What conclusion did Mendel draw from his experiments with pea plants?.

Answers

Answer 1

Mendel concluded that traits were inherited in a predictable pattern, and that these traits could be passed on from one generation to the coming.

He also determined that each factory inherited two factors for each  particularity, one from each parent, and that each parent passed on one of that factor to the  seed. He also observed that the traits of the  seed were determined by the combination of the two factors. Mendel's  trials showed that all the traits of each generation of factory were determined by the combination of the two factors from each parent and that the traits of the  seed couldn't be the prognosticated from the traits of the parents. This is known as Mendel's law of the isolation and is the base for the  ultramodern understanding of genetics.

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Related Questions


Discussion
For this lab report, you will be discussing the results shown in the data table from the previous page. Some of the questions
you should address in the discusssion include the following:
1. What were the independent variable and dependent variable in this experiment? In this experiment, what is being
altered for each trial and what is being recorded for the results.
2. Explain why counting the number of oxygen bubbles produced is an acceptable method to determine the rate of
photosynthesis. What is the connection between the oxygen bubbles and photosynthesis?
3. Why do white and green light colors cause different rates of photosynthesis?
4. Explain any possible sources of error in the experiment.

Answers

Elodea exposure time is a constant that is unaffected by the distance from the light source, the rate of photosynthesis, or the dependent variable.

What was the dependent variable in the Elodea experiment?

The duration the elodea is exposed to the light is a constant and is independent of the elodea's proximity to the light source, the rate of photosynthesis, and the dependent variable.

the cause is the independent variable. The other factors in your study have no bearing on its value. The outcome is the dependent variable. Changes in the independent variable affect how much it is worth.

How many bubbles emerged while the light source was on was the dependent variable, which represented the rate of photosynthesis. Depending on the amount of light, photosynthesis will change.

Light intensity is a standalone variable (how close the light is). The number of oxygen bubbles released is the dependent variable (the rate of photosynthesis).

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regulates food passage from the stomach to the duodenum

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regulates food passage from the stomach to the duodenum The pyloric sphincter

The pyloric sphincter is a ring of muscle located at the bottom of the stomach that controls the passage of food from the stomach to the small intestine (duodenum). It acts as a valve, opening to allow small amounts of partially digested food (chyme) to pass through and then closing to prevent the backward flow of stomach contents. The pyloric sphincter is regulated by hormones, such as gastrin, and by the stretch of the stomach as it fills with food. The pyloric sphincter is a critical component of the digestive process, helping to regulate the release of food into the small intestine for further digestion and absorption.

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which of the following are the petals?

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The external, vividly coloured portion of a plant that is known as a petal.

Which of the following consists of petals?

The outside, vividly coloured portion of a plant is described as a petal. A red portion of a rose blossom serves as an illustration of a petal.

Typically, flower parts are arranged in four separate whorls: A flower's structure is composed of (1) an exterior calyx made up of sepals, (2) a corolla made up of petals, (3) an androecium, or group of stamens, and (4) a gynoecium, which is made up of pistils.

As in the case of the majority of flowers, regular (actinomorphic) rays extend from the centre. Peas and orchids are examples of zygomorphic, or irregular, pair-formed blooms. cup-shaped (hypanthium) narcissus small flower heads made up of clusters of either type, enclosed by a single ray petal, like in sunflowers.

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What are the three conclusions Mendel came up with?.

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The following are the three laws of inheritance that Mendel proposed: Separation Law. Principle of independent assortment

He was aware of the numerical patterns that were passed down from one generation to the next. Commonly stated are Mendel's laws of inheritance:

Method 1 of separation

There are two genes that make up every genetic characteristic. Only one paired gene is present in each gamete because the parental genes are randomly separated from the gametes. When the gametes unite after conception, babies thus acquire one genetic allele of her from each parent.

Secondly, the Law of Independent Assortment.

A trait's inheritance is independent of another trait's inheritance because the genes encoding those traits are sorted separately. 3. The Law of Governance

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Which of the following list of words correctly shows the layers of Earth's interior in correct order from outside to the Earth's center?

a. Lithosphere, Asthenosphere, Crust, Outer Core, Inner Core
b. Crust, Asthenosphere, Mesosphere, Lithosphere
c. Lithosphere, Asthenosphere, Lower Mantle, Outer Core, Inner Core
d. Crust, Upper Mantle, Inner Core, Outer Core
e. Biosphere, Troposphere, Lithosphere, Hydrosphere
f. Hydrosphere, Atmosphere, Lithosphere, Biosphere

Answers

The correct order of layers of Earth's interior from outside to the Earth's center is:

a. Lithosphere, Asthenosphere, Crust, Outer Core, Inner Core.

Option A is the correct answer.

What is  Earth's interior  layers?

This refers to the layers that make up the earth namely: the lithosphere, asthenosphere, lower mantle (also known as mesospheric mantle), outer core, and inner core The core makes ups 15 percent of the Earth's volume, and the mantle takes 84 percent. The remaining 1 percent is made up of the crust.

Earth's layers can be positioned according to chemical composition ( that is what they are made of) or mechanical properties (that is rock strength and elasticity).

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What is the genotype of green seed color?.

Answers

Answer: I believe that YY is the homozygous dominant genotype of green seed color.

Explanation: This is because a YY genotype can produce gametes only with Y alleles.

I hope this helps!

common skin condition that occurs when oil and dead skin cells clog the skin's pores; also known as simply acne, is ?

Answers

Acne vulgaris, also simply known as acne, is a very common skin disease that occurs when the oil and dead skin cells clog the skin's pores.

Acne vulgaris, simply known as acne, pimple or zits, is an inflammatory disease which involves the the formation of pustules, nodules, cysts papules, etc. caused by the obstruction as well as the inflammation of the pilosebaceous units, which are the hair follicles and their accompanying sebaceous gland. Acne mostly develops on the face and most commonly affects adolescents.

Treatment given for acne depends on a number of factors like the patient's sex and age, the extent and the severity of the acne, and also the response to previous treatments.

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What is the surgical procedure for removing the synovial membrane from the joint?

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A synovectomy is a surgical procedure used to treat synovitis and other conditions affecting the synovium,

which is a thin membrane that lines the inside of certain joints (referred to as "synovial joints") such as your knee, shoulder, or elbow. A large portion of the synovium is removed during a synovectomy procedure.

A number of orthopedic injuries and conditions cause painful and swollen joints, but in people with inflammatory arthritis, the immediate cause of the swelling and pain is usually inflammation and excessive synovium growth.

"A normal synovium produces synovial fluid that helps lubricate the joint," explains Mark P. Figgie, MD, Chief Emeritus of the Surgical Arthritis Service at HSS. "When the synovium becomes too bulky, it produces too much synovial fluid, which contains an enzyme that 'eats away' at the articular cartilage on the joint surface in large quantities."

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What is the importance of studying the stages of cell cycle in cancer medicine?.

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The following list outlines the significance of understanding the cell cycle stages in cancer treatment.

Many anti-cancer medications work by preventing one or more cell cycle stages. We shall investigate the cell cycle in further detail in order to comprehend the flaws seen in cancer cells and the methods of action of those anti-cancer medications aimed to stop cell division.

The study of the cell cycle encompasses everything from the growth and development of these organisms to cancer and aging humans to the potential for disease and injury repair through stem cell therapies, and has a major impact on the biology, health, and biology of all species.

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Which type of epithelium makes up the air sacs of the lungs, inner lining of the heart and blood vessels, and serous membranes of the viscera?
a. Pseudostratified columnar
b. Simple squamous
c. Simple columnar
d. Simple cuboidal

Answers

The type of epithelium that makes up the air sacs of the lungs, the inner lining of the heart and blood vessels, and the serous membranes of the viscera is Simple squamous epithelium. Here option B is the correct answer.

Simple squamous epithelium is composed of a single layer of flattened cells that are arranged in a continuous sheet.

This type of epithelium is found in areas where rapid diffusion or filtration occurs, such as in the air sacs of the lungs, where oxygen and carbon dioxide are exchanged, and in the serous membranes that line the organs of the body, where they help to reduce friction.

The simple squamous epithelium also lines the blood vessels and heart, where it helps to reduce blood viscosity and protect the vessels from being damaged by the high pressure and flow of blood.

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Are clams both sexes?.

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Yes, the clams are both sexes, i.e., they are hermaphrodites.

Clams can be either male or female since they are hermaphrodites. They engage in sequential sexuality, so if one of them exhibits male behaviour during a season, the female will do likewise during the following season. Depending on the time of year, the person who plays the role of the female releases between five and eight million ovules into the water.

On the other hand, the male produces 2.6 billion spermatozoa, which combine with the female's spread out cells to generate the eggs. Later, mobile larvae emerge from the eggs, joining the plankton and spending several weeks being exposed to sea currents.

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the pattern of movement or change that begins at conception and continues through the human life span is known as

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Definition of development. the movement or change pattern that begins at conception and continues throughout a human lifetime.

According to John W., "growth" "begins at birth and ends with death" (Santrock, 2015). According to a life-span perspective, ageing is multifaceted, occurs over a variety of dimensions during the working years, and is a result of a number of interconnected factors that are both internal to the individual and external to them. Development is defined as the movement or change pattern that begins at conception and continues throughout a person's lifetime. Development is defined as a pattern of motion or transformation that begins with conception and continues throughout a human lifetime.

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Which answer below describes the energy transformation shown in this diagram?

Question 6 options:

Radiant to chemical


Mechanical to Radiant


Heat to chemical


Chemical to Radiant

Answers

The energy transformation in the given diagram is chemical to radiant energy. In this chemical energy from the electric circuit is responsible for glowing the bulb and conversion to radiant energy. Thus, the correct option is D.

What is Energy transformation?

Energy transformation is also known as energy conversion. It is the process of changing energy from one form to another form. Energy is a quantity which provides the capacity to perform work or moving, or it provides heat energy.

Radiant energy is the physical energy which results from the electromagnetic radiation, which is usually observed as it radiates from a source into the surrounding environment. In the circuit, chemical energy is present due to flow of electrons or charged particles and it is converted into radiant energy in the bulb.

Therefore, the correct option is D.

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Which statement below is true regarding DNA
or RNA?

A)There are uracil nitrogen bases in DNA.

B)A DNA molecule can include the nitrogen bases of
A, U, G. and C.

C)DNA can be found both inside and outside the
nucleus.

D)A RNA molecule can include the nitrogen bases of
A, U, G. and C.

Answers

Answer:

B)A DNA molecule can include the nitrogen bases of A, U, G. and C.

Explanation:

DNA, or deoxyribonucleic acid, is a double-stranded molecule that contains the genetic instructions for the development and function of all living organisms. The structure of DNA is made up of two strands of nucleotides, which are the building blocks of DNA. Each nucleotide is composed of a sugar molecule, a phosphate group, and one of four nitrogenous bases: adenine (A), thymine (T), guanine (G), and cytosine (C). These four bases are the "letters" that spell out the genetic code in DNA.

RNA, or ribonucleic acid, is a single-stranded molecule that plays a central role in the biochemistry of cells, serving as a template for the synthesis of proteins. RNA is very similar to DNA, but there is one key difference: RNA contains the nitrogenous base uracil (U) instead of thymine (T). So the bases are A, U, G, and C.

So statement B is true that DNA molecules can include the nitrogen bases of A, T, G, and C, and statement D is false as RNA molecules can include the nitrogen bases of A, U, G, and C.

those that carry impulses from the cns out to the muscles and glands?

Answers

The CNS receives impulses from peripheral sense receptors through afferent, or sensory, neurons. They often have relatively short axons and lengthy dendrites. Efferent, or motor, neurons in the central nervous system transmit impulses to effector organs including muscles and glands.


Three fundamental types of neurons make up the general components of the neural circuitry: Afferent neurons, also known as primary sensory neurons, transport impulses from receptor cells or free nerve terminals into the central nervous system. To effectors like muscles or glands, motor or efferent neurons transport signals from the central nervous system. Interneurons take in information from sensory neurons, process it, and then communicate with motor neurons. Skin and its derivatives, as well as voluntary muscles, are related to somatic fibers. The involuntary muscles and glands of the organ systems are connected to visceral fibers.


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a true‑breeding black rabbit is crossed with a true‑breeding white rabbit to produce an f1 generation of 16 individuals. if the black color trait is dominant, which of the outcomes represents the expected phenotype of an f1 generation cross?

Answers

A true‑breeding black rabbit is crossed with a true‑breeding white rabbit to produce an f1 generation of 16 individuals.

In which the black colour trait is dominant, So, the phenotype of F1 generation of cross will be as follows-  

Let dominant black allele be = B

Let recessive white allele be = b

True breeding rabbit would refer that they are homozygous in their genotype.  Then true breeding black rabbit will be BB and true breeding white rabbit will be bb.

BB X bb :

   B     B

b Bb  Bb

b  Bb  Bb

All the offspring are heterozygous with one dominant B allele.

So ,the phenotype black colour will be produced and all 16 individuals of F1 generation will be black in colour.

16 black rabbits, 0 white rabbits, 0 grey rabbits.

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USGS maps identify potential ground-shaking hazards in 2017 from both human-induced and natural earthquakes in the central and eastern U.S., known as the CEUS. The overall seismic hazard for 2017 is lower than in the 2016 forecast, but despite this decrease, there is still a significant likelihood for damaging ground shaking in the CEUS in the year ahead. Despite the decrease in the overall number of earthquakes in 2016, Oklahoma experienced the largest earthquake ever recorded in the state as well as the greatest number of large earthquakes compared to any prior year. The chance of damage from induced earthquakes will continue to fluctuate depending on policy and industry decisions What conclusion would you draw based on this text? Responses A The number of induced earthquakes could be decreased by modifying industrial activities.The number of induced earthquakes could be decreased by modifying industrial activities. B Earthquakes are only caused by the motion of tectonic plates.Earthquakes are only caused by the motion of tectonic plates. C Human-induced earthquakes aren't strong enough to cause significant damage.Human-induced earthquakes aren't strong enough to cause significant damage. D The number of induced earthquakes will continue to decrease regardless of human activities.

Answers

Answer:

it would be D

Explanation:

Answer:

A. The number of induced earthquakes could be decreased by modifying industrial activities.

Explanation:

I'm not sure, tell me if I got it wrong:)

what happens when plants transpire too much water?

Answers

when plants transpire too much water then plants wilt and die.

Wilting and defoliation are the earliest warning symptoms of overwatering in plants. Wilting is the overall drooping of the plant, whereas defoliation is the yellowing, withering, and falling off of the leaves. Many inexperienced gardeners blame the problem on a lack of water and make matters worse by adding more. When in doubt, examine the dirt. If it's dry, you should add water; if it's damp or moist, you should wait. Molds and several illnesses flourish in moist conditions. Phytium, Phytophthora, and Crown Rot are just a few of the illnesses that are drawn to excessive dampness. It is exceedingly challenging to get rid of these illnesses and molds once they have established themselves.

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This pressure system brings dry, clear skies.high pressurelow pressurestationary pressurecold pressure

Answers

High-pressure systems are often linked with light winds at the surface and sinking in the lower troposphere.

Subsidence, in general, will dry out an air mass through adiabatic or compressional heating. High pressure areas are known as anticyclones, while low pressure areas are known as cyclones or depressions. Each brings with it its own set of weather patterns. Anticyclones often produce stable, fine weather with clear skies, whereas depressions produce cloudier, wetter, windier conditions. As a result, high pressure usually means clear sky. A low pressure system has lower pressure in its center than in the surroundings. Winds blow towards low pressure, causing air to ascend in the atmosphere where they collide. The water vapor in the air condenses as it rises.

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What's the difference between natural selection and genetic engineering?.

Answers

Answer:

Conventional breeding relies primarily on selection, using natural processes of sexual and asexual reproduction. Genetic engineering utilizes a process of insertion of genetic material, via a gene gun or other direct gene introduction methods, or by a specially designed bacterial truck, which does not occur in nature.

13.5- meter ladder leans against a brick wall find the distance D the ladder goes up the water the ladder makes an angle of 38 angle with the horizontal

Answers

The ladder goes up the water the ladder makes an angle of 38 with the horizontal will be 8.31 meters.

What is a right-angle triangle?

It's a form of a triangle with one 90-degree angle that follows Pythagoras' theorem and can be solved using the trigonometry function.

Trigonometric functions examine the interaction between the dimensions and angles of a triangular form.

13.5 meters ladder leans against a brick wall. And the ladder makes an angle of 38° angles with the horizontal.

The ladder goes up the water ladder will be given as,

sin 38° = D / 13.5

D = 13.50 × sin 38°

D = 8.31 meters

The ladder goes up the water the ladder will be 8.31 meters.

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hormones are released into the _______ space surrounding endocrine cells and then diffuse into the bloodstream.

Answers

hormones are released into the extracellular space surrounding endocrine cells and then diffuse into the bloodstream. from their it is move forward to all parts of the body.

By transferring information to your organs, skin, muscles, and other apkins through the blood, hormones are substances that coordinate numerous fleshly operations. Your body receives instructions from these signals on what to do and when. For both your health and survival, hormones are pivotal. multitudinous natural functions are impacted and managed by hormones, which act as chemical couriers. constantly, a series of hormone responses take place throughout a physiological process. A hormone can only affect a portion of your body if it" fits" — that is, if the cells in the target towel have receptors that can take in the hormone's communication. Consider a hormone as a cinch, and the cells of the target towel — similar as an organ or a fat towel — as specialised keys.

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A student reads about a sexually reproducing population that has high genetic variability. Which statement best explains how this characteristic affects
survival of the population if it is exposed to a new disease?

Answers

High genetic variability increases the chances that some members of the population will possess genetic traits that make them more resistant to the new disease.

What is genetic variability?

Genetic variability is the amount of diversity found within a species or population due to genetic differences. It is caused by changes in the genetic code, or DNA, that can occur through mutation, recombination, or other genetic processes. This variability can result in different physical characteristics, behaviors, and susceptibilities to disease. Genetic variability is important for maintaining the health and survival of a species or population, as it increases the chances of adaptation to changing environmental conditions. It also provides the opportunity for the population to evolve to become more optimized for its habitat and maximize its fitness.

This gives the population a better chance of surviving the disease, as some individuals will survive and pass on their more resistant traits to the next generation.

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explain what an inherited gene (characteristic/trait) does in reference to the frequency of the inherited gene in a population over time?

Answers

An inherited gene in reference to the frequency of the inherited gene in a population over time will lead to an increase.

What is an Inherited gene?

These carry the information that determines your traits from the parents to the offspring and is responsible for the creation of unique individuals.

These changes in relative allele frequency, called genetic drift, can either increase or decrease and in a situation where the inherited gene is more frequent then the traits will be common in that population.

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What is the purpose of meiosis and why is it so important to produce variety in the daughter cells that are produced by meiosis?.

Answers

On the other hand, meiosis serves a single function in the human body that of producing gametes, also known as sperm and eggs or sexually active cells.

Making daughter cells with exactly half as many chromosomes as the original cell is its main objective. New cells formed during mitotic cell division are genetically identical to their parent cells. Meiosis is in charge of raising the population's genetic diversity. Each diploid cell can produce up to 2n distinct chromosomal arrangements during meiosis, where 'n' is the haploid number.

Chromosome reduction, or meiosis, is the process by which eukaryotic cells (plants, animals, and fungi) produce the gametes (or sex cells) required for sexual reproduction. A diploid (double pair of chromosomes) becomes a monozygotic during meiosis.

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at what age will the five bones of the sacrum start fusing together

Answers

Five fused vertebrae with the numbers s1 through s5 make up the sacrum. In children these five vertebrae are distinct. They start fusing in late adolescence and they're often entirely fused by the time they're 30.

Between the two pelvic wings in the upper, rear region of the pelvic cavity is where the sacrum is located. Together, the five bones form joints. The sacroiliac joints, which are L-shaped, are where the two extensions on either side of the sacrum—known as the alae (wings)—articulate with the ilium. Through the sacral and coccygeal cornua, the lower part of the sacrum is connected to the coccyx (tailbone), and its higher portion is connected to the last lumbar vertebra (L5). The three surfaces that make up the sacrum are designed to fit the nearby pelvic tissues. It's concave all around (curved upon itself). As the sacral promontory internally, the base of the sacrum, which is its broadest and uppermost portion, is inclined forward.

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what type of exercise characterized by the force working against an active muscle while it is lengthening under load?

Answers

The most popular form of movement used to train muscles against resistance is isotonic exercise.

An isotonic movement, such as a biceps curl or leg curl, is one in which your muscle shortens or contracts against resistance. Characteristics of isotonic exercise In the worst-case scenario, you can even utilize your own body weight as resistance by performing pushups and pullups.

When you work out with isotonic resistance, your muscles must exert pressure against weight. Your muscles and strength will grow as a result of resistance. It is one of the finest methods for building muscle. Muscles shorten when they contract concentrically, but they lengthen when they contract eccentrically.

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What do you mean by body mass index explain the procedure of calculation of BMI class 11?.

Answers

Body mass index (BMI) is a medical screening tool that measures your height-to-weight ratio to estimate the amount of body fat. The healthcare provider calculates her BMI by dividing her weight in kilograms (kg) by her height in meters (m2) squared.

Body mass index (BMI) is a person's weight in kilograms (or pounds) divided by her height in meters (or feet) squared. A high BMI can indicate a high body fat percentage. BMI screens for weight classes that may lead to health problems, but does not diagnose a person's body fat or health status.

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which term describes the multicellular haploid form of a protist that shows alternation of generations?

Answers

The term that describes the multicellular haploid form of a protist that shows alternation of generations is gametophyte.

Gametophytes are the haploid stage in the life cycle of a factory or alga. It's characterized by the  product of gametes, or reproductive cells. Gametophytes  suffer sexual  reduplication, where two gametes fuse to form a diploid zygote. The zygote undergoes meiosis to form haploid spores, which  also develop into a new gametophyte, completing the alternation of generations.

This is a process that's common in  numerous species of  shops, algae, and certain protists. In some species, the gametophyte and the sporophyte( the diploid stage) are both multicellular and differ markedly in appearance. In others, the gametophyte is reduced and unicellular, and the sporophyte is dominant. In either case, the alternation of generations is a necessary part of the life cycle of the organism.

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Are there 4 chromatids in a chromosome?.

Answers

There are 4 chromatids in a chromosome. False. There are two chromatids in a chromosome.

Chromosomes are nucleoprotein structures in the form of fine threads that are located in the cell nucleus and contain coiled DNA chains. Chromosomes function to absorb colors and carry traits that can be passed on to offspring such as skin color, eye color, and height.

Chromosomes consist of two chromatids, each of which is composed of chromatin threads. Chromatids are one of the two arms of the replicated chromosome that are formed after the S phase of cell division. The arms of the chromosomes have spiral bands called chromonema. The function of the chromatids is as a bond that determines the chromatin group.

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