutrients from other sources.

the two strands of dna are held together with hydrogen bonds between the nitrogen bases. these are weak bonds between polar molecules. how many hydrogen bonds connect the two bases from question 4?

Answers

The number of hydrogen bonds connecting the two bases from question 4 depends on the specific bases in question. If the two bases are A and T, then there would be two hydrogen bonds connecting them. If the two bases are C and G, then there would be three hydrogen bonds connecting them.

Adenine (A) and Thymine (T) are two nitrogen bases that connect via two hydrogen bonds. Cytosine (C) and Guanine (G) are also two nitrogen bases that connect via three hydrogen bonds. Therefore, if the two bases being considered are A and T, then there would be two hydrogen bonds connecting them. If the two bases being considered are C and G, then there would be three hydrogen bonds connecting them.

In conclusion, the two strands of DNA are held together by hydrogen bonds between the nitrogen bases. These are weak bonds between polar molecules, and are responsible for connecting the two strands of the double helix. The number of hydrogen bonds connecting the two bases from question 4 depends on the specific bases in question.

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list 5 features of animal body plans. (must discuss all 5 parts)

Answers

Answer:

4 legs,

Explanation:

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