When does ribosomal protein synthesis cease?
1. During ER stress
2. During the synthesis of ATP
3. During severe hypoxic state
4. During the process of prohormone

Answers

Answer 1

It can be affected during ER stress (1) and severe hypoxic states (3).

What is ribosomal protein synthesis?

Ribosomal protein synthesis is the process by which ribosomes, the cellular structures responsible for protein synthesis, synthesize their own constituent proteins using instructions encoded in messenger RNA (mRNA) molecules.

During ER stress, the unfolded protein response (UPR) can be activated, which may lead to a decrease in global protein synthesis, including ribosomal protein synthesis. This is because the UPR is designed to reduce the load of protein folding in the endoplasmic reticulum (ER), where ribosomes are located, in order to alleviate ER stress.

During severe hypoxic states, there may be a decrease in ribosomal protein synthesis due to reduced oxygen availability, which can impact the function of ribosomes and their ability to synthesize proteins.

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What is the name for the classification system that uses two names? answer choices. A. taxonomy levels. B. classification studies.C. Binomial NamingD. specific species

Answers

Linnaeus made the arrangement of "binomial nomenclature," which involves just two assignments variety and explicit designation as the species name. The correct answer is (C).

The binomial naming framework is the framework used to name species. Every species is provided a name that comprises two sections. The initial segment is the Variety to which the species has a place and the subsequent part is the species' name.

The ordered characterization framework (likewise called the Linnaean framework after its innovator, Carl Linnaeus, a Swedish botanist, zoologist, and doctor) utilizes various leveled models. Moving from the starting place, the gatherings become more unambiguous, until one branch closes as a solitary animal category.

Carolus Linnaeus, who is generally viewed as the organizer behind present-day scientific categorization and whose books are viewed as the start of current natural and zoological classification, drew up rules for doling out names to plants and creatures and was quick to utilize binomial terminology reliably (1758).

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I need to create a acrostic poem using the word "Atmosphere".

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Create a acrostic poem using the word "Atmosphere". are given below:
A  - Alluring air, tantalizingly fresh
T - Trees and other plants, filling the air
M - Misty mornings, so soft and serene
O - Oceans of oxygen, keeping us alive
S - Sunrise and sunset, the sky aflame
P - Pollution and smog, a sad reminder
H - Humid weather, a sign of summer
E - Earth's protective layer, our blanket of life
R - Rainbows, a sight to behold.

What is acrostic poem?

An acrostic poem is a type of poem where the first letter of each line spells out a word or phrase. It is a fun and creative way to express oneself through writing. This type of poem has been around for centuries and can be found in many different cultures. It is a great way to explore the writer’s creativity and also to express their feelings. Acrostic poems can be written on any subject and can be as long or as short as the writer wishes. They are often written in the form of a haiku or a sonnet, or they can be written in free verse.

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FILL IN THE BLANK. grouping organisms based on their evolutionary relationships is the process of __________, which is part of taxonomy

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 Grouping organisms based on their evolutionary relationships is the process of Systematics which is part of taxonomy.

The study of biological diversity and the interactions between species is generally termed as sytematics. Taxonomy, the component of systematics that focuses on the theory and practice of classification, is not easily distinguished, and biologists frequently use the terms interchangeably.

What is an example of systematics?

Reptiles, for example, are animals that lay eggs and have scales, whereas mammals are animals that have live births and have fur or hair. All humans, more specifically, share the same features and hence belong to a group, or taxon, of the genus Homo and species sapien.

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fat is the most efficient molecule for long-term energy storage even compared to carbohydrates because _____.

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An O-glycosidic bond is shaped when the anomeric carbon of the sugar lays out a connection with the oxygen particle in the hydroxyl gathering of the liquor.

On the off chance that the anomeric carbon of the sugar makes the connection with the nitrogen particle of an amine, the bond is alluded to as an N-glycosidic bond.

Two monosaccharide units can be consolidated by glycosidic security — this is the essential linkage among the monosaccharide building blocks tracked down in all oligosaccharides. The glycosidic bond is framed between the anomeric carbon of one monosaccharide and a hydroxyl gathering of another.

The β-1,4-glycosidic bond has the hydroxyl bunch facing up. 1,4-glycosidic bonds can be tracked down in both amylase and amylopectin in starch. These linkages make stretching in the polysaccharide. There are numerous glycosidic linkages in polysaccharides because of the enormous number of hydroxyl bunches present.

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what are cats with short legs

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Munchkin cats (also called “sausage cats”) are regular domestic cats that stand out because of their shortened legs, giving them a much smaller stature than other breeds.

Munchkins are swift, smart, and enjoy playing hide-and-seek with shiny objects while having a very beautiful and adorable appearance. As they are unaware of their distinctive characteristics, Munchkin cats act exactly like any other cat breed. Their leg length is irrelevant to them; they do the best they can given their limitations in terms of size.

Finding a Munchkin is a precious find for cat lovers, and you can fall in love with them for their unusual appearance.

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the lymphatic system is best described as a _______________ system.

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The lymphatic system is best described as a circulatory system.

what is the circulatory system?

The circulatory system, also known as the cardiovascular system, is a complex network of organs, vessels, and cells responsible for circulating blood and other essential substances throughout the body. The primary function of the circulatory system is to deliver oxygen and nutrients to cells and tissues and to remove waste products such as carbon dioxide.

The circulatory system consists of the heart, blood vessels, and blood. The heart is a muscular organ that pumps blood throughout the body. Blood vessels include arteries, veins, and capillaries. Arteries carry oxygenated blood from the heart to the body's tissues, while veins carry deoxygenated blood back to the heart. Capillaries are tiny blood vessels that connect arteries and veins, allowing for the exchange of nutrients and waste products between the blood and the body's tissues.

The lymphatic system is as a type of circulatory system, which differs from the cardiovascular system that circulates blood, as the lymphatic system circulates lymph fluid throughout the body.

However, unlike the cardiovascular system, which circulates blood throughout the body, the lymphatic system circulates lymph, a fluid that contains white blood cells, throughout the body. The lymphatic system is important for maintaining fluid balance in the body, as well as for immune function, as it helps to defend against pathogens and other harmful substances.

Therefore, The lymphatic system can be characterized as a type of circulatory system, responsible for circulating lymphatic fluid throughout the body, in contrast to the blood circulation of the cardiovascular system.

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4. Drugs such as AZT work by inhibiting the function of reverse transcriptase. Integrase Strand Transfer Inhibitors (INSTI) are a class of antiretroviral drugs designed to block the action of integrase. Sketch a model showing how AZT and INSTI work.​

Answers

AZT and INSTI (Integrase Strand Transfer Inhibitors) both are inhibiting drugs.

What is the mechanism of working AZT and INSTI?

In place of thymine, reverse transcriptase substitutes AZT into the developing DNA chain. But, AZT is unable to form the required phosphate bond with the following nucleotide because it possesses a 39 azido group rather than a 39 hydroxyl group.

After incorporating themselves into viral DNA, nucleoside reverse transcriptase inhibitors (NRTIs) prevent reverse transcription by triggering chain termination. Some medications must be intracellularly phosphorylated in order to be effective.

Thus, this is how AZT and INSTI work.

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What is the importance of the random segregation of chromosomes during meiosis I?
a. It creates genetic diversity because it increases the likelihood of mutations.
b. It creates genetic diversity because it produces offspring with different combinations of alleles than their parents.
c. It preserves the continuity of the species by ensuring that offspring are genetically identical to their parents.
d. It preserves the continuity of the species by selecting genes that ensure the offspring will survive longer than their parents

Answers

Answer: b. It creates genetic diversity because it produces offspring with different combinations of alleles than their parents.

Explanation: I took the test and got it right.

regarding the accumulation of ecological, physical, and chemical data, what two fundamental ideas do scientists generally agree upon?

Answers

The conditions were very different from those of today billions of years ago Compared to today's atmosphere,

The early Earth's had an extremely low oxygen content. The relationship between species can be inferred from the similarities and differences in biological molecules (such as the DNA sequence of genes). Biogeographical patterns offer hints regarding the relationships between species.

Testing the evidence for two assertions made by the theory of evolution will entail: According to Darwin's theory of "descent with modification," that species has developed. that all species have a common ancestor because change has occurred during a tree-like course of evolution.

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What are discrete packets of light that can be used to create food for the plant?

Answers

Answer:

✿´`·.·´`✿A photon is a discrete unidirectional packet of light that is absorbed by chlorophyll. During the light-dependent reactions: A photon is absorbed by the chlorophyll and hits electrons inside PSII and causes the electrons inside the pigment to become excited.

under which conditions would the sodium-potassium pump likely be far less effective in creating a concentration gradient

Answers

​If selective permeability of the membrane did not exist; conditions would the sodium-potassium pump likely be far less effective in creating a concentration gradient  (option 1).

What is the sodium-potassium pump's function?

The Na+K+-ATPase pump contributes to the maintenance of osmotic balance and membrane potential in cells. Sodium and potassium migrate in the opposite direction of the concentration gradients. The Na+ K+-ATPase pump maintains a gradient of higher sodium concentrations extracellularly and higher potassium levels intracellularly.

What is the sodium-potassium pump process?

The sodium-potassium pump undergoes shape modifications in order to maintain a negative membrane potential. Three sodium ions leave the cell during each cycle, while two potassium ions enter. Because these ions go against the concentration gradient, ATP is required for this activity.

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Full Question: Under which conditions would the sodium-potassium pump likely be far less effective in creating a concentration gradient.

​if selective permeability of the membrane did not exist​increase the velocity of transmission along an axon​open to let sodium enter the cell rapidly

where in the chloroplast does the light reaction take place?

Answers

The light reaction take place in the thylakoid discs of the chloroplasts.

Thylakoids  within the chloroplast are interconnected disc-like sacs of the internal membrane system present in the chloroplast. They are found suspended in the stroma. Thylakoids in the chloroplasts are arranged in a stack manner, which is called grana. The membrane of the thylakoid contains a photosynthetic pigment called chlorophyll. This chlorophyll pigment helps in absorption of the sunlight during the process of photosynthesis. Thylakoids are usually found as tiny compartments within the structure of chloroplasts. The role of the thylakoids is to help in absorption of sunlight for photosynthesis to occur. They contain most of the chlorophyll that the plant has and hence allows the plant for the absorption of sunlight. The light reaction takes place on  the thylakoid discs.

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Identify the process that allows the BRCA1 and/or BRCA2 mutation to be passed from parent to offspring and summarize how the difference in the DNA can cause a difference in the protein product

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The process that allows the BRCA1 and/or BRCA2 mutation to be passed from parent to offspring is called genetic inheritance. This means that genetic information, which is stored in the DNA, is passed down from parent to offspring through the egg and sperm cells.

What is Mutation?

A mutation is a permanent alteration in the DNA sequence that makes up a gene or a chromosome. Mutations can occur spontaneously or as a result of exposure to various environmental factors such as radiation, chemicals, or viruses.

Harmful mutations can lead to genetic disorders or diseases such as cancer, sickle cell anemia, or cystic fibrosis. Beneficial mutations can provide an advantage to an organism, such as resistance to disease, increased fitness, or adaptation to a new environment. Mutations that have no effect are called silent mutations.

BRCA1 and BRCA2 are genes that produce proteins that help prevent the development of cancer. A mutation in either of these genes can cause a change in the DNA sequence, which can alter the structure and function of the protein product.

The difference in the DNA sequence can cause a difference in the protein product because the DNA sequence determines the sequence of amino acids in the protein. A change in the DNA sequence can alter the sequence of amino acids in the protein, which can affect the protein's ability to function properly.

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Do you think that people get smarter as they get older? In what ways might people gain or lose intellectual abilities as they age?
When you meet someone who strikes you as being smart, what types of cues or information do you typically attend to in order to arrive at this judgment?

Answers

Yes, people get smarter as they get older, but it is not because of their age, it is because of the experience they gain throughout life.

What are intellectual abilities?

The executive functions of inhibition, working memory, and flexibility play a role in the best possible manifestation of intellectual ability, which is a process in development.

These abilities are crucial because they enable you to recognize patterns, analyze problems, digest information, successfully brainstorm, and pay attention with focus.

Thus, it is not necessary that an older person is more intelligent and smart than a younger person.

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When conducting a risk assessment of a pathogen, the strain (i.e. bovis) of the organism is not essential, Genus alone (i.e. Mycobacterium) is sufficient to complete the review.
a. true
b. false

Answers

The adage "When completing a risk assessment of a pathogen, the genus alone (i.e. Mycobacterium) is sufficient to complete the review" is TRUE.

What is Mycobacterium?

Mycobacterium is a genus of bacteria that includes several species, some of which can cause human diseases such as tuberculosis, leprosy, and Mycobacterium avium complex (MAC) infections. These bacteria are characterized by a waxy, lipid-rich cell wall that makes them resistant to many common disinfectants and antibiotics. Mycobacterium tuberculosis, the species that causes tuberculosis, is a significant global public health threat, causing millions of infections and deaths each year. In addition to causing human diseases, Mycobacterium species are also found in the environment and can infect animals, including livestock and wildlife.

A risk assessment is an evaluation of the likelihood and potential consequences of a specific hazard or threat, such as a pathogenic microorganism. The goal of a risk assessment is to identify and evaluate the risks associated with the hazard in question, and to develop strategies to mitigate or manage those risks.

When conducting a risk assessment of a pathogen, the focus is on the characteristics of the organism that make it hazardous, such as its ability to cause disease, its virulence, and its resistance to treatment or disinfection. These characteristics are generally associated with the genus of the pathogen, rather than the strain or specific subtype.

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If the right lateral spinothalamic tract is severed,
A. muscles on the left side are paralyzed.
B. muscles on the right side are paralyzed.
C. pain impulses from the left side are blocked.
D. pain impulses from the right side are blocked.

Answers

If the right lateral spinothalamic tract gets severed then the pain impulses which are coming form the left side are blocked.

The correct option is option C.

The spinothalamic tract is basically a part of the anterolateral system or a part of the ventrolateral system, which is a sensory pathway all the way to the thalamus. The lateral spinothalamic tract (which is also known as the lateral spinothalamic fasciculus), is basically a bundle of the afferent nerve fibers which are ascending through the white matter of the spinal cord, and carry the sensory information to the brain.

The spinothalamic tract basically consists of two types of adjacent pathways: anterior and lateral. The main function of this tract is to basically carry pain as well as temperature through the lateral part of the pathway as well as crude touch through the anterior part.

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new synthetic nucleotides have been inserted into e. coli bacteria to increase the number of they can produce, which can help with the development of new drugs and other applications.

Answers

New synthetic nucleotides have been inserted into e. coli bacteria to increase the number of amino acids they can produce, which can help with the development of new drugs and other applications.

What is the purpose of synthetic biology?

The purpose of synthetic biology is to design and create new biological systems or modify existing ones for specific purposes, using a combination of principles from biology, engineering, and computer science.

It involves the design, construction, and manipulation of genetic materials, pathways, and entire organisms, with the aim of creating new biological functions and applications. Synthetic biology has applications in medicine, biotechnology, environmental science, and many other fields.

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the brachial artery can be located on the medial side of the arm between which two muscles

Answers

The brachial artery can be located on the medial side of the arm between the biceps and triceps muscles.

The main blood vessel in the (upper) arm is the brachial artery. Beyond the teres major muscle's bottom border, the axillary artery continues. The cubital fossa is reached at the elbow after continuing along the ventral side of the arm. The radial and ulnar arteries, which flow down the forearm, are formed next. The ulnar and radial arteries extend across the upper arm in certain people because the bifurcation happens considerably earlier in these people. While measuring blood pressure with a sphygmomanometer and stethoscope, the brachial artery pulse may be felt on the medial side of the biceps tendon, on the anterior portion of the elbow.

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what process is the formation of rubp from g3p molecules

Answers

In the third stage of the Calvin cycle, which is known as the regeneration stage, some of the G3P molecules produce glucose, while others are used in order to regenerate the RuBP acceptor.

Calvin cycle, which is also sometimes known as the C3 cycle or the light-independent reaction or even the dark reaction of the photosynthesis. However, this cycle is most active during the day time when NADPH as well as the ATP are present abundantly. In order yo build organic molecules, the plant cells basically use certain raw materials which get provided by the light reactions.

The cycle basically takes place in three stages which are known as the carbon fixation, reduction as well as the regeneration stage. In the regeneration stage, some of the G3P molecules get used in the production of the glucose, while others are used in order to regenerate the RuBP acceptor.

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The area shaded in orange receives blood supply from the a) small cardiac vein. b) right coronary artery. c) anterior interventricular artery. d) circumflex artery.

Answers

Answer:

The area shaded in orange receives blood supply from the right coronary artery (b).

Answer:Imagine you are a paleontologist trying to find the “missing link” between different species. In three to five sentences, create a fictional narrative about your discoveries, describing: 1) what two species, mythical or real, you are studying, 2) what evidence you have linking these species, and 3) what evidence you have to define different correlations and causations that support your hypothesis.

Explanation: because because

how should the right sacral base move during right sacroiliac flexion?

Answers

The right sacral base should move posteriorly and inferiorly during right sacroiliac flexion. During right sacroiliac flexion, the right sacral base should move inferiorly and anteriorly.

This movement allows the right sacroiliac joint to open up and create more space, allowing for improved movement and flexibility in the area. This movement also helps to engage the muscles surrounding the joint, which helps stabilize the area and increases the range of motion. This movement occurs when the right side of the sacrum (the right sacral base) is pushed down and forward. This action causes the sacroiliac joint to flex, increasing the distance between the right sacral base and the right ilium. This allows the right hip to flex more, and also increases the space between the two bony surfaces of the joint, allowing for more motion. Additionally, this movement also reduces the tension in the ligaments that attach the sacrum to the ilium, which helps to reduce pain and restore function.

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Compared to the right ventricle, the left ventricle has all the following characteristics exceptA) has a thicker wall.B) is round in cross section.C) pumps a greater volume.D) works harder.E) produces about four to six times more pressure when it contracts.

Answers

The correct response is B) has a circular cross-section. The right ventricle sends deoxygenated blood to the lungs, whereas the left ventricle pumps oxygenated blood to the remainder of the body.

What distinguishes the left ventricle from the right ventricle?

The deoxygenated blood is taken from the right atrium and pumped to the pulmonary artery by the right ventricle. The left ventricle, on the other hand, takes blood that is oxygenated from the left atrium and pumps it to the aorta.

What distinguishes the left and right heart ventricles?

Blood that does not yet contain oxygen enters the right ventricle of the heart and travels to the pulmonary valve and lungs from there. It gets fresh oxygen in the lungs. Blood is pumped from the left ventricle to the aortic valve.

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1)which types of molecules are allowed to diffuse across a membrane easily ? 2) which molecules require a transport protein? 3) what are some types of transport proteins ?4) Do all transport proteins require energy ? Why ? 5) when does you need energy to transport across a membrane ? 6) does active transport require a transmembrane protein ? Why / why not ?

Answers

1. Tiny nonpolar molecules can easily traverse cell membranes because they are soluble in the lipid bilayer. Examples of these molecules are O2 and CO2.

1. Continue : Larger uncharged polar molecules, like glucose, cannot diffuse across membranes, but small uncharged polar molecules, like H2O, may.

2. In order to successfully penetrate the membrane, larger polar and charged molecules like sugars and amino acids also require the assistance of proteins.

3. The two main kinds of membrane transport proteins are carrier proteins and channel proteins.

4. The cell must use energy for all active transport types. Secondary active transport proteins obtain their energy via ATP-derived activities, whereas primary active transport proteins obtain their energy directly from ATP.

5. Molecules engage in passive transport when they travel down their concentration gradient; active transport, which needs energy, occurs when they move up their gradient.

6. Active transport is a type of transportation where molecules must move with the help of energy. By moving against the concentration gradient, molecules travel from low concentration to high concentration. Moreover, active transport is extremely selective and calls for certain membrane proteins.

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Correct Question:

1)What types of molecules are allowed to diffuse across a membrane easily ?

2) What molecules require a transport protein?

3) what are some types of transport proteins ?

4) Do all transport proteins require energy ? Why ?

5) when does you need energy to transport across a membrane ?

6) does active transport require a transmembrane protein ? Why / why not ?

The equators warm water traveling toward the poles is an example of what A;radiation,B:convection,C:conduction, or D:thermal energy

Answers

The equator's warm water traveling toward the poles is an example of convection that is in option B, as convection is the transfer of heat through the movement of fluids or gases.

What is the convection?

Here, the warm water at the equator rises and flows towards the poles, while the cooler water from the poles sinks and flows back to the equator, creating a continuous cycle of heat transfer, and his process of oceanic circulation is essential for regulating the earth's climate and also helps to distribute heat and nutrients throughout the ocean.

Hence, the equator's warm water traveling toward the poles is an example of convection, which is in Option B.

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The aquatic plant elodea was placed in distilled water and a 10% sodium chloride solution. Which caused the cell to swell? What keeps the cell from bursting?

Answers

To prevent the cell from bursting or collapsing due to osmotic imbalances, the plant cells have a rigid cell wall made of cellulose. The cell wall is permeable to water and other small molecules, but it is impermeable to large molecules and ions.

What is Distilled Water?

This process involves heating the water to boiling point, then collecting and condensing the steam that is released. Distillation removes impurities, such as minerals and other contaminants, leaving behind pure water with a neutral pH.

The aquatic plant Elodea will swell when placed in distilled water, as water will move into the cells by osmosis. The concentration of solutes inside the cell is greater than the concentration of solutes outside the cell in distilled water, and so water moves from an area .This results in the cell expanding and becoming turgid.

On the other hand, the 10% sodium chloride solution will cause the Elodea cell to shrink or become plasmolyzed. This is because the concentration of solutes outside the cell is higher than inside the cell, and so water moves out of the cell by osmosis.

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which body habitus will the kidney lie at the highest level

Answers

Option C: hypersthenic is the body status for which the kidney will lie at the highest level.

The common variations in the shapes of the human body that then determines the position of the internal visecral organs is termed as body habitus. If the kidney is to lie at the highest level, it would be determined by hypersthenic body habitus.

Sthenic, asthenic, hyposthenic, and hypersthenic are the four kinds of body habitus. While sthenic determines the average level, hypersthenic is the one that determines the highest level of the body position of the viscera in the body. Hypersthenic body habitus is also known as endomorphic.

Body habitus determimes the thickness of the body wall and hence gives an idea of the external factors required for radiographic dose.

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Complete question is:

For which body habitus will the kidneys lie at the highest level?

a. sthenic

b. asthenic

c. hypersthenic

d. hyposthenic

rachel carson helped usher in the modern environmental movement in the 1960s with her book silent spring, which alerted the public to threats from __. multiple choice question. overhunting of birds

Answers

With her book Silent Spring, which warned the public of the dangers posed by pollution and dangerous chemicals, Rachel Carson helped launch the modern environmental movement in the 1960s.

In the years that followed the Rachel controversy surrounding Silent Spring, the United States Environmental Protection Agency was established, and a number of laws were passed to protect the environment and public health, including one in 1972 that outlawed the domestic use of DDT because of its widespread overuse and detrimental effects on the environment.

The environmental effects of the usage of pesticides like DDT were the main topic of Rachel Carson's 1962 book Silent Spring, which has been called a "landmark literary work of the 20th century." Carson, unfortunately, experienced hostility and prejudice in response to her work.

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Correct Question:

Rachel Carson helps usher in the modern environmental movement in the 1960s with her book Silent Spring, which alerted the public to threats from _____________.

What is the mode of heat transfer through a moving fluid medium?

Answers

Convective heat transfer is the movement of fluids, which effectively translates to the mass transfer of heat, from one location to another. The transfer of fluid molecules between locations of different temperatures.

These are some instances of convection:

When water boils, the molecules move in a circular motion because the molecules with a higher density migrate upward while those with a lower density flow downward, causing the water to become hotter.

Cooler water at the poles travels towards the equator while warm water near the equator does the opposite.

Convection facilitates blood circulation and controls body temperature in warm-blooded animals.

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What is one way in which the gas giants are different from the terrestrial
planets?
A. The gas giants have fewer moons than the terrestrial planets.
OB. The gas giants rotate on their axes more slowly than the terrestrial
planets.
C. The gas giants are much larger than the terrestrial planets.
OD. The orbits of the gas giants are more circular than those of the
terrestrial planets.

Answers

The answer is C because Gas giants are bigger, older and more massive than terrestrial planets

when riding a bike, this brain area helps with balance and rhythmic motion
a. neocortex
b. limbic system
c. cerebellum
d. auto synthetic

Answers

Answer:

The cerebellum

Explanation:

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