where glow worms prefer to live 96 points pls hurry
in _ _ _ _ _ _ _ _ _ _

Answers

Answer 1

Answer:

below

Explanation:

Glow worms like to live in drawl and wet environments. Typically, they will live in caves if they can find one somewhere, if not they live together near waterfalls in the Queensland.

Best of Luck!

Answer 2

Answer:

try: damp places


Related Questions

CAN SOME ONE HELP ME WITH 8-12 PLZ!!!!!!!!!!!!

CAN SOME ONE HELP ME WITH 8-12 PLZ!!!!!!!!!!!!

Answers

Answer:

8.Active Transport

9.phospholipid

10.facilitated diffusion

11.osmosis

12.ATP

Explanation:

Active transport is similar to osmosis but it happens with other substances

The phospholipid is shaped like a ball with two legs coming out and the legs connect on both sides of the cell to help protect the membrane and to help provide pathways.

Facilitated diffusion is just what is happening when the material or substance is going through the membrane which is either active or passive.

Osmosis is when the water passes through the membrane from a less concentrated place to a high concentrated place

ATP is energy used to help material or substance through the cell however only certain types of material need the energy to pass through some don't require energy at all

Which of the following statements about marriage prohibitions in the United States is correct? Consanguineous unions (fist-cousin marriage) show an increase of more than 8 percent in predicted birth defects of offspring Cousin prohibitions in marriage were enacted by law in the United States long before genetic research began. Inbreeding was considered a sign of family viability and success in the United States in the early 1900s. There is a lower risk of birth defects in offspring from women who are older than 50 years than in first-cousin marriages.

Answers

The correct statement regarding marriage prohibitions in the United States is that consanguineous unions (fist-cousin marriage) show an increase of more than 8 percent in predicted birth defects of offspring.

According to genetic research, marriages between cousins are associated with an increase of more than 8 percent in predicted birth defects of offspring. Many states in the United States have banned first-cousin marriage due to the high probability of birth defects, such as Alabama, California, Florida, and so on. While it is legal in a few states, it is only permitted under specific conditions, such as medical counseling. Consequently, consanguineous marriages are discouraged in the United States because of the increased risk of genetic anomalies.

The state of being related by blood is known as consanguinity, and the terms consanguineous relationships or unions are used to describe relationships between relatives who are related by blood.

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What if the SHH you are making needs to be accumulated in the cell so that it can be released all at once into the extracellular space at a specific time? How would you store the produced SHH? What would need to occur to release all of the SHH from storage into the extracellular space?

Answers

If SHH is to be accumulated and then released into cellular space at a specific time, it would be necessary to establish storage mechanisms and release mechanisms.

To store the produced SHH would require specialized cellular compartments.

To release all of the stored SHH, a signal or stimulus would need to trigger the release of SHH from storage into the extracellular space.

What steps would the SHH storage and release process take place?SHH production.Storage.Storage regulation.Production of the SHH release signal.SHH release.

SHH is a protein that is stored within the cell and is released into the extracellular space in times of need. These processes need to work in a very regulated way in order to achieve their objectives. For this reason, well-regulated and optimized storage and release mechanisms are needed.

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please help asap:)!!!!


please help asap:)!!!!

Answers

Answer:

Kangaroo is a herbivore

Porcupine is a scavenger

Explanation:

extracellular matrix content and remodeling does not differ between higher-responders and lower-responders to resistance training pdf

Answers

The study by Hulmi and colleagues found that extracellular matrix content and remodeling does not differ between higher-responders and lower-responders to resistance training.

While the ECM plays an important role in tissue growth and repair, the changes induced by resistance training do not appear to be a major determinant of individual response to training.

A study conducted by Hulmi and colleagues (2019) investigated the changes in extracellular matrix content and remodeling between higher-responders and lower-responders to resistance training.

They discovered that the extracellular matrix content and remodeling did not differ between the two groups.

The extracellular matrix (ECM) is a network of proteins and carbohydrates that surrounds and supports cells in the body.

It plays an important role in providing structural support, regulating cell behavior, and influencing tissue growth and repair.

Resistance training has been shown to cause changes in the ECM, including increased synthesis of collagen and other matrix proteins, and increased activation of matrix metalloproteinases (MMPs) that break down matrix proteins. However, the extent of these changes can vary between individuals, with some responding more robustly to training than others.

The study by Hulmi and colleagues compared the changes in ECM content and remodeling in higher-responders and lower-responders to resistance training.

They found that while both groups experienced significant changes in ECM content and remodeling, there was no significant difference between the two groups.

This suggests that the changes in ECM induced by resistance training are not a major contributor to the differences in response to training between individuals.

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true or false: researchers found that if a person did a series of muscle contractions to the point of fatigue with the eyes closed, simply opening the eyes restored tension.

Answers

Awnser: This statement is true.

Train a pull into the sation every 6 hours . The train B pulls into the sation every 3 hours . They both pulled thr sation at 3pm. When is the next time they with both pull into the sation at the same time?

Answers

Answer:

9 pm

Explanation:

A pulls into the station every 6 hours while B pulls into the station every 3 hours. Hence, for every time A pulls up, B must have pulled up twice.

They both pulled into the station at 3 pm. At 6 pm (3 pm + 3 hours), B would pull into the station while A would still be on the road. At 9 pm (3 pm + 6 hours), B will pull in once more while A will just be pulling up the first time since 3 pm.

Hence, the next time both trains will pull into the station at the same time would be 9 pm.

identify the blood vessel tunic which contains the specialized simple squamous epithelium called the endothelium. the endothelium is continuous throughout the entire vascular system, including the lining of the chambers of the heart.

Answers

The tunica intima, is the tunica of the blood vessel that contains the specialized simple squamous epithelium called the endothelium. The endothelium is continuous throughout the vascular system, including the lining of the heart chambers.

The Role of the Intima Tunica in the Vascular System

The tunica intima is a layer of the vascular system that contains the simple specialized epithelium, called the endothelium. This layer extends throughout the vascular system, including inside the heart's spheres.

The endothelium is extremely important for cardiovascular health, as it forms part of the barrier between the blood and the tissue cells surrounding the blood vessels. This layer protects tissue cells from the presence of toxic factors in the blood. In addition, it is responsible for maintaining the homeostasis of the cardiovascular system by regulating blood pressure and blood flow.

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What cell parts are common to all of these cells?
Use complete sentences.

Answers

Answer:

nuclear, cell membrane, DNA

Explanation:

If you're talking about Prokaryotic and Eukaryotic cells...

They both have a cell membrane, which is basically like the wall of the cell.

They both have ribosomes, which are basically protein things.

They both have nucleoids, basically DNA.

They both have cytoplasm, or the stuff that fills in the remaining space in the cell.

If you are talking about animal and plant cells...

Animal cells basically share everything they have with plant cells, apart from the fact that plant cells have cell walls instead of a cell membrane.  

However, plant cells don't have the flagella, centrioles, and a few more other things that animal cells do.

Plant cells also have a central vacuole and chloroplasts.

(GIVING BRAINLIEST!!!!!!)

Which environment has low temperatures and low humidity?

A) Grassland
B) Rainforest
C) Tundra
D) Wetland

Answers

Answer:

c{tundra

Explanation:

tundra is very very cold that it does not have high temperatures or humidtey

i also took the test

hope this helps

Answer:

i believe it would be C) Tundra

Explanation:

tundra is pretty cold so it doesn't have high temperatures or humidtey.

g Jogging primarily uses the ______ energy system, while a 200 meter sprint primarily uses the ______ energy system. Group of answer choices ATP-PC, aerobic metabolism anaerobic glycolysis. aerobic metabolism both primarily use aerobic metabolism aerobic metabolism, anaerobic glycolysis

Answers

Jogging primarily uses the aerobic metabolism energy system, while a 200 meter sprint primarily uses the anaerobic glycolysis energy system.

What is anaerobic and aerobic energy system?

Aerobic respiration involves the use of oxygen to release energy for metabolism while anaerobic respiration is release of energy without oxygen.

For a jogging exercise, which takes longer than 2 - 3 minutes makes use of aerobic metabolism because oxygen is needed for the muscles to get energy.

On the other hand, a 200 meter sprint primarily uses anaerobic system of glycolysis as it takes only seconds to complete the race.

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Describe what happens to a chemical reaction with or without an enzyme.

Answers

Answer:

Without enzymes, many chemical reactions would occur at a much slower rate because the amount of activation energy required would be far greater. When molecules are involved in a chemical reaction, enzymes act as a catalyst for either breaking them down or building them up into more complex molecules.

Explanation:

Firstly, an enzyme is a chemical substance that speeds up a chemical reaction. This means that a chemical reaction with an enzyme present would be quick or happen at a faster rate.

Enzymes also help the substance undergoing the reaction to not get used up during the process.

However, if the enzyme is absent, the chemical reaction happens very slowly and also the substance undergoing the reaction gets used up during the process.

considering the function of red blood cells is to carry oxygen from the lungs through the circulatory system to the rest of the body, why did the patient’s oxygen levels fall? the patient:

Answers

The patient's oxygen levels may have fallen due to factors such as reduced oxygen intake, impaired oxygen-carrying capacity of red blood cells, inadequate circulation, or problems with oxygen exchange in the lungs.

Red blood cells play a crucial role in transporting oxygen from the lungs to the body tissues. If a patient's oxygen levels have fallen, there could be several underlying reasons.

One possibility is reduced oxygen intake, which can occur due to respiratory conditions like lung disease or airway obstruction. Impaired oxygen-carrying capacity of red blood cells can also lead to decreased oxygen levels.

This can be caused by conditions such as anemia or certain genetic disorders affecting hemoglobin production. Inadequate circulation, often seen in conditions like heart failure or shock, can limit the delivery of oxygen to tissues despite normal oxygen levels in the blood.

Lastly, problems with oxygen exchange in the lungs, such as pneumonia or lung damage, can hinder the transfer of oxygen from inhaled air to the bloodstream. Determining the specific cause requires a comprehensive evaluation by healthcare professionals to address and treat the underlying condition appropriately.

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the laser beam in figure ex23.7 is aimed at the center of a rotating hexagonal mirror. how long is the streak of laser light as the reflected laser beam sweeps across the wall behind the laser?

Answers

To calculate the length of the streak of laser light, we need to know the angular velocity of the rotating hexagonal mirror and the angle of the reflection. Assuming the hexagonal mirror rotates at a constant angular velocity, we can use the equation: length of streak = velocity of reflection x time

The velocity of reflection can be calculated using the law of reflection, which states that the angle of incidence equals the angle of reflection. Since the laser beam is aimed at the center of the hexagonal mirror, the angle of incidence is 90 degrees. The angle of reflection will depend on the position of the rotating mirror. For simplicity, let's assume that the mirror rotates at a speed of 1 revolution per second and that the angle of reflection is always 60 degrees (the angle between adjacent sides of the hexagon).
In one revolution of the hexagonal mirror, the laser beam will reflect 6 times, creating 6 streaks of light. Each streak will have a length of:
velocity of reflection x time = (2 x velocity of laser x sin(angle of reflection/2)) x (1/6) seconds
The velocity of the laser can be assumed to be the speed of light, which is approximately 3 x 10^8 m/s. The angle of reflection is 60 degrees, so the angle of reflection/2 is 30 degrees. Plugging in these values, we get:
length of streak = (2 x 3 x 10^8 x sin(30/2)) x (1/6) seconds
length of streak = 25 cm
Therefore, the length of each streak of laser light as the reflected laser beam sweeps across the wall behind the laser is 25 cm.

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Draw suppose genes c and d are linked on one chromosome and genes c and d are linked on another chromosome. Assuming that crossing over does not take place, sketch the daughter cells resulting from meiosis, showing the chromosomes and position of the genes.

Answers

The resulting daughter cells are shown in the attached figure.

Stem cells have two chromosomes. One chromosome has C and D genes, while the other has c and d genes. Chromosomes are copied during the cell cycle's cell division cycle (interphase - S phase).

Chromosomes divide in meiosis I, resulting in the segregation of chromosomes.

During meiosis II, the two daughter cells resulting from meiosis-I are divided into four cells. The cells are separated resulting in the production of two types of gametes or daughter cells. One type contains the C and D genes, and the other type contains the c and d genes.

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Draw suppose genes c and d are linked on one chromosome and genes c and d are linked on another chromosome.

help i need help help me

help i need help help me

Answers

Answer:

horsetail is a seedless vascular plant

club moss is a seedless vascular plant

Fern is a seedless vascular plant

Moss is a non vascular plant

Liverwort is a non vascular plant

Hornwort is a non vascular plant

A tissue composed of thin-walled cells with interconnecting air spaces between them is called Group of answer choices collenchyma. secretory tissue. sclerenchyma. chlorenchyma. aerenchyma.

Answers

A tissue composed of thin-walled cells with interconnecting air spaces between them is called aerenchyma. Aerenchyma is derived from the Greek words aer (air) and enchyma (infusion).It is a type of tissue that is composed of large, thin-walled, parenchyma cells that are connected by large intercellular spaces filled with air.

It is generally found in plants growing in waterlogged soils, where it allows the circulation of oxygen from the aerial parts of the plant to the submerged roots. The air-filled spaces in aerenchyma can also help to provide buoyancy to the plant.In aquatic plants, the stem and leaves have air spaces that provide a passage for oxygen to reach all parts of the plant.

The spaces in the aerenchyma tissue can vary in size, and may contain specialized cells known as aerenchyma lacunae or schizogenous cavities that provide aeration to the plant by promoting oxygen diffusion.  The presence of aerenchyma is particularly important for plant survival in waterlogged environments.

It is also commonly found in plants that live in salt marshes, where the roots are exposed to a high concentration of salt and the aerenchyma helps to remove excess salt from the plant. Therefore, the tissue composed of thin-walled cells with interconnecting air spaces between them is called aerenchyma and it is generally found in plants growing in waterlogged soils, where it allows the circulation of oxygen from the aerial parts of the plant to the submerged roots.

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construct an argument giving scientific reasons to compare the advantages and disadvantages of gene therapy over the use of drugs (i.e pharmacotherapy for the treatment of diseases)​

Answers

Explanation:

advantages - more effective and therefore a higher chance of success. since a genome is usually produced prior to procedure, risks and allergic reactions can be reduced effectively. little to no side effects are noticed as a genome analysis is done before. often the problem can be solved from the root in gene therapy.

disadvantages - ethical issues as often people are not comfortable in genome analysis. can be too expensive as gene therapy requires advanced technology. in the case of using radioactive elements, it may lead to mutations that may be a bigger issue than the disease itself.

hope it helps. :)

the diameter of most animal and plant cells ranges from the diameter of most animal and plant cells ranges from 10 to 100 micrometers. 100 to 1,000 micrometers. 0.1 to 1.0 micrometers. 1.0 to 10 micrometers.

Answers

The diameter of most animal and plant cells ranges from 10 to 100 micrometers. This means that the size of these cells can vary between 10 and 100 micrometers in diameter. To put this into perspective, a micrometer is one-millionth of a meter, so we are talking about very small sizes here.


To understand the range better, let's consider some examples. The cells in the human body, such as red blood cells, are typically around 7 micrometers in diameter. On the other hand, some plant cells, like the ones found in the xylem, can be much larger, reaching up to 100 micrometers or more.
So, when we say the diameter of most animal and plant cells ranges from 10 to 100 micrometers, we are referring to the general size range that encompasses the majority of cells in both animals and plants. It's important to note that there can be exceptions to this range, as some cells may fall outside of it.
In summary, the diameter of most animal and plant cells ranges from 10 to 100 micrometers, with variations depending on the type of cell and organism.

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What is the initial velocity?

What is the initial velocity?

Answers

Answer: Initial Velocity is the velocity at time interval t = 0 and it is represented by u. It is the velocity at which the motion starts. They are four initial velocity formulas:

Explanation:

Why are sand dunes commonly found along the coast?(1 point) The salt in the water is needed to hold the sand together. The salt in the water is needed to hold the sand together. Moving water is needed to deposit the particles on the river bed. Moving water is needed to deposit the particles on the river bed. There is a lot of wind to carry the particles. There is a lot of wind to carry the particles. Heavy wave action is needed to move the sand.

Answers

it's the 2 one hope this help :)Answer:

Explanation:

wykonaj tabele w której porównasz funkcje wszystkich rodzajów elementów morfotycznych krwi

Answers

Is this a question or just a prank?

Explain what is meant by the term gaseous exchange. In which organ does it take place?​

Answers

Answer:

the body is an organ

Explanation:

organ

Where is the DNA located in a eukaryotic cell?

Answers

Answer:

It is located in the nucleus

Explanation:

Answer:

Explanation:

nucleus

The nucleus is particularly important among eukaryotic organelles because it is the location of a cell's DNA.

Which statement is incorrect about the Geologic Time Scale? A Life was not present when the Earth was still cooling. B Prokaryotes showed up on Earth long before any long reptiles and Small plants. C Modern humans arrived later than reptiles and small plants D Dinosaurs showed up just after the Earth was created.

Answers

B because thats the answer

Prokaryotes showed up on Earth long before any long reptiles and Small plants statement is incorrect about the Geologic Time Scale

what are the characteristic features of prokaryotic cell ?

Prokaryotic cells are microorganisms include Bacteria and Archaea while other photosynthetic prokaryotes are cyanobacteria which do photosynthesis.

A prokaryotic cell is a single membrane bound cell where all the metabolic reactions occur within the cytoplasm,  free-living or parasites in nature, they lack nuclear membrane.

In prokaryotes the organelles like  Mitochondria, Golgi bodies, chloroplast, and lysosomes are absent, whereas genetic material is present as a single chromosome;

The prokaryotic cell divide  by binary fission where as the sexual mode of reproduction involves conjugation.

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Who proposed the theory of evolution by natural selection

Answers

Charles Darwin

The theory of evolution is a shortened form of the term “theory of evolution by natural selection,” which was proposed by Charles Darwin and Alfred Russel Wallace in the nineteenth century.

hope this helps

temperature for this enzyme​

temperature for this enzyme

Answers

Answer:

C ) 60 degree

Explanation:

Answer:

C

Explanation:

inhumane farming methods are detrimental to both crops and animals .Critically discuss how animals get affected

Answers

This farming is responsible for organ failure and bad health condition of organism.

Animals get adversely affected by inhumane farming because in this farming animals should treated as a production material not the animals. In inhumane farming methods the animals are reared by giving highly nutritive feed and apply hormones to the animals in order to produce milk and meat in large amount. This farming method affects the health of the animals such as organ failure and lameness.

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What is the answer to life?

Answers

Answer:

Everything

Forty-two is the ASCII code for the symbol * also known as the asterisk. This symbol is often thought to translate to anything or everything. In this instance, 42 = everything, the meaning of life.

Answer: 42

Explanation:

Which interaction helps stabilize the tertiary level of protein organization?.

Answers

Answer:

Interactions among R groups results in hydrophobic interactions, hydrogen bonds, salt bridges, and sulfur-sulfur covalent bonds.

Explanation:

The above listed interactions help stabilize the protien organization (R group is the main player)

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