The kidneys are highly vascular organs. Approximately how much of the entire circulating blood volume do the kidneys process at any one time?

Answers

Answer 1

The percentage of the entire circulating blood volume that the kidneys process at any one time is 20 percent.

What is kidney?

It should be noted that kidney beans the bean shaped organ that we located below the rib cage. The kidney is responsible for waste removal in the body.

In this case, the percentage of the entire circulating blood volume that the kidneys process at any one time is 20 percent.

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Related Questions

in analyzing the number of different bases in a DNA sample, which result would be consistent with the base-pairing rules?

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In analyzing the number of different bases in a DNA sample, the result would be consistent with the base-pairing rules is A+G = C+T.

What is the RNA base pairing rule?

Base pairing occurs precisely: a purine base binds to a pyrimidine – adenine (A) on one chain pairs with thymine (T) on the other and guanine (G) pairs with cytosine (C).

In this case, the base pairing rule states that the number of adenine is equal to number of thymine. Similarly, the number of guanine is equal to number of cytosine.

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An immunocompromised host is one who shows a decrease in ______.

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An immunocompromised host is one who shows a decrease in the ability to mount an immune defense to infection because the immune system is damaged and it is weak which can not fight infections.

What is immunocompromised host?

An immunocompromised host refer to a person whose immune system is weak or damage and does not have tye ability to fight incoming infections.

Therefore, An immunocompromised host is one who shows a decrease in the ability to mount an immune defense to infection because the immune system is damaged and it is weak which can not fight infections.

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Anemia is a medical condition in which the affected person lacks enough red blood cells. What two effects will such a condition have on the patient?

Answers

The two effects will such a condition have on the patient are as follows:

The patient will have less hemoglobin in the blood.The patient will have a reduced oxygen supply to the cells.

What is Anemia?

Anemia may be defined as a condition that leads to a deficiency of hemoglobin or Red blood cells in the blood.

The complete question is as follows:

The patient will have less hemoglobin in the blood.The patient will have less immunity against bacteria.The patient will have a reduced oxygen supply to the cells.The patient will have a thicker blood composition.The patient will have increased platelets in the body.

Red blood cells are accountable for carrying oxygen to cells and when a patient is suffering from anemia it leads to a reduced oxygen supply throughout the body.

Therefore, the correct options are A and C.

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An organ is a part of the body composed of two or more tissue types and is designed to perform at least one specific physiological function

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An organ is a body part that is made up of two or more different tissue types and is intended to carry out at least one particular physiological function. An organ system is a collection of organs that cooperate to meet the body's essential needs and provide for it.

Can you think of a physiologic process that is not under the control of a homeostatic reflex system?.

Answers

Hair and nail growth are not homeostatically controlled. There is no miracle in using exuberance to handle these procedures. The disadvantage is that they can produce very long and interrupt normal activities.

Hair and nail growth are not homeostatic ally controlled.  The disadvantage is that they can produce very long and interrupt normal activities.

What is homeostasis ?

It is a physiological process where body to maintain the internal environment in response to changes in outer external environment.

Internal environment means the interstitial fluids while external environment refers to the environment in which organisms live.

Any  fluctuation in homeostasis leads to death or a disease of an organism, called as homeostatic imbalance.

The diseases include diabetes, dehydration, hypoglycemia, hyperglycemia, gout etc.

The controlling factors of homeostasis are stimulus can be any physical, chemical or environmental factors  leads to deviation of normal body’s environment

Receptor receives the stimulus and pass to the control center like neuron.

Regulator can control coordinator center receives and processes information from the receptor like Hypothalamus.

Effector can control commands from stimulus like Glands, muscles

Response refers to any reaction response to the stimulus.

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_______ uses a rigid or flexible scope, which is inserted through the urethra and advanced into the renal pelvis and ureter.

Answers

The blank space in the task content should be filled with; Ureteroscopy.

What is a Ureteroscopy?

The ureteroscopy examination, involves inserting a thin, flexible scope into the patients bladder and ureter (the urine-carrying tube that carries urine from the kidneys to the bladder). This is done in a bid to detect abnormalities such as kidney stones.

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Why do calculations of recombination frequencies between loci that are far apart on chromosomes underestimate the true genetic distance between the loci?.

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This is the complete question

A. Recombination frequencies cannot exceed 50% and asymptotically approach 50% as the distance between genes increases because only one crossover can occur per chromosome. B. As the distance between loci increases, some multiple crossovers go undetected such that the relationship between recombination frequency and map distance ceases to be linear. C.Loci that are far apart on a chromosome often recombine to produce combinations of alleles that result in a lethal phenotype and such recombinants are not recovered or identified. D. Loci that are far apart on a chromosome are often susceptible to a form of chromatic interference that results in reduced crossing over, and this interference does not occur for loci that are closer together. E. If two crossovers occur between two loci, then only nonrecombinant gametes are produced; therefore, recombination frequencies actually begin to decrease for more distant pairs of genes.

As the distance between loci increases, some multiple crossovers go undetected such that the relationship between recombination frequency and map distance ceases to be linear.  Thus, option "B" is correct.

How, explain your answer briefly?

When calculating recombination frequencies, and hence, map distances, we might notice that these distances are not completely additive. They might vary. For example, let us say that we have three genes, A, B, and C, in that order. We calculated that the distance between A and B equals 5.9 MU and that B and C are 19.5 MU apart. According to this, we might say that the total distance between A and C is 25.4 MU (5.9 + 19.5). However, after a two-point calculation between A and C, the value equals 23.7 MU.

The recombination frequency between these two genes located in the extremes and far apart underestimates the actual genetic distances between them because there might occur other crossing-overs that were not detected. This is when calculating the distance between A and C, we probably will not detect the occurrence of a double recombinant between them, and hence, we might sub-estimate the real distance.

The relationship between the actual map distance (number of crossing overs) and the recombination frequency between two loci, is not lineal. The farther apart are the two genes, the worse is the distance estimation.

Thus, option "B" is correct.

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1. When mRNA moves out of the nucleus into the cytoplasm it attachs to another RNA
called rRNA, a protein assembly site referred to

Answers

mRNA moves out of the nucleus into the cytoplasm and attaches to another RNA called rRNA, a protein assembly site referred to as the ribosome.

What is Ribosome?

This is referred to an organelle which is responsible for protein synthesis in cells.

The mRNA is used as a template for the rRNA to attach at this point to aid in protein translation and production. rRNA ensures that the appropriate amino acids are added and also form part of the ribosome which are involved in catalysis of the reaction.

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The chart below shows the three main types of plant tissues and associated tissues.

The chart shows the 3 main types of plant tissues and associated tissues. Plant tissue is divided into dermal, ground, and 1. Ground is divided into 2, Collenchyma, 3. 1 is divided into 4 and 5.

Which row (A, B, C, or D) best completes the chart above?


1
2
3
4
5
A
Vascular
Xylem
Parenchyma
Phloem
Sclerenchyma
B
Xylem
Phloem
Vascular
Sclerenchyma
Parenchyma
C
Parenchyma
Vascular
Xylem
Phloem
Sclerenchyma
D
Vascular
Sclerenchyma
Parenchyma
Xylem
Phloem
A
B
C
D

Answers

The plant tissues can be subdivided in the chart as Vascular Sclerenchyma Parenchyma Xylem Phloem. Thus, the correct option is D.

What role does the sclerenchyma play?

Sclerenchyma's primary job is to offer mechanical support. They are made up of lengthy, slender cells that have a thick lignified wall. They lack protoplast and are largely dead.

The complete chart and table are given in the image attached.

A basic permanent tissue known as parenchyma makes up a large portion of the ground tissues of plants, where vascular tissues and other tissues are attached. They are non-vascular and made up of undifferentiated, primitive living cells that have undergone modifications to carry out distinct tasks.

Xylem, along with phloem and cambium, is a key component of vascular tissue. Its primary functions include providing mechanical support and storage as well as moving water and solutes from the plant-soil interface to the stems and leaves.

Parenchyma cells, are also a component of phloem and are essential for the storage of water, non-structural carbohydrates, and storage proteins.

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Answer: it’s D

Explanation: truss

A bird's wing and the wing of an insect are examples of

Answers

A birds wing and the wing of an Insect are examples of; analogous organs

What are the organs of the animal?

A birds wing and the wing of an Insect are examples of analogous organs.

Analogous organs are the opposite of homologous organs and they are defined as  are those organs of different animals that look different in structure but perform a common function.

An example of an analogous trait is the wings of insects and birds that evolved independently in each lineage separately after diverging from an ancestor without wings.

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from about 450 to 300 million years ago, ______ dominated earth's vegetation, and then about 300 million years ago, ______ began to become more prominent.

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From about 450 to 300 million years ago, Bryophytes and seedless vascular plants dominated Earth's vegetation, and then about 300 million years ago, Gymnosperms began to become more prominent.

From about 450 to 300 million years ago, bryophytes dominated the earth's vegetation, and then about 300 million years ago, gymnosperms began to become more prominent.

Evolution of plants

About 450 to 300 million years ago, most of the plants as we currently have them are yet to evolve according to evolutionists.

Instead, seedless vascular plants such as bryophytes were around. Many years after, these seedless plants evolved into vascular plants with seeds that are not enclosed in fruits.

Vascular plants with seeds but without fruits are known as gymnosperms. Plants whose seeds are enclosed in fruits, angiosperms, evolved thereafter.

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describe 4 differences between a bactrial cell and a plant cell

Answers

Answer:

Genetic material, cell wall, photosynthesis, and ribosomes.

Extras: vacuole, flagella

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How does dermal tissue help plants on a hot day?
It releases substances so plants can absorb more water from the soil.
It has a waxy material that prevents the loss of water to the environment.
It has guard cells that open to prevent the loss of water to the environment.
It contains chemical substances that allow plants to use water more quickly.

Answers

It has a waxy material that prevents the loss of water to the environment.
It has a waxy material that prevents loss of water to the environment.

1. What are the independent and dependent variables in each of the experiments?

2. What information should be added to the diagram to give the reader a better understanding of how these experiments
were conducted?

3. What items should have been CONTROLLED in the experiments?

4. How much confidence would you have in the conclusion of experiment 3 if you found out that the temperature was not
controlled? Explain your reasoning.

5. Create your own flow chart to answer a causal question.

Answers

The independent variables are temperature, airflow, and light and the dependent variable in each of the experiments is evaporation.The schematic representation in the diagram helps in the understanding of the setup for the experiments.The level of temperature, the rate of airflow, and the intensity of light must be controlled in the experiments.A person will not be confident in experiment 3 results as the temperature is the independent variable that alters the results of evaporation.

What are the four foremost factors of a managed test?

When possible, scientists take a look at their hypotheses through the use of managed experiments. A managed test is a systematic take look at executed below-managed conditions, which means that simply one (or a few) elements are modified at a time, even as all others are saved consistently. We'll appear carefully at managed experiments within side the subsequent section.

In the three experiments, the dependent variable is evaporation, as it changes with the change in another variable.

The independent variable in experiment 1 is temperature, experiment 2 is airflow, and experiment 3 is light.

The experiment can be understood better with the representation of the schematic that shows the setup to analyze how the experiment was performed. Therefore the diagram must add the schematic of the experiment.

The controlled items in the experiment are the variables that are set at the particular unit to form the result. the controlled item in experiment 1 is temperature, experiment 2 is airflow from the fan, and experiment 3 is the intensity of light.

The result of experiment 3 is based on the dependence on the intensity of light keeping temperature constant and controlled. If the temperature is not controlled in the experiment then it may lead to an alteration in the results as it depends on both light and temperature.

The flow chart for the increase in pressure affecting the evaporation is given in the image attached.

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Regarding the factors of true labor: distortion of the myometrium increases the sensitivity of the skeletal muscle layers. the fetal pituitary releases oxytocin in response to estrogens. placental estrogens decrease the sensitivity of the muscle cells of the myometrium. maternal oxytocin release is inhibited by high estrogen levels.

Answers

Regarding the factors of true labor, the the fetal pituitary releases oxytocin in response to estrogens.

What is oxytocin?

It should be noted that oxytocin means a hormone that is involved in childbirth. It is associated with trust and empathy.

In this case, regarding the the factors of true labor, the the fetal pituitary releases oxytocin in response to estrogens.

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The process during which a cell eats itself is referred to as.

Answers

Autophagy I believe that the answer you are looking for is autophagy

Arrange the following events in the order in which they occurred.

Answers

Answer:

1→4→5→3→2

Mitotic cell division starts with the condensing of chromosome accompanied by splitting of the centrosome and its movement towards the opposite poles.

As the nuclear envelope and nucleolus disappear, spindle fibres arise from the centrosomes and start binding to the condensed chromosomes at the centromeres.

The chromosomes bound by the spindle fibers are then arranged in the middle of the cell forming the equatorial metaphase plate.

Next the centromere splits and the sister chromatids are pulled away towards the poles by the contraction of spindle fibres.

Following this, a cleavage furrow starts to develop in the middle of the cell while the nuclear membrane starts to reappear around the separated chromatids.

The condensed chromatids start thinning into chromatin fibre along with reappearance of the nucleolus and the cleavage furrow deepening further.

Finally as the nuclear membrane becomes fully intact, the cleavage furrow deepens and split the cells from middle into two daughter cells.

Two different bacterial samples, a and b, were inoculated onto sim media. What can you conclude based on your observations?

Answers

The conclusion that can be made here is that:

A is motileSpecimen A gave indoleSpecimen B does not hydrogen sulfide (H2S)Specimen B does not have indole

What is a sim media inoculation?

This is a type of laboratory practical that isb used to see if organisms are motile through the use of single stabs.

An organism is motile when there is a radiation from the stab mark which makes the tube it is in to turn turbid.

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Consider the diagram of an internal feedback mechanism that the body uses to help maintain homeostasis.

The internal feedback mechanism is shown. Stimuli goes to the receptor to the coordinator to the effector to the response and then to feedback.

What is the role of the central nervous system in this model?

a) coordinator
b) effector
c) response
d) stimuli

Answers

The role of the central nervous system in this model is as coordinator (Option a).

What is the central nervous system?

The central nervous system is a fundamental body system that acts by sending and receiving signals from the environment.

The central nervous system can act as a coordinator by modulating signals and thus maintaining the internal equilibrium (homeostasis).

In conclusion, the role of the central nervous system in this model is as coordinator (Option a).

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which part of the body contains enyzmes that break down protein

Answers

Answer: Stomach

Explanation:

The stomach produces pepsin which is an enzyme that digest proteins.

Answer:

In the stomach, pepsin is the main digestive enzyme attacking proteins.

why do the potato strip in pure water get bigger?​

Answers

Answer:

The incoming water in the potato cells pushes on the cell walls and makes the cells bigger , that's how the strips of potato in pure water becomes bigger .

This is because of osmosis, water from outside the potato strip travels down the concentration gradient and into the potato strip causing it to get bigger.

In a scientific investigation, the term “quantitative data” refers to numbers that are usually followed by
units.
graphs.
written descriptions.
photos of measurement.

Answers

Quantitative data in scientific investigations are numbers usually followed by units. The first option is the correct one.

What are quantitative data?

In relation to scientific investigation, quantitative data are attributes that are measurable or quantifiable. Thus, they can be assigned numerical values.

Because of the measurability, variables within quantitative data usually have units attached to them.

For example, height is measured in meters, feet, centimeters, etc.

Quantitative data is opposed to qualitative data because the latter cannot be assigned a numerical value.

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Answer:

A. units.

Explanation:

i got it right

Control group is important for scientific study ? and why ? ​

Answers

An unaffected group is always important to have so we can compare the results of the study to something that hasn’t been affected by whatever the study is doing.

What does integrin do?

Answers

Integrin acts as transmembrane linkers and mediates the interactions between the cytoskeleton and the extracellular matrix.

What is Integrin?

They are proteins which possesses catalytic and structural functions in the body of organisms.

This is done through their ability to regulate different reactions which occur in cells.

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An organ system is a group of organs that work together to perform _____ functions in a multicellular organism

Answers

Answer:

a certain functions

Explanation:

Accumulation of blood in the abdominal cavity will most likely cause:

Answers

You could most likely go into shock from blood loss, become unresponsive, and even result in death.

According to the research, accumulation of blood in the abdominal cavity will most likely cause distention.

What is distention?

It is the dilated state of organic cavities (abdomen), hollow organs (intestine, stomach, pericardium, abdomen, bladder, gallbladder, vena cava) and solid organs (hepatic capsule, etc.).

In this state the abdominal cavity can experience a certain degree of enlargement of its contents without rupturing.

Therefore, we can conclude that according to the research, accumulation of blood in the abdominal cavity will most likely cause distention.

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What environmental impacts does green roofs and double window glazing have?

Answers

Answer:

A green roof can increase building efficiency and help reduce electricity costs.

Explanation:

I hope this helps!

how many nanometers is the best resolution achieved with using a light microscope?

Answers

The best resolution that can be achieved with light microscopes is; 200nm

What is the resolution of the microscope?

The light microscope is also called optical microscope and it is a type of microscope that primarily uses visible light and a system of lenses to produce  magnified images of smaller objects.

The best resolution that can be achieved with light microscopes is about 0.2 microns or 200nm because the maximum useful magnification it can provide is approximately 1,000x.

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What does the author predict about the future of the Earth's mantle? Do you support his educated guess? Use complete sentences to answer.

Answers

Because this region is immune to human meddling, the earth's mantle won't change in the future.

What transpires in the mantle of the Earth?

We can determine the Earth's topography thanks to the heat and material transport taking place in the mantle. Plate tectonics is shifted by mantle activity, which also causes earthquakes, volcanoes, seafloor spreading, and the formation of mountains.

Therefore, since this area is protected from human interference, we can draw the conclusion that the earth's mantle won't alter in the future.

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Did you model weathering, erosion, or both in this lab? Give an example of a step of the lab in which you modeled a process to support your statement. If you say that you did not model one process, describe a way in which you could model that process using the same graham cracker setup.

Answers

Modeling of weathering and erosion can be performed in lab.

Lab: Investigate Weathering and Erosion

In this lab, we will be modeling the processes that break down rock using graham crackers as the crust and water and ices erosion agents.

Materials:Graham crackers: at least 2 identical rectangular sectionsPlastic knifeFrostingBowl3 clear glassesEyedropper/medicine dropperWaterIce cube tray or similar freezable containers smaller than a graham crackerAdditional materials as needed for your investigation, such as more graham crackers, hot water, ice, lemon juice, or a drinking straw

Procedure of Modeling Weathering and Erosion using graham cracker:

1. Fill the ice cube tray or other tiny containers with 100 drops of water in each of the two or three cells using the eyedropper. Make the water entirely solid by freezing it for however long(for 3-4 hrs.).

2. Insert one graham cracker section into the bowl. To create a ramp-like structure out of the Graham Cracker, place one end on the bowl's lip and the other end at the bottom. To secure the cracker to the side of the bowl, dab some icing on the back of the cracker.

3.Add water to the eyedropper. Hold the dropper at a height of about 1 inch above the cracker's top. the dropper over the cracker in the middle. Apply 100 drips, always aiming for the same area.

4.Keep an eye on what the cracker does. Keep a record of your findings.

5. Pour the water into a glass that is clear after removing the Graham cracker. Make notes about the water, grading its cloudiness among your observations.

6.In the same manner as in step 2, clean and dry the bowl and add a Graham cracker to it. Grab an ice cube and wipe it over the graham cracker until it melts completely.

7.Remove the graham cracker and pour the melted water into the clear glass.

Result:

Appearance of water collected after is moved across graham cracker.

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