Which pattern of inheritance would explain the different fur color in the related dogs?

Answers

Answer 1

Answer:

B/b alleles.

from a presentation


Related Questions

How many cells are in mitosis

Answers

Answer:

Two

Explanation:

Mitosis results in two identical daughter cells.

New eafloor rock i continually being formed at mid-ocean ridge and old eafloor rock i continually removed at ocean trenche. If the rock on the continent i continually formed but not removed, how would the age of the oldet rock on the continent compare with the age of the oldet rock on the eafloor?

Answers

Mid-ocean ridges occur along divergent plate boundaries where new ocean floors form as the Earth's tectonic plates spread. As the plates separate, lava rises to the ocean floor, causing massive volcanic eruptions of basalt.

The definition of seafloor spreading is a geological process occurring at the boundary between two plates where molten material within the Earth is pushed up and the plates move apart.

At the boundaries of these branches, the molten material cools and solidifies, creating a new oceanic crust or seafloor. Mid-ocean ridges are constantly forming new submarine rocks, and rifts are eroding older submarine rocks. If continental rocks are constantly being formed but not removed, what is the age of the oldest rocks on the continent compared to the age of ancient rocks on Earth.

Mid-ocean ridges occur along divergent plate boundaries where new ocean floors form as the Earth's tectonic plates spread. When the plates separate, lava rises to the seafloor, causing huge volcanic eruptions of basalt. The definition of seafloor spreading is a geological process occurring at the boundary between two plates that pushes molten material within the Earth, causing the plates to move apart from each other. At these branch boundaries, molten material cools and solidifies, creating new oceanic crust or seafloor.

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Termites have the unusual ability to eat wood.

Why are termites able to eat wood?

Responses


A. Microorganisms prepare the wood before termites eat it.


B. Microorganisms break down wood in the gut of a termite.

C. Termites are close relatives of trees and other plants.

D. Termites have strong mouthparts that can bite and chew wood.
Question 2.
Which statement best describes a healthy ecosystem?
Responses


A. Microorganisms are either absent or present in very small numbers.

B. New kinds of plants and animals arrive every year.

C. Plants and animals of many kinds are able to meet their needs.

D. One kind of animal grows in number every year.

The feathers of a parrot keep it dry and comfortable in the rainforest. However, the feathers do not protect a parrot from cold temperatures.

Could a parrot survive in a very cold environment, such as winter in a temperate forest?

Responses


A. No. The parrot could not live in the trees of a temperate forest.

B. Yes. The parrot would develop new adaptations to keep its body warm.


C. Yes. The parrot would grow thicker feathers.

D. No. The parrot could not meet its need for staying warm.
Question 3 Which statement best describes a healthy ecosystem?
Responses

A. Microorganisms are either absent or present in very small numbers.


B. New kinds of plants and animals arrive every year.

C. Plants and animals of many kinds are able to meet their needs.


D. One kind of animal grows in number every year.

Answers

Termites are able to eat wood because : B. Microorganisms break down wood in the gut of a termite. A healthy ecosystem: C. Plants and animals of many kinds are able to meet their needs. Parrot survive winter in a temperate forest C. Yes. The parrot would grow thicker feathers.

Why are termites able to eat wood?

Termites have protozoa and bacteria in their gut that allow them to break down the cellulose fibers in wood, which is difficult for other creatures to digest.

Parrots can survive in very cold environment, such as winter in a temperate forest.

Healthy ecosystem: provides abundant and beneficial services to its constituents, such as food, water, shelter, recreation, and natural beauty.

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what is the most common way an active transport occurs in a cell

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The most common way that active transport occurs in a cell is through the transport proteins that are located at the cell membrane of the cell.

What is a cell?

A cell is defined as the structural and functional unit of a living organism that is made up of membrane bound proteins that functions together for the benefit of the cell.

The semi permeable membrane that surrounds the cell is called the cell membrane and it allows the passage of some substances while refusing the passage of others.

The process it uses for transport is called active transport which occurs in a cell is through the transport proteins that are located at the cell membrane of the cell.

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how would the cylindrical shape of the palisade mesophyll?

Answers

It is not typical for a palisade mesophyll to have a cylindrical shape, as it is a type of plant tissue found in leaves and is typically arranged in layers. The cylindrical shape is not a characteristic that is commonly associated with the palisade mesophyll.

What takes up a large part of the urchin body cavity?

Answers

A large part of the urchin body cavity is takes up by a fluid called coelomic fluid.

This fluid is produced by the coelomic epithelium, which lines the coelom, and it contains various cells and dissolved substances, such as nutrients and waste products. The coelomic fluid is important for the circulation of nutrients and oxygen throughout the urchin's body, as well as for the removal of waste products. Additionally, it also provides support and buoyancy, and helps to protect the urchin's internal organs from mechanical damage. The coelomic fluid takes up a large part of the urchin's body cavity, filling most of the space within the urchin's test (shell) and surrounding the internal organs.

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What does it mean when multiple genes determine a trait?

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A trait that is influenced by two or more genes, such as height or skin tone, is known as a polygenic trait.

What is it known as when several genes influence a phenotype?phenotypic trait that is governed by multiple genes is known as polygenic inheritance. It is a phrase used in biology to describe the quantitative inheritance process in which two or more different genes collaborate to affect a single phenotypic characteristic. Each gene in a diploid organism contains two alleles, one from each parent. The phenotype of an organism is governed by interactions between alleles. When an organism inherits two copies of the same allele for a trait, it is said to be homozygous for that trait. In homozygous individuals, a single phenotype for a given trait is expressed. An example is the ABO blood type. Your blood type refers to the particular antigens, or specific proteins, that are found on your red blood cells.

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Help with this: Chapter 11 Nervous System

Concept Map: Reaching Threshold

Complete the Concept Map to describe graded potentials.

Drag the appropriate labels to their respective targets.

Answers

The concept map to describe graded potentials is

Stimuli ⇒ can trigger locally occurring ⇒ open(s) chemically gated or mechanically gated channels on the

can trigger locally occurring ⇒ graded potential

open(s) chemically gated or mechanically gated channels on the ⇒ dendrites or cell bodies

graded potential ⇒ when “summed”, must raise the membrane potential by 15 to 20 mV to reach ⇒ threshold ⇒ stimulate(s) the opening of voltage-gated channels at the ⇒ axon hillock

graded potential ⇒ that decreases(s) polarity and raise(s) the membrane potential is/are ⇒ EPSPs

Graded potential ⇒ that increase(s) polarity and lower(s) the membrane potential is/are ⇒ IPSPs

What are graded potentials?

Locаl chаnges in the membrаne potentiаl аre cаlled grаded potentiаls аnd аre usuаlly аssociаted with the dendrites of а neuron. The аmount of chаnge in the membrаne potentiаl is determined by the size of the stimulus thаt cаuses it. In the exаmple of testing the temperаture of the shower, slightly wаrm wаter would only initiаte а smаll chаnge in а thermoreceptor, whereаs hot wаter would cаuse а lаrge аmount of chаnge in the membrаne potentiаl. Grаded potentiаls cаn be of two sorts, either they аre depolаrizing or hyperpolаrizing.

Your question is incomplete, but most probably your full question can see in the Attachment.

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once water vapor has been released into the atmosphere it rises and cools turning back into a liquid what is process called

Answers

Answer:

it's called rain I hope this helps

Label the following diagram: (catalase, H2O2, H2O, O2) Then write a caption/description of what happens in each step!

Answers

During catabolism, the enzyme breaks bonds in large molecules composing smaller molecules as products. In the image, Catalase is the enzyme, H₂O₂ is the large molecule, and H₂O and O₂ are the smaller  product molecules.

What is catabolism?

In metabolic reactions mediated by enzymes, the substrates turn into products faster than they would naturally do.

Enzymes act as catalyzer molecules to accelerate natural reactions.

There are two main types of metabolic reactions mediated by enzymes,

AnabolismCatabolism

Catabolism is the process through which a large molecule is broken into simpler smaller molecules. The enzyme gets in contact with the substrate and breaks it apart into pieces.

Enzymes have specific active sites to which the substrate binds.

Once these large molecules join through these binding sites, they compose the enzyme-substrate complex.

The enzyme turns the substrate into smaller product molecules.

Finally, these smaller molecules are released into the environment.

In the image, we can see this sequence of events.

1) The large molecule is H₂O₂ that binds catalase by its active site.

2) Both of them together compose the H₂O₂-catalase complex (enzyme-substrate complex).

3) Catalaze breaks down H₂O₂ producing H₂O and O₂.

4) Finally, H₂O and O₂ are released from the enzyme binding site.

You will find the image in the attached files

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In many invetigation, both in the laboratory and in natural
environment, the pH of ubtance i meaured. Explain why pH i important to living thing. In your
explanation be ure to:

Answers

pH is important to living thing because pH affects the activity of enzymes, pH affects the solubility of nutrients and toxins, pH affects the activity of ion channels and transporters, pH affects the toxicity of some pollutants, pH is an important factor that can affect the physiology and biochemistry of living organisms and their environment.

pH affects the activity of enzymes: Many enzymes in living organisms have an optimal pH range at which they function best. If the pH deviates too far from this range, the enzymes can become denatured and lose their ability to catalyze reactions.

pH affects the solubility of nutrients and toxins: The solubility of many substances is affected by pH. For example, some nutrients such as iron and calcium are more soluble at neutral pH, while others such as lead and mercury are more toxic at acidic pH.

pH affects the activity of ion channels and transporters: Many ion channels and transporters are pH-sensitive and their activity is affected by changes in pH. For example, the sodium-potassium pump in cell membranes is active at a specific pH range, which is essential for the maintenance of the membrane potential and the function of the nervous system.

pH affects the toxicity of some pollutants: Some pollutants such as heavy metals and acids can be more toxic to organisms at certain pH levels, and this can have a negative impact on the health of entire ecosystems.

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william created the diagram below to help him understand how DNA contains instructions to create proteins. Which of the following best identified what processes are labeled as x and y above?

Answers

DNA contains the genetic instructions for all living organisms in the form of a code made up of four chemical bases: adenine (A), thymine (T), cytosine (C), and guanine (G). These bases pair up in a specific way (A with T, and C with G) to form the rungs of the DNA ladder. The sequence of these base pairs determines the genetic information that is stored in DNA.

How DNA contains instructions to create proteins?

This genetic information is used to create proteins, which are essential for the structure and function of cells. The process of creating proteins from DNA is called protein synthesis. It occurs in two main steps: transcription and translation.

During transcription, a section of DNA is copied into a molecule of messenger RNA (mRNA) by an enzyme called RNA polymerase. The mRNA then leaves the nucleus and moves to the ribosomes, which are the site of protein synthesis.

During translation, the sequence of bases in the mRNA is read by transfer RNA (tRNA) molecules, which bring the correct amino acids to the ribosome. The amino acids are then linked together in a specific order, determined by the sequence of bases in the mRNA, to form a protein.

So, to summarize, DNA provides the instructions for making proteins through a process called protein synthesis, which involves transcription of a specific sequence of DNA into RNA, and translation of the RNA sequence into a specific sequence of amino acids that constitute a protein.

Note that a summary was given as the information is incomplete and the complete question wasn't found.

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Explain the process of transcription
and translation using the following
words in your response.
Verbal or Written. Your Choice.
-RNA polymerase
-nucleus
-cytoplasm
-ribosome
-mRNA
- tRNA
-amino acid
-polypeptide or protein

Answers

The act of copying information from a strand of DNA into a fresh messenger RNA molecule is called transcription (mRNA). DNA maintains genetic material in the cell nucleus as a reference in a secure and stable manner.

What steps comprise the transcribing process?

The process of transcription involves copying (transcription) the DNA sequence of a gene to create an RNA molecule. The primary transcription enzyme is RNA polymerase. When RNA polymerase connects to a promoter sequence near the start of a gene, transcription starts (directly or through helper proteins).

Where can I find transcription?

The action of Prokaryotes carry out transcription in the cytoplasm, whereas eukaryotes do it in the nucleus. An RNA (mRNA) molecule is created using DNA as a template. When transcribing, a

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in dry areas Farmers often dig Wells to provide water for their crops how could using a well to pump large amounts of water out of the ground most likely impact the hydrologic cycle and the environment​


(also this may show up as high school But it's actually middle school it won't let me change it)

Answers

The local water table could be lowered, causing many plants to die. The hydrologic cycle could stop in the surrounding areas, causing a drought.

Which statement gives an example that best demonstrates how the geosphere has effected the evolution of life on earth

Answers

The impact of geosphere is, some spiders that live in caves have lost functioning eyes, which are unnecessary in an environment without light.

Option D is correct.

What is the geosphere?

The geosphere includes the rocks, minerals, and soil of the crust, the mantle formed mostly of magma, and a very hot metallic core.

The geosphere is important to evolution of lives on Earth.

The geosphere defines the environment we live in, controls the distribution of minerals, rocks and soils and generate natural hazards that shape the lands and impact humans.

Thus, the correct statement about impact of geosphere is, some spiders that live in caves have lost functioning eyes, which are unnecessary in an environment without light.

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Complete question: Which statement gives an example that best demonstrates how the geosphere has affected the evolution of life on Earth?

A.

Certain plants have evolved to absorb pollutants like carbon monoxide and formaldehyde through their leaves.

B.

Certain marine mammals have lost functioning hindlimbs, which can impede an animal's movement through water.

C.

Some hummingbirds have evolved to have very long beaks that can only reach the nectar of specific flowers.

D.

Some spiders that live in caves have lost functioning eyes, which are unnecessary in an environment without light.

A car takes four hours to cover a distance of 160 miles what is the car speed

Answers

Answer:

1.5 hours

Explanation:

I believe this is the right answer

What are the 5 main points of Darwin's theory?

Answers

Answer:

For Darwin himself these five theories were apparently much more a unity than they appear to a person who analyzes them with modern hindsight. The five theories were: (1) evolution as such, (2) common descent, (3) gradualism, (4) multiplication of species, and (5) natural selection.

Evolution, common descent, Gradualism,multiplication of species, And natural selection

Name two popular marine fishes and two marine fishes of high economic importance.

Answers

Bhetki, Mullets, Pearl spots and Prawns

HELP

what phenotypes will be shown by the offspring in this punnett square?

Answers

Answer:

A. All offspring will show the dominant phenotype for this trait.

Hope this helps!

Explanation:

Dominant as the d in the square is capitalized on all 4 squares

What form of carbon do animals release during digestion?

Answers

When animals breathe and exhale, the carbon joins with oxygen to form carbon dioxide, which is then discharged back into the atmosphere as a waste product.

In mammals, food and oxygen are combined in the cells to create energy for everyday activity, which is followed by the release of carbon. Each and every living thing contains carbon. The carbon cycle is the continuous movement of carbon atoms through living things, the oceans, the atmosphere, and the crust of the Earth. The paths that carbon atoms take in this cycle are extremely convoluted, and it may take millions of years for them to complete a full round.

Every animal, including humans and dinosaurs, contributes to the carbon cycle.

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Help me please I need this soon

Answers

Before meiosis, the DNA in each chromosome is replicated. The process shown in the diagram is of chromosomes.

What is meiosis?

Meiosis is a type of cell division that occurs in sexually reproducing organisms and results in a reduction in the number of chromosomes in gametes.

The two identical copies of DNA that result from this replication are known as sister chromatids,' and they are brought together by a section of the chromosome known as the centromere.

Therefore, each chromosome's DNA is copied prior to meiosis.

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What is the job of the cell membrane

Answers

Answer:

regulates the transport of materials entering and exiting the cell. In simpler terms, allows which materials can enter or exit the cell.

An infectious particle made only of protein is called a what?

Answers

An infectious particle made only of protein is called a C)prion. Prions are misfolded proteins which have the ability to transmit their misfolded shape into normal variants of the same protein. So,correct option is C.

Prions describe a few lethal and contagious neuro degenerative illnesses in people and numerous other animals. It isn't understood what makes an ordinary protein misfold, however the subsequent unusual three-layered structure presents irresistible properties by falling close by protein particles into a similar shape.

The word prion is gotten from the expression "proteinaceous irresistible particle". In contrast with any remaining referred to irresistible specialists like viroids, infections, microorganisms, growths, and parasites, all of which contain nucleic acids (DNA, RNA, or both), the conjectured job of a protein as an irresistible specialist remains conversely.

Hence,correct option is C.

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(Complete question) is:

An infectious particle made only of protein is called a what?

a)virus

b)lipid

c)prion

d)bacteria

O Glencoe/McGraw-Hill, a divisie
Copyright
muscle is only found
4. Smooth muscle tissue is found in
5. Muscle cells are found
6. An example of
7. Skeletal muscles are connected to bones by.
8. Cardiac muscle is important because it continually contracts and relaxes
to-
9. Blood vessels have.
10. Muscle cells make up about
Human Body Systems
in the body.
muscle tissue is the triceps.
muscle tissue.
of your body mas:

Answers

Smooth muscle tissues are located in walls of hollow visceral organs (such as the liver, pancreas, and intestines).

What are the functions of smooth muscle tissues?

Smooth muscle cells are responsible for involuntary movements like regulation of blood flow through vital organs and movement of materials along digestive and urinary passageways.

Smooth muscle is a type of tissue found in the walls of hollow organs, such as the intestines, uterus and stomach. You can also find smooth muscle in the walls of passageways, including arteries and veins of de cardiovascular system.

Smooth muscle cells are spindle shaped, have a single, centrally located nucleus, and lack striations. They are called involuntary muscles. Cardiac muscle has branching fibers, one nucleus per cell, striations, and intercalated disks.

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Integral proteins are mostly involved in enzymatic function.
transport function. receptors. recognition sites.

Answers

Option 2 is Correct. In primary active transport, carrier proteins are used, but in secondary active transport, channel proteins are used.

In contrast to secondary active transport, which can move two substances at once, primary active transport can only move one chemical at a time. The two molecules moving in secondary active transport may do so in different directions or in the same direction (both into the cell) (i.e., one into and one out of the cell).

Membrane transport proteins can be divided into two groups: carriers and channels. Across the lipid bilayer, both create continuous protein routes. Solute flow through channel proteins is always passive, in contrast to the active or passive nature of transport by carriers.

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Correct Question:

Integral proteins are mostly involved in

1. enzymatic function.

2. transport function.

3. receptors.

4.recognition sites.

Which of the following is/are an example(s) when mitosis would occur?

Answers

When cells are split to replace and repair other cells

Bananas are curved why?

Answers

Answer: Negative geotropism

Explanation:

The reason why bananas are curved is due to a process called negative geotropism. So, initially bananas start by growing towards the ground, but will eventually start growing towards the sun. With that being said, you’ll often find that some bananas are completely straight. did it help

Answer: Negative geotropism

Explanation: The reason why bananas are curved is due to a process called negative geotropism. So, initially bananas start by growing towards the ground, but will eventually start growing towards the sun. With that being said, you’ll often find that some bananas are completely straight. This is because of an innovation known as bagging, whereby the fruit is covered in order to protect it from insects and animals.

How many atoms are in 1 mole of H2O?

Answers

The number of atoms in 1 mole of H₂O is 6.02 × 10²³ particles.

The number of atomic particles of an element or compound depends on the number of moles of that element or compound.

By definition, 1 mole of a substance has a total of 6.02 × 10²³ particles, where this number is called Avogadro's number.

In this case, the substance is water (H₂O). So that 1 mole has as many particles as:

Number of particles = 1 x 6.02 × 10²³

Number of particles = 16.02 × 10²³ particles

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what are building blocks for proteins

Answers

Answer:

they are described as amino acids

A dna mutation changes the shape of the extracellulara. Trueb. False

Answers

b. False

DNA mutations occur in the genetic material of an organism, specifically in the DNA sequence. The shape of the extracellular portion of a protein is determined by the amino acid sequence of the protein, which is encoded by the DNA. A change in the DNA sequence can result in a change in the amino acid sequence and therefore the shape of the protein, but the mutation would be located in the DNA, not in the extracellular portion of the protein.

It's important to note that a change in the shape of extracellular portion of a protein, can have various effects on the protein activity, stability, and interactions with other molecules, but the change would occur after the protein is translated from the DNA, not in the DNA itself.

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