which of the following techniques were most helpful to watson and crick in determining the structure of dna?

Answers

Answer 1

X-ray crystallography, Electron microscopy, Molecular modeling, Chargaff's rule are most helpful to watson and crick in determining the structure of dna.

What is dna?

Deoxyribonucleic acid (DNA) is a molecule that contains the genetic instructions used in the development and functioning of all living organisms. It is made up of two long strands of nucleotides that are twisted together in a double helix. Each strand is made up of four different nucleotides, adenine (A), thymine (T), cytosine (C) and guanine (G). The sequence of these nucleotides determines the type of information stored in the DNA, such as the instructions for the development of a particular organism. DNA is found in the nucleus of every cell and is passed on from one generation to the next. It is responsible for the physical characteristics of an organism, such as its size and shape, as well as its behaviors and traits.

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Related Questions

Which of the following pairs of models provides the most complete and accurate representation of the cells of grasses and white-tailed deer? You are only selecting one choice ...

Answers

The difference between the cells of grasses and white-tailed deer is option B

What is the cell?

The cell is the basic unit of life in all organisms. It is the smallest unit of an organism that retains the characteristics of life, and is capable of functioning independently.

We know that the animal cell does not have the cell wall but the cells of the plants does have a cell wall and this is the fundamental difference between the two of them.

Cells vary in size and shape, but all have a similar basic structure, consisting of a plasma membrane, cytoplasm, and genetic material in the form of DNA.

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All organisms begin life as a cell?

Answers

Answer:

Yes

Explanation:

Organisms begin as cells due to the cell theory it states all living things must come from a living cell

Yes they do

Cell is the simplest level at which life may exist

Cells A and B receive the same high levels of stimulation, but Cell A shows a lower level of activity relative to Cell B. A likely explanation for this fact is that Cell A
is defective.
is being laterally inhibited by other nearby cells.
has a higher resting level than Cell B.
is receiving input from the edge of a surface, while Cell B is receiving input from a portion of the surface away from the edge.
is being laterally inhibited by other nearby cells.

Answers

Cell A is laterally being inhibited by other neighboring cells.

What causes the charge differential between a neuron's interior and exterior?

A space with a differential in electrical charge is said to have an electrical gradient. For instance, in nerve cells, there is an electrical gradient between the interior and exterior of the cell, with the interior being negatively charged (at about -70 mV) in comparison to the exterior.

What distinguishes the two types of cells that make up brain tissue?

Neurons and glial cells are the two main cell types found in nervous tissue. The cells that transmit electrical signals for communication are known as neurons. Glial cells are support cells that keep the surroundings of the neurons in good condition.

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Help! which role does the enzyme helicase play in dna replication?

A. cuts new dna strands away from old

B. brings in new nitrogenous bases

C. checks for mistakes in replication

D. unwinds the two dna strands

Answers

Answer:

D. Unwinds the two DNA strands.

Explanation:

Tell me if I'm wrong pls:)

D) unwinds the two dna strands

The molecule that enhances the ability of testosterone to promote spermatogenesis is inhibin. True False

Answers

The bellow statement is False.

Inhibin is the hormone that regulates the pace of spermatogenesis by providing negative feedback to the anterior pituitary.

The male reproductive system's hormones form a negative feedback loop that aids in maintaining healthy levels of testosterone and sperm.

FSH, which encourages spermatogenesis, is produced and secreted by the gonadotropic cells of the anterior pituitary gland.

Inhibin It is only created by the testis, principally by the Sertoli cells in the prepubertal testis, however the exact location of production in the adult testis is still up for debate.

Inhibin B controls FSH secretion by utilising a negative feedback mechanism.

A negative feedback process occurs in males as testosterone levels rise because the anterior pituitary and hypothalamus release inhibin, which inhibits the production of GnRH, FSH, and LH.

The Sertoli cells produce the hormone inhibin, which is released into the bloodstream when the sperm count is high.

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Select all likely options for how a mutation in Ssl2 might affect transcription.
Alter interaction of Ssl2 with cofactors that influence start site selection
Alter the rate at which Ssl2 spools DNA through Pol II
Alter how long Ssl2 remains bound to DNA
Alter the rate of mutations incorporated during DNA replication

Answers

A mutation in Ssl2 might affect transcription as an alteration in interaction of Ssl2 with cofactors that influence start site selection and it alters the rate at which Ssl2 spools DNA through Pol II.

Hence, the correct options are A and B.

Ssl2 is basically the yeast homolog of XPB and a very essential as well as conserved subunit of the general transcription factor TFIIH. It drives the scanning by the help of its DNA-dependent ATPase activity, therefore potentially controlling both scanning rate and also scanning extent or the processivity.

An alteration in the interaction of Ssl2 with the cofactors which influence start site selection and also a change in the rate at which Ssl2 spools DNA through Pol II can occur as a result of mutation in the Ssl2 which affects transcription.

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Models are useful in biological research for which of the following reasons?
1. They may suggest experiments that can be performed to refine or test the model.
2. They provide a way to organize how we think about a problem.
3. They can help us see the larger picture by showing how the different components of a complex system fit together.

Answers

Biological model's are useful as they 1. They may suggest experiments that can be performed to refine or test the model.

2. They provide a way to organize how we think about a problem.

3. They can help us see the larger picture by showing how the different components of a complex system fit together.

How biological model's useful?

A model in biology is a depiction of the structure and operation of a biological system, and it can be concerned with any level of life, from molecules to ecosystems. With the aid of models, we may verify our knowledge of specific systems and, in the case of accurate models, make predictions.

To comprehend systems and processes more fully, scientific models are used. Graphs created from research trials can be used to comprehend the system under study and forecast outcomes for future tests.

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In biological research, models can be helpful for (all three)

1. They might recommend experiments that could be run to improve or evaluate the model.

2. They give us a way to arrange our thoughts when considering a challenge.

3. They can assist us in seeing the bigger picture by demonstrating how the various parts of a complicated system work together.

Biological models can be concerned with any level of biology, from molecules to ecosystems, and they depict the structure and operation of a biological system. With the aid of models, we can verify our knowledge of certain systems and, if the models are accurate, make predictions.

What is the importance of biological research?

The study of heredity, both cellular and external, has profoundly affected man and given him a better knowledge of all living things, often greatly to his social and economic advantage. The better knowledge of physiology and disease has greatly lengthened man's life and eased his pain.

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which of the following pairs of muscles produces the strongest contractions? multipennate and bipennate muscles sphincter and fusiform muscles bipennate and unipennate muscles fusiform and strap muscles

Answers

Sphincter and fusiform muscles are the pairs of muscles that produces the strongest contractions. That is option B.

What are muscles?

The muscles are the major parts of the musculoskeletal system that is made up of contractile tissue grouped into coordinated systems that aids in the movement of the body.

There are various types of muscles which include the following:

The cardiac musclethe smooth muscle andThe skeletal muscle.

The Sphincter and fusiform muscles are the pairs of skeletal muscles that produces the strongest contractions in the body.

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. cell are immortal due to the presence of the enzyme telomerase that continues to lengthen the ends of the telomeres (click to select) b. look similar to surrounding cells since these cells are genetically identical (click to select) c. appear as irregular shaped cells (click to select) d. have a fixed lifespan due to the length of the telomeres at the end of chromosomes (click to select) e. appear as small, regular-shaped cells (click to select) f. look different to surrounding cells due to large, dark nuclei (click to select)

Answers

The answer in the blanks provided is given with the statement below regarding Cells.

a. Cells are immortal due to the presence of the enzyme telomerase that continues to lengthen the ends of the telomeres of cancer cells.

b. Look similar to surrounding cells since these cells are genetically identical normal cells.

c. Appear as irregular shaped cells cancer cells

d. Have a fixed lifespan due to the length of the telomeres at the end of chromosomes normal cells

e. Appear as small, regular-shaped cells normal cells

f. Look different to surrounding cells due to large, dark nuclei Cancer Cells.

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a circular chromosome with lk=9995 is acted on by topoisomerase ii 5 times, what is the lk of the resulting chromosome?

Answers

9985 is the lk of the resulting chromosome  .

Lk/ linking number is the topological property of DNA which is a is a sum of twists and writhes. When one strand of DNA turned around another strand is termed a twist while inter-coiling of the double helix is termed as writhe .For circular DNA/chromosome, the Lk remains zero or unchanged which is a sum of twists and writhes introduced is always equal to Lk. The linking number can be changed by breaking and rejoining of the strand using endonuclease enzyme like Topoisomerase. The Topoisomerase introduces a break in one or both DNA strands, after rotating the two DNA strands relative to each other, breaks in strand is filled by DNA ligase.  Type II topoisomerase enzymes cleave the dsDNA ultimately changing the linkage number and convert a single positive supercoil into a negative supercoil. This cleavage by type II topoisomerase leads to the reduction in linkage number by two (-2) in a single step.

As in given problem,

the Topoisomerase acts five times on the circular chromosome the Lk will decrease by 10.

Hence, the final Lk for given chromosome after Topoisomerase activity will be 9985.

​​​​​

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Platelets are unable to aggregate at normal rates when exposed to drugs containing salicylates (aspirin). What has happened to cause this

Answers

Aspirin exerts its cardioprotective effects by blocking the synthesis of TXA2 and irreversibly inhibiting platelet COX-1.

To lower the chance of having a heart attack in those with heart disease, this drug contains a low dose of aspirin. People who have already experienced a stroke or "mini-stroke" can also take it to lower their risk of another one (transient ischemic attack). Salicylate and nonsteroidal anti-inflammatory medication are two terms that describe aspirin (NSAID). In order for a heart attack or stroke to not occur, this medicine prevents platelets from adhering to one another and forming blood clots. Since it takes time to take effect, this drug is a long-acting aspirin. When a quick effect is required, such as soon after a heart attack or for pain treatment, other types of aspirin (immediate-release) should be utilized.

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Label all the parts of the heart from frontal section

Answers

Heart anatomy

Pulmonary veinsBranches of right pulmonaryAortic semilunar valveRight atriumPulmonary veinsTricuspid valveMyocardiumEpicardiumPulmonary semilunar valveLeft atriumSuperior vena cavaPulmonary veinsPulmonary veinsPulmonary semilunar valvepapillary musclesTricuspid valveInterventicular septumInferior vena cava

The heart is a vital organ that functions as a blood pump to meet the needs of oxygen and nutrients throughout the body. If the heart is disturbed, blood circulation in the body can be disrupted, so maintaining heart health is very important to avoid various types of heart disease.

The main function of the heart is to pump blood throughout the body and accommodate it again after the lungs have cleaned the blood. The heart provides and circulates blood oxygen throughout the body, and cleanses the body of metabolic products (carbon dioxide).

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a forest contains many plant species of medicinal value. these plants are harvested frequently, which has placed them at risk for extinction. what is the main reason to conserve these plant species? responses to decrease the oxygen level in the atmosphere to decrease the oxygen level in the atmosphere to maintain the biodiversity of the forest to maintain the biodiversity of the forest to increase the chance for the plant species to become invasive to increase the chance for the plant species to become invasive to maintain the levels of greenhouse gases in the atmosphere

Answers

The main reason to conserve these plant species is to maintain the biodiversity of the forest (option 3).

Biodiversity refers to the variety of different species and ecosystems that exist within an area. In this case, the forest contains many plant species of medicinal value, and their loss could have negative impacts on the overall biodiversity of the forest. By conserving these plant species, we can ensure that the biodiversity of the forest is maintained, which is important for maintaining a healthy and functioning ecosystem.

Conserving these plant species also has the potential to protect important medicinal properties, which could be valuable for future generations. Additionally, conserving biodiversity is also important for maintaining ecosystem services, such as water regulation, pollination, and soil stability, that are important for human well-being.

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Complete Question:

a forest contains many plant species of medicinal value. these plants are harvested frequently, which has placed them at risk for extinction. what is the main reason to conserve these plant species?

1. to decrease the oxygen level in the atmosphere

2. to decrease the oxygen level in the atmosphere

3. to maintain the biodiversity of the forest

4. to increase the chance for the plant species to become invasive

5. to increase the chance for the plant species

6. to become invasive

7. to maintain the levels of greenhouse gases in the atmosphere.

What Are Vertices, Faces And Edges? Explain

Answers

Answer:

Vertices, edges and faces

Explanation:

A face is a flat surface. An edge is where two faces meet. A vertex is a corner where edges meet. The plural is vertices.

All answers are mentioned below.

What do you mean by complex 3-dimensional shapes?

Complex 3-dimensional shapes refer to objects or structures that have multiple interconnected surfaces and vertices extending in three dimensions (height, width, and depth). These shapes are often more intricate and difficult to describe or visualize compared to basic 2-dimensional shapes, and can have various features such as curves, irregular sides, and varying dimensions. Examples of complex 3-dimensional shapes include molecular structures, sculptures, and architectural designs.

In biology, vertices, faces, and edges are terms that are used to describe the structure of complex 3-dimensional shapes. These terms are most commonly used in the context of describing the shapes and arrangements of molecular structures, such as proteins, carbohydrates, and lipids.

Vertices: A vertex is a point where three or more lines or edges intersect. In molecular biology, vertices can refer to the points where three or more chemical bonds intersect.

Faces: A face is a flat surface that is bounded by edges or lines. In molecular biology, faces can refer to the surface of a molecule that is composed of one or more atoms.

Edges: An edge is a line or boundary that separates two faces. In molecular biology, edges can refer to the chemical bonds between atoms in a molecule.

By analyzing the vertices, faces, and edges of a molecular structure, scientists can gain insights into the physical and chemical properties of the molecule, including its stability, reactivity, and ability to interact with other molecules. Understanding the vertices, faces, and edges of a molecular structure is also important in the design and synthesis of new drugs and other biologically active compounds.

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Since felicia missed four classes in a row, she is wholly unprepared for today's exam, which covers all the bones in the human body.

Answers

A comma splice is a type of grammatical error where two independent clauses (self-sufficient sentences) are connected only by a comma, creating a run-on sentence.  So option b is correct.

a) Fused sentence: Since Felicia missed four classes in a row, she is wholly unprepared for today's exam which covers all the bones in the human body.In this sentence, two independent clauses are joined without a proper conjunction or punctuation, creating a fused sentence.

b) Comma splice: Since Felicia missed four classes in a row, she is wholly unprepared for today's exam, which covers all the bones in the human body.In this sentence, a comma is used to separate the two independent clauses, creating a comma splice. This is a common writing error that occurs when a comma is used instead of a stronger punctuation mark, such as a semicolon or a conjunction, to separate two independent clauses.

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Complete question :

Since Felicia missed four classes in a row, she is wholly unprepared for today's exam, which covers all the bones in the human body.

a) fused sentence

b) comma splice

1. Crossing over occurs during meiosis. What is happening in this step?

a. Centromeres are switching places.
b. Genetic information is being exchanged between chromosomes.
c. Three new nuclear membranes are formed.
d. The cell membrane starts to dissolve.

2. What happens in Prophase I of meiosis?

a. The nuclear membrane dissolves.
b. The chromosomes pair up in the middle of the cell.
c. The chromosome pairs separate.
d. Two new nuclear membranes form.

3. If the haploid number for an organism is 20, what is true about that cell?

a. It's 'n' number is 40.
b. It's "n' number is 10.
c. The somatic cells in that organism have 10 chromosomes.
d. The gametes for that organism have 20 chromosomes.

4. Which of the following statements is true about the 4 daughter cells formed from meiosis?

a. The daughter cells are all exactly alike.
b. The daughter cells are the same genetically as the parent cell.
c. Each daughter cell is genetically unique.
d. Daughter cells have no chromosomes.

5. After completing Telophase I and cytokinesis, the two daughter cells move into what phase?

a. Prophase II
b. Metaphase II
c. Anaphase II
d. Telophase II

Answers

The answers include the following below:

Crossing over occurs during meiosis therefore what is happening in this step is that genetic information is being exchanged between chromosomes and is denoted as option B. The nuclear membrane dissolves  in Prophase I of meiosis and is denoted as option A . If the haploid number for an organism is 20, then what is true about that cell is that It's "n' number is 10 which is denoted as option B. The following statements is true about the 4 daughter cells formed from meiosis is that each daughter cell is genetically unique and is denoted as option C.After completing Telophase I and cytokinesis, the two daughter cells move into Telophase II which is denoted as option D.

What is Meiosis?

This is referred to as a type of cell division in which the parent cell produces four unique daughter cells and it is used during the process of reproduction in the body system.

Crossing over occurs during meiosis ensures that genetic information is being exchanged between chromosomes.

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Question 3 (20 points)
Louis Pasteur felt that liquid would spoil because there were particles in the air that could enter the liquid and grow there. He
performed experiments that led to a process that could keep food fresh for longer, a process called "pasteurization." He
boiled liquid broth and then placed it in flask that had an S-shaped neck. Air could enter the neck of the flask, but any
particles would be trapped in the neck. After a week, the liquid was still clear, showing that no growth occured. Pasteur then
broke the neck from the flask and let it sit for another week. This time, he saw that the broth became cloudy and spoiled. He
then knew that if boiling and preventing particles in the air to combine with food could preserve food (this process is called
pasteurization), then the particles in the air could cause food to spoil
What is Louis Pasteur's claim? Write about his evidences to support this claim. Lastly, write about his
reasoning why the evidences support his claim. Use the space below to type your answer.

Answers

The answers includes the following:

Louis Pasteur's claim was that the microorganisms present in the air were responsible for the spoilage which occurred in the broth.The evidence was that the boiled liquid broth which was put in a flask which had no air entering was still clear, showing that no growth occurred.

What is Pasteurization?

This is referred to as a heat treatment process that destroys pathogenic microorganisms in certain foods and beverage.

Pasteur was the one who first devised during his experiment in which no growth occurred hence no spoilage.

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14. Which statement can you infer is true?
Light waves will travel through a glass window at roughly 3,000,000 mi/sec.
O Light waves will travel through a glass window at roughly 286,000 mi/sec.
O Light waves will travel through the ocean at roughly 300,000 mi/sec.
Light waves will travel through the ocean at roughly 140,000 mi/sec.

Answers

Statement that can be inferred which is true : Light waves will travel through glass window at roughly 286,000 mi/sec.

What are light waves?

The speed of light was said to be critically examined by scientists have thoroughly examined and it is known to be expressed as constant value which is often denoted in equations by symbol c.

It is said not to be truly constant, but expressed in maximum speed in vacuum. The speed of light in km, is estimated to be almost about 300,000 kilometers per second, but it  can be altered by changing media or with quantum interference. As 286,000 is close to 300,000, then this is the true statement.

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if you understand the opportunities and limitations of the fossil record, you should be able to determine whether the discovery of feathers on tyrannosaurus dinosaur species is consistent with the hypothesis that feathers are a synapomorphy for birds. explain.

Answers

While the fossil record does have limitations (habitat, taxonomic, tissue, temporal, and abundance biases), the presence of feathers is a non-avian dinosaur such as Tyrannosaurus is sufficient evidence to reject the hypothesis that feathers are unique to birds.

Tyrannosaurus is a huge theropod dinosaur genus. Tyrannosaurus rex (rex means "king" in Latin), sometimes known as T. rex or T-Rex, is one of the most well-known theropods. It roamed what is now western North America, on what was formerly an island continent called Laramidia. Tyrannosaurus ranged significantly further than other tyrannosaurids.

Fossils have been discovered in a range of rock formations dating from the Upper Cretaceous period's Maastrichtian epoch, 68 to 66 million years ago. It was the last known tyrannosaurid and one of the final non-avian dinosaurs to exist prior to the Cretaceous-Paleogene extinction disaster.

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Why natural selection may not produce adaptations that perfectly match the environment?

Answers

First, selection can only affect the genetic variety that is now present. For instance, if there is no faster gene variant, a cheetah cannot evolve it. Second, the body must use the resources it already possesses.

What natural selection may not produce adaptations?

Natural selection produces adaptation, i.e., a population that is predominately made up of creatures that are physically, behaviourally, and physiologically well-suited to live and reproduce in a particular environment.

The species is in danger of going extinct because of low genetic diversity, which makes the creatures susceptible to environmental changes like disease.

This is due to the decreased likelihood of organisms having favourable alleles in a tiny gene pool. Name a few elements that lower genetic diversity. Natural catastrophes. A lot of poaching.

Therefore, lack of essential genetic diversity Only the genetic diversity that is already present can be used for selection.

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First, selection can only affect the genetic variety that is now present. For instance, if there is no faster gene variant, a cheetah cannot evolve it. Second, the body must use the resources it already possesses.

What natural selection may not produce adaptations?

Natural selection produces adaptation, i.e., a population that is predominately made up of creatures that are physically, behaviourally, and physiologically well-suited to live and reproduce in a particular environment.

The species is in danger of going extinct because of low genetic diversity, which makes the creatures susceptible to environmental changes like disease.

This is due to the decreased likelihood of organisms having favourable alleles in a tiny gene pool. Name a few elements that lower genetic diversity. Natural catastrophes. A lot of poaching.

Therefore, lack of essential genetic diversity Only the genetic diversity that is already present can be used for selection.

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Which of these have cells with the same structure as human cells?A. virusesB. plantsC. protistsD. insects

Answers

The option that have cells with the same structure as human cells is plants (option B).

What are eukaryotic cells?

Eukaryotic cells are cells of living organisms that possess a membrane-bound nucleus that houses the genetic material of the cell.

An eukaryote is any of the single-celled or multicellular organisms of the taxonomic domain Eukaryota, whose cells contain at least one distinct nucleus.

Group of organisms that fall in the eukaryotic category are as follows:

PlantsAnimalsFungi

Humans are under the animal category and hence, have cells with similar structure with plants.

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At one point in history, Florida was completely
Submerged in water. Use evidence to support a claim
about which material (wood, sea-floor sediments, ice)
would be the most useful in studying Florida's fossil
record.

Answers

Sea-floor sediments would be the most useful in studying Florida's fossil record. The reason for this is that Florida was submerged in water during several periods in its geological history, and sea-floor sediments would have accumulated and preserved any fossils that were present during those times. These sediments would contain evidence of marine life, such as shells and other biotic remains, as well as information about the environment and conditions in which they lived.

In contrast, wood is not typically well-preserved in underwater environments, as it is more susceptible to decay and destruction by wood-boring organisms. Ice, on the other hand, is not likely to have been present in Florida during periods of submergence, and thus would not provide information about Florida's fossil record during those times.

Therefore, sea-floor sediments are the most useful material for studying Florida's fossil record, as they have the potential to provide the most complete and informative picture of Florida's ancient life and environments

given that the cytoplasmic membrane has a fluid dynamic nature, with phospholipids and proteins able to move about within the bilayer structure, what force or structure keeps the membrane from falling apart?

Answers

The hydrophilic and hydrophobic forces are the forces that keep the cytoplasmic membrane from falling apart.

According to the fluid mosaic concept, the plasma membrane is made up of a variety of components, primarily phospholipids, cholesterol, and proteins that move fluidly and freely in the membrane's plane. In other words, a membrane only represents a moment in a dynamic process where proteins and phospholipids are continuously slipping past one another. Phospholipids are the lipid molecules having hydrophilic head and hydrophobic fatty acid tails. These are responsible for holding the membrane together.

The plasma membrane not only establishes the boundaries of the cell but also gives it the ability to interact with its environment in a controlled way. Cells must be able to take in, expel, and exclude different chemicals in a controlled manner. They also need to be able to identify themselves and share information with other cells through communication.

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What molecules were the end products in Miller and Urey's experiments?

Answers

The molecules  were the end products of Miller and Urey's experiments were organic molecules such as amino acids.

Miller-Urey are two scientists who want to prove the origin of life on this earth. They conducted experiments to show how life was built from abiotic elements first.

In the experiment they mixed ammonia, methane and hydrogen into water and applied an electric spark to simulate lightning. Lightning is allegedly a factor forming life on earth. After the experiment the water is dark red which indicates the formation of organic molecules. So, the chemical compounds resulting from Stanley Miller's experiment are organic molecules such as amino acids, adenine, and simple sugars.

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FILL IN THE BLANK Babies first demonstration of productive language occurs during the ______________ stage

Answers

A baby's first demonstration of productive language occurs during the babbling stage.

The babbling stage is the first major stage of the early childhood language acquisition process. This is the stage when young children begin to experiment with sound production. The only sounds produced at this stage are simple sounds and sounds that are not high enough to be considered words. Hence the name babbling phase. Babbling usually begins between 4 and 6 months of age and ends by the time the baby begins to speak all the words by 1 year of age. Toddler sounds at this stage are combinations of consonants and vowels, such as "dada" and "mama."

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Why does natural selection not lead to organisms that are perfectly adapted to their environments?

Answers

Because it only chooses between already-existing variants in a population, natural selection cannot produce novel, ideal species.

Can a creature adapt to its environment perfectly?

No population or living thing has perfect adaptation.Second, rather than considering natural selection as just a guiding force, it is more accurate to view it as a process.Darwinism is the thoughtless, mechanical outcome of variation, utilizes various, and heredity.

What prevents living things from getting completely acclimated to their surroundings?

Darwinism is a force that leads to the evolution of a group of organisms through time.The environment is continually changing, and animals receive their genetic makeup from their parents and ancestors.Therefore, no living thing is entirely suited to its surroundings.

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is it necessary to remove agar lid when doing uv experiments

Answers

It depends on the specific UV experiment being conducted. In general, UV light should be able to penetrate the agar lid to reach the samples underneath.

However, if the agar lid is too thick, it may significantly reduce the amount of UV light reaching the sample, affecting the results of the experiment. In these cases, it may be necessary to remove the agar lid to ensure adequate exposure to UV light.

It is important to carefully consider the specific conditions of the experiment and the properties of the materials being used when making decisions about whether or not to remove the agar lid.

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What is the driving force that keeps blood flowing throughout all blood vessels?Select one:a. Volumeb. Densityc. Pressured. Gravity

Answers

Pressure is the driving force that keeps blood flowing throughout all blood vessels.

What is blood vessel?

blood vessels is a channel that the body's blood circulates through. A network of capillaries, venules, arteries, and veins make up the blood vessels.

They create a circuit-like closed loop that starts and finishes at your heart. Your circulatory system is made up of blood vessels and heart vessels. About 60,000 miles of blood arteries make up your body.

Blood delivery to your body's organs and tissues is the role of blood vessels. They receive the oxygen and nutrition they need to function from the blood. Additionally, waste and carbon dioxide are removed from your organs and tissues by blood vessels.

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10. Why is it likely the Hox genes have played a major role in the evolution of novel morphological forms

Answers

The Hox genes have an impact on the growth of structures like limbs and feeding appendages in animal embryos. Consequently, changes in these genes or their regulation are likely to have significant effects on morphology.

An embryo is an animal's earliest developmental stage in which its basic structure emerges after an egg is fertilized. There are several stages of embryonic development: fertilization, blastocyst (development and implantation), and embryo.

The Hox gene is a highly conserved gene that controls the structure and body axis (head to tail) of an embryo as well as the region of the body plan. Fruit flies, humans, and other animals are examples of living things with Hox genes (the homeobox gene subset). When Hox genes are altered or controlled, it affects an embryo's morphology; These genes control limb shape and form as well as structures like an embryo's feeding appendages.

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Where does glycolysis take place in the living cell?

Answers

Cytoplasm is where glycolysis occurs in living cells. Glycolysis is the required process of breaking down all the glucose to produce energy reqired by the living cell.

What is Glycolysis?

Glycolysis is the metabolic pathway by which glucose is broken down into pyruvate, producing energy in the form of ATP (adenosine triphosphate) and NADH (nicotinamide adenine dinucleotide). It is the first step in cellular respiration, which occurs in the cytoplasm of cells and does not require oxygen.

Glycolysis is a 10-step metabolic process that converts glucose into energy in the form of ATP and NADH. It occurs in the cytoplasm and doesn't require oxygen.

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