PLZ ANSWER!!! Water covers the majority of Earth's surface and occurs in various forms.

Which option correctly orders these sources from the greatest amount of water to the least amount of water? (put it in order)

1. lakes and streams
2. frozen in ice
3. ocean
4. groundwater

Answers

Answer 1

Answer:

3,2,4,1

Explanation:

Answer 2
The answer is 3, 2 , 4 , 1

Related Questions

Which of the following terms refers to a urinary output of less than 100 mL per day?
a. albuminuria
b. bacteriuria
c. polyuria
d. anuria

Answers

The term that refers to a urinary output of less than 100 mL per day is d. anuria.

Anuria is a medical term used to describe a condition where there is a significant decrease or absence of urine production. It is defined as a urinary output of less than 100 mL per day. Anuria can be caused by various factors, including kidney failure, severe dehydration, urinary tract obstruction, or other underlying medical conditions.

To provide some context, let's briefly explain the other terms mentioned:

a. Albuminuria: This term refers to the presence of albumin (a protein) in the urine. It can be an indication of kidney damage or dysfunction, such as in conditions like diabetic nephropathy or kidney disease.

b. Bacteriuria: Bacteriuria is the presence of bacteria in the urine. It typically indicates a urinary tract infection (UTI) and is characterized by the growth of bacteria in the urinary system.

c. Polyuria: Polyuria is the opposite of anuria. It refers to abnormally high urine output, typically exceeding 2,500 mL (2.5 liters) per day. Polyuria can occur due to various reasons, including excessive fluid intake, certain medications, hormonal imbalances, or underlying medical conditions like diabetes mellitus.

In summary, anuria specifically refers to a urinary output of less than 100 mL per day, indicating a significant decrease or absence of urine production. It is important to note that anuria can be a serious medical condition requiring prompt evaluation and treatment, as it may indicate underlying kidney dysfunction or other health issues.

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Flies are scavengers and tend to break down dead organisms. Based on this information, what is a plant characteristic that would best attract flies?.

Answers

Scavengers are organisms that feed on dead organisms. The majority of the scavengers are drawn to the flowers that emit a rotten odor.

What are Scavengers?

A scavenger is an organism that feeds primarily on decaying biomass, such as meat or rotting plant material. Many scavengers are carnivores, which are organisms that eat meat.

Scavengers are a component of the food web, which describes which organisms eat which other organisms in nature. The food web divides organisms into trophic, or nutritional, levels.

There are three types of trophic levels. The first trophic level is autotrophs, or organisms that produce their own food. Plants and algae are examples of this. The second trophic level is herbivores, or organisms that consume plants and other autotrophs. The third trophic level includes scavengers, other carnivores, and omnivores, which consume both plants and animals.

Scavengers play a critical role in the food web. They keep the bodies of dead animals, or carrion, out of the ecosystem. Scavengers break down this organic material and recycle it as nutrients back into the ecosystem.

Scavengers are some birds. Vultures only consume the carcasses of dead animals.

Scavengers are some mammals. Hyenas are commonly thought of as scavengers, but they are also carnivores.

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Q: If you want to analyze the amount of energy that is being carried by a wave, which of the following factors should you pay attention to?

A. Wavelength
B. Frequency
C. Amplitude
D. Equilibrium

please help I'm so stuck on the homework D:

Answers

B or c it’s hard to choose

Can someone help me please

Can someone help me please

Answers

The ribosome is made of mRNA. A ribosome is an intracellular structure made of both RNA and protein, and it is the site of protein synthesis in the cell.

What is ribosome?

A ribosome refers to an intracellular structure made of both RNA and protein, and it is the site of protein synthesis in the cell. The ribosome reads the messenger RNA (mRNA) sequence and translates that genetic code into a specified string of amino acids, which grow into long chains that fold to form proteins.

A ribosome is the cellular machinery responsible for making proteins.

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Which of the following is not an environmental function of wetlands?

Group of answer choices

absorbing and removing pollutants from water

trapping carbon that would otherwise be released into the air

controlling floods

increasing runoff

Answers

Answer:

increasing runoff

Explanation:

Increasing runoff...

Imagine that a student wants to breed a species of rose that has a wonderful smell. The student has many different types of roses, but none of the individual roses has the wonderful smell that the student wants. What is the best way to go about breeding a pure species rose with the trait that the student wants?

Answers

Answer:

The best way to go about breeding a pure species of rose with the trait that you want is to breed the roses with another species of flower that smells good.

Explanation:

What do you mean by Traits?

Traits may be defined as the appearance or the manifestation of the desired characters.

This process of selecting the traits of your own choice is known as artificial selection. Through this technique, any individual can make the cross of their own desired characters.

Therefore, the best way to go about breeding a pure species of rose with the trait that you want is to breed the roses with another species of flower that smells good.

Which systems usually work together to overcome bacterial infections?

Answers

Answer:

Your immune system is a large network of organs, white blood cells, proteins (antibodies) and chemicals.

If a single cycle of PCR takes 5 minutes, it should it take _______ minutes to amplify one double-stranded molecule into 64

Answers

If a single cycle of PCR takes 5 minutes, it should it take 30 minutes to amplify one double-stranded molecule into 64

PCR (Polymerase Chain Reaction) is a laboratory technique that can be used to amplify DNA fragments. In each cycle of PCR, the amount of DNA is doubled.

Therefore, to determine how long it would take to amplify one double-stranded molecule into 64 molecules, we need to calculate the number of cycles required.

To amplify one double-stranded molecule into 64, it would require 6 cycles of PCR since 2^6 = 64.

If each cycle of PCR takes 5 minutes, then 6 cycles would take a total of 30 minutes (6 cycles x 5 minutes per cycle). Therefore, it would take 30 minutes to amplify one double-stranded molecule into 64 using PCR.

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Arrange the events of the cell cycle in the correct order by assigning each a number, starting with interphase. _____ Chromosomes line up in the middle of the cell. _____ DNA is replicated. _____ The nuclear membrane reforms around the two sets of chromosomes. _____ Chromosomes are pulled apart. _____ DNA condenses and the nuclear membrane disappears

Answers

The correct order of events in the cell cycle is as follows:

1. DNA is replicated.

2. DNA condenses, and the nuclear membrane disappears.

3. Chromosomes line up in the middle of the cell.

4. Chromosomes are pulled apart.

5. The nuclear membrane reforms around the two sets of chromosomes.

The cell cycle is a series of events that occur in a eukaryotic cell, leading to its division and the production of two daughter cells. It consists of several distinct phases, including interphase and mitosis.

Interphase is the longest phase of the cell cycle and can be further divided into three stages: G1 phase, S phase, and G2 phase. During interphase, the cell grows, carries out normal metabolic activities, and replicates its DNA in the S phase.

Following interphase, the cell enters the mitotic phase, which includes several stages: prophase, metaphase, anaphase, and telophase.

During prophase, the DNA condenses into visible chromosomes, and the nuclear membrane disintegrates. The condensed chromosomes become more visible, and the mitotic spindle apparatus begins to form.

In metaphase, the chromosomes align along the equator of the cell, known as the metaphase plate. This alignment ensures that each daughter cell receives the correct number of chromosomes during cell division.

Anaphase is the stage where the sister chromatids, which are the replicated copies of each chromosome, are separated and pulled towards opposite poles of the cell by the spindle fibers.

Finally, during telophase, the nuclear membrane reforms around the separated sets of chromosomes, and the chromosomes begin to decondense. The cell then proceeds to undergo cytokinesis, the division of the cytoplasm, resulting in two daughter cells.

Therefore, the correct order of events in the cell cycle is: 2. DNA is replicated, 5. DNA condenses, and the nuclear membrane disappears, 3. Chromosomes line up in the middle of the cell, 4. Chromosomes are pulled apart, and 1. The nuclear membrane reforms around the two sets of chromosomes.

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Which situation is a good example of the transfer of energy through radiation?


A. Energy passes from one person’s hand to another person when they shake hands.
B. A snake’s body temperature increases when the snake lies in the Sun.
C. Warm air that is less dense rises to the ceiling of a room.
D. A fan cools the CPU in a computer.

Answers

B. a snake’s body temperature increases when the snake lies in the sun

Radiation has been the mode of thermal energy transfer from a source. "A snake’s body temperature increases when the snake lies in the Sun" is an example of radiation. Thus, option B is correct.

What is radiation?

Radiation has been the type by which the thermal heat energy passes from the source to the other site. It has been independent of contact and involves traveling in space with the equivalent speed of light. Unlike conduction and convection, radiation does not need matter.

The particles tend to move in space like the sun's rays heating the earth. When a snake lies in the sun its body temperature rises due to tradition as the solar energy from the sun (high temperature) moved in space to the lower temperature (snake's body).

Therefore, option B. heating the snake's body under the sun is an example of radiation.

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QUESTION 14 Identify the muscle indicated as A Identify the muscle indicated as B B

Answers

The muscle indicated as A is Gastrocnemius muscle and the muscle indicated as B is Soleus muscle

A - The muscle indicated as A is the gastrocnemius muscle. It is a superficial two-headed muscle located in the back part of the lower leg. The gastrocnemius muscle has two heads that originate just above the knee joint and extend down to the heel. It is a three-joint muscle, as it crosses the knee, ankle, and subtalar joints. The gastrocnemius muscle is responsible for plantar flexion of the foot (pointing the toes downward) and plays a key role in walking, running, and jumping.

B - The muscle indicated as B is the soleus muscle. It is a flat and broad muscle situated beneath the gastrocnemius muscle in the calf of the leg. The soleus muscle originates from the upper portions of the tibia and fibula, which are the two bones of the lower leg. It joins with the gastrocnemius muscle and attaches to the heel bone (calcaneus) through the Achilles tendon. The soleus muscle is involved in plantar flexion of the foot and helps stabilize the ankle joint, especially during activities like standing and walking.

Together, the gastrocnemius and soleus muscles are known as the calf muscles. They work synergistically to produce the force needed for activities involving the lower leg and foot, such as walking, running, and standing on tiptoes.

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QUESTION 14 Identify the muscle indicated as A Identify the muscle indicated as B B

Which statement best explains why DNA is replicated within the cell?

Answers

Explanation:

Replication is an essential process because, whenever a cell divides, the two new daughter cells must contain the same genetic information, or DNA, as the parent cell. The replication process relies on the fact that each strand of DNA can serve as a template for duplication.

From the wastewater treatment systems discussed, make a table/matrix comparing the characteristics of each of the system in terms of, but not limited to:
1. Aerobic/ Anaerobic / Hybrid
2. Efficiency (BOD Reduction 3. Wastewater characteristics / industry the system is most efficient 2
4. Advantages 5. Disadvantage
6. Othe

Answers

From the wastewater treatment systems discussed, a table comparing the characteristics of each of the system in terms of, but not limited to:1. Aerobic/ Anaerobic / Hybrid2. Efficiency (BOD Reduction)3. Wastewater characteristics / industry the system is most efficient 24. Advantages5. Disadvantage

Others Wastewater Treatment System Aerobic/ Anaerobic / Hybrid Efficiency (BOD Reduction)Wastewater characteristics / industry the system is most efficient Advantages Disadvantage Others Conventional activated sludge systemAerobic75% to 95%BOD, SS, and ammonia Industrial and municipal wastewater. Simple design, less maintenance, and high efficiency. Sensitive to operational changes, sludge bulking, and high land requirement.

Most widely used system. SBR (Sequencing Batch Reactor) Aerobic75% to 95%BOD, SS, and ammonia Municipal and industrial wastewater. High flexibility, compact, and low maintenance. Sensitive to operational changes, sludge bulking, and high land requirement. A single vessel carries out the treatment in sequential batches MBR (Membrane Bio-Reactor) Aerobic 90% to 95%BOD, SS, and nitrogen Highly variable requirements on influent wastewater.

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The density of water is 1 g/mL.
True
False

Answers

Answer:

True

Explanation:

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Where are agglutinogens located

Answers

Answer:

In blood typing, antigens on the surfaces of red blood cells (RBCs) are also known as agglutinogens and the antibodies that react against them are also called agglutinins. Antibodies in the blood are found in the plasma.

Which cell components are responsible
for the inherited traits that a pea plant possesses

Answers

Answer:

The genes of a cell, along with the DNA.

Explanation:

Genes are what are transferred from parent to offspring, resulting in the way things are in the offspring. Genotypes are not shown,  but is the trait/information that was transferred from the parent.

The cell components responsible for the inherited traits that a pea plant possesses are DNA, nucleus and chromosomes.

DNA is a double helix molecule, which is responsible for transmitting genetically inherited information across generations.

Chromosomes are linear long molecules of DNA that contain part (or all) of the genome of a species.

In eukaryotic cells (e.g., plant cells), the chromosomes are surrounded by the cell nucleus, which contains therefore the genetic material of the cell.

In conclusion, the cell components responsible for the inherited traits that a pea plant possesses are DNA, nucleus and chromosomes.

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Which is an advantage of producing genetically engineered crops that have pest-resistant genes? bioaccumulation of pesticides allows farmers to grow any crop they want reduces the use of pesticides for certain insects gene transfer to nontarget species

Answers

Answer:

The correct answer is - reduces the use of pesticides for certain insects.

Explanation:

Genetically modified or engineered crops are the crops are created by introducing a foreign gene that modifies the crop to affect in a certain way such as there are more productivity and yield, the crop becomes pest-resistant, and many other aspects.

The plant that is genetically modified and introduced a gene that provided resistance to specific insects by producing the toxin which makes plants less attacked or damaged by such insects which also helps in increasing yield of crops.

The correct answer is - reduces the use of pesticides for certain insects.thus option B is correct.

What is genetically modified crops?

Genetically modified or engineered crops are the crops are created by introducing a foreign gene that modifies the crop to affect in a certain way such as there are more productivity and yield, the crop becomes pest-resistant, and many other aspects.

The plant that is genetically modified and introduced a gene that provided resistance to specific insects by producing the toxin which makes plants less attacked or damaged by such insects which also helps in increasing yield of crops.

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What is the fate of ATP and NADPH?

Answers

We generally say that you get 3 ATPs per NADH and 2 per FADH2, so that these carriers produce a total of 30+4 = 34 ATPs..... and the Krebs cycle itself produces 2 GTPs, which are equivalent to 2 more ATPs, for a total of 38.

true or false Carbohydrate-rich sports drinks should not be given to athletes during endurance sport participation because blood glucose levels are not increased.

Answers

Answer: Its below me

Explanation: True because carbohydrate rich sports drink can cause high blood preassure. For example a sugar rush can make u high because eating to much sugar can be to much to comprehend.

Identify the chromatids and the centromere of a chromosome.

Answers

Answer:

Chromatid refers to one half of the chromosome. Centromeres are the center of the chromosomes, where spindles attach during mitosis.

What 7 traits did Mendel study in peas?

Answers

Seven traits that Gregor Mendel studied in peas include:

pea shape (wrinkled or round),pea color (yellow or green),flower color (white or purple),pod shape (inflated or constricted),pod color (yellow or green),position of flowers (terminal or axial), andplant size (dwarf or tall).

Gregor Mendel (20 July 1822–6 January 1884) was an Austrian biologist that was widely known for his pea plant experiments. Mendel is often called the father of genetics.

He studied the inheritance of seven different traits in peas, which included height, flower and seed colors, and seed shape. To do so, Mendel first established pea lines with two different forms of a trait, such as yellow vs. green color. For generations, Mendel grew these lines until they were pure-breeding (which meant they always produced offspring identical to the parent), and then he bred them to each other and observed how the traits were inherited.

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Explain the processes involved in the transportation of absorbed
nutrients throughout the body.

Answers

Answer:

Absorption: The process of absorbing nutrients occurs primarily in the small intestine. Once the food is broken down into smaller molecules through digestion, these molecules are absorbed into the bloodstream. For example, carbohydrates are broken down into simple sugars, proteins into amino acids, and fats into fatty acids and glycerol.

Circulatory System: The circulatory system, composed of the heart, blood vessels, and blood, plays a crucial role in transporting absorbed nutrients. The blood vessels form an extensive network that reaches all tissues and organs in the body.

Hepatic Portal System: After absorption, most of the nutrients are transported to the liver through a specialized system called the hepatic portal system. This system ensures that the liver, which performs various metabolic functions, receives a concentrated supply of nutrients before they are distributed throughout the body.

Bloodstream Transport: Once in the bloodstream, nutrients are carried by the plasma, the liquid component of blood. Different nutrients use specific mechanisms for transport:

Glucose: It is transported by facilitated diffusion or active transport, depending on the concentration gradient, with the help of insulin.

Amino Acids: They are transported through the bloodstream by specific carrier proteins.

Fats: Dietary fats are initially packaged into structures called chylomicrons and transported through the lymphatic system before entering the bloodstream. Once in the bloodstream, fats are carried by lipoproteins such as low-density lipoprotein (LDL) and high-density lipoprotein (HDL).

Distribution to Tissues: As the blood circulates, nutrients are distributed to various tissues and organs according to their specific needs. Nutrients are delivered to cells through the capillaries, the smallest blood vessels in the body, which have thin walls that allow for the efficient exchange of nutrients and waste products.

Cellular Uptake: Nutrients are taken up by cells through various mechanisms. For instance, glucose enters cells with the help of insulin, while amino acids are transported into cells through specific carrier proteins. Fats are taken up by cells through receptor-mediated endocytosis or by diffusion.

Metabolism: Once inside the cells, nutrients undergo metabolic processes to produce energy or build new molecules. Glucose, for example, can be metabolized through glycolysis, the Krebs cycle, and oxidative phosphorylation to generate ATP, the cell's energy currency.

Waste Removal: Metabolic byproducts, such as carbon dioxide and urea, are generated during nutrient metabolism. These waste products are transported back into the bloodstream and eventually eliminated from the body through the lungs (carbon dioxide) or the kidneys (urea).

It's important to note that different nutrients may have different transport mechanisms and pathways. The body's ability to efficiently transport and utilize absorbed nutrients is vital for maintaining proper functioning and overall health.

Type I glycogen storage disease is an inherited disorder in which patients are able to store glycogen in the liver but lack a necessary enzyme to break down glycogen properly. Based on the function of glycogen in the body, what would be the treatment for this disorder?

Answers

Answer:

The correct answer is -  Frequent feeding of complex carbohydrates throughout the day

Explanation:

In type I glycogen disease person is able to store the glycogen in the liver however, the person lacks enzyme glucose -6-phosphatase for breaking the glycogen into glucose which leads to a decrease in the sugar level.

So. the treatment must prevent this hypoglycemia condition by taking such carbohydrates that can easily be digested and broken down to glucose like a complex carbohydrate.

Thus, the correct answer is -  Frequent feeding of complex carbohydrates throughout the day

What are the right parameters for life on earth for complex organisms?

Answers

There are several parameters that are considered important for supporting complex life on Earth, some of which include - Temperature, Water, Atmosphere and Nutrients.

Many factors are thought to be crucial for sustaining complex life on Earth, some of which include:

Temperature: Although this might vary depending on the organism, complex organisms typically need a temperature range of between 0°C and 50°C to survive.All known life on Earth depends on water, and complex creatures typically need access to fresh water to exist.The atmosphere of the Earth is made up of a variety of gases, such as nitrogen, oxygen, carbon dioxide, and others. Complex life requires a steady atmosphere with enough oxygen levels.Complex organisms need a variety of nutrients to develop and thrive, including carbs, proteins, lipids, and different minerals.

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A minute-by-minute change in the atmosphere is the definition of ?

Answers

Answer:weather

Explanation:

How can naturally occurring events disrupt the cycling of essential
building blocks, such as carbon, nitrogen, and oxygen?

Answers

Answer:

Naturally occurring events can disrupt the cycling of essential building blocks such as carbon, nitrogen, and oxygen in a number of ways. For example, floods, fires, and other natural disasters can cause the release of large amounts of these elements into the atmosphere or into bodies of water, where they can be carried away and not returned to the original ecosystem. Additionally, changes in climate can cause changes in the availability of certain elements, leading to disruptions in the cycling of these elements. Finally, changes in land use can cause soil erosion, which can also disrupt the cycling of essential building blocks.

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Final answer:

Events such as wildfires, volcanic eruptions, and climate change can disrupt the cycles of carbon, nitrogen, and oxygen. Wildfires release carbon into the atmosphere, volcanic eruptions can alter the nitrogen cycle, and climate change affects the balance of gases, including oxygen.

Explanation:

Naturally occurring events, such as wildfires, volcanic eruptions, and climate change, can disrupt the cycling of essential building blocks. For example, wildfires release a large amount of carbon into the atmosphere, disrupting the carbon cycle. Volcanic eruptions can release nitrogen and sulfur compounds which can alter the nitrogen cycle. Similarly, climate change, caused due to anthropogenic activities, can change the balance of gases in the atmosphere, thereby affecting the oxygen cycle.

Take a forest ecosystem for instance. In a normal scenario, the forest acts as a carbon sink, absorbing carbon dioxide from the atmosphere and storing it in the form of biomass. However, in the event of a wildfire, the same forest can turn into a carbon source, releasing stored carbon back into the atmosphere.

Volcanic eruptions, by releasing nitrogen and sulfur-based compounds, can result in acid rain. This acid rain can alter soil composition, affecting its ability to cycle and fix nitrogen thereby impacting plant growth and health. Besides, climate change induced by the increase in greenhouse gases can disrupt the balance of oxygen in the seawater affecting marine life's oxygen intake, disrupting the oxygen cycle subtly.

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Describe the protective role of cilia in the respiratory tract.

Answers

Cilia are tiny hair-like structures found on the surface of cells throughout the respiratory tract. They are important for protecting the respiratory system from infection and foreign particles.

Cilia work by creating a sweeping action to remove harmful substances from the lungs and nasal passages. This action helps to prevent bacteria, viruses, and other debris from entering the lungs. The constant movement of the cilia also helps to keep the airways open, reducing the risk of infection. In addition, the cilia produce a mucous-like substance that traps unwanted particles and carries them away from the lungs. Cilia are also important for regulating the immune response of the lungs.

When cilia are functioning properly, they can reduce inflammation by preventing foreign particles from entering the lungs. Additionally, cilia can help to identify and remove infected cells that may be present in the airways.
In summary, cilia are vital for protecting the respiratory tract from infection and foreign particles. They produce a mucous-like substance to trap unwanted particles and create a sweeping action to remove them from the lungs. Additionally, cilia can reduce inflammation and help to identify and remove infected cells. As such, they play an essential role in keeping the respiratory system healthy.

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What are the functions of a catalyst in a reaction? select all that apply
A)sped up the reaction.
B:Increase the activation energy needed
C: lower the activation energy needed
D:maintain the reaction
E: slow down the reaction

Answers

Answer:A, C

Explanation:

Catalysts typically speed up a reaction by reducing the activation energy or changing the reaction mechanism.

What was a goal of Confucianism? HURRY TEST

Answers

it is to create a peaceful society through bettering the attitudes and behaviours of individual followers

Which organism has an exoskeleton?An arthropod. For example: a crab.A mammal. For example: a humanA Cnidarian: For example: a jellyfish

Answers

Humans have an endoskeleton. Jellyfish do not have a skeleton. Crab has an exoskeleton.

ANSWER: A.

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