Which phrase describes an example of homeostasis?
A. Maintenance of a healthy blood pressure
B. Exposure of skin to harmful rays
C. Overproduction of white blood cells
D. Loss of blood due to an injury

Answers

Answer 1
A maintenance of a healthy blood pressure

Homeostasis is the process of our body maintaining its optimal levels

Related Questions

Question 4 of 10
How is a scientific theory developed?
O A. An experiment is repeated over and over with the same results.
B. A single experiment is carefully performed once.
C. One scientist supports his or her hypothesis with an experiment.
D. Many different experiments are repeated many times.

Answers

A scientific theory is developed by:

D. Many different experiments are repeated many times.

What is scientific theory

A scientific theory is a well-substantiated and widely accepted explanation of some aspect of the natural world that is based on empirical evidence and has been repeatedly tested and confirmed through experimentation and observation.

Scientific theories are built upon a foundation of previous scientific knowledge and are subject to ongoing refinement and revision as new data becomes available. They are considered the most robust and comprehensive explanations of natural phenomena that currently exist and provide a framework for understanding how the natural world operates. Examples of well-established scientific theories include the theory of evolution, the theory of gravity, and the theory of relativity.

The development of a scientific theory is a long and rigorous process that involves multiple lines of evidence and repeated experimentation. It typically involves many scientists from different fields and backgrounds working together over a period of years or even decades to collect data and perform experiments that support or contradict a given hypothesis.

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A plant cell is placed in a solution containing 10% sodium chloride. This
concentration is much greater than the concentration inside the cell. As a result,
water moves from inside the cell to outside the cell causing it to shrivel and die. What Type of Transport?

Answers

The movement of water from inside the cell to outside the cell causing it to shrivel and die is a type of passive transport.

What is a passive transport?

A passive transport is a kind of transport in biology that does not involve the input of energy in form of ATP.

This means that substances move from a region of higher concentration to a region of lower concentration.

According to this question, a plant cell is placed in a solution containing 10% sodium chloride. This concentration is much greater than the concentration inside the cell.

As a result, water moves from inside the cell to outside the cell causing it to shrivel and die. This depicts a passive transport.

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Fill in Box 5.15, listing three tissue types that provide the human body with some kind
of protective benefit, and briefly explain what these tissues do.
Box 5.15 Tissue Types with a Protective Benefit
Tissue
What They Do to Protect an Organ

Answers

a) Epithelial Tissue

Function: helps to regulate the exchange of gases, fluids, and other substances.

b) Connective Tissue

Function: provides support and protection to various parts of the body.

c) Nervous Tissue

Function: responsible for transmitting signals throughout the body, allowing us to respond to our environment.

Protective Tissues and their functions

Epithelial Tissue: This type of tissue forms a protective barrier over the surfaces of the body, such as the skin and mucous membranes. It acts as a physical barrier to prevent harmful substances from entering the body, and helps to regulate the exchange of gases, fluids, and other substances.

Connective Tissue: This type of tissue provides support and protection to various parts of the body. For example, bones act as a rigid framework to protect internal organs, while cartilage and tendons cushion and stabilize joints.

Nervous Tissue: This type of tissue is responsible for transmitting signals throughout the body, allowing us to respond to our environment. The nervous system also acts as a protective mechanism by sending signals to the muscles to contract in response to harmful stimuli, such as a sudden touch or pain.

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How would reducing low-growing plants from an area impact a population of tortoises with two varieties of neck extension ability:
short and long distance? (1 point)
O The proportion of tortoises with the ability to extend their necks a long distance would increase.
O The variety of tortoises with the ability to extend their necks a long distance would go extinct.
O The variety of tortoises that could only extend their necks a short distance would go extinct.
O The proportion of tortoises that could only extend their necks a short distance would increase.

Answers

Reducing low-growing plants from an area will impact a population of tortoises with two varieties of neck extension ability:short and long distance such that the proportion of tortoises that could only extend their necks a short distance would increase which is therefore denoted as option D.

What is a Population?

This is used to refer to the number of people in a single area at a given point in time.

Reducing low-growing plants from an area  will lead to a proportion of tortoises that could only extend their necks a short distance increasing due to natural selection which would occur.

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carbon cycle are they always parts of the same compound?

Answers

No, the carbon cycle involves the movement of carbon in different forms and compounds, including both organic and inorganic compounds.

What happens in a carbon cycle?

In the carbon cycle, carbon moves between the atmosphere, the oceans, the land, and living organisms. Carbon can be present in different forms, such as carbon dioxide (CO2) in the atmosphere, dissolved inorganic carbon (DIC) in the oceans, and organic carbon in living organisms and in dead organic matter in soils and sediments.

Carbon also exists in various organic compounds, such as carbohydrates, proteins, and lipids, which make up the living tissues of organisms. As organisms respire, they release carbon dioxide back into the atmosphere or into the water, and when they die, their remains decompose, releasing carbon into the soil or water.

In short, the carbon cycle involves the movement of carbon in various forms and compounds, and it is not limited to a single compound or form.

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The enzyme _____forms a Schiff base upon formation of the enzyme-substrate complex allowing aspartate mediated cleavage of the substrate.Entry field with correct answera. hexokinaseb. phosphoc. glucose isomerased. glucose-6-phosphatasee. phosphoglucose mutasef. aldolase

Answers

The enzyme aldolase forms a Schiff base upon formation of the enzyme-substrate complex allowing aspartate mediated cleavage of the substrate.

Aldolase is a cytosolic enzyme involved in glucose and fructose metabolism. It specifically catalyzes a reversible reaction converting fructose-1,6-bisphosphate to dihydroxyacetone phosphate (DHAP) and glyceraldehyde-3-phosphate. This enzyme acts on her six reversible reactions in gluconeogenesis and glycolysis. Aldolase is a glycolytic enzyme that catalyzes the conversion of fructose-1-6-diphosphate to glyceraldehyde-3-phosphate and dihydroxyacetone phosphate via the glycolytic pathway. Within cells, aldolase is localized in both the cytoplasm and the nucleus.

Fructose-1,6-bisphosphate aldolase (FBPA) is a glycolytic enzyme that catalyses the reversible cleavage of fructose-1,6-bisphosphate to glyceraldehyde-3-phosphate and dihydroxyacetone phosphate. The catalysis of class I FBPAs to form Schiff bases relies on a series of intermediates covalently attached to the catalytic lysine.

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This figure represents one of the Gestalt Principles. Which do you think this image represents and why? Your options are: Similarity Proximity Continuity Closure

Answers

Based on the figure, I believe that it represents the Gestalt principle of Proximity.

What is the principle of similarity about?

Proximity is the principle that elements that are close to each other tend to be perceived as a group. In the given figure, we can see that the circles are arranged in a way that they are closer to the other circles in their respective rows and columns than to the circles in the other rows and columns. This makes us perceive the circles in each row and column as a group, which is a result of the principle of proximity.

The principle of similarity is about elements that are similar in some way being perceived as a group, which is not the case in this figure since the circles are not identical. The principle of continuity refers to our tendency to perceive elements in a continuous pattern, which is not evident in this figure. Finally, the principle of closure suggests that we tend to perceive incomplete figures as complete, which is not applicable in this figure as all circles are complete.

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Which reactions below are condensation reactions? Select all that
apply.
Deoxyribonucleic acid → five-carbon sugar + phosphate group + nitrogen base
Glucose + fructose sucrose
4 of 8 QUESTION
Lysine (amino acid) + serine (amino acid) + glycine (amino acid) → polypeptide
Triglyceride three fatty acids + glycerol

Answers

Answer:

The reactions that are condensation reactions are:

Deoxyribonucleic acid → five-carbon sugar + phosphate group + nitrogen baseGlucose + fructose → sucroseLysine (amino acid) + serine (amino acid) + glycine (amino acid) → polypeptide

Explanation:

In a condensation reaction, two molecules combine to form a larger molecule, and a smaller molecule, such as water, is released as a by-product.

Geologists can use ________ waves to learn about Earth’s interior. P waves travel faster than S waves. S waves travel through solids only, which tells geologists that the ______ core is liquid.
Geologists call the outer, solid area of Earth the crust; the next layer is the _____ . Finally, at the very center, is the core.

Answers

Geologists can use seismic waves to learn about Earth’s interior. P waves travel faster than S waves. S waves travel through solids only, which tells geologists that the outer core is liquid.

Geologists call the outer, solid area of Earth the crust; the next layer is the mantle. Finally, at the very center, is the core.

I apologize if I was wrong. I hope you have a lovely day! :)

Answer: seismic, outer, mantle

Explanation: got it right

Scientific questions have certain qualities in common. Choose the descriptions that apply to all scientific questions. Check all that apply.

Answers

They may come up with a tested hypothesis, have a specific goal, and fill up a knowledge gap.

What do you mean scientific?

Of, pertaining to, or demonstrating the principles or procedures of science.: carried out in the style of science or in accordance with the findings of research by science: employing thorough or methodical methods. advertising using science.

What are examples of scientific?

This following are additional examples of scientific explanations: Theorizing about gravity Isaac Newton's gravitational theory is a simple formula which shows how the gravitational force can act between two objects of differing masses, divided by a particular distance.

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hemophilia is caused by sex linked recessive allele. Diane's brother has hemophilia there's no history of hemophilia and her husband Craigs family is it possible for Diane and Craig to have a child with hemophilia

PLS HELP

Answers

It not possible for Diane and Craig to have a child with hemophilia even though the gene is recessive in the wife

Can genes be recessive?

A recessive gene is a gene that will only express its characteristic (phenotype) when two copies of the gene are present, one from each parent. If an individual has only one copy of the gene (they are heterozygous), the dominant gene will be expressed instead.

In general, dominant genes mask the expression of recessive genes, so the phenotype of an individual is determined by the dominant gene. However, in certain cases (such as homozygosity for a recessive gene), the recessive gene can be expressed.

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what is the relationship between a continent and the earth’s plates

Answers

The continents are embedded in the plates

Answer:

tectonic plates

Explanation:

The relationship between a continent and the Earth's plates is that continents are part of the Earth's tectonic plates. The Earth's outer shell is divided into several large and many small plates, and the continents sit on these plates. The movement of these plates is responsible for many geological events such as earthquakes, volcanic eruptions, and the creation of mountains. The boundary between two plates is called a plate boundary, and there are three main types of plate boundaries: divergent boundaries, where plates move away from each other and magma rises from the mantle to create new crust; convergent boundaries, where plates collide and one plate is forced beneath the other, leading to the formation of mountains; and transform boundaries, where plates slide past each other and can cause earthquakes. The continents move with the plates, and over long periods of time, this movement has led to the formation and breakup of supercontinents, such as Pangaea.


Allen

Write the chemical formula for one compound in the equation that contains both ionic bonds and covalent bonds.

Answers

The chemical formula for one compound in the equation that contains both ionic bonds and covalent bonds is NaHCO3.

Monoclinic crystalline structure describes sodium bicarbonate, also known as sodium hydrogen carbonate. Sodium carbonate was created by French scientist Nicolas Leblanc. The first plant to make baking soda was established by New York bakers Austin Church and John Dwight in the year 1846.

It is a white, crystalline, solid chemical substance that is often in the form of powder. Sodium ions and bicarbonate ions make up this salt. Its chemical name is NaHCO3. Its foundation is thin. Its PH value is around 8.31, and it is frequently referred to as baking soda.

One sodium cation and one bicarbonate anion are present in each sodium bicarbonate molecule. In this instance, an ionic connection is created between the negatively charged oxygen and the positively charged sodium ion (which is singly bonded to the central carbon and not bonded to a hydrogen atom)

Cockroaches are killed using it, and it also controls fungus growth. It is employed as a cleaner. It serves to guard against odor and discomfort in the armpit area. It is employed in cooking, particularly for baking food. It is given intravenously in medicine to lessen the negative effects of chemotherapy.

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1. Eutrophication
a. The number of natural resources used to support an individual's lifestyle
2. Biological
augmentation
b. The result of pollutants reacting with water in the air to form sulfuric acid, which falls
back to the earth's surface in rain, snow, sleet, or fog
3. Ecological
footprint
c. When fertilizers, animal waste, or sewage flow into waterways, causing algal blooms
and depriving other organisms of oxygen
WA
d. Adding natural predators to a damaged ecosystem
4. Biodiversity
hotspot
e. Areas of high biodiversity that have been significantly impacted by human activities
5. Acid
precipitation​

Answers

Answer:

1. Eutrophication is the flow of fertilizers, animal waste, or sewage into waterways, causing algal bloomsand depriving other organisms of oxygen (c)

2. Biological augmentation is the adding of natural predators to a damaged ecosystem (d)

3. Ecological footprint is the number of natural resources used to support an individual's lifestyle (a)

4. Biodiversity hotspots are areas of high biodiversity that have been significantly impacted by human activities (e)

5. Acid precipitation is the result of pollutants reacting with water in the air to form sulfuric acid, which fallsback to the earth's surface in rain, snow, sleet, or fog (b)

Answer:

1c

2d

3a

4e

5b

6 An area qualifies as a biodiversity hotspot with two factors. The first is that 1,500 or more species in that area are endemic to the area. The second is that 70 percent of the original habitat must be lost in that area due to larger natural and manmade factors.

Explanation:

trust me

Atoms that have the same number of protons
and electrons are electrically neutral because
_____.

A. their electrons are not found in the nucleus
B. they have neutrons that cancel both positive and negative
charges
C. the positive charges on the protons and the negative charges
on the electrons cancel each other out
D. their electrons have much less mass than their protons

Answers

Atoms that have the same number of protons and electrons are electrically neutral because the positive charges on the protons and the negative charges on the electrons cancel each other out. Therefore, the correct option is C.

What are atoms?

An atom is the basic unit of matter and the defining structure of elements. They are composed of a nucleus, which is made up of protons and neutrons. The electrons, orbit the nucleus in shells.

The electrons in an atom are negatively charged, while the protons are positively charged. If the number of protons are equal to the number of electron in an atom, the atom is considered to be electrically neutral. Therefore, the correct option is C.

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What is meant by “electron dense layer” when saying the basal lamina is an electron dense layer?

Answers

Answer:

Read below:

Explanation:

The term "electron dense" refers to the appearance of a material under the electron microscope, which uses a beam of electrons to magnify the sample. An electron dense layer appears as a region that appears darker than the surrounding tissue under electron microscopy, indicating a higher electron density. In the context of the basal lamina, it refers to the fact that the basal lamina appears as a dark layer when viewed under an electron microscope, due to the high electron density of the extracellular matrix components that make up the basal lamina. This electron dense appearance allows for the easy visualization and distinction of the basal lamina from the surrounding tissue under electron microscopy.

Below are symptoms of a patient related to the Immune and Lymphatic Systems.
1.Identify all anatomical structures related to and/or that are being affected based on the patient case information. (i.e. tissues, organs, vessels, brain components, membranes)
2.Explain how the anatomical structures and their physiological function/dysfunction are interrelated normally and what is going wrong with the structures.
3.Identify and explain possible a diagnosis and what can be done to fix or reverse the current situation.

Patient Case
Donna is a 35 year old female who is married and has a 5 year old daughter. Donna recently found out she was pregnant, but last week at 12 weeks she started to spot and went to see the doctor. At the doctors, Donna found out she was having a miscarriage and the doctors decided to look at her blood type and seemed very alarmed and asked her who her doctor was for her first child. Her blood type was A-.

Answers

Donna, a 35-year-old female who recently had a miscarriage, may have a condition called Anti-A, Anti-B Hemolytic Disease. This is a type of autoimmune disease where the immune system attacks red blood cells that have A or B antigens. This can cause hemolysis and can lead to a miscarriage if the fetus has a different blood type than the mother. The doctor may perform additional tests to confirm the diagnosis and may treat the patient with medications to suppress the immune system, monitor their health, or in severe cases, perform a blood transfusion.

The tail points to where the wind is
coming from. If the tail points north, a north wind is moving from north to south.
What direction is the wind coming from on the symbol above?

Answers

The direction of the wind is coming from the Southwest.

How can wind direction be found?

Wind direction can be measured using a variety of instruments, including the windsock and wind vane. Both of these instruments operate by moving in order to reduce air resistance. The direction from which the wind is blowing is indicated by the way a weather vane is pointed by prevailing winds.

The wind direction is represented by the shaft of an arrow extending from the station circle in the direction of the wind. On the shaft of the wind direction arrow, the wind speed is plotted as feathers and half-feathers representing 10 and 5 knots, respectively.

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The complete question is:

Look at the “tail” that is sticking out from the circle. The tail points to where the wind is coming from. If the tail points north, a north wind is moving from north to south. What direction is the wind coming from on the symbol above? ________________________

Male primates typically do not care for their offspring. Which of the following are accurate explanations of why they do not care for their offspring?
a. Females do not allow males to care for the young.
b. They can use their resources to acquire other mates.
c. Caring for young does not increase their fitness.
d. Males lack knowledge of how to care for offspring.
e. Males lack sufficient energy to care for offspring.

Answers

Thus, it is true that males rarely help with baby care in the majority of monkey species. Any animal that is not categorised as a primate is a non-primate.

Any mammal that is a member of the family that includes people, apes, lorises, tarsiers, and lemurs is referred to as a primate. Primates are a taxonomic group that includes a wide range of animals, including lemurs, lorises, tarsiers, monkeys, apes, and humans. Primates are a group of mammals that are defined by having a large brain, using hands, and complex behavior. Non-primates are any animals not classified as primates. Their frontal lobe is vast and intricate. The core tenet of mammalian socioecology is that females incur disproportionately higher reproductive costs than males. Therefore, it is projected that female reproductive success will be most impacted by access to energy resources, whereas male reproductive success will be primarily impacted by mate availability.

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What are the labels of this heart diagram?

Answers

Structure of Heart

The heart is made up of four chambers. The heart has two chambers on the top (atrium, plural atria) and two on the bottom (ventricles), one on each side.

Right atrium: Two major veins carry oxygen-depleted blood to the right atrium. The superior vena cava transports blood from your upper body to your heart. The inferior vena cava transports blood from the lower body to the heart. The right atrium then pumps blood to your right ventricle.

The pulmonary artery transports oxygen-depleted blood from the lower right chamber to the lungs. The lungs are responsible for replenishing the oxygen in the blood.

The pulmonary veins transport the blood to the left atrium once the lungs have filled it with oxygen. This upper chamber is responsible for pumping blood to your left ventricle.

The left ventricle is somewhat larger than the right. It moves oxygen-rich blood across your body.

The heart valves

Your heart valves function as gates between your heart chambers. They open and close to let blood flow.

The atrioventricular (AV) valves interconnect your heart's upper and lower chambers. They are as follows:

Tricuspid valve: A valve that connects your right atrium to your right ventricle.

Mitral valve: The valve that links the left atrium to your left ventricle.

Semilunar (SL) valves open as blood rushes out of your ventricles. They are as follows:

When blood travels from your left ventricle to your aorta, the aortic valve opens (the artery that carries oxygen-rich blood to your body).

The pulmonary valve opens as blood flows from your right ventricle into your pulmonary arteries (the only arteries that carry oxygen-poor blood to your lungs).

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What are the labels of this heart diagram

Answers

The heart is a muscle that pumps blood to different parts of the organism. From the left to the right, labels are: Right atrium, Muscle wall - myocardium, Septum, Right ventricle, Left ventricle, Tricuspide valve, Bicuspid valve, Left atrium, Aortic semi-lunar valve, Pulmonary semi-lunar valve.

What are the parts of the heart?

The heart is a muscle composed of four cameras

2 ventricles2 atriums

A septum divides the two ventricles and another septum separates the two atriums.

When the heart contracts it sends blood. This contraction can occur in the ventricle or the atrium. It is called Systole.

Atrial contraction occurs first and is followed by ventricular contraction.During contraction, blood is ejected from the atrium to the ventricles. Then, from the ventricles to the arteries (pulmonary or aorta).

When the heart relaxes blood enters the cavities. It is called diastole. New blood enters and fills first the atrium and then the ventricles again. And the cycle begins all over again.

Steps

1)

Deoxygenated blood returns from the body tissues through the superior cava vein (SCV) or inferior cava vein (IVC).

This blood enters the heart's right atrium (RA), which is the right superior cavity.

2)

Once in the right atrium, blood flows through the tricuspid valve (TV), to the right ventricle (RV), which is the right inferior cavity.

3)

From the right ventricle, the heart pumps blood into the principal pulmonary artery (PPA), through the pulmonary valve (PV).

4)

The pulmonary artery (PPA) takes deoxygenated blood to the lungs, where gas interchange is produced.

5)

Oxygenated blood goes from the lungs to the heart's left atrium (LA), which is the superior left cavity, through the pulmonary veins.

6)

From there, blood flows to the left ventricle (LV), which is the left inferior cavity, through the mitral valve.

7)

Finally, oxygenated blood goes from this last ventricle to the aorta (A) through the aortic valve. And from the aorta oxygenated blood moves to the rest of the body tissues.

Note: Usually, oxygenated blood is represented in red, while deoxygenated blood is represented in blue.

Image (from the left to the right):

Right atriumMuscle wall - myocardiumSeptumRight ventricleLeft ventricleTricuspide valveBicuspid valveLeft atriumAortic semi-lunar valvePulmonary semi-lunar valve

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It has not stopped raining in northwest Washington State for the past four days. As a result of this rain, a large mudslide occurred, blocking traffic on a major highway before flowing into a local river that had already overflowed its banks due to the excess rain that had been falling. What step to managing a water source will need to be performed as a result of this mudslide and excess rain?


measuring the stage-discharge relation


measuring stream stage


measuring discharge


measuring runoff

Answers

The step that would be the most relevant here would be measuring the stage-discharge relation

What is the important step that is to be used here

All of the options you listed are important steps in managing a water source in response to a situation like this mudslide and excess rain. However, measuring the stage-discharge relation is likely the most relevant in this particular scenario.

The stage-discharge relation refers to the relationship between the height of the water in a stream or river (stage) and the flow rate of the water (discharge). Measuring this relationship can help to assess the flow rate and volume of water in the river, which is important information for managing a water source in the aftermath of a mudslide and excess rain.

By knowing the stage-discharge relation, you can determine the amount of water flowing in the river and assess the risk of further flooding or other negative impacts. This information can then be used to make informed decisions about how to manage the water source, such as adjusting the release of water from upstream reservoirs or taking other measures to reduce the risk of further flooding.

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The next generation of lizards has 1092 individuals with green scales and 108 individuals with blue scales. is the population in hardy-weinberg equilibrium? solve for p and q.
Compare the frequencies here with those in the previous question. Then answer: Is the population in Hardy-Weinberg Equilibriam (yes or no)
PREVIOUS FREQUENCIES::
p=0.8
q=0.2
p^2=0.64

Answers

The population is not in hardy weinberg equilibrium, because it does not match the previous generation.

What is the population in Hardy-Weinberg Equilibrium?

The frequency of individuals = individuals/total population

The frequency of Green individuals = 1092/1200

The frequency of Green individuals = 0.91

                                                       q² = 0.91

                                                    √ q² = √0.91

                                                         q = 0.953

By using the first Hardy-Weinberg equation:

                                                                p + q   = 1

                                                                p + 0.953 = 1

                                                                p   = 1 - 0.953

                                                                p    = 0.046

Therefore, the population does not match the previous generation.

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Part A The evolution of cuticle presented land plants with a challenge that threatened their ability to live on land. What is this challenge, and why do stomata represent a solution? Match the words in the left column to the appropriate blanks in the sentences on the right. Reset Help prevent(s) Cuticle allow(s) water loss from leaves and prevent(s) entry of CO2 required for allow(s) photosynthesis. Stomata allow(s) CO2 to diffuse and can close to allow(s) water loss. Submit Previous Answers Request Answer X Incorrect; Try Again; One attempt remaining You filled in 2 of 4 blanks incorrectly.

Answers

The evolution of cuticles presented land plants with the challenge of preventing water loss from leaves and preventing the entry of CO2 required for photosynthesis, while stomata allow CO2 to diffuse and can close to prevent water loss.

1. Cuticle prevents water loss from leaves and prevents entry of CO2 required for photosynthesis.

2. Stomata allow CO2 to diffuse and can close to prevent water loss.

The waxy cuticle on the surface of leaves helps prevent water loss, but it also creates a barrier that prevents gases from entering and leaving the plant. This presents a problem for photosynthesis, which requires the uptake of carbon dioxide (CO2) and the release of oxygen (O2).

Stomata, have tiny pores on the leaf surface, allowing CO2 to diffuse into the leaf and O2 to diffuse out. Additionally, they can close to prevent excessive water loss through transpiration. The evolution of stomata allowed plants to thrive on land by overcoming the challenge of gas exchange while minimizing water loss.

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Complete Question:

The evolution of cuticles presented land plants with a challenge that threatened their ability to live on land. What is this challenge, and why do stomata represent a solution?

1. Cuticle ___ water loss from leaves and ___ entry of CO2 required for photosynthesis.

2. Stomata ____ CO2 to diffuse and can close to ______ water loss.

Fill the blanks with allow or prevent appropriately.

type your response on the box cell theory states that all living things contain one or more cells who do you think cell theory meets the definition of a scientific theory do you think it should be a scientific law ? explain your response

Answers

The cell theory states that all living things are composed of one or more cells, and this theory is widely accepted in the field of biology.

define Cell theory ?

Cell theory meets the definition of a scientific theory, which is an explanation of a natural phenomenon that is based on empirical evidence and has been repeatedly tested and confirmed through observations and experiments. The cell theory has been extensively tested and confirmed through numerous scientific studies and observations, and it has been shown to accurately explain the fundamental unit of life for all living things.

However, the cell theory should not be considered a scientific law. Scientific laws describe a generalization of how a natural phenomenon behaves under certain conditions, but they do not provide an explanation for why it behaves that way. For example, the law of gravity describes how objects are attracted to each other, but it does not explain why this occurs.

In contrast, the cell theory provides an explanation for the fundamental unit of life in living things, and it is based on the structure and function of cells. It is a more complex and nuanced explanation than a simple statement of how cells behave under certain conditions, which is why it is best classified as a scientific theory rather than a scientific law.

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What are the approximate coordinates of the star Rigel?

5 hours 10 minutes right ascension and -8⁰ declination
5 hours 40 minutes right ascension and -2⁰ declination
5 hours 40 minutes right ascension and 10⁰ declination
6 hours 50 minutes right ascension and 6⁰ declination

Answers

Answer:

5 hours 10 minutes right ascension and -8⁰ declination

Explanation:

The approximate coordinates of the star Rigel are 5 hours 14 minutes right ascension and -8⁰ declination.

Question 24 of 30
Which of the following best represents a simple food chain?
A. Producer → primary consumer → secondary consumer
B. Primary consumer → secondary consumer → producer
C. Producer → secondary consumer → primary consumer
D. Secondary consumer primary consumer → producer
SUBMit

Answers

"Producer → primary consumer → secondary consumer" best represents a simple food chain. Therefore, option A is correct.

What is a food chain?

A food chain is a network of links in a food web that runs in a straight line from producer organisms to apex predators, detritivores, or decomposer species.

A food chain also demonstrates how organisms are connected to one another by the foods they consume. A food chain's levels correspond to several trophic levels.

"Producer → primary consumer → secondary consumer" best represents a simple food chain. Therefore, option A is correct.

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The seed plants became dominant during the late ___ when the climate became ___

a. Cretaceous; drier

b. Carboniferous; drier

c. ​Carboniferous; wetter

d. Cretaceous; wetter

e. Cambrian; wetter

Answers

Answer:

The correct answer is d. Cretaceous; wetter.

Explanation:

During the late Cretaceous period, the climate became wetter, which allowed seed plants to become dominant. The increased rainfall and moisture provided favorable conditions for the growth and reproduction of seed plants, which eventually displaced the earlier dominant forms of plant life such as ferns and mosses. This shift in dominance marked a major step in the evolution of plants and paved the way for the development of modern forests.

   9. Name the three structures found in all viruses. 

Answers

The three structures found in all viruses are:

Capsid: A protein shell that surrounds and protects the viral genetic material.Nucleic Acid: The genetic material of a virus, which can be either DNA or RNA.Envelope (in some viruses): A lipid bilayer that surrounds the capsid and helps the virus enter host cells. This is only present in some viruses and not all.

What is a virus?

A virus is a tiny infectious agent that can reproduce only by infecting a host cell. Viruses are not considered living organisms because they do not have the ability to reproduce on their own and are dependent on the cellular machinery of the host cell to replicate.

Viruses are composed of a genetic material (DNA or RNA) surrounded by a protein coat called a capsid. Some viruses also have an outer envelope composed of lipids. The genetic material of the virus contains the instructions for replicating the virus, and the capsid and envelope protect the genetic material and help the virus infect host cells.

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Question- what type of circuit is in the diagram?

Answers

It’s a parallel circuit
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