is there evidence that species can actually adapt to (i.e., have a genetic basis for responding to) climate change? explain.

Answers

Answer 1

Yes, the recessive trait of long wings in British insects is an example of adaptations of species towards climate change.

Natural selection occurs and as a result of which only the animals which have characteristics suitable to thrive in their particular environment survive as well as reproduce whereas the ones which do not have traits that support survival are not able to survive.

In order to survive, grow and reproduce in a particular environment, animals exhibit adaptations which helps them to handle the environmental conditions. British insects, for example, possess a recessive trait for long wings which allows them to travel and this trait is not present when the conditions are suitable.

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Related Questions

What is the systematic study of how biology affects human social behavior called?

Answers

The systematic study of how biology affects human social behavior is called sociobiology.

Social behavior is the behavior among two organisms that may or may not be of the same species. All the activities that tend to bring organisms together are part of the social behavior. This behavior can either be controlling or self-adopting.

Sociobiology is the filed of science that studies the social behavior of organisms relating it with the evolution. The whole subject is based on the idea that some or all of the social behaviors are partly or completely inherited. Sociobiology considers all the animal activities like hunting, eating, reproducing, etc. to establish the reasons for social behavior.

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0.840 frequency of dominant phenotype, 0.16 frequency of recessive phenotype frequency of heterozygous genotype?

Answers

The frequency of the heterozygous genotype would be 0.84.

What will be the frequency of heterozygous genotype?

If the frequency of the dominant phenotype is 0.84 and the frequency of  recessive phenotype is 0.16, it is possible to estimate the frequency of the heterozygous genotype if the mode of inheritance is known.

If the dominant phenotype is caused by the dominant allele (A) and the recessive phenotype is caused by the recessive allele (a), then heterozygous genotype (Aa) would result in the expression of the dominant phenotype. If mode of inheritance is dominant, then frequency of the heterozygous genotype would be equal to the frequency of the dominant phenotype.

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Note: The question given on the portal is incomplete. Here is the complete question.

Question: When 0.840 is frequency of dominant phenotype and 0.16 is frequency of recessive phenotype. What is the frequency of heterozygous genotype?

what are the differences between using traditional methods of artificial selection and using various transgenic methods of altering crops

Answers

When employing transgenic techniques, the new genes are genetically inserted into the plants, whereas artificial selection uses the qualities the plants already have to determine the traits they desire in the next generation.

Describe Transgenesis.

Transgenesis is the phenomenon of genetically engineered gene transfer from one organism to another. A transgenic is a gene that has been transplanted. The genes are transferred using genetic engineering tools like plasmids and the gene gun. First, restriction enzymes are used to find and isolate a desired DNA sequence. The approach DNA microarray can be used to find the gene.

After that, the sequence is put on a vector and introduced into the intended organism. Genetically modified species include transgenic organisms (GMOs). They have been applied to numerous genetic models, transgenic mice to investigate human diseases, and the production of plants with high yield and pest resistance.

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complete metamorphosis allows an insect species to occupy different habitats and niches during the larval and adult stages so that parents and offspring do not compete for the same resources. group of answer choices true false

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True. Complete metamorphosis is a biological process that allows an insect species to occupy different habitats and niches during the larval and adult stages, thus allowing parents and offspring to not compete for the same resources.

What is metamorphosis?

Metamorphosis is a process of transformation in which an organism undergoes drastic physical, physiological, and/or behavioral changes. This process is commonly seen in animals such as insects, amphibians, and reptiles, and is a key part of the life cycle of these species. Metamorphosis typically involves the organism going through four distinct stages, beginning with an egg stage, followed by a larval stage, pupal stage, and ending with the adult stage.

During the process of complete metamorphosis, the insect species undergoes four distinct stages: egg, larva, pupa, and adult. Each stage has different metabolic needs, as well as different lifestyle requirements, so the insect can occupy a different habitat or niche in each stage. This is beneficial for the species as it allows them to take advantage of different resources available in each habitat or niche.

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Choose the correct statement about the processes that led to 20% oxygen
in Earth's atmosphere.
A- Lightning energy and UV radiation altered the combination of gases in the atmosphere so that oxygen levels increased.
B- Early life on Earth required an oxygen-rich atmosphere to form chemical bonds, which caused the oxygen levels to stabilize.
C- Photosynthesis was not possible on Earth until the ozone layer formed, which raised oxygen levels.
D- Early life forms released oxygen, which saturated the oceans and the atmosphere.

Answers

The  correct statement about the processes that led to 20% oxygen

in Earth's atmosphere is: D- Early life forms released oxygen, which saturated the oceans and the atmosphere.

What is the processes that led to 20% oxygen in Earth's atmosphere?

The process that led to 20% oxygen in Earth's atmosphere is primarily due to photosynthesis by early life forms such as cyanobacteria. Photosynthesis is a process by which plants, algae, and some bacteria convert carbon dioxide and water into sugars, producing oxygen as a byproduct.

Over time, the oxygen produced by these organisms saturated the oceans and the atmosphere, leading to the increase in oxygen levels to 20%. This increase in oxygen levels made the environment hospitable for the evolution of complex life forms, including animals, which further fueled the oxygenation of the planet.

Therefore the correct option  is D.

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perfusion refers to blood supply to the lungs, through which the lungs receive nutrients and oxygen. what are the two methods of perfusion?

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The two methods of perfusion are the bronchial and pulmonary circulation.

Perfusion is the process of sending oxygenated blood to the body's tissues.

Perfusion of body tissue occurred during Systole. The chambers contract, and oxygenated blood is forced into the arteries. These arteries carry blood to the tissues where oxygen is released. The unoxygenated blood is then returned to the heart through the veins, and the process begins again after the blood is reoxygenated by the lungs. The only exception to this is perfusion itself. The heart actually perfuses during diastole when the heart muscle relaxes and blood is drawn to the heart tissue.

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Two methods of perfusion are bronchial and pulmonary circulation.

Bronchial and pulmonary perfusion are two important processes that occur within the respiratory system.

Bronchial perfusion is the process of blood flow to the bronchi, which are the airways that carry air into the lungs. This blood flow is important for providing oxygen and nutrients to the cells of the bronchi, as well as for removing waste products. Bronchial perfusion is supplied by the bronchial arteries, which branch off from the aorta.

Pulmonary perfusion is the process of blood flow to the lung tissue itself. This is important for the exchange of oxygen and carbon dioxide between the blood and the air in the lungs. Pulmonary perfusion is supplied by the pulmonary arteries, which branch off from the right ventricle of the heart.

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an egg has 23 chromosomes is it haploid or diploid?

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An egg cell, or ovum, is a haploid cell with 23 chromosomes. This is due to the fact that it has just one pair of chromosomes and is an organism's gamete or sex cell.

The sperm cell that fertilizes the egg cell has 23 chromosomes as well, making it a haploid cell.

When two haploid cells merge, a diploid cell with 46 chromosomes and two sets of chromosomes is formed. In most species, the fundamental cell type is a diploid cell, with haploid gametes synthesized solely for reproduction.

Fertilization is the initial stage in the process of sexual reproduction, and it involves the fusing of two haploid cells.

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Each of the following is found in all bacterial cells EXCEPT ______.Multiple choice question.a glycocalyxcytoplasmribosomesa cytoplasmic membrane

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Each of the following is found in all bacterial cells EXCEPT glycocalyx

A glycocalyx is a viscous, gel-like substance that surrounds the cell membrane of some microorganisms, including bacteria. It is made up of polysaccharides, glycoproteins, or both, and acts as a protective layer, helping to prevent desiccation and deterring the attachment of host cells or antibodies. However, not all bacteria have a glycocalyx, and some bacteria even have a more complex outer envelope, such as a capsule, that serves similar functions. In conclusion, the presence of a glycocalyx is not a universal characteristic of all bacterial cells, hence it is the exception in the list.

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what are the two main types of reproductive isolating mechanisms?

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The two main types of reproductive isolating mechanisms are pre-zygotic mechanisms and post-zygotic mechanisms.

Pre-zygotic mechanisms refer to barriers that prevent the formation of a viable zygote, even when fertilization is possible. These mechanisms include:

Habitat isolation: where different populations live in different environments and are physically separated from one another, making mating between them unlikely.

Temporal isolation: where different populations breed at different times, making it difficult for them to mate with one another.

Behavioral isolation: where different populations have different mating behaviors that prevent them from successfully mating with one another.

Mechanical isolation: where differences in anatomy or mating structures prevent successful mating between different populations.

Post-zygotic mechanisms refer to barriers that prevent the offspring of two different populations from surviving or reproducing, even if they are able to successfully mate and form a zygote. These mechanisms include:

Hybrid inviability: where the offspring of two different populations are unable to survive to adulthood.

Hybrid infertility: where the offspring of two different populations are unable to reproduce.

These two types of reproductive isolating mechanisms help to prevent interbreeding between different populations, promoting the divergence of species over time.

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The life-cycle of plants has slight variations that characterize major lineages of land plants. what is this life-cycle called?

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The life cycle of plants is referred to as the alternation of generations. This is a characteristic feature of land plants, which have evolved from their ancestral aquatic ancestors.

The alternation of generations is a cycle of two distinct stages in the life of a plant: the gametophyte stage and the sporophyte stage.

In the gametophyte stage, the plant produces gametes, which are reproductive cells that are involved in sexual reproduction. During this stage, the plant produces either male gametes or female gametes, which then fuse together to form a zygote, which is the first cell of the sporophyte stage.

The sporophyte stage is characterized by the production of spores called spores, which are produced by meiosis, a process of cell division that reduces the chromosome number by half. The spores are then dispersed, and each one can develop into a new gametophyte plant, thereby completing the cycle of alternation of generations.

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which option correctly represents a pairing of nitrogenous bases in dna?responsesguanine and adenineguanine and adenineadenine and cytosineadenine and cytosineguanine and cytosineguanine and cytosinethymine and guanine

Answers

The correct option is C; Adenine—thymine; guanine—cytosine ,DNA, also known as deoxyribonucleic acid, is a polynucleotide made up of multiple nucleotides linked together by a phosphodiester bond.

It is a double-stranded molecule with complementary base pairing connecting the two strands. Adenine, guanine, thymine, and cytosine are nitrogenous bases found in DNA. In lieu of thymine, uracil is found in ribonucleic acid (RNA). In DNA, adenine always couples with thymine via two hydrogen bonds and guanine always pairs with cytosine via three hydrogen bonds, according to complementary base pairing.

As a result, the suitably paired nitrogenous bases in DNA are adenine-thymine and guanine-cytosine. As a result, option (C) is the right answer. As a result, alternatives (A), (B), and (D) are erroneous.

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Full Question ;

Which of the following have nitrogenous bases correctly paired in DNA?

A.adenine—guanine; thymine—cytosine

B. adenine—uracil; guanine—cytosine

C. adenine—thymine; guanine—cytosine

D. adenine—adenine; guanine—guanine

Design Your Offspring:
Create your imaginary offspring. Bring in a picture or drawing of yourself and of your sweetheart, favorite celebrity, or dream girl or guy (these are not included).

1. Attach your picture to your poster (these are not included). Next to each picture, describe the traits and give each a genotype. (Use your imagination)
2. Identify two different possible children. Show and describe the phenotypes and genotypes for each children.
3. Show a monohybrid cross using your trait. (Example. Mm x mm). Show the Punnet and the ratios produced. Include the genotype and phenotype in the punnet square.

Pls po i really need this help. I'll mark brainliest who answered po.

Answers

We know that the picture would look like you due to the transference of genes.

Why does your offspring look like you?

In the practice that have been given here you have been asked to design what your imaginary offspring would look like. Let us note that the way that your offspring would like would depend on how you look in the first place.

We have to note that there genes that you pass on to the offspring is what is going to tell us what the offspring is going to look like. This is why the picture that you would draw would look so much like yourself.

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in addition to examining mitochondria, the researchers also quantified changes in the number of capillaries per cell. what information might they be able to infer by counting the number of capillaries?

Answers

By counting the number of capillaries per cell, the researchers might be able to infer information about the blood supply and oxygen delivery to the cell.

In cells, capillaries refer to tiny blood vessels that deliver oxygen and nutrients to cells and remove waste products from them. The walls of capillaries are very thin, allowing for exchange of substances between the blood and the surrounding tissues.

Capillaries are essential for maintaining the health and function of cells, and changes in the number or function of capillaries can have significant effects on the overall functioning of the organism.

An increase in the number of capillaries could indicate an increase in the demand for oxygen, while a decrease in the number of capillaries might indicate a decrease in the demand for oxygen or impaired blood flow.

This information can help to understand the cellular and physiological processes, and could have implications for the diagnosis and treatment of various diseases.

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if nucleotides in a strand of dna have single phosphate groups linking them, why does dna polymerase iii use deoxynucleoside triphosphate molecules as the precursor molecules?

Answers

DNA polymerase III uses Deoxynucleoside triphosphates (dNTPs) as the precursor molecules because they contain three phosphate groups, providing the energy required for the formation of the phosphodiester bonds that link nucleotides in a strand of DNA.

When DNA polymerase III adds a nucleotide to the growing strand of DNA, it uses the energy stored in the third phosphate group of the dNTP to form a phosphodiester bond between the phosphate group of the incoming nucleotide and the 3' hydroxyl group of the previous nucleotide in the strand. This bond formation releases one molecule of inorganic phosphate (Pi), which is an energetically favorable reaction that drives the polymerization process.

The use of Deoxynucleoside triphosphates as precursor molecules allows DNA polymerase III to efficiently add nucleotides to the growing strand of DNA, forming a long and continuous chain of nucleotides. If DNA polymerase III used nucleotides with a single phosphate group, the formation of the phosphodiester bonds would require an additional energy source, slowing down the polymerization process and reducing the efficiency of DNA replication.

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Which diagram shows a system in which transcription of the lac operon genes is suppressed?

Diagram A shows this because RNA polymerase is blocking transcription.

Diagram B shows this because the repressor protein is blocking transcription.

​Diagram B shows this because RNA polymerase is ready to replace the repressor protein.​

Diagram A shows this because the repressor protein will break down the polymerase.

Answers

Answer:

Option D.

Explanation:

Diagram A is the diagram where the protein is ready to be produced because the repressor protein is no longer attached to the DNA segment

The diagram which shows a system in which transcription of the lac operon genes is suppressed is that Diagram A shows this because the repressor protein will break down the polymerase. Thus, the correct option is D.

What is transcription of lac operon?

The lac operon contains of three genes which are lacZ, lacY, and lacA. These genes are transcribed as a single mRNA molecule, under the control of one promoter gene. Genes in the lac operon specify proteins which help the cell in utilizing lactose sugar.

The activity of the promoter gene which controls the expression of the lac operon is regulated by two different protein molecules. One of the proteins which prevents the RNA polymerase from transcribing or negative control, the other enhances the binding of RNA polymerase enzyme to the promoter or positive control.

Therefore, the correct option is D.

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is genetic variation is more common is sexul reproduction or in asexul reproduction? jestify

Answers

Answer:

sexual reproduction

Explanation:

Sexual reproduction involves the formation of gametes and gametes are produced from the diploid germ cells by process of Meiosis . During Meiosis recombination of genetic material occurs which leads to variation.

Whereas asexual reproduction does not involve any such process.

Hope this helps!

you are given an extract of dna from vernalized winter wheat seeds and asked to decide if vernalization has gone on long enough for flowering to occur. in order to make this judgment, you would examine an extract of dna under an electron microscope and look for

Answers

FLC is the primary plant flowering inhibitor. Through epigenetic modifications, vernalization therapy silences the FLC locus. The vernalization treatment compacts the chromatin at the FLC gene.

So, Option C is correct.

Vernalization is a cold treatment used to induce blooming. It is a reversible transformation caused by epigenetic changes.  FLC suppression via vernalization is epigenetic in the sense explained above: FLC remains reduced once vernalized plants are reintroduced to warm growth conditions.

Thus, in Arabidopsis, vernalization confers flowering competence by suppressing the expression of a flowering repressor.

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Full Question ;

You Are Given An Extract Of DNA From Vernalized Winter Wheat Seeds And Asked To Decide If Vernalization Has Gone On Long Enough For Flowering To Occur. In Order To Make This Judgment, You Would Examine An Extract Of DNA Under An Electron Microscope And Look For Select One:

A. Signs Of Degradation.

B. Contamination With Lipids.

C. Compacted Chromatin.

d. extra protein coating the DNA.

e. increased binding of histones.

what is the role of rna in the building of proteins?

Answers

Answer:

to create proteins via translation.

Explanation:

the most important job of RNA is to assemble amino acids into proteins

the gland that is both an endocrine gland and a gastrointestinal organ is?

Answers

Answer:The pancreas

Explanation:

Establish differences between Scientific Knowledge and Common Knowledge. Examples in Aquaculture Engineering.

IT IS FROM THE RESEARCH METHODOLOGY COURSE

Answers

freshwater pond culture; (ii) rice-fish culture or integrated fish farming; (iii) brackishwater finfish culture; (iv) mariculture involving extensive culture and producing fish/shellfish (e.g., oysters, mussels, cockles) which are sold in rural and urban markets at relatively low prices.

groups of similar cells and extracellular material that perform a common function are . multiple choice question.

Answers

Groups of similar cells and extracellular products that carry out a common function are known as tissues.

Tissues are the building blocks of organs and are organized structures composed of cells, extracellular matrix, and intercellular junctions that work together to perform specific functions.

There are four main types of tissues in animals: epithelial tissue, connective tissue, muscle tissue, and nervous tissue. Epithelial tissue covers the surface of the body, lines internal organs, and forms glands. Connective tissue supports and protects other tissues and includes bones, cartilage, and blood. Muscle tissue produces movement, while nervous tissue receives and transmits signals in the form of electrical impulses.

In plants, tissues are also organized into specialized structures, such as leaves, stems, and roots, which perform specific functions. The main types of plant tissues are epidermal tissue, ground tissue, and vascular tissue.

The epidermal tissue covers the plant surface and helps prevent water loss, while the ground tissue provides support and stores nutrients. The vascular tissue transports water, nutrients, and sugars throughout the plant.

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--The given question is incorrect, the correct question is

"What are groups of similar cells and extracellular products that carry out a common function?"--

a composite material has both carbon fibers and glass fibers as reinforcement. there are half as many carbon fibers as glass fibers. how should the fibers be arranged to make the highest modulus, e1, composite? sketch out your solution and calculate e1 for the composite.

Answers

The arrangement of the fibers in the composite material can affect the overall modulus of the composite, E1. To achieve the highest modulus, E1, the fibers should be arranged in such a way as to optimize the load transfer between the fibers and the matrix.

One common method to achieve this is to arrange the fibers in a unidirectional manner, meaning all the fibers are oriented in the same direction. If there are half as many carbon fibers as glass fibers, a suitable arrangement could be to have the carbon fibers arranged in the center, surrounded by the glass fibers.

To calculate E1, we need to consider the contribution of each type of fiber to the composite modulus. The modulus of each fiber, Ef, is multiplied by the volume fraction of that fiber in the composite, Vf, and the sum of these values for all fibers gives us the composite modulus.

E1 = (Ef-carbon × Vf-carbon) + (Ef-glass × Vf-glass)

Where Ef-carbon and Ef-glass are the moduli of carbon and glass fibers, respectively, and Vf-carbon and Vf-glass are their respective volume fractions in the composite. The volume fractions must add up to 1 since they represent the entire volume of the composite.

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Activity
Use the Biological Interactions Activity Instructions to help guide you through each step of this activity.
For this activity, you will be researching the Burmese python's impact on the Everglades National Park ecosystem in Southern Florida.
These articles are an excellent place to start your research: Impact of Invasive Alien Species
After completing your research, you will analyze data on the current methods being implemented to control the python population and
create a plan to solve the issue. You will then write a letter to the park ranger detailing your plan to control the python population in this
ecosystem. Take a look at this student sample letter to see how your letter should be setup.
You will submit your letter for grading. You will also post a copy of your letter in the 02.01 Biological Interactions discussion. Be sure
to review the grading rubric before you begin. If you have difficulty, contact your instructor for assistance.
You may also want to review the Segment One Collaboration activity at this time.​

Answers

Answer:

Burmese pythons are having a significant impact on the ecosystem and biodiversity in the Everglades and surrounding areas. As an invasive species, the python has no natural predator in Florida, making it an apex predator in the area. Therefore, the population of these snakes is not being naturally controlled.

Our innovative solution involves baiting the cages with pheromones, so that the snakes believe they are tracking the scent of the opposite sex. Since Burmese Pythons are usually solitary creatures, these traps will be especially useful during breeding season, to catch male pythons.

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: what kind of animal do you think your initial average reflected? what kind of animal did the average of your final round reflect?

Answers

The fact that our first average was 3.75 shows that the animal we think we had had a terrible disposition. The dog has wolf-like features.

The mirror test is frequently employed to determine whether an animal has self-awareness. As first postulated by Gallup, the occurrence of spontaneous, mark-directed behaviour when provided a mirror has been the subject of numerous research involving a wide variety of species.  When presented with a mirror, the majority of marked animals first exhibit social behaviour, such as aggressive displays, and they continue to do so during repeated testing.  Only a few species have made contact with the mark or displayed activity towards it, passing the traditional MSR test.

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REPOST!!

What describes the first law of thermodynamics?
OA) Energy cannot be converted without the loss of usable energy.
OB) The energy of a system approaches a constant value as the temperature approaches
absolute zero.
OC) Energy cannot be converted from one form to another without a net gain of usable
energy.
OD) Energy can be converted from one form to another, but it cannot be created or
destroyed.

Answers

Answer:

od ) Energy cannot be converted from one form to another but it cannot be created not destroyed

Explanation:

Energy had no stable state hence can be transformed from one to another

how could epistasis constrain genetic change by natural selection?

Answers

Epistasis refers to the interaction between different genes that results in a phenotype that is different from the expected result if each gene were

considered in isolation.

Because epistasis can produce non-linear correlations between genotypes and phenotypes, it can limit the amount of genetic change that results through natural selection. Natural selection may struggle to bring about adaptive changes in a population as a result of this non-linearity.

for instance, a population of plants where two genes, A and B, regulate the synthesis of a vital enzyme for the plant's metabolism. Enzyme production is increased by the dominant allele of gene A, while enzyme production is decreased by the dominant allele of gene B. Imagine that gene A develops a fresh mutation that boosts enzyme production even further. Natural selection might accelerate the spread of this novel allele in the population because it may be advantageous in specific settings.

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when viewed by electron microscopy, the lipid bilayer is often described as looking like a railroad track. explain how the structure of the bilayer creates this image.

Answers

The lipid bilayer of cell membranes is frequently described to as a "railroad track" when seen under electron microscopy due to its peculiar shape.

The hydrophilic (love of water) heads and hydrophobic (fear of water) tails of the two phospholipid layers of the lipid bilayer are pointing inward and outward, respectively.

The hydrophobic tails of the phospholipids form a tightly packed barrier in the centre of the bilayer that prevents water-soluble molecules from passing through. The interactions between the hydrophilic heads of the phospholipids and the surrounding water-based environment result in the formation of a more fluid layer beyond the membrane.

When viewed under an electron microscope, the two phospholipid layers appear as parallel, closely spaced lines that resemble a "railroad track."

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The layer of the epidermis that contains several layers of living cells connected by many desmosomes is the strata
a) lucidium
b) basic
c) granulosum
d) Ripossum

Answers

Answer:Stratum spinosum

Explanation:

what is the combining form for the anatomic structure that conducts air from the trachea to the lung, where it divides and subdivides?

Answers

The combining form for the anatomic structure that conducts air from the trachea to the lung, where it divides and subdivides is bronchi.

The trachea starts simply under the larynx (voice box) and runs down behind the breastbone (sternum). The windpipe then partitions into two more modest cylinders called bronchi: one bronchus for every lung. The windpipe is made out of around 20 rings of intense ligament. The back piece of each ring is made of muscle and connective tissue.

The trachea, normally known as the windpipe, is the enormous cylinder that conveys air from the upper respiratory plot (the nasal entries, throat, and larynx) to the bronchi (the two huge aviation routes that branch off into every lung). Simultaneously, it warms and saturates the air and gets garbage and organisms before they enter the lungs.The trachea can become contaminated, excited, or harmed. In uncommon circumstances, this can prompt tracheal stenosis, in which the windpipe limits and confines relaxing. Tracheal disease is an incredibly intriguing type of malignant growth.

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What animals are complex animals ?

Answers

Answer: : fishes, amphibians, reptiles, birds, and mammals.

Explanation: Specific examples of vertebrates are shown to illustrate the different characteristics of complex animals.

Answer:

Water flea

Explanation:

The water flea is the most complex creature ever studied.

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