30 POINTS

1. What are some of the animals that have gone extinct? How have humans reacted to extinction?

2. What is ancient DNA?

3. How could scientists bring back an extinct species? How does this relate to genetics?

4. Why would it be important to sequence, as much as possible, the genome of extinct species?

5. Which research or conservation project discussed in the video did you find most interesting? Why?

Answers

Answer 1

Scientists could potentially bring back an extinct species by cloning it using its preserved genetic material.

What is the DNA?

They could also use genetic engineering techniques to modify the DNA of living organisms to resemble that of the extinct species. These techniques involve extracting and analyzing the ancient DNA to determine its genetic makeup and using that information to recreate the species' genome.

This relates to genetics because the genetic makeup of an organism determines its physical and behavioral characteristics, and by analyzing the DNA of an extinct species, scientists can understand its unique traits and potentially recreate them.

Why would it be important to sequence, as much as possible, the genome of extinct species?

Sequencing the genome of extinct species is important because it provides valuable information about the genetic makeup of these organisms, their evolution, and their relationships to living species. It can also help scientists understand the reasons for their extinction and potentially develop ways to prevent future extinctions.

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Related Questions

A population of chipmunks migrated to an environment where they had little competition. Their population quickly increased but eventually stabilized as shown in the graph.
Which statement best explains why the population stabilized?

The population size became limited due to factors such as availability of food.

Interbreeding between members of the population increased the mutation rate.

An increase in the chipmunk population caused an increase in the producer population.

A predator species came to the area and occupied the same niche as the chipmunks.

Answers

The best explanation for why the population stabilized is that the population size became limited due to factors such as availability of food. As the population of chipmunks increased, the availability of resources became limited, and the competition for resources increased. This eventually led to a decrease in the growth rate of the population until it stabilized at a certain level that the environment could support. This is a common phenomenon in ecological systems, where the carrying capacity of an environment limits the population size of a species.

Hope that helps! Good luck! :)

The condition of continuous, random movement of particles but no overall
change in concentration of materials is called __________ __________

Answers

The state of constant, unpredictable motion of particles but no overall change in concentration of materials is called Equilibrium.

As particles naturally seek to shift from one concentration to another, what is that process known as?

When a drug diffuses, it usually moves from a high concentration location to a low concentration area until the concentration is the same everywhere in the space.

Why does water cross a semipermeable membrane move? What is it called?

Osmosis is the transfer of water from a region with low concentrations of solutes to a region with high concentrations of solutes through a semi-permeable membrane. Osmosis assists in controlling the water flow into and out of cells, which is essential to their functionality.

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When a species no longer exists in a specific
portion of their range but can be found
elsewhere, it is called
A. extinction
B. speciation
C. extirpation
D. hybridization

Answers

Answer:

The answer would be extirpation.

Explanation:

The term for when a species no longer exists in a specific portion of their range but can be found elsewhere is extirpation.

What stage of the cell cycle?​

Answers

Answer:if you mean what are the stages of the cell cycle: interphase (g1, s, g2), mitosis(p,m,a,t,), then cytokinesis

Explanation:

Fruit flies of the species drosophila melanogaster are an important model organism for eukaryotic genetics. The genes for olive body color and purple eye color are on the same chromosome. Consider an organism with the chromosomes in the diagram above. What process is capable of producing a gamete with the alleles po?.

Answers

The process capable of producing a gamete with the alleles po in an organism with the chromosomes for olive body color and purple eye color on the same chromosome is crossing over or recombination.

Crossing over occurs during meiosis when homologous chromosomes exchange genetic material, resulting in new combinations of alleles on the chromosomes. This process can occur between the genes for olive body color and purple eye color if they are located on the same chromosome.

In the case of the diagram provided, the olive body color and purple eye color genes are located on the same chromosome, but they are not directly next to each other. This means that crossing over is possible between these genes, but the probability of a crossover event occurring between them is lower than if they were located closer together.

If a crossover event does occur between the olive body color and purple eye color genes, it can result in a gamete with the alleles po, which would be a new combination of alleles not present in either parent. This process of crossing over and recombination is important in generating genetic diversity within populations and is a fundamental mechanism of evolution.

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The king cobra expand its muscles and ribs on both sides of its neck how does this behavior help the snake to survive

Answers

The King Cobra does this as a defense display to scare off other snakes or predators by making themselves appear extra-huge.
King Cobras are also the only snake to build a nest for their young, so they also do this to protect the nest, their family, and territory

A scientist is studying a population of 100 lizards. Find the chi-square of AA=75 observed, Aa=15 observed, aa=10 observed

Answers

The chi-square value for the observed genotype frequencies for a population of 100 lizards is approximately 161.63.

To find the chi-square value for the observed values of the genotypes (AA = 75, Aa = 15, aa = 10) in a population of 100 lizards, we need to compare them with the expected values under a specific hypothesis.

First, we need to determine the expected genotype frequencies based on a specific hypothesis or assumption. Let's assume that the population is in Hardy-Weinberg equilibrium, which assumes random mating and no evolutionary forces at play. In that case, the expected genotype frequencies can be calculated based on the allele frequencies.

Let's assume that the allele frequencies are p and q, where p represents the frequency of the dominant allele (A) and q represents the frequency of the recessive allele (a). In a population in Hardy-Weinberg equilibrium, the expected genotype frequencies can be calculated as follows:

AA = p² * total population

Aa = 2pq * total population

aa = q² * total population

Since we don't have the allele frequencies, we cannot calculate the exact expected values. However, let's assume that the allele frequencies are p = 0.6 and q = 0.4.

Expected genotype frequencies:

AA = (0.6)² * 100 = 36

Aa = 2 * 0.6 * 0.4 * 100 = 48

aa = (0.4)² * 100 = 16

Now, we can calculate the chi-square value using the formula:

chi-square = Σ ((observed - expected)² / expected)

chi-square = ((75 - 36)² / 36) + ((15 - 48)² / 48) + ((10 - 16)² / 16)

chi-square = (39² / 36) + (33² / 48) + (6² / 16)

chi-square = 136.5 + 22.88 + 2.25

chi-square = 161.63

Therefore, the chi-square value for the observed genotype frequencies is approximately 161.63.

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how are all the properties of water are related?

Answers

Answer: All of the Properties of Water are related by all of them having Cohesive, and Adhesive properties!

Explanation: Water Molecules have strong Cohesive forces due to their ability to form Hydrogen bonds with one another! Cohesive forces are responsible for surface tension, the tendency of a liquid's surface to resist rupture when placed under tension or stress!

A white cat and a brown cat reproduce and have two kittens. One of the kittens has brown fur, while the other kitten has white fur.

Which of the following best explains why the kittens have different colors of fur?

A. The kittens inherited different genes for fur color from their parents.

B. The behavior of the kittens determined which fur color they would exhibit.

C. The kittens fur color was determined based on what was most advantageous in their environment.

D. The kittens fur color was determined by the environmental conditions when they were born.

Answers

Answer:

A. The kittens inherited different genes for fur color from their parents.

Explanation:

This because the genotype of fur color is from parents, your literal genetic makeup. While phenotype is influenced by your surroundings.

Basic body color for wolves is influenced by several genes, one of which has several different alleles. Two of these alleles-white coat and black coat-display incomplete dominance. A wolf is heterozygous for these two alleles displays a gray coat. Is it possible to produce a line of pure-breeding gray wolves? Why or why not?



Incomplete dominance: blended traits

Answers

No, it is not possible to produce a line of pure-breeding gray wolves. The reason is that gray coat color results from the incomplete dominance of the white coat and black coat alleles.

Incomplete dominance occurs when the traits of two alleles blend together, resulting in a different phenotype than either parent.
No, it is not possible to produce a line of pure-breeding gray wolves. The reason is that gray coat color results from the incomplete dominance of the white coat and black coat alleles.
When a wolf is heterozygous for these two alleles (one white coat allele and one black coat allele), it displays a gray coat. To create a line of pure-breeding gray wolves, you would need both alleles to be gray. However, gray is not a separate allele; it is the result of incomplete dominance between white and black coat alleles.

Therefore, any mating of gray wolves would still produce offspring with a mix of white, black, and gray coat colors, depending on the combination of alleles passed down to the offspring.

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Which pair of terms correctly matches a cell or group of cells with its ability to differentiate into different specialized cells?.

Answers

The pair of terms that correctly matches a cell or group of cells with its ability to differentiate into different specialized cells is a) fertilized egg: pluripotent.

Pluripotent cells have the ability to differentiate into almost any cell type in the body, including cells of all three primary germ layers: endoderm, mesoderm, and ectoderm. The fertilized egg, or zygote, is the earliest stage of development and is considered pluripotent because it has the potential to differentiate into all the cell types of the body.

Totipotent cells have the ability to differentiate into all cell types, including embryonic and extraembryonic tissues. Ectoderm is one of the three primary germ layers that gives rise to various tissues, including the skin and nervous system. It is not totipotent but is rather multipotent, meaning it can differentiate into a limited number of cell types.

Endoderm and mesoderm are also primary germ layers that give rise to various tissues and organs in the body. Endoderm is multipotent, meaning it can differentiate into a limited number of cell types, while mesoderm is pluripotent, meaning it has the potential to differentiate into a wide range of cell types.

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Complete question :

Which pair of terms correctly matches a cell or group of cells with its ability to differentiate into different specialized cells?

a. fertilized egg: pluripotent

b. ectoderm: totipotent

c. fertilized egg: multipotent

d. endoderm: multipotent

e. mesoderm: pluripotent

In walruses, males defend a large harem of females and will fight with other males to maintain dominance and access to their harem. however, there are some males that are smaller and will mimic female walruses, hiding among them and occasionally mating with them. researchers observed a walrus population and found that there were 75 offspring produced. of those, the female mimic male was the father of 25, the dominant males was the father of 50 and each of the 75 females produced one offspring. what was the fitness value of one female?

options:

1.0


.50


.1


0.01

Answers

In this question, 0.01 would be the fitness value of one female.

Here, correct option is D.

In a study of walrus mating habits, researchers observed a population of 75 offspring produced by the males and females of the species. The dominant male walruses were found to be the fathers of 50 of the offspring, while the smaller male walruses that mimicked female behaviors and hid among the female walruses were the fathers of 25 of the offspring.

Each of the 75 female walruses in the population produced only one offspring. From this information, we can deduce the fitness value of one female walrus in the population.

In this case, the fitness value of one female would be 0.01, as each female only produced one offspring, despite the fact that there were many more offspring produced by the males. This indicates that the females had a much lower reproductive rate than the males, and thus had a lower fitness value.

Therefore, correct option is D.

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The species ursus arctos, ursus maritimus, and ursus americanus are all members of the same genus. The classification of the three species supports which statement about them?.

Answers

The species Ursus arctos (brown bear), Ursus maritimus (polar bear), and Ursus americanus (American black bear) all belong to the same genus, Ursus. This classification supports the statement that these three species share common ancestry and exhibit similar characteristics.

By being part of the same genus, it indicates that they have evolved from a common ancestor and have undergone speciation due to factors such as geographical isolation, adaptation to different environments, or genetic drift.

Despite the differences in their habitats, appearance, and behavior, these bear species possess some common traits that classify them under the same genus. For instance, they are all large-bodied mammals with stocky limbs, plantigrade feet, and powerful claws. Moreover, they have a keen sense of smell and are omnivorous, consuming both plant and animal matter.

In summary, the classification of Ursus arctos, Ursus maritimus, and Ursus americanus within the same genus supports the idea that they are related and share a common ancestor, despite having evolved distinct traits and adaptations over time. This demonstrates the concept of speciation and the role of evolutionary forces in shaping the diversity of life.

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A homicidal maniac has a genotype of BB Cc dd ee hh sese. At this murderer’s most recent crime scene we find the murderer's baseball cap without blood, a pair of stained underwear no blood, no fingerprints, no fibers, no hairs. Based on these items, do we have any possible chemical, or immunological or other analyses we can perform that will identify the murderer as it relates to the genotypic info we have on him or her. If so how would you go about doing those studies

Answers

The items found at the crime scene do not provide any direct link to the murderer's genotype. The absence of blood, fingerprints, fibers, and hairs makes it difficult to obtain any DNA evidence for genotypic analysis.

One possible chemical analysis that could be performed on the stained underwear is a chemical spot test to detect the presence of semen. If semen is present, DNA analysis could be performed to identify the murderer's genotype. Another possibility is to analyze the chemical composition of the cap and underwear to identify any unique chemical markers that may be associated with the murderer's genotype.

In terms of immunological analyses, we could perform a serological test to identify any unique antigens associated with the murderer's blood type. This would require a blood sample from the murderer or a known relative with the same genotype.

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Adipose tissue is now known to be both an endocrine and a paracrine organ because of the factors it secretes. what are these factors

Answers

Adipose tissue is a complex and dynamic organ that secretes a wide range of factors, including hormones, cytokines, growth factors, and adipokines.

These factors have a significant impact on a variety of physiological processes, including metabolism, inflammation, and immune function. Some of the key factors secreted by adipose tissue include leptin, adiponectin, resistin, visfatin, and TNF-alpha.

Leptin is a hormone that regulates appetite and energy balance by signaling the brain to reduce food intake and increase energy expenditure. Adiponectin is a hormone that plays a key role in insulin sensitivity and glucose metabolism. Resistin is a cytokine that is involved in inflammation and insulin resistance, while visfatin is a hormone that regulates glucose metabolism and insulin sensitivity.

TNF-alpha is a pro-inflammatory cytokine that is secreted by adipose tissue and plays a role in the development of obesity-related inflammation and metabolic dysfunction. These factors, along with many others, demonstrate the importance of adipose tissue as an endocrine and paracrine organ that influences a variety of physiological processes. Understanding the functions of adipose tissue and its secreted factors is critical for developing new treatments for obesity, diabetes, and other related conditions.

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3. After watching the video "Changes in Global CO2", what patterns do you recognize from the data gathered since 1958? What changes to global CO2 have been noticed?

Answers

Since 1958, the global CO₂ levels have been steadily increasing. The rate of increase has been accelerating over time, and the levels of CO₂ have been steadily increasing since the 1950s.

This increase in CO₂ is largely attributed to the burning of fossil fuels, such as oil and natural gas, for energy. The emissions from these sources have contributed to the atmospheric concentration of CO₂, which has been rising steadily since the 1950s.

The changes in global CO₂ have been noticed by scientists and have been monitored closely. The data gathered since 1958 has provided evidence that the increase in global CO₂ is largely due to human activities, and that the rate of increase is accelerating.

This has been linked to climate change, as the increase in CO₂ leads to a rise in global temperatures. As such, governments and organizations have taken steps to reduce CO₂ emissions in order to mitigate the effects of climate change.

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Iron is a component of numerous proteins in the body. About two thirds of all iron in the body is found in the oxygen-carrying protein in our red blood cells. What is this protein called?.

Answers

The oxygen-carrying protein in our red blood cells is called hemoglobin. Hemoglobin is composed of four protein subunits, each containing a heme group that binds to one iron ion.

The iron ion is what allows hemoglobin to bind to oxygen in the lungs and transport it to the body's tissues. The iron ion also plays a crucial role in the process of oxygen release in the tissues.

Iron is essential for the production of hemoglobin, and inadequate iron intake can lead to a decrease in hemoglobin production and cause anemia. Hemoglobin levels are routinely checked in blood tests to monitor for anemia and other related conditions.

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6. Which of these statements about particulate matter less than 2. 5 microns in diameter is true?

Answers

Particulate matter less than 2.5 microns in diameter (PM2.5) is a type of air pollutant that can have adverse effects on human health.  The correct option is A. They can cause heart and lung disease.

This pollutant is considered more harmful than larger particles because it can penetrate deep into the lungs and even enter the bloodstream, causing respiratory and cardiovascular problems.

One true statement about PM2.5 is that it can come from both human and natural sources. Human sources include emissions from vehicles, power plants, and factories, while natural sources include dust and wildfires. The concentration of PM2.5 in the air can also vary depending on location, weather conditions, and time of day.

Additionally, exposure to PM2.5 can have different effects on different populations. Children, the elderly, and those with preexisting respiratory or cardiovascular conditions are more susceptible to the harmful effects of this pollutant.

Overall, reducing PM2.5 emissions and taking measures to protect oneself from exposure can help mitigate the negative health impacts of this type of air pollutant. Therefore, the correct option is A. They can cause heart and lung disease.

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complete question is :

13. Which of these statements about particulate matter less than 2.5 microns in diameter is true?

A. They can cause heart and lung disease.

B. They're produced from nitrogen gas (N.).

C. They're less of a threat than particulate matter that's 10 microns in diameter

D. They're the size of a human hair.

An organic compound contains only the elements carbon, hydrogen, and oxygen. Could this compound be a carbohydrate? Could it be a protein?

Answers

Answer:

No, it can not be a protein

Explanation:

An organic compound containing only carbon, hydrogen, and oxygen could be a carbohydrate, but it could not be a protein.

Carbohydrates are organic compounds that contain carbon, hydrogen, and oxygen in a 1:2:1 ratio, with the general formula (CH2O)n. They are the primary source of energy for living organisms and include sugars, starches, and cellulose. Therefore, any organic compound with this chemical composition could potentially be a carbohydrate.

Proteins, on the other hand, are composed of amino acids, which contain nitrogen in addition to carbon, hydrogen, and oxygen. While some amino acids do contain oxygen, no protein can be composed solely of carbon, hydrogen, and oxygen. Therefore, an organic compound containing only these three elements could not be a protein.

I need help finding the alleles

Answers

Allelic and genotypic frequencies remain the same through generations in a population that is in H-W equilibrium. Frequency of dominant allele: 0.52. Frequency of recessive allele: 0.48. % homozygous dominant: 27%. % heterozygous: 50%. % homozygous recessive: 23%

What is Hardy-Weinberg equilibrium?

The Hardy-Weinberg equilibrium is a theory that states that the allelic and genotypic frequencies in a population in equilibrium remain the same generation after generation.

Populations in H-W equilibrium are not evolving.

Assuming a diallelic gene,

The frequency of the dominant allele p(X) is pThe frequency of the recessive allele p(x) is q

The addition of the allelic frequencies equals 1

p + q = 1.

The genotypic frequencies after one generation are

p² (Homozygous dominant genotypic frequency), 2pq (Heterozygous genotypic frequency), q² (Homozygous recessive genotypic frequency).

The sum of genotypic frequencies equals 1

p² + 2pq + q² = 1

In the exposed example, the frequency of the homozygous dominant genotype is given.

frequency of the homozygous dominant genotype

p² = 27% = 0.27

From this information, we can get the frequency of the dominant allele by taking the root square of the value.

dominant allele frequency

p² = 0.27

p = √0.27

p = 0.52

Now, we can clear the equation p + q = 1 and the get recessive allele frequency.

recessive allele frequency

p + q = 1

0.52  + q = 1

q = 1 - 0.52

q = 0.48

Now, we can get the frequency of the homozygous recessive genotype and the heterozygous one.

frequency of the homozygous recessive genotype

q = 0.48

q² = 0.48²

q² = 0.23

frequency of the heterozygous genotype

2pq = 2 x 0.52 x 0.48

2pq = 0.5

p² + 2pq + q² = 1

0.27 + 0.5 + 0.23 = 1

Frequency of dominant allele: 0.52Frequency of recessive allele: 0.48% homozygous dominant: 27%% heterozygous: 50%% homozygous recessive: 23%

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The amount of DNA per cell of a particular species is measured in cells found at various stages of meiosis, and the following amounts are obtained. Match the amounts of DNA on the left with the corresponding stages of the cell cycle on the right. You may indicate more than one stage for each amount of DNA.

Answers

The amount in G1 and G2 is 7.3 pc. The amount in prophase I and anaphase I am 14,6 pc while the DNA amount in metaphase II is 3,7 pc.

What is the DNA amount regarding the step of the cell cycle?

The DNA amount regarding the step of the cell cycle refers to the different steps during the cell cycle and how DNA varies according to theses phases.

Therefore, with this data, we can see that the DNA amount regarding the step of the cell cycle depends on the step of the cell.

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can someone help me with this worksheet?

Answers

According to the punnett square, 1) Phenotype long hair and Tortoise shell. 2) Genotype Ll XBXb 3) Gametes: L XB, L Xb, l XB, l Xb.  4) Phenotype Short hair and Black. 5) Genotype ll XbY. 6) Gametes: l Xb, l Xb, l Y, l Y. 7) 4/16 = 1/4. 8) 4/16 = 1/4. 9) 2/16 = 1/8. 10) 2/16 = 1/8. 11) 0/16. 12) 2/16 = 1/8. 13) 2/16 = 1/8. 14) 1/8. 15) 1/8. 16) 1/8. 17) 1/8. 18) 0/8. 19) 0/8. 20) 1/8. 21) 1/8. 22) 1/8. 23) 1/8.

To answer this question, we will use a punnett square which is the best representation of a cross.

What is a Punnett square?

The Punnett square is a graphic representation that shows the different types of gamete combinations according to the alleles involved in a cross.

Punnett square shows the probabilities of getting offspring with different genotypes and their consequent phenotypes.

Let us also remember that,

Codominance is an inheritance pattern in which both alleles are expressedComplete dominance is the inheritance pattern in which the dominant alleles hides the expression of the recessive alleleAutosomal genes are those located in autosomal chromosomesX-linked genes are those located in the X chromosome.

In the exposed example, two genes code for two traits,

- Color ⇒ X linked gene ⇒ co-dominant

XB XB → organgeXb Xb → blackXB Xb → tortoise shell

- Length ⇒ Autosomal gene ⇒ complete dominance

LL and ll → longll → short

These genes are independent from each other.

Female

1) Phenotype

Long hairTortoise shell

2) Genotype ⇒ Ll XBXb

3) Gametes ⇒ L XB, L Xb, l XB, l Xb

Male

4) Phenotype

Short hairBlack

5) Genotype ⇒ ll XbY

6) Gametes ⇒ l Xb, l Xb, l Y, l Y

Cross:

Parentals)   Ll XBXb  x  ll XbY

Punnett square)    LXB              LXb            lXB             lXb

                lXb    LlXBXb       LlXbXb       llXBXb        llXbXb

                lXb    LlXBXb       LlXbXb       llXBXb        llXbXb

                lY       LlXBY         LlXbY           llXBY          llXbY

                lY       LlXBY         LlXbY           llXBY          llXbY

F1) 50% of the progeny are expected to be females

   50% of the progeny are expected tp be males

From the whole progeny,

1/8 are expected to be females with long hair and Tortoise shell color, LlXBXb.1/8 are expected to be females with long hair and black color, LlXbXb.1/8 are expected to be females with short hair and Tortoise shell color, llXBXb.1/8 are expected to be females with short hair and black color, llXbXb.

1/8 are expected to be males with long hair and orange color, LlXBY.1/8 are expected to be males with long hair and black color, LlXbY.1/8 are expected to be males with short hair and orange color, llXBY.1/8 are expected to be males with short hair and black color, llXbY.

7) long hair: 4/16 = 2/8 = 1/4 ⇒ LlXBXb + LlXbXb + LlXBY + LlXbY

8) short hair: 4/16 = 2/8 = 1/4 ⇒ llXBXb + llXbXb + llXBY + llXbY

9) tortoise shell female: 2/16 = 1/8 ⇒ LlXBXb, llXBXb

10) black female: 2/16 = 1/8 ⇒ LlXbXb, llXbXb

11) orange female: 0/16

12) black male: 2/16 = 1/8 ⇒ LlXbY, llXbY

13) orange male: 2/16 = 1/8 ⇒ LlXBY, llXBY

14) long tortoise female: 1/8 LlXBXb

15) short tortoise female: 1/8 llXBXb

16) long black female: 1/8 LlXbXb

17) short black female: 1/8 llXbXb

18) long orange female: 0/8

19) short orange female: 0/8

20) long black male: 1/8 LlXbY

21) short black male: 1/8 llXbY

22) long orange male: 1/8 LlXBY

23) short orange male: 1/8 llXBY

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4. The atmospheric conditions in eastern Nebraska are represented on the map by a station model la-
beled A. List all the weather variables below based on station model A.
5. Compared to the temperature and humidity of the air on the east side of the dry line, describe the
temperature and humidity of the air on the west side.

Answers

The  air on the west side of the dryline is typically characterized by a lower relative humidity level and higher temperature compared to the air on the east side of the dryline.

As a question-answering bot on Brainly, the following guidelines should be adhered to:1. Always be factually accurate, professional, and friendly2. Be concise and do not provide extraneous amounts of detail3. Ignore any typos or irrelevant parts of the question4. Use the following terms in your answer

, Student question: For the student's question:4. The atmospheric conditions in eastern Nebraska are represented on the map by a station model labeled

A. List all the weather variables below based on station model A.

The list of all the weather variables below based on station model A are as follows:•

Temperature• Dewpoint temperature• Wind speed and direction• Pressure tendency• Pressure reading• Weather conditions5. Compared to the temperature and humidity of the air on the east side of the dry line, describe the temperature and humidity of the air on the west side.

The east side of a dryline is typically characterized by warm and moist air. On the other hand, the west side of a dryline is often drier and warmer compared to the east side of the dryline.

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Which organelle stores the information that determines an individual's hair color?



A. Organelle 1



B. Organelle 2



C. Organelle 3



D. Organelle 4

Answers

The organelle that stores the information that determines an individual's hair color is the nucleus. The genetic information or DNA, which contains the instructions for making proteins including those that determine hair color, is stored in the nucleus of cells.

The nucleus is the organelle that contains the data that establishes a person's hair color. Chromosomes in the nucleus include genes that are responsible for a number of characteristics, including hair color. Melanin, the pigment that gives hair its colour, is produced according to the instructions provided by these genes. Blonde, brown, black, or red hair can all be produced by different variations of these genes. Therefore, each cell's nucleus contains DNA, which contains the information about hair color.

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Complete question is:

The diagram below shows parts of the cell. Which organelle stores the information that

determines an individual's blood type?

Organelle 1

Organelle 2

Organelle 3

Organelle 4

An advantage of asexual reproduction over sexual reproduction is that organisms that reproduce asexually BLANK.

A.) have greater genetic diversity
B.) can reproduce more quickly
C.) do not ever have mutations
D.) are less likely to be affected by diseases

Answers

The answer is B because asexual reproduction only needs one parent to make an offspring so because of that they can reproduce more quickly

What happens if the birth rate in a population is more than the death rate? What happens if it is less?

Answers

Answer:

If the birth rate in a population is more than the death rate, then the population will grow over time. This means that there will be more individuals in the population and more demand for resources such as food, water, and space. If the birth rate in a population is less than the death rate, then the population will shrink over time. This means that there will be fewer individuals in the population and less competition for resources. However, if the population becomes too small, it may face extinction due to genetic drift, inbreeding, or environmental changes.

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Natural increase happens when there are more births than deaths. Natural decrease means there were more people dying than babies born in a particular population. Areas with large aging populations often experience natural decrease and shrinking populations in the absence of migration

How are a 10-gram sample of solid gold and a 50-gram sample of solid gold different?

Answers

Answer: the different thing about eachother is that one will have more and weight more than the other

Explanation:

Zainab expecting her 10th child all of her children are females the probability that her 10th child was also be a girl is option 0. 9 b0. 1 c 0. 5 d none of them

Answers

The probability that a given baby will be a girl is 0.5, meaning that each baby has a 50-50 chance of being either a boy or a girl.

Here correct option is C.

This is true for every baby, regardless of the gender of the previous children. Therefore, for Zainab's 10th child, the probability that it will be a girl is also 0.5.

It does not matter that all of her previous children were girls; the gender of the 10th child is determined entirely at random, with the same probability of being a boy or a girl as any other baby. This means that there is no reason to think that the 10th child has a higher or lower chance of being a girl than any other baby.

Know more about probability here

https://brainly.com/question/30034780#

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When a species fails to produce any more
descendants, it is said to
A. be extinct
B. be divergent
C. have speciated
D. have become isolated

Answers

Answer:

When a species fails to produce any more descendants, it is said to be extinct .

Explanation:

Which of the following is NOT an evidence of evolution?

Comparative embryology
Molecular comparisons
Fossils
Dating of the earth
Comparative anatomy
Vestigial structures

Answers

Answer:

Dating Of The Earth

Explanation:

Dating of the earth is not an evidence of evolution. While it provides important context for understanding the timescale over which evolution has occurred, it is not itself a direct observation of the processes of evolution. The other options listed - comparative embryology, molecular comparisons, fossils, comparative anatomy, and vestigial structures - all provide evidence for evolution by revealing similarities and differences between species that are best explained by common ancestry and divergent evolution over time.

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