The interaction between the inner and outer core is the reason that earth has…
A. Earthquakes
B. Thin atmosphere
C. Water
D. A magnetic field

Answers

Answer 1

Answer:

sorry God loves u

Explanation:

Answer 2

Answer:

The interaction between the inner and outer core is the reason that earth has a magnetic field.

The Earth has a solid inner core and a liquid outer core, both made of iron and nickel. The metal carries an electrical current that is powered by the movement of the liquid. The electrical current creates a magnetic field that reaches out from the core to the surface of the Earth.

Explanation:

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Related Questions

While online last week, you saw the following advertisement:

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The ions in our jewelry will balance your energy

and improve your health. Nine out of ten people

report significant improvement in the way they

feel within one week of wearing our jewelry.

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How strong are the claims made by the advertisement?

V

Answers

Web advertising, mobile advertising, and email advertising are a few instances of online advertising. Free online advertising websites abound on the internet, but a comprehensive definition of online advertising goes beyond web advertising.

Social media advertising, content marketing, and email marketing are the various forms of online advertising. Online advertising is a sort of business promotion that sends marketing messages through the Internet to draw in clients. Many companies began to market their goods and services online as a result of the Internet's rapid expansion in both users and technology. It provides the chance to engage with your target audience and establish deep connections.

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which of the statements about hemoglobin and myoglobin structure are true? both hemoglobin and myoglobin contain a prosthetic group called heme, which contains a central iron (fe) ( fe ) atom. hemoglobin and myoglobin are heterotetramers. each hemoglobin molecule can bind four oxygen molecules and each myoglobin can bind only one oxygen molecule. the heme prosthetic group is located in a hydrophobic cleft in the protein, with propionate (propanoate) groups exposed at the surface. each iron atom can form six coordination bonds and one of these bonds is formed between iron and oxygen. molecular oxygen binds irreversibly to fe2 fe 2 in heme. by itself, heme is not a good oxygen carrier. it must be part of a larger protein to prevent oxidation of the iron.

Answers

Five statements about the structure of hemoglobin and myoglobin are correct: - 1:- Both hemoglobin and myoglobin contain a prosthetic group known as heme.

which contains a central iron atom, which is a true statement because iron atoms can bind with one oxygen molecule. As a result, this statement is correct.

The equilibrium between oxyhemoglobin (oxygen-bound hemoglobin) and hemoglobin (free of oxygen molecules). Each molecule of hemoglobin can bind up to four oxygen molecules at the same time; this occurs through cooperative binding, which means that increased hemoglobin-oxygen binding at the protein hemoglobin's subunits (where oxygen is a ligand) increases its affinity for oxygen.

This is because the altered orientation of the protein's secondary structures causes a conformational change in the hemoglobin molecule, making it easier for a second molecule of oxygen to be followed by more O2-Haem binding until the molecule is saturated. However, because myoglobin only has one Hem subunit, it can only bind to one molecule of oxygen. while hemoglobin has the ability to bind four.

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a random base change is less likely to affect phenotype in humans than in bacteria. why? please select all that apply.

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Due to lesser junk DNA the random mutation is going to affect the bacteria more than the human in case of phenotype.

For a few reasons, phenotype (an individual's observable features or qualities) is less likely to be impacted by a random base change, or mutation, in human DNA than in bacterial DNA. The human genome is significantly bigger and more complicated than the bacterial genome, which is one explanation.

This implies that the human genome contains more base pairs and that the relationships between genes and other DNA sequences are more complex. Human cells also have a more advanced method for mending DNA damage, which aids in preventing mutations. Furthermore, whereas bacteria reproduce quickly, allowing them to quickly adjust to changes in their environment, natural selection tends to pick out deleterious mutations in humans.

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Which of the following factors affecting microclimate is likely to be negatively affected by the presence of trees?
Odrought
O aspect
O drainage
O topography

Answers

It’s aspect it’s aspect

PLEASE HELP FILL IN THE BLANK

. In this scenario, there is 1 pair of chromosomes (2 chromosomes total) in the parent cell. How many
chromosomes are in each gamete at the end if meiosis occurs normally?(left diagram) ___________
b. If nondisjunction occurs during meiosis I, (the middle picture) do any of the 4 gametes have the
correct number of chromosomes? If so, how many of the 4? ______________________________
c. If nondisjunction occurs during meiosis II (right diagram), do any of the 4 gametes have the correct
number of chromosomes? If so, how many of the 4? _________________________________ Note that this lab is showing just one pair of chromosomes. In a human there would be 46
chromosomes at the beginning of meiosis and then the non-disjunction would happen in just 1 pair out of those 46. Therefore, a normal HUMAN gamete, if meiosis occurred without issue would have 23 chromosomes at the end of meiosis. If non-disjunction of 1 pair of chromosomes occurs in meiosis I, the gametes will have either _____ (1 extra) or _____ (1 missing) chromosomes (enter #’s).
4. If a gamete with an extra chromosome is fertilized, the resulting condition is called __________________. For example, if it happens to chromosome #21, this is called ____________ Syndrome. An extra “X” chromosome in a male results in ___________________ Syndrome.

Answers

After meiosis I, the parent cell still has 46 chromosomes in its natural state and is diploid. Each gamete cell has 23 chromosomes when each parent cell undergoes meiosis II, dividing it into two gametes. Each gamete still has a haploid nature at this phase.

How many chromosomes are present at the end of meiosis 2?

Meiosis 2

Cell division known as meiosis occurs when a single cell divides twice to produce four cells.Meiosis I and Meiosis II are two steps in the meiotic cell division process.During meiosis, chromosomes split in half in every cell.After meiosis I, the parent cell still has 46 chromosomes in its natural state and is diploid.Each gamete cell has 23 chromosomes when each parent cell undergoes meiosis II, dividing it into two gametes.Each gamete still has a haploid nature at this phase.At the conclusion of meiosis II, each cell will contain 23 chromosomes, which is the half of the total number of chromosomes.

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a type of cell division that results in diploid cells

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A type of cell division that results in diploid cells is mitosis.

Mitosis can occur in haploid and diploid cells. When a haploid cell divides, it creates two daughter cells that are genetically identical to one another; when a diploid cell divides, it creates two daughter cells that are genetically identical to one another.

Meiosis creates four haploid (n) gametes that are genetically distinct from each other and from the original parental (germ) cell, as opposed to mitosis, which creates two diploid (2n) somatic cells that seem to be genetically identical to one another and from the original parent cell.

A haploid cell is created from a single chromosome through the process of meiosis. Haploid and diploid cells differ from each other in that diploid cells have two entire sets of chromosomes while haploid cells only have one complete set.

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The type of cell division that results in diploid cells is mitosis.Mitosis is the process of cell division that results in two daughter cells each having the same number and kind of chromosomes as the parent nucleus. It is typical of ordinary tissue growth.

Mitosis is divided into several stages or phases of the cell cycle, such as interphase, prophase, prometaphase, metaphase, anaphase, telophase, and cytokinesis, which are necessary to successfully make the new diploid cells. During mitosis, the chromosomes in the nucleus duplicate, and then align at the center of the cell before separating into the two new daughter cells.

It's important to note that there is another type of cell division called meiosis, which results in four daughter cells each with half the number of chromosomes of the parent cell, as in the production of gametes and plant spores. Meiosis occurs in diploid cells. The chromosomes duplicate once, and through two successive divisions, four haploid cells are produced, each with half the number of chromosomes as the parent cell.

In summary, Mitosis is a type of cell division that results in two daughter cells each having the same number and kind of chromosomes as the parent nucleus, typical of ordinary tissue growth. Meiosis is a type of cell division that results in four daughter cells each with half the number of chromosomes of the parent cell, as in the production of gametes and plant spores. Both types of cell division occur in diploid cells but with different outcome in terms of chromosome number in the daughter cells.

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which classes of neurons are most likely to repair themselves after damage? a. afferent neurons b. efferent neurons c. interneurons d. a and b e. a, b and c

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The correct option is  D; a and b , In most cases, nerve cells in the central nervous system do not renew. However, in reaction to an injury, this component of the nervous system might restructure.

This is referred to as "plasticity." Fortunately, the brain has a lot of redundancy built in.

Pressure, stretching, or cutting can all cause neuron injury. An lesion to a neuron can disrupt the transmission of impulses to and from the brain, resulting in muscular weakness or lack of sensation in the afflicted region. Nerve injuries can have an effect on the brain, spinal cord, and peripheral nerves.

Unfortunately, because to the intricacy of the brain and spinal cord, there is very little spontaneous regeneration, repair, or healing.

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An organism must maintain a tolerable internal environment including factors such as temperature and acidity in order to preserve a biological balance called

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An organism must maintain a tolerable internal environment including factors such as temperature and acidity in order to preserve a biological balance called homeostasis.

People are mammals, and mammals are warm-blooded creatures capable of maintaining a relatively constant internal temperature regardless of the temperature of their surroundings. Body temperature regulation is an example of homeostasis, which is an organism's self-regulating process that maintains internal stability while adjusting to conditions in ways that are optimal for survival.

The optimal temperature of the human body is 37 °C (98.6 °F), but various factors, such as exposure to environmental elements, hormones, an individual's metabolism, and disease, can cause excessively high or low body temperatures. The hypothalamus in the brain is primarily responsible for controlling body temperature.

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In order to maintain a biological balance known as homeostasis, an organism must maintain a tolerable internal environment that includes elements such as temperature and acidity.

People are mammals, and mammals are warm-blooded organisms that can maintain a generally constant internal temperature independent of their environment' temperature. Body temperature regulation is an example of homeostasis, which is a self-regulating process in which an organism maintains internal stability while adapting to conditions in ways that are best for life.

The ideal body temperature is 37 °C (98.6 °F), although exposure to external elements, hormones, an individual's metabolism, and sickness can all induce abnormally high or low body temperatures. The hypothalamus in the brain is in charge of managing body temperature.

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fragments of copied dna created on the lagging strand

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Okazaki fragments are short fragments of DNA that are created on the lagging strand during DNA replication.

DNA replication occurs in a semi-conservative manner, with each strand of the original double helix serving as a template for the new strand. The lagging strand is duplicated in intermittent chunks known as Okazaki fragments, whereas the leading strand is repeated constantly. These fragments are then joined together by the enzyme DNA ligase, creating a continuous strand of DNA that is identical to the original template strand.

This process of creating Okazaki fragments and joining them is known as lagging-strand synthesis and is essential for accurately replicating DNA. Without lagging-strand synthesis, mutations would accumulate and the cell would be unable to replicate its genetic information accurately.

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Fragments of copied DNA created on the lagging strand are called Okazaki fragments.

During DNA replication, the double helix structure of DNA must be unwound and separated in order for new strands to be synthesized. This process is carried out by a group of enzymes called helicases, which unwind the double helix and create replication forks at the point where replication begins.

One of the strands, called the leading strand, is replicated continuously in the 5' to 3' direction, which is the same direction as the replication fork moves. However, the other strand, called the lagging strand, is replicated in the opposite direction in short fragments, because it runs opposite to the direction of replication. These fragments, called Okazaki fragments, are typically around 100-200 nucleotides long, and are formed by the action of the enzyme DNA polymerase.

As the replication fork moves along the DNA, the enzyme DNA polymerase moves along the leading strand and continuously adds nucleotides to the 3' end. However, on the lagging strand, DNA polymerase can only add nucleotides in the 5' to 3' direction for a short distance before it reaches the end of the strand. So, every time the polymerase reaches the end of the strand, it has to detach and reattach to the next replication fork, creating a new Okazaki fragment.

Once all the Okazaki fragments have been synthesized, they are joined together by the enzyme DNA ligase to form a continuous strand. This process is known as Okazaki fragment ligation. Okazaki fragments are important in DNA replication as they ensure the accuracy and integrity of the newly synthesized.

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Using the table, what would be the percentage of T be for west?

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Percentage of number is expressed as fraction of 100. It is denoted by %. 40 per cent is equal to 0.40 in decimal.

What is Base percentage?

 The percent in a percent problem will contain the % symbol or the word "percent". Amount: The amount in a percent problem is the number that relates to the percent, and it is a part of the whole. Base: The base in a percent problem is the whole quantity.On Base Percentage (aka OBP, On Base Average, OBA) is a measure of how often a batter reaches base. It is approximately equal to Times on Base/Plate appearances. The full formula is OBP = (Hits + Walks + Hit by Pitch) / (At Bats + Walks + Hit by Pitch + Sacrifice Flies)On-Base Percentage (OBP) measures the most important thing a batter can do at the plate: not make an out. Since a team only gets 27 outs per game, making outs at a high rate isn't a good thing — that is, if a team wants to win.

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3 properties of light energy

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Answer:

Light energy is a form of electromagnetic radiation that exhibits three main properties: it is wave-like, it moves at the speed of light, and it can travel through a vacuum. Light has wave-like properties, meaning it can be bent, reflected, and refracted to create various optical effects. It also moves at the speed of light, which is 299,792,458 meters per second in a vacuum. Finally, light can travel through a vacuum, meaning it does not require a medium such as air or water to travel through.

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What will probably happen to the book if it is left in "position 1" for an extended period of
time? Why?

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Time period (plural time periods) The length of time during which an activity occurs or a condition remains. It may be measured either in seconds or in millions of years, depending upon the nature of the activity of condition being considered.

How do you calculate time period of motion?

The equation for the period of the motion is given by the angular frequency: = 2 / T, = 2 / T. T = 2 π m k The time period is the least amount of time required to complete one oscillation, or it can alternatively be described as the minimum amount of time after which the particle continues to repeat its motion.

T = 2π/ω Women often shed 20 to 90ml (or 1 to 5 tablespoons) of blood during their menstruation, which lasts between 2 and 7 days. Although some women bleed more heavily than this, if having heavy periods is a problem, assistance is available.

Learn about the busy times. The frequency is the number of times a cycle is finished in a second. the duration of the project.

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A member of one species (the predator) feeds directly on all or part of a living organism (the prey) as part of the food web.

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Predation is the act of one species' (the predator's) member eating all or a portion of another species' living or recently living body.

When two organisms interact, it's called predation. The predator eats all or a portion of the prey's body. A type of predation called herbivory uses a plant as the prey organism. Population dynamics of the predator and prey have an impact on one another.

Predation occurs when a member of one species—the predator—eats the entire living or recently living body of another species—the prey. The prey suffers negative consequences as a result of this contact, which is positive for the predator. One organism kills and eats another in a predation situation. For an organism to live longer and encourage reproduction, it needs energy from predation.

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A member of one species (the predator) which feeds directly on all or part of a living organism (the prey) as part of the food web is the process called predation.

A food web is an interconnected network of food chains where an organism can be eaten by various organisms or it can feed upon different typed of organisms. In a food web, an organism has no defined trophic level.

Predation is the type of biological interaction where one organism gets benefitted while the other one is harmed. The organism benefitting in the interaction is called predator while the one being harmed is called prey. The example of predation is a lion feeding on deer.

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Which of the following best describes the relationship of GM seed stock to high-yield agriculture?
used as a last resort in high-yield strategies
O never used in high-yield strategies
O always used in high-yield strategies
O used as a possible element in high-yield strategies

Answers

It’s c it’s c it’s c it’s c

many fungal species release huge amounts of sexual spores that are carried far and wide by the wind. these sexual spores need to encounter other spores from the same species in order to start a new fungal colony. what mechanism is most likely prohibiting the formation of hybrid fungal colonies? group of answer choices gametic isolation genetic drift temporal isolation mutation habitat isolation

Answers

Gametic islotion referred to many fungal species release huge amounts of sexual spores that are carried far and wide by the wind. These sexual spores need to encounter other spores from the same species in order to start a new fungal colony. The correct option is 1.

An example of gametic isolation are the sea urchins S. franciscanus and Strongylocentrotus that can be induced to release their eggs and sperm simultaneously while most of the fertilizations that are between sperms and eggs of the same species.

Gametic isolation is referred to the type of prezygotic barrier. When the egg and sperm are released but a zygote is not formed that is happen by gametic that means it refers to the reproductive cells like eggs and sperm.

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Two populations of genetically distinct flowers begin to exchange migrants between the populations. If this process continues for a long time, what is the expected outcome?
new species will be formed
the populations will become genetically homogenized
each population will remain genetically distinct
each population will evolve to become fit to its environment

Answers

The populations will come genetically homogenized if the two populations of the genetically distinct flowers begin to change settlers between the populations.

Natural selection and inheritable drift tend to enhance inheritable differences among populations; migration tends to homogenize inheritable difference, dwindling the differences among populations.. In speciation, an ancestral species splits into two or further assignee species that are genetically different from one another and can no longer interbreed. Darwin envisaged speciation as a branching event.Genetic drift is the change in frequency of a gene variant in the population due to arbitrary chance. inheritable drift may beget gene variants to vanish fully and thereby reduce inheritable variation

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If the two populations of the genetically dissimilar flowers start to exchange settlers between the populations, the populations will become genetically homogenized.

Migration tends to homogenize inheritable differences, reducing the differences between groups, but natural selection and inheritable drift tend to strengthen inheritable differences among populations. An ancestor species that can no longer interbreed separates into two or more new species that are genetically distinct from one another. According to Darwin, speciation is a branching process. Genetic drift is the shift in population frequency of a gene variant brought on by random chance. Gene variations that are caused by inheritable drift may completely disappear, reducing the amount of inheritable variation.

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why are the anterior oblique projections (right anterior oblique [rao]/left anterior oblique [lao]) preferred over the posterior oblique projections of the cervical spine?

Answers

Anterior oblique projections (RAO/LAO) are preferred over posterior oblique projections of the cervical spine because they provide better visualization of the vertebral body and uncover any potential vertebral artery occlusion or dissection.

Anterior oblique projections are taken with the x-ray beam directed at an angle of 20-30 degrees to the patient's coronal plane, which allows for better visualization of the vertebral body and uncovers any potential vertebral artery occlusion or dissection. The RAO projection is taken with the patient in the supine position, and the x-ray beam is directed from the patient's right side, and the LAO projection is taken with the patient in the supine position, and the x-ray beam is directed from the patient's left side.

Posterior oblique projections, on the other hand, are taken with the x-ray beam directed at an angle of 20-30 degrees to the patient's sagittal plane, which is less useful for evaluating the vertebral body, and more useful for evaluating the intervertebral discs and uncover any potential soft tissue masses.

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review the characteristics of the lysosome discussed in concept 4.4. given the internal environment of a lysosome, what transport protein might you expect to see in its membrane?

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Since the lysosome is acidic, you might expect the membrane of the lysosome to have a proton pump to pump H+ into the lysosome.

The internal environment of the lysosome is acidic, which means it has a higher concentration of H+ than the cytoplasm.

Proteins, nucleic acids, carbohydrates, and lipids can all be broken down by a variety of enzymes found in lysosomes, which are organelles contained by a membrane and containing a membrane. The digestive system of the cell, known as lysosomes, is responsible for breaking down material that is taken up from the outside and for digesting cellular waste. Lysosomes can be thought of as thick, spherical vacuoles in their most basic form, but due to changes in the substances that have been taken up for digestion, they can exhibit significant diversity in size and shape. Thus, lysosomes are morphologically varied organelles that share the common function of destroying intracellular debris.

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the breakdown of dietary starch to glucose in the small intestine is considered a. metabolism b. hormonal action c. digestion d. absorption

Answers

Answer:

C. Digestion

Explanation:

During digestion, starches and sugars are broken down both mechanically aka chewing and chemically turned into glucose, fructose, and/or galactose

What are three types of graphs that can be used to show continuous quantitative data?

Answers

The three types of graphs that can be used to show continuous quantitative data can be bargraphs, line graphs, and histograms.

What are continuous quantitative data?

A continuous data set is a collection of data where each data point represents a value that is either increasing or decreasing over time, which is a  type of data often used in scientific and statistical analysis.

Therefore, with this data, we can see that continuous quantitative data are presented by intervals and thereby bargraphs, line graphs, and histograms can be sued to depict this type of info.

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What species of bird was charles darwin known for using in his studies?

Answers

Charles Darwin observed a group of small sparrow-like black birds with strong, short beaks that are known today as Darwin's finches.

visible evidence of Ongoing Evolution: Darwin's Finches

From 1831 to 1836, Darwin traveled around the arena, looking at animals on distinct continents and islands. at the Galapagos Islands, Darwin found numerous species of finches with specific beak shapes.

Darwin's finches (also called the Galápagos finches) are a collection of approximately 18 species of passerine birds. they may be widely recognized for their exceptional range in beak shape and characteristic. they're often categorised as the subfamily Geospizinae or tribe Geospizini.Later, Darwin concluded that numerous birds from one species of finch had possibly been blown by using typhoon or in any other case separated to every of the islands from one island or from the mainland. The finches had to adapt to their new environments and meals assets. They progressively advanced into specific species.

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Darwin's finches, or little black birds resembling sparrows with powerful, short beaks, were observed by Charles Darwin.

Darwin's Finches are an obvious example of ongoing evolution. Darwin circled the arena between 1831 and 1836, studying creatures from various continents and islands. Darwin discovered a wide variety of finch species with distinctive beak forms on the Galapagos Islands.

The Galápagos finches, sometimes known as Darwin's finches, are a group of about 18 species of passerine birds. They may be well known for having a remarkable variety in beak characteristics. They are frequently classified as belonging to the tribe Geospizini or subfamily Geospizinae.

Later, Darwin came to the conclusion that a large number of birds from one species of finch had possibly been scattered to all of the islands by a typhoon or in any other way, either from one island or the mainland. The finches had to become used to their new surroundings and food sources. They evolved into distinct species in stages.

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what type of bond do water molecules from with each other?

Answers

Answer: hydrogen bonds

Explanation: hope this helps c:

Answer:

Water becomes sticky because of the Hydrogen Bonds.

Explanation:

Amazingly, water can stick to both other things and to itself. The ability of water molecules to be attracted to other water molecules, which enables water to be a "sticky" liquid, is referred to as the cohesion property.

The difference in charge between hydrogen ions that are slightly positive and other hydrogen ions that are slightly negative results in hydrogen bonds, which are electrostatic forces that attract.

Hydrogen bonds form between nearby hydrogen and oxygen atoms of adjacent water molecules in the case of water. A bond called a hydrogen bond is produced by the attraction between individual water molecules.

The proteins which are required to reproduce DNA during interphase are:

A.paired bases
B.sugar phosphates
C.enzymes
D.nucleotide

Answers

Answer: C - Enzymes

Explanation:

d is the symbol for the dominant allele; is the symbol for the recessive allele. four children have the following allele pairs: lizzy has dd, lena and lyle have dd, and laura has dd. blonde hair is a recessive trait. which child/children has/have the phenotype for blonde hair?

Answers

Laura carries the dd allele, therefore means that both alleles have Blonde hair and have the recessive dd allele. The dominant allele is D, whereas d is the recessive allele.

Lizzy has the homozygous dominant trait in which both characters (DD) are dominant, whereas Lena and Lyle (Dd, one is dominant and one recessive) are heterozygous dominants that phenotypically indicate the dominant character.

A dominant/recessive relationship is the most frequent form of allele interaction. When one (dominant) allele of a gene effectively beats the other (recessive) allele, the allele is said to be dominant. Blood types and eye color are instances of dominant/recessive gene interactions.

A dominant allele, which can come from just one parent, causes a dominant phenotype in those who carry one copy of the gene. A person needs two copies of a recessive allele, one from each parent, in order to result in a recessive phenotype.

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Laura carries the recessive dd allele, which indicates that both alleles have blonde hair and carry the allele. D is the recessive allele, whereas d is the dominant allele.

While Lena and Lyle (Dd, one is dominant and one recessive) are heterozygous dominants that phenotypically reflect the dominant character, Lizzy has the homozygous dominant trait in which both characters (DD) are dominant.

Allele interactions most frequently take the shape of a dominant/recessive relationship. An allele of a gene is considered to be dominant when it successfully outperforms an opposing (recessive) allele. Dominant/recessive gene interactions can be seen in things like blood types and eye colour.

When only one copy of a dominant allele is present, it results in a dominant phenotype and can derive from just one parent.

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Question 3(Multiple Choice Worth 4 points) High tides are experienced 12 hours apart for a certain coastline. Which of the following best explains the reason for this phenomenon? O The coastline becomes 90 degrees with the moon twice. O The coastline comes in a straight line with the moon once. O The coastline experiences tidal bulge twice a day. O The coastline experiences tidal bulge once a day.​

Answers

High tides are experienced as the coastline experiences tidal bulge twice a day. Hence, high tides are experiences 12 hours apart for a certain coastline.

Tides are caused by the gravitational forces applied on the earth largely by the moon and also by the sun. This gravitational force causes the ocean water to be attracted towards the moon which creates a bulge in the ocean.

The earth's rotation can cause the waters that are affected to change. When the sun is parallel to the moon or relatively on the opposite side, these high tides are to be expected.  

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Which phrase describes a feature of the cell wall that allows materials to enter and exit the cell

Answers

Answer:

D. A rigid structure

Explanation:

The cell wall, or the outer covering of a cell, is a rigid layer of polysaccharides outside the plasma membrane in multiple cell types including plant, animal, etc.

Appendages that propel bacterial cells through an aqueous environment include _______ and ________ filaments

Answers

Appendages that propel bacterial cells through an aqueous environment include flagella and axial filaments.

Flagellum, plural flagella, hairlike structure that acts primarily as an organelle of locomotion in the cells of many living organisms. Flagella, characteristic of the protozoan group Mastigophora, also occur on the gametes of algae, fungi, mosses, slime molds, and animals.

Axial Filaments - bundles of flagella which wrap around the cell body between the cell wall and the outer membrane; together they form a helical bulge that moves like a corkscrew as the entrapped flagella turn & propel the cell; found only in one type of bacteria called the spirochetes

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Lab: Natural Selection
Please someone help me do this lab report. Its about natural selection. It would mean so much!!

INTRODUCTION: (in one paragraph, state the purpose of the lab, the question being addressed and a one to two sentence summary of the lab)

HYPOTHESIS: (Present your hypothesis being tested in the lab as an “If.. Then…” statement)

PROCEDURE: (Provide a brief summary of was done in the lab experiment. Refer to the lab guide for the complete procedure)

Results/Data
1. Data- Environment with equal amounts of insects, seeds, and fruits



Answers

A researcher can concentrate on his subject of study with the aid of the purpose statement, research questions, hypotheses, and research objectives.

How should a hypothesis be presented in a research paper?A journal article's opening sentences serve to introduce the subject, present the author's hypothesis or thesis, and explain why the study was conducted. Sometimes a thesis or hypothesis is not labeled explicitly, therefore you may need to read the introduction to figure out what the writers are advocating.A researcher can concentrate on his subject of study with the aid of the purpose statement, research questions, hypotheses, and research objectives. A deeper grasp of what to accomplish results from this focus. Not all study formats include every element, nor are all elements usually necessary.

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black (b) involved in the synthesis of melanin in labrador dogs is dominant over brown (b). a separate allele (e) is responsible for deposition of the pigment in the hair. two recessive alleles (ee) result in failure of deposition and a lab with yellow fur will result. if you cross a homozygous black male (bb ee) with a homozygous yellow female (bb ee) what will be the f1 and f2 (use the punnet square for the f2 cross) genotypes and phenotypic ratios? note the phenotype for each genotype.

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The pigmentation of the hair is deposited by a different allele (E). A lab with yellow results when twin recessive alleles (ee) are present. The two alleles of this gene are B and b.

Black is a gene that affects coat colour in Labrador retrievers, and it plays a role in coat colour. The two alleles of this gene are B and b. The extension gene is yet another one that affects coat colour. Additionally, this gene has two alleles, E and e. The genotype of two genes determine the coat colour of Labrador dogs. A dominant allele, B, of one gene results in black fur, while the alternative allele, b, results in brown fur. However, irrespective of the genotypes of the first gene, a dog will have yellow fur if a second gene has two recessive alleles, ee. The complementation test, also known as the cis-trans test, is a genetic analysis used to determine if two mutations linked to a certain trait represent two distinct gene types.

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The pigmentation of the hair is deposited by different alleles (E). A lab result on the brown and black colour of the hair of labrador dogs was presented, when twin recessive alleles (ee) are present. The two alleles of this gene are B and b.

Black is a gene that affects coat colour in Labrador retrievers, and it plays a role in coat colour. The two alleles of this gene are B and b. The extension gene is yet another one that affects coat colour. This gene has two alleles, E and e. The genotype of two genes determines the coat colour of Labrador dogs. A dominant allele, B, of one gene results in black fur, while the alternative allele, b, results in brown fur. However, irrespective of the genotypes of the first gene, a dog will have yellow fur if a second gene has two recessive alleles, ee. The complementation test, also known as the cis-trans test, is a genetic analysis used to determine if two mutations linked to a certain trait represent two distinct gene types.

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what is the constricted region of the chromosome where the kinetochore forms?

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The constricted region of the chromosome where the kinetochore forms are called the centromere.

The centromere is a region of the chromosome that is responsible for the proper segregation of the chromosomes during cell division. It is the location where the spindle fibers attach to the chromosome, allowing the chromosomes to be pulled apart and distributed to the daughter cells during mitosis or meiosis.

The kinetochore is a protein complex that forms at the centromere and acts as the "anchor" point for the spindle fibers to attach to the chromosomes.

The kinetochore is composed of many different proteins, including centromere-associated protein (CENP) and kinetochore-associated protein (KNL).

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The constricted region of the chromosome where the kinetochore forms are called the centromere.

The centromere is a region of the chromosome that is responsible for the proper segregation of the chromosomes during cell division. It is the location where the spindle fibers attach to the chromosome, allowing the chromosomes to be pulled apart and distributed to the daughter cells during mitosis or meiosis. The kinetochore is a protein complex that forms at the centromere and acts as the "anchor" point for the spindle fibers to attach to the chromosomes. The kinetochore is composed of many different proteins, including centromere-associated protein (CENP) and kinetochore-associated protein (KNL).

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