Monohybrid Mice, i need help

Monohybrid Mice, I Need Help
Monohybrid Mice, I Need Help

Answers

Answer 1

Answer/Explanation:

See attached images showing the crosses on a Punnett square as well as the genotype and phenotypes of each cross.

I. Cross between a female Gg with a male gg (GG X gg):

1. Probability of getting gray offspring (Gg) = 2/4 (¼+ ¼) = ½  

2. Probability of getting albino offspring (gg) = 2/4 (¼+ ¼) = ½

3. There are 2 possible genotypes among the offspring, which are Gg and gg.

4. There are 2 possible phenotypes among the offspring, which are gray and albino coat color.

5. Probability of getting heterozygous offspring (i.e. Gg) = 2/4 = ½

6. Probability of getting homozygous offspring (i.e. GG or gg) = Probability of getting GG + Probability of getting gg = ½ + 0 = ½  

7. The color of the female that was crossed (i.e. Gg), is gray color. The allele for gray coat color (G) is dominant over the allele for albino coat color (g).

8. The color of the male (gg) that was crossed is albino. The recessive allele (g) for albino coat color, in its homozygous state would express itself in the absence of the dominant G allele for gray color.

II. Cross between homozygous gray female with a heterozygous male (GG X Gg):

1. Probability of getting gray offspring (GG or Gg) = 4/4 (i.e. ¼+ ¼ + ¼ + ¼ ) = 1  

2. Probability of getting albino offspring (gg) = 0  

3. There are only 2 possible genotypes among the offspring, which are GG and Gg.

4. There is only 1 possible phenotype among the offspring, which is gray coat color.

5. Probability of getting heterozygous offspring (i.e. Gg) = 2/4 (i.e. ¼+ ¼ ) = ½

6. Probability of getting homozygous offspring (i.e. GG or gg) = Probability of getting GG + Probability of getting gg = 0 + ½  = ½  

7. The genotype of the female that was crossed is GG, given that the female is homozygous gray.

8. The male crossed is a heterozygous male (Gg), the male is gray.

III. Cross between a gray female, whose father was albino, with a heterozygous male (Gg X Gg):

We can make a good guess of the genotype of the female, given that gray color is dominant over albino, and the father was albino (gg). The father can only contribute sperm having only (g) allele, while the mother must contribute only a (G) allele to give a gray offspring. The gray female is definitely heterogyzous female i.e Gg

1. Probability of getting gray offspring (Gg or GG) =  ¾ (½ + ¼)  

2. Probability of getting albino offspring (gg) = ¼

3. There are 3 possible genotypes among the offspring, which are GG, Gg, and gg.

4. There are 2 possible phenotypes among the offspring, which are gray and albino coat color.

5. Probability of getting heterozygous offspring (i.e. Gg) = 2/4 = ½  

6. Probability of getting homozygous offspring (i.e. GG or gg) = Probability of getting GG + Probability of getting gg = ¼ + ¼ = ½  

7. The genotype of the female is Gg. We know this because we were given that it is gray in color, and gray is dominant over albino. Also, given that the father was albino (gg), a (g) allele can only be contributed by the father to combine with the dominant (G) allele to give us a female that has heterozygous gray coat color (Gg).

8. The genotype of the male is Gg. We know this because we were given that it was a heterozygous male. If an organism is heterozygous, it has different alleles controlling that trait.

IV. Cross between an albino female, whose father was gray, with a gray male, whose mother was albino (gg X Gg):

The albino female’s genotype is gg, because the g allele is recessive. The gray male’s genotype, whose mother was albino (gg) is definitely Gg, because gray is dominant, and to get a gray offspring, a G allele from the mother of the male must combine with the g allele that the albino father can only contribute i.e. Gg or GG from mother X gg from father = Gg (the gray male offspring).

1. Probability of getting gray offspring =  ¼ + ¼ = ½  

2. Probability of getting albino offspring (gg) = ¼ + ¼ = ½  

3. There are 2 possible genotypes among the offspring, which are Gg, and gg.

4. There are 2 possible phenotypes among the offspring, which are gray and albino coat color.

5. Probability of getting heterozygous offspring (i.e. Gg) = ¼ + ¼  = ½  

6. Probability of getting homozygous offspring (i.e. gg or GG) = ½ + 0 = ½  

7. The genotype of the gray father of the albino female (gg) is Gg. Of the two possible genotypes of the gray father (i.e. GG or Gg), Gg is the most likely genotype to contribute the recessive g allele that would pair up with another g allele from the mother to give an albino female (gg), i.e. Gg (father) X Gg (Mother) or Gg (Father) X gg (Mother) = gg (albino female)

Monohybrid Mice, I Need Help
Monohybrid Mice, I Need Help
Answer 2
Final answer:

A monohybrid cross is a genetic cross that considers only one trait. Results from these crosses led to the concept of dominant and recessive traits and Mendel's Law of Segregation. Punnett squares visually present the likely outcomes of these crosses.

Explanation:

A monohybrid cross involves the mating of individuals who have two different alleles for a single trait. For example, Mendel ran several monohybrid crosses using pea plants. The trait being examined was the color of the pea—the parent plants had either green or yellow peas. After breeding a purebred yellow pea plant with a purebred green pea plant, all offspring were yellow, showing that yellow is the dominant trait and green the recessive.

Monohybrid crosses are useful tools in predicting the outcome of genetic crosses because they follow Mendel's Law of Segregation. According to this law, during the formation of reproductive cells, pairs of genetic traits separate, and offspring receive one factor from each parent.

A Punnett square is a tool that provides a visual representation of the possible combinations of genetic traits the offspring could inherit. For monohybrid crosses, a Punnett square will give a 3:1 ratio, representing the likelihood of the offspring expressing the dominant trait over the recessive trait, given that both parents are heterozygous.

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Related Questions

The first line of defense involves which structure(s)?
O T-cells
O skin
O blood
O B-cells

Answers

Answer:

Skin

Explanation:

What muscle tissue is found in the heart

Answers

Cardiac muscle is found in the heart

IN YOUR OWN WORDS - If a plant is heterozygous for a trait (Bb), what is the probability
that a gamete of this plant will be dominant (B)? Recessive(b)?* m.

Answers

Answer:

Probability that the gamete will be dominant - 1/2 or 50%

Probability that the gamete will be recessive - 1/2 or 50%

Explanation:

A plant that is heterozygous for a trait will contain a combination of two different alleles i.e the dominant and recessive alleles. Hence, a heterozygous plant will have a genotype: Bb. 'B' is the dominant allele while 'b' is the recessive allele.

Mendel discovered in his experiments, that an organism receives two forms of a gene from each parent. The forms are called ALLELES.

Mendel further proposed in his LAW OF SEGREGATION, that the alleles of a gene will separate into gametes during meiosis or gamete formation. Each gamete will contain only one of the two alleles.

Therefore, based on Mendel's principle of Segregation, an heterozygous plant with genotype: Bb will separate into gametes containing B and b alleles.

Hence, 1/2 of the dominant allele (B) will be present in the gamete while 1/2 of the recessive allele (b) will be present in the gamete.

What is an example of people changing the way water flows? *

Answers

Answer:

waterway has its own particular characteristics related to water flow, velocity, and quantity.

Altered water ways or hydrology defines the variation in such characteristics including water flow. Water flow naturally depends on the climate and landscape ( valleys, mountains and flood plains).

There are several examples of people changing the way water flows such as construction of a dam or weir and the addition of a culvert or pipe. Dams are use to control the flow of water and  through culvert or pipe, the flow or direction can be changed.

Changes in vegetation and landscape by people also affects the flow of water as well.

An example of humans changing water flow includes building dams and levees to control river systems for flood prevention, irrigation, and power generation. This has both positive and negative impacts on local ecosystems, agriculture, and regional water cycles.

An example of people changing the way water flows is through the construction of dams and levees. Humans have long sought to control the flow of water to prevent flooding, provide water for irrigation, and generate hydroelectric power. By building structures like dams, we can store large amounts of water, thus controlling its release into river systems. Similarly, levees are built alongside rivers to prevent them from overflowing their banks, protecting adjacent land from flooding.

However, while these engineering feats can offer protection and resources, they can also have catastrophic effects when overwhelmed by massive floods. Diverting water also changes regional ecosystems, sometimes transforming wetlands into deserts and affecting the natural water cycle. For example, the diversion of water from the Owens Valley for the city of Los Angeles drastically reduced agricultural productivity in the area. Moreover, the construction of the Hetch-Hetchy Dam in Yosemite National Park led to the submersion of a beautiful valley, prompting discussions about dam removal and ecosystem restoration.

Arrange these objects below from the one that allows the most light to pass through it (on top) to the object that allows the least light to pass through it (on the bottom)
(5 points)

Earths atmosphere
a white t-shirt
a glass window
mirror
a tinted car window

Answers

earths atmosphere
glass window
tinted car window
mirror
t shirt

Which system enables the body
to move, moves food through the
digestive system, and keeps the
heart beating?

Answers

Please see the complete questions below.

Which system enables the body

to move, moves food through the

digestive system, and keeps the

heart beating?

A. Skeletal

B. Muscular

C. Digestive

D. Nervous

Answer:

The answer is Muscular (Option B)

Explanation:

To start with, the muscular system in the human body specifically serves the purpose of enabling movement because it is made up of various types of muscle which plays special roles in movement.

Asides, enabling movement, the muscular system also controls digestion, breathing and heartbeat because there are muscles situated in the stomach, and heart while those in the neck, abdomen and between the ribs  (intercostal muscles) aid breathing.

Final answer:

The muscular system, inclusive of skeletal, smooth, and cardiac muscles, allows for body movements, food movement through the digestive tract, and the heartbeat. The cardiovascular system works in concert with the muscular system to circulate blood and distribute nutrients throughout the body, with the heart acting as the pump.

Explanation:

The system that enables the body to move, moves food through the digestive system, and keeps the heart beating is the muscular system. The muscular system includes not only the skeletal muscles that enable voluntary movements but also smooth muscles and the cardiac muscle of the heart. Specifically, the smooth muscles in the walls of our digestive organs contract rhythmically in a process called peristalsis to move food along the digestive tract. Simultaneously, the heart muscle or myocardium contracts to pump blood throughout the body via the cardiovascular system. This interaction ensures that digested nutrients are absorbed into the bloodstream and delivered to all body cells, while waste products are removed efficiently.

The cardiovascular system is integral to this process as well; it circulates blood throughout the body, providing oxygen and nutrients while removing waste products. The heart, the pump of the system, contracts to propel blood through a network of blood vessels, sustaining the vital functions of the body, including those of the muscular system.

30 points who answers . Seasons are caused primarily by Earth's.
clockwise rotation
elliptical orbit
distance from the sun
tilted axis

Answers

Answer:

A, clockwise rotation.

Explanation:

Answer:

earths tilted axis

Explanation:

The test that is performed to identify bacteria as well as effective antibiotic therapy is a

Answers

Answer: Susceptibility testing

Explanation:

Answer:

antimicrobial susceptibility testing

Explanation:

Testing the effectiveness of antimicrobial drugs against specific organisms is important in identifying their spectrum of activity and the therapeutic dosage. This type of test, generally described as antimicrobial susceptibility testing (AST), is commonly performed in a clinical laboratory.

y time y to the power of 2

Answers

Answer:

y to the 3rd

Explanation:

Answer:

y^3

Explanation:

y*y*y=y^3

4. Deduce how two genes for different traits that are on the same chromosome can fail
to be inherited together.

Answers

Answer:

If the genes are far apart on the same chromosome, they can fail to be inherited together.

Because of recombination that happens during prophase 1 of meiosis usually
This is when chromosomes are lined up and parts of them switch around which leads to greater genetic variability

Shelby performed an investigation in which she monitored her heart rate while she ran on a treadmill. She used a heart rate monitor before she started running and determined that her resting heart rate was 62 beats per minute. After 10 minutes of running, the heart rate monitor showed that Shelby's heart rate was 141 beats per minute. What was Shelby's blood delivering to her cells at an increased rate as her heart rate increased? ATP carbon dioxide oxygen lactic acid

Answers

Answer:

Oxygen

Explanation:

Final answer:

Shelby's increased heart rate during exercise heightened the delivery of oxygen to her cells to meet increased metabolic demand and enabled the removal of carbon dioxide and lactic acid.

Explanation:

During exercise, Shelby's increased heart rate was responsible for delivering oxygen to her cells at an increased rate to meet the higher metabolic demands. As her physical activity intensified, her cardiovascular system adapted by increasing cardiac output (heart rate x stroke volume), which in turn elevated the delivery of oxygen and nutrients to working muscles and removed carbon dioxide and other metabolic waste products like lactic acid. An increased heart rate during exercise indicates a higher demand for oxygen-rich blood throughout the body that can be used for energy production in the form of adenosine triphosphate (ATP).

Carbon is removed from the atmosphere by producers (e.g. algae) who use it in ____. By consuming plant matter, animals obtain _____ compounds

Answers

Answer:

photosynthesiscarbon

Explanation:

Final answer:

Carbon is removed from the atmosphere by producers, such as algae, who use it in carbon compounds. By consuming plant matter, animals obtain organic compounds.

Explanation:

Carbon is removed from the atmosphere by producers (e.g., algae and plants) through a process called photosynthesis. In photosynthesis, carbon dioxide (CO2) from the atmosphere is used to create organic compounds, primarily glucose (C6H12O6), which serves as an energy source and carbon reservoir for the plant.

When animals consume plant matter, they obtain organic compounds, including carbohydrates, proteins, and fats, which contain carbon. Animals then use these organic compounds as sources of energy and building blocks for their own growth and metabolism.Carbon is removed from the atmosphere by producers, such as algae, who use it in carbon compounds. By consuming plant matter, animals obtain organic compounds.

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How are organism in the domains bacteria and archaea similar
A. They contain protists
B. They are unicellular
C. They contain nuclei
D. They are eukaryotes

Answers

Answer:

unicellular

Explanation:

In mice, fur color is a genetically determined trait. To observe the effects of natural selection on fur color in mice, scientists set up six enclosures with either light- or dark-colored sand on the ground. The enclosures were isolated from all ground predators and wild mice but accessible to predatory birds. The scientists placed equal numbers of light- and dark-colored mice into each enclosure. A total of 500 mice were used in the experiment. After several generations, the scientists sampled the mice and found that populations in the light sand enclosures were, on average, lighter in color than the original population, while those in the dark sand enclosures were, on average, darker in color than the mice in the original population.


a) describe the way the scientists will determine the evolutionary fitness of the mice in the experiment.


b) Identify the independent variable in the scientists’ experiment.


c) State the null hypothesis


d) The scientists claim that the changes in the frequency of fur color were the result of natural selection. Justify their prediction.

Answers

The correct answers to these questions are the following:

1) By analyzing enclosures with different colors on the ground that can either favour or hinder the success of the populations.

2) Independent variable: number of generations.

3) Null hypothesis: different colors have no effect on the fitness of the populations.

4) It is a consequence of directional selection. Directional selection is a type of natural selection where the frequency of a trait is modified to benefit a phenotype in response to a change in the environmental conditions.

Final answer:

The scientists can assess evolutionary fitness by tracking the reproductive success of mice, with the color of the sand as the independent variable and the null hypothesis being that sand color has no effect on fur color distribution. Changes in fur color frequencies are justified as a result of natural selection due to selective predation pressures, leading to an increase in the frequency of fur color that offers better camouflage in the given environment.

Explanation:

In an experiment to observe evolutionary fitness and natural selection on fur color in mice, scientists could determine the evolutionary fitness of a population by evaluating which coloration confers a survival advantage that results in greater reproductive success in the given environment. This could be done by counting the offspring of light and dark-colored mice in each enclosure over several generations.

The independent variable in the scientists’ experiment is the color of the sand in the enclosures, which corresponds to the environment in which the mice populations live. This environmental factor would influence the natural selection process as the mice with fur color that blends in more effectively with the sand color would likely have a higher survival rate from predation.

The null hypothesis for this experiment would be that the color of the sand has no effect on the fur color distribution in the mouse populations after several generations. This null hypothesis assumes that the frequencies of light and dark fur coloration in the mice populations will remain unchanged despite the differences in sand color in their respective enclosures.

Justifying the prediction that changes in the frequency of fur color are the result of natural selection, one could argue that since the enclosures are exposed to predatory birds, mice that match the sand color are less likely to be seen and eaten by these predators. Over time, this selection pressure would result in an increase in the frequency of fur color that best camouflages with the environment. This is similar to the known case of the peppered moth and other examples where population genetics shift towards more successful phenotypes due to selection pressures.

Which nutrient molecule cannot be used in the oxidative pathways of cellular respiration?

protein

glucose

cholesterol

fatty acids

Answers

The answer is cholesterol

What is the function of the part that is labeled A?

A. Moisten and filters incoming air
B. Prevents food and liquid from entering
C. Vibrates and produces sound
D. Exchanges oxygen and carbon dioxide

Answers

A. Moisten and filters incoming air

Answer:

A

Explanation:

its entering through the nose which is filtering incoming air

13+points PLZ help
Select all the correct answers. What’s wrong with this ecological pyramid? *
A)the Sun has an arrow leading to decomposers.
B)Secondary consumers should be at the bottom of the pyramid.
C)The Sun should be at the bottom of the pyramid.

Answers

Answer:

The sun has an arrow leading to the decomposer, the sun should be at the bottom of the pyramid

Explanation:

Answer:

Well, The best answer will be is A. The Sun has an arrow leading to decomposers. Because, The sun cannot be decomposed by decomposer so the arrow from the sun leading towards the decomposer is not right.

Good Luck!~

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If you were explaining olfaction to a friend, which of the following details would you not include? (1.0 points)
A)As air enters the nasal cavity, chemicals in the air bind to and activate nervous system receptors on the nasal cilia.
B)First-order neurons connected to the epithelial cells carry olfactory signals from the nasal cavity through openings in the ethmoid bone, and then to the olfactory bulbs of the brain.
C)Olfactory signals move from olfactory bulbs along the olfactory nerves to the olfactory area of the cerebral cortex.
D)Signals move from the olfactory area of the cerebral cortex into the olfactory bulbs of the nasal passage.

Answers

Answer:

D

Explanation:

Did the research. D is incorrect because the olfactory signals move from the olfactory bulbs to the cerebral cortex. Not the other way around.

Details A, B, and C accurately describe the olfactory process, but detail D is incorrect because olfactory signals do not move from the cerebral cortex back to the olfactory bulbs.

The incorrect option is 'D'.

If you were explaining olfaction to a friend, the detail that you would not include is: Signals move from the olfactory area of the cerebral cortex into the olfactory bulbs of the nasal passage (Option D). This statement is not accurate because in the olfactory process, signals do not travel back from the cortex to the olfactory bulbs. Instead, the accurate process involves several steps:

Chemicals in the air bind to and activate nervous system receptors on the nasal cilia as air enters the nasal cavity.First-order neurons carry olfactory signals from the nasal cavity through openings in the ethmoid bone, then to the olfactory bulbs of the brain.Olfactory signals then move from olfactory bulbs along the olfactory nerves to the olfactory area of the cerebral cortex.

The olfactory receptor neurons, located in the olfactory epithelium, play an essential role in converting airborne molecules that we inhale into signals that our brain can interpret as smells. These neurons contain cilia with receptors that are G protein-coupled, producing a graded membrane potential in response to binding with odorant molecules.

In Noombats, yellow bellies (Y) are dominant er green bellies (y). Complete a Punnett Square to show a cross between a purebred yellow-bellied (homozygous) noombat and a noombat that is hybrid (heterozygous) for belly color. What is the probability that the parents will have yellow-bellied offspring? 25% 50% 75% 100%

Answers

Answer:

Option D, 100 %

Explanation:

Given -

Yellow bellies (Y) are dominant over green bellies (y)

Genotype of parents

Purebred yellow-bellied (homozygous) noombat - YY

Noombat that is hybrid (heterozygous) for belly color - Yy

The following offspring will be produced

YY * Yy

YY, Yy, YY, Yy

Out of four, all the offspring will be yellow-bellied offspring. However, two Noombats will be homozygous for yellow belly while the remaining would be heterozygous for the yellow belly

Thus, option D 100% is correct

Answer:

D is the answer

Explanation:

PLEASE HELP
what happens when you mix soil and baking soda

Answers

A chemical reaction happens

Unlike mitosis, meiosis in male mammals results in the production of
A) one haploid gamete
B) three diploid gametes
C) four diploid gametes
D) four haploid gametes

Answers

The answer is: D four haploid gametes

___ is the formation of single, identical RNA from the two-stranded DNA

A. Replication
B. Transcription
C. Translation
D. none of the above

Answers

Answer:

I think C Translation im srry if im wrong tho but i think thats the answer

Explanation:

. Hairlines and hair color are an inherited trait. The dominant allele of the widow's peak is represented by W and black hair is B and the recessive allele of a straight hairline is present by w and blonde hair is b. What possible hairlines will the children of a homozygous man with a widow's peak , heterozygous with black hair and a woman with a straight hairline and blonde hair have?

Answers

Answer:

Wait what? im confused explain more

Final answer:

All the children of the couple in the scenario will have a widow's peak due to the dominance of the 'W' allele. However, their hair color can be either black or blonde with a 50-50 probability due to the man’s heterozygosity for the black hair allele.

Explanation:

The traits described in this question - hairline shape and hair color - are governed by dominant and recessive alleles. Because the man with the widow's peak is homozygous (represented by WW) and the woman has a straight hairline (represented by ww), all children will have a widow's peak as they will inherit the Ww genotype. This is due to dominance of the 'W' allele.

However, for the hair color, the man is heterozygous (Bb) while the woman is homozygous recessive (bb). Therefore, there is a 50% chance for the children to have black hair (Bb) and a 50% chance for them to have blonde hair (bb).

This is an example of a Punnett Square and monohybrid cross prediction according to Mendelian genetics, where inheriting traits are considered based on the dominance and recessiveness of alleles.

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What were Lamarck’s ideas about evolution and why were those ideas incorrect?

Answers

Answer:

Lamark suggested that organisms can acquire traits which benefit them without any genetic means. He suggested that a change was gradually introduced into organisms of a species during their lifetime and this change could then be seen in the offsprings.

This idea was wrong because an organisms characteristics cannot change in his lifetime.

The theory of Lamarck's inheritance can be disregarded by our knowledge about hereditary genetics.

Explanation:

this is the non sample question

Answer:

its correct

Explanation:

Calix’s karyotype showed that he has a genotype of XXY. Explain how nondisjunction caused Calix to be XXY.

Answers

Answer:

A XY or XY gamete fuses with a normal gamete (X or Y)

Explanation:

Meiotic nondisjunction is the phenomenon whereby chromosomes fail to separate during meiosis I or II. Meiotic nondisjunction leads to the formation of abnormal gametes I.e. gametes with additional or missing chromosomal piece.

The fusion of these abnormal gametes produced by nondisijuction with a normal gamete (X or Y chromosome). This leads to a condition called ANEUPLOIDY, which is a chromosomal disorder. In the case od Calix, XXY is an ANEUPLOIDY state that could have resulted because there was a fusion between a XX gamete and Y gamete or XY and X. The XY or XX gametes are produced as a result of nondisijuction.

The reproductive cells of an organism consists of XY and XX chromosomes. The genotype of Calix as XXY is due to meiotic nondisjunction, in which chromosomes fail to segregate.

Meiotic non-disjunction is the phenomenon in which the homologous chromosomes are unable to segregate during cell division. It leads to the formation of an abnormal genotype, such that having an extrachromosomal pair.

The fusion of abnormal genotypes results in aneuploidy. Aneuploidy is a chromosomal disorder, in which an organism either misses or have an extra pair of chromosome.

Thus, Calix undergoes aneuploidy that resulted due to nondisjunction of the chromosomes.

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Cholesterol, testosterone, and estrogen are
all examples of which are chemical
messengers that the body uses.
A. sugars
B. steroids
C. proteins

Answers

They are all examples of:

B. Steroids


Explanation:
- Cholesterol is the most common steroid and is the precursor to vitamin D.
- Estrogens are a group of steroid hormones that control the development and maintenance of an individual's feminine characteristics.
- Testosterone is the primary male sex hormone and anabolic steroid.
Final answer:

Cholesterol, testosterone, and estrogen are examples of steroids.

Explanation:

Steroids are chemicals that act as messaging signals in the body and play vital roles in functions ranging from immune response to regulation of metabolism, inflammation, and electrolyte balance. Cholesterol is a necessary component of cell membranes and serves as the precursor for the synthesis of other important steroids. Testosterone is a male sex hormone important for the development and maintenance of male characteristics. Estrogen, on the other hand, is a major female sex hormone essential for the development and function of female reproductive system.

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Mixtures are very different from compounds. Mixtures can be physically separated into different components and compounds cannot be physically separated. Which of the following is NOT a mixture?
A. salt water
B. air
C. soil
D. sugar

Answers

Answer:

The answer is D sugar.

Explanation:

I just saw this question on study island.

The one among the given ones that is not a mixture is sugar. The correct option is D.

What is a mixture?

A mixture is a material composed of two or more different chemical substances that are not chemically bonded.

A mixture is the physical combination of two or more substances that retain their identities and are mixed in the form of solutions, suspensions, and colloids.

When two or more elements combine chemically in a fixed mass ratio, the resulting product is known as a compound. Compounds are substances made up of two or more different types of elements in a fixed ratio of their atoms.

Sugar is a chemical compound made up of three atoms: carbon, hydrogen, and oxygen. Because these three atoms are chemically linked, they form a compound in nature.

The correct option is D.

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Scientists now use domain Eukarya to group together the kingdoms of eukaryotic species, which include plants, animals, protists, and fungi. Which statement about the evolution of eukaryotes supports the grouping of the kingdoms into domain Eukarya?

A. All eukaryotic species descended from a common eukaryotic ancestor.
B. Each eukaryotic kingdom descended from a unique prokaryotic ancestor.
C. Species in the four eukaryotic kingdoms evolved independently of one another.
D. Protists evolved first, then the fungi appeared, and then plants and animals.

Answers

Answer: Option A

Explanation:

Scientist used the domain Eukarya which comprises the togetherness of all the eukaryotic species. They have been put together because all of the  eukaryotic species have their recent common ancestor as eukaryotes.

The first eukaryotic cells, which had nucleus originated 2 billion years ago which had organelles. They explain the endosymbiotic theory.Most of the eukaryotic species that have been evolved from this.

Eukaryotic species have been evolved from another eukaryotic species and share some similar characteristics.

Final answer:

The correct statement that supports the grouping of kingdoms into domain Eukarya is that all eukaryotic species descended from a common eukaryotic ancestor. This illustrates that eukaryotic organisms, including plants, animals, protists, and fungi, share a recent common ancestry.(Option A)

Explanation:

The grouping of the kingdoms into the domain Eukarya is supported by the statement that all eukaryotic species descended from a common eukaryotic ancestor. This idea aligns with modern scientific understanding that the domain Eukarya comprises all eukaryotes, including organisms in the kingdoms Animalia, Plantae, Fungi, and Protista, which have evolved from a single common ancestor. This common ancestry is based on the presence of eukaryotic cell structures and molecular evidence, including nuclear and genetic material organization.

The kingdom Protista, which historically grouped together all eukaryotic organisms that did not fit into the other kingdoms, has been particularly reexamined, and many species within this group have been found to be more closely related to animals, plants, or fungi than to other protists.

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what are the pros and cons for netting

Answers

Answer:

Pros- Makes a beautiful material, many patterns available and hundreds if different stitches, can make gorgeous lace patterns.

Cons- Requires two needles, harder to learn, can be clumsier to carry work around.

Final answer:

Netting has advantages such as protection and safety, but it can also be expensive and have environmental consequences.

Explanation:

Netting has both advantages and disadvantages. Some pros of using netting include:

Protection: Netting can be used to protect crops from pests and birds, preventing damage and helping with yield.Safety: Netting can be used to create safety barriers in construction sites or sports fields, preventing accidents and injuries.Sports and Recreation: Netting can be used in sports like tennis or golf to contain balls and prevent them from going out of bounds.

However, there are also some cons to consider:

Expense: Netting can be expensive to install and maintain, especially for large areas.Visibility: Some types of netting may obstruct visibility, which can be a disadvantage in certain applications.Environmental Impact: Netting can have a negative impact on the environment, especially if it is not properly disposed of or if it traps and harms wildlife.

What would happen if organ systems failed to work together

Answers

Answer:

When one organ system stopped working, the other organ system compensates for the failure to regain balance. For example, if the heart is not pumping enough blood, the other systems will kick in to compensate. ... In order for life to function accurately, these organ systems must work together

Explanation:

Answer:

We probably wouldn't be able to live anymore. Simple actions would take hours and we wouldn't be able to do anything or get anywhere. we would most likely die. It would not work out well for anyone. We need stability to stay alive.

Explanation:

I got it right, not sample response, may i have brainliest?

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