Answer:
D.) Changes in solar energy
Explanation:
This is because increased solar irradiation causes the release of methane and carbon dioxide from storage in the seas and icecaps, which can then cause additional warming. I hope this helps! ^-^
According to some scientists, the major cause of global warming based on the options given is changes in solar energy.
What do you mean by Global warming?Global warming may be defined as the situation that unusually or rapidly increases the Earth's average surface temperature over the past century primarily due to the greenhouse gases released by people burning fossil fuels.
An increase in Methane, Carbon dioxide, and nitrous oxide leads to global warming as these all are greenhouse gases.
Therefore, according to the option given above, the major cause of global warming is changes in solar energy.
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Damage to or a tumor on which organ would lead to a disruption of the nervous and endocrine system?
Answer:
The hypothalamus
Explanation:
If this organ is damaged or has a tumor it would disrupt its function.
- it is the connection between the nervous system and the endocrine system.
while comparing the amino acid sequences of many different gpcrs, you notice the presence of conserved serine and threonine amino acids on the same cytosolic region of each receptor. you change the dna sequence so that all of the conserved serine and threonine amino acids in the cytosolic region are converted to glutamic acid. which of the following effects would you most likely see when cells expressing this modified gpcr are exposed to ligand compared to your control cells that do not express the modified gpcr? group of answer choices a. Cells expressing the modified GPCR will display a reduced response more quickly than control cells.
b. The modified GPCR will be recycled to the cell surface more rapidly than the modified GPCR.
c. The modified GPCR will undergo endocytosis sooner than the unmodified GPCR.
d. The modified GPCR will undergo endocytosis sooner and cells expressing the modified GPCR will display a reduced response more quickly than control cells.
e. Cells expressing the modified GPCR will display a sustained response compared to the control cells.
Cells that express the mutant GPCR will have a persistent response. The bulk of intracellular reactions to inputs are mediated by G protein-coupled receptors (GPCRs), the exchange activation of GTP.
The production of intracellular messengers controls the activation of MAPKs by GPCRs as well. The second messenger pathways AC/cAMP and PLC/PKC are activated by GPCR activity. Raf-1-activated ERK activity may be inhibited by the activation of the RAP-1/B-Raf/ERK pathways by cAMP, either directly or through PKA. The precise pattern of the processes involved in the desensitization of GPCRs depends on the GPCR subtype and may potentially include intracellular context dependent.
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blood is taken to the lungs to become oxygenated and returned to the heart before being pumped through the body. which blood vessels carry blood away from the heart?
Answer:
arteries
Explanation:
Arteries carry blood Away from the heart, and veins carry blood towards the heart.
The picture shows soil that has become compacted.
What is the most likely direct result when soil becomes compacted by human
use?
A. Increased pollution
B. Increased permeability
c. Decreased humus
D. Decreased porosity
Answer:
D, decreased porosity
Explanation:
As soil gets compacted the particles move closer to each other and leave less pore space for water or air between them.
Calculate the Systemic and Pulmonary Driving pressures. Mean Aortic Pressure: 90mmHg Mean Pulmonary Arterial Pressure: 10mmHg Right Atrial Pressure: 2mmHg Left Atrial Pressure: 4mmHg
The Systemic Driving Pressure is calculated by subtracting the Right Atrial Pressure (2mmHg) from the Mean Aortic Pressure (90mmHg), resulting in a Systemic Driving Pressure of 88mmHg and Pulmonary Driving Pressure is 6mmHg.
To calculate the Systemic and Pulmonary Driving pressures, we need to use the following formula:
Systemic Driving Pressure = Mean Aortic Pressure - Right Atrial Pressure
Pulmonary Driving Pressure = Mean Pulmonary Arterial Pressure - Left Atrial Pressure
Plugging in the given values, we get:
Systemic Driving Pressure = 90mmHg - 2mmHg = 88mmHg
Pulmonary Driving Pressure = 10mmHg - 4mmHg = 6mmHg
Therefore, the Systemic Driving Pressure is 88mmHg and the Pulmonary Driving Pressure is 6mmHg.
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Local weather forecasters often talk about the percent chance for rainfall. What do you think they mean?
Answer:
They mean how much rain can be put out as a whole for that pacific area for example, if I say that there is a 70% chance of rain and 30% chance of sunlight your most likley going to get rain and barley any sunlight.
Explanation:
I really hope that helped!
clarify how the tasmanian devil is different from other fauna native to Australia
Answer:
Explanation:
Image result for clarify how the tasmanian devil is different from other fauna native to Australia
The Tasmanian devil is named for the Australian island-state of Tasmania, its only native habitat. ... Vaguely bearlike in appearance and weighing up to 12 kg (26 pounds), it is 50 to 80 cm (20 to 31 inches) long and has a bushy tail about half that length.
Who are some black scientists?
Some other famous black scientists like:
Dr. Marshall Shepherd, meteorologist and climatologist.Dr. Shirley Ann Jackson, physicist.Dr. Ayanna Howard, robot engineer.Dr. Beth A. Brown, astrophysicist. Dr. Christine Darden, aerospace engineer. ➥ I hope I have helped you, greetings! Atte: ღTheGirlSadღDr. Marshall Shepherd, meteorologist and climatologist.
Dr. Shirley Ann Jackson, physicist.
Dr. Ayanna Howard, robot engineer.
Dr. Beth A. Brown, astrophysicist.
Dr. Christine Darden, aerospace engineer.
what are the two common patterns of chromosome segregation seen in the tetravalent structures found in translocation heterozygotes?
In translocation heterozygotes, the tetravalent structures formed during meiosis exhibit two common patterns of chromosome segregation, which are:
1. Alternate segregation: In this pattern, the chromosomes segregate in such a way that one translocated and one normal chromosome are passed on to each gamete. This results in balanced gametes, which have the correct amount of genetic information. Offspring resulting from these gametes will have a balanced set of chromosomes and are usually viable.
a) The tetravalent structure forms during meiosis.
b) Chromosomes segregate alternately.
c) One translocated and one normal chromosome are passed to each gamete.
d) The resulting gametes are balanced.
2. Adjacent-1 segregation: In this pattern, the homologous chromosomes segregate together, resulting in gametes that contain duplicated or deleted genetic information. Offspring resulting from these gametes will have an unbalanced set of chromosomes, which can lead to abnormalities or inviability.
a) The tetravalent structure forms during meiosis.
b) Homologous chromosomes segregate together.
c) The resulting gametes contain duplicated or deleted genetic information.
d) Offspring from these gametes have an unbalanced set of chromosomes.
the two common patterns of chromosome segregation seen in tetravalent structures found in translocation heterozygotes are alternate segregation and adjacent-1 segregation. Alternate segregation produces balanced gametes, while adjacent-1 segregation results in unbalanced gametes with chromosomal abnormalities.
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you have learned that during a solar eclipse the moon passes between the sun and the earth. During a lunar eclipse, the earth passes between the sun and the moon. In this experiment you will simulate both a solar and lunar eclipse.
These supplies are needed:
A large ball about the size of a basketball to represent the earth
A small ball about the size of a tennis ball to represent the moon
A strong light of about 100 watts or more
A method for darkening the room
Note: If your room is difficult to darken, you may use the sunshine as a source of light. You may also want to use cardboard circles in place of balls. Cut one large circle about 8 inches in diameter to represent planet earth. Label it earth. Cut one small circle about 3 inches in diameter. Label it moon.
Procedure:
1. Place the large ball (basketball) about 12 feet from the light source. Then, place the small ball (tennis ball) in the shadow of the large ball. If you are using cardboard circles in place of the balls, hold the large cardboard circle up in the sunshine. Then, place the moon (small cardboard circle) in earth's shadow. When you have lined up the balls or cardboard in this manner, you have made a shadow fall on the moon. This shadow represents an eclipse of the moon.
2. Now, shift the balls or cardboard to make the shadow fall on the basketball or largest cardboard. In effect, the sun is being darkened. If you were an observer on the earth, this condition would be a solar eclipse. When the moon comes between the sun and planet earth, a solar eclipse occurs.
The preceding illustration shows how an eclipse can be artificially made. The moon (tennis ball) is darkened by a shadow. This shadow represents a lunar eclipse (moon eclipse). You can reverse the position of the tennis ball and the basketball to represent a solar eclipse.
What did you observe?
Answer:
A solar eclipse happens when the Moon passes between the Sun and Earth, casting a shadow on Earth that either fully or partially blocks the Sun's light in some areas. This only happens occasionally, because the Moon doesn't orbit in the exact same plane as the Sun and Earth do.
Explanation:
I am guessing in your experiment there, the ball had a complete shadow over it, to show you how a solar eclipse works or looks.
this tissue type can perform absorption or secretion in the body.
In your body, epithelial tissue can perform protection, secretion, and absorption.
The epithelium, which is the main tissue in glands, is a type of body tissue that covers all of your body's internal and external surfaces, lines body cavities, and lines hollow organs. The functions of epithelial tissue might vary depending on where it is in the body, including absorption, secretion, and defense.
The smallest biological unit capable of independent life is a cell. Cells make up all living things, including the tissues in your body.
Kidney tubules and glandular (secreting) tissue frequently contain simple cuboidal epithelium.
Apical cilia or microvilli are typically present in simple columnar epithelium, which is frequently specialized for absorption. Your intestines and stomach are lined by these cells.
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Which of the following is the mean number per cross of F2 generation offspring that are the result of crossing over
Answer:
2.2
Explanation:
Since all of the mice in the F1 generation are heterozygous for both traits, they contain a copy of each on separate chromosomes. (AB on one from parent 1 and ab on the other from the parent 2.) If these chromosomes split away from each other without crossing over, the F2 offspring can ONLY by AABB or aabb. This means that any heterozygous combinations are the result of crossing over and must be counted. When all are counted, we get a total of 11, or 2.2 per cross.
To calculate the mean number per cross of the offspring that result of crossing over, we need to make an addition of individuals that result from crossing-over, and divide the result by the number of crosses. The result is 2.2.
---------------------
According to the statement, crosses were as follow
Cross 1) Between two true-breeding
Parentals) LLBB x llbb
F1) 100% LlBb
Cross 2) Between two dihybrids
Parentals) LlBb x LlBb
The results of the F2 are
Phenotype Cross1 Cross2 Cross3 Cross4 Cross5
Long-Black 6 5 5 6 7
Long-White 1 1 0 2 2
Short-Black 0 2 1 1 1
Short-White 2 3 3 2 2
If there is no crossing-over, offspring will have the same chromosomes as parentals, which are Long-Black (LB) or Short-White (lb), because these chromosomes separate without interchanging segments.
However, if there is crossing over, these chromosomes interchange segments, and the result is Long-White (Lb) and short-black (lB).
So now, we need to count how many individuals from the F2 are a result of crossing-over.
Phenotype Cross1 Cross2 Cross3 Cross4 Cross5 Total
Long-White 1 1 0 2 2 6Short-Black 0 2 1 1 1 511
Eleven individuals result from crossing over. But we need to calculate the mean number per cross.
So, since there are 5 crosses, we need to divide the total number of individuals that are the result of crossing over by the total number of crosses.
total number of individuals = 11total number of crosses = 5Mean number per cross of F2 generation ⇒ 11/5 = 2.2
The mean number per cross of F2 generation offspring that are the result of crossing over is 2.2
---------------------------------------
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What gene allows organisms to live in hot environments? help please.
Answer:
Explanation:
All living things can be classified into three main groups called domains; these include the Archaea, the Bacteria, and the Eukarya.
Prokaryotes arose during the Precambrian Period 3.5 to 3.8 billion years ago.
Prokaryotic organisms can live in every type of environment on Earth, from very hot, to very cold, to super haline, to very acidic.
The domains Bacteria and Archaea are the ones containing prokaryotic organisms.
The Archaea are prokaryotes that inhabit extreme environments, such as inside of volcanoes, while Bacteria are more common organisms, such as E. coli.
prokaryote: an organism whose cell (or cells) are characterized by the absence of a nucleus or any other membrane-bound organelles
domain: in the three-domain system, the highest rank in the classification of organisms, above kingdom: Bacteria, Archaea, and Eukarya
archaea: a taxonomic domain of single-celled organisms lacking nuclei, formerly called archaebacteria, but now known to differ fundamentally from bacteria
a protein in a microbe’s membrane helps it survive extreme environments
Within harsh environments like hot springs, volcanic craters and deep-sea hydrothermal vents – uninhabitable by most life forms – microscopic organisms are thriving. How? It’s all in how they wrap themselves.
hope this helps i know its long lol
What are the steps of gene expression?
Answer:
The process of gene expression involves two main stages: Transcription: the production of messenger RNA (mRNA) by the enzyme RNA polymerase, and the processing of the resulting mRNA molecule.
...
Translation involves four steps:
Initiation. ...
Elongation. ...
Termination. ...
Post-translation processing of the protein.
Explanation:
HELP PLZ only if you know 11 points
Examine the image. Explain how the spider’s genes and environment have influenced its characteristics.
he blends in with the flower so his blood made his skin color white with yellow/orange.
hope i helped!
Food webs model the way _______ move through an ecosystem.
Food webs model the way energy move through an ecosystem
What is food webFood web is a chain of food chains contained in an ecosystem, It models the way through which energy is transferred through the ecosystem. The food chains represents the path through which energy is transferred.
Hence we can conclude that Food webs model the way energy move through an ecosystem.
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Renu was feeling giddy and she was taken to the hospital. Doctor said that her salt level has come down and she needs to take saline solution. Where do they inject the saline solution-in the artery or vein? Justify your answer?
When administering saline solution to a patient, it is typically injected into a vein rather than an artery due to the specific properties and functions of these blood vessels.
Saline solution is a common medical fluid used to replenish fluids and electrolytes in the body. When administered, it is typically injected into a vein, a type of blood vessel responsible for carrying deoxygenated blood back to the heart.
The reason for this choice is that veins have thinner walls and lower pressure compared to arteries. The thinner walls of veins make them easier to puncture with a needle, reducing the risk of damage or injury. Additionally, the lower pressure within veins allows for a slower, controlled flow of the saline solution into the bloodstream. This controlled flow helps to prevent discomfort or adverse reactions that may occur if the fluid is introduced too quickly.
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the most highly resistant microbial structure is the bacterial
The most highly resistant microbial structure is the bacterial endospore.
Endospores are a dormant, highly resistant structures formed by certain bacteria when they are exposed to harsh environmental conditions, such as high temperatures, UV radiation, desiccation, and chemical disinfectants.
Endospores are formed when the bacterial cell undergoes a process of sporulation, during which it dehydrates, forms a protective protein coat, and sheds most of its cytoplasmic content, including DNA.
Endospores are extremely resistant to heat, radiation, chemicals, and desiccation, and can survive for extended periods of time under adverse conditions.
The complete question is:
The most highly resistant microbial structure is the bacterial __________.
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What is a mutation?
A. A change that occurs in RNA only
B. A change that occurs in DNA only
C. A change that occurs in DNA or RNA
\(\huge\colorbox{purple}A\colorbox{blue}n\colorbox{purple}s\colorbox{blue}w\colorbox{purple}e\colorbox{blue}r \)
\(\color{Violet}\rm{Heree!}\)
For me the answer is letter B.
hope it's help✨
__________________________________
“‘The mountains may shift, and the hills may be shaken, but my faithful love won’t shift from you, and my covenant of peace won’t be shaken,’ says the Lord, the one who pities you.” — Isaiah 54:10 ❤__________________________________
Answer:
C. A change that occurs in DNA or RNA
Explanation:
A mutation is a change that occurs in our DNA sequence, either due to mistakes when the DNA is copied or as the result of environmental factors such as UV light and cigarette smoke.
Many types of plants produce fruit which is eaten by animals. The seeds of these plants are typically undigestible. Which of the following is an advantage for plants having undigestible seeds? It allows seeds to reside in the gut until conditions are appropriate for germination. It ensures that flowers of these plants will be pollinated. It allows the seeds to be dispersed into other areas. It provides a source of nutrients for the germinating seed.
The advantage for plants having undigestible seeds is that it allows seeds to reside in the gut until conditions are appropriate for germination.
Fruits are a source of nutrition for animals that consume them, and they are also a means of seed distribution for plants that produce them. Many types of plants generate fruit that is consumed by animals; nevertheless, the seeds of such plants are usually indigestible. As a result, the seeds can be dispersed into new areas by animals that eat the fruit.
However, having undigestible seeds provides a distinct benefit to plants: it allows seeds to reside in the gut until conditions are appropriate for germination, which aids in seed growth and germination.
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What are two types of evidence that support the hypothesis that earth and the rest of the solar system was formed by a condensing nebula
Comets, Asteroids and metoeorites support the hypothesis that earth and the rest of the solar system was formed by a condensing nebula.
What are the functions of asteroids?An asteroid is a minor planet of the inner Solar System. Sizes and shapes of asteroids vary significantly, ranging from 1-meter rocks to a dwarf planet almost 1000 km in diameter; they are rocky, metallic or icy bodies with no atmosphere.
They probably consist of clay and silicate rocks, and are dark in appearance. They are among the most ancient objects in the solar system. The S-types ("stony") are made up of silicate materials and nickel-iron. The M-types are metallic (nickel-iron).
Almost all of the asteroids in our solar system are orbiting in a broad band 19,400,000 miles wide between Jupiter and Mars. The asteroids are orbiting the Sun, each one traveling around the Sun fast enough for the orbits not to degrade.
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NEED HELP ASAP
To believe in Jesus as his Savior, Nicodemus had to turn through faith and:
good deeds
repentance
love
works
Answer: repent
Explanation:
Which life process generates the raw materials and energy needed to sustain all other life processes?.
The life process that generates the raw materials and energy needed to sustain all other life processes is known as Metabolism.
What is Metabolism?Metabolism may be defined as a type of chemical process that takes place inside the body of living organisms in order to keep them alive. It includes repairing cells, digestion of foods, breathing, etc.
Metabolism is a type of life process that significantly generates the raw materials and energy that are needed in order to sustain all other life processes. This process introduces changes that make energy and the materials cells and organisms need to grow, reproduce and stay healthy.
There are two categories of metabolism: catabolism and anabolism. Catabolism is the breakdown of organic matter, and anabolism uses energy to construct components of cells, such as proteins and nucleic acids.
Therefore, the life process that generates the raw materials and energy needed to sustain all other life processes is known as Metabolism.
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TELL ALL THREE ANSWERS FOR BRAINLIEST!
What do supernova remnant and planetary nebulae have in common? Select the three correct answers.
A. They are diffuse.
B. They are composed of matter from dying stars.
C. They emit non-visible radiation.
D. They are composed only of hydrogen and helium.
E. They have planets circling them.
F. They contribute matter to interstellar space.
Supernova remnant and planetary nebulae have ; ( B, C, F ) in common
They are composed of matter from dying stars ( B )They emit non-visible radiation ( C )They contribute matter to interstellar space ( F )Supernova remnant is a by product gotten from the explosion of star(s) in the galaxy ( supernova galaxy ). which is bounded by a shock waves and contains materials emanating from the explosion of star(s)
A Planetary nebulae looks like a planet when viewed through a small telescope. but it is actually a bright shell of hot gas continuously expanding. and it is a by product of the breaking down of a star(s) life ( usually low-mass star )
Therefore we can conclude that the similarities between a supernova remnant and a planetary nebulae is that They are composed of matter from dying stars ,They emit non-visible radiation, They contribute matter to interstellar space
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Question 1 (1.5 points)
Why did environmental policies became essential as the US population began to
grow more quickly?
Environmental policies became essential as the US population began to
grow more quickly because as more individuals acted out of self respect rather than communal goods, resources began to be depleted and is denoted as option D.
What is a Policy?
This is referred to as a general guideline that is used as a basis for making decisions. There are different types of policies and in a country are usually passed by the government after meeting the requirements stated in the constitution.
Population and availability of resources have a direct relationship. As population began to increase, the need for resources began to increase also which is why there was the need for the provision of environmental policies so to make sure that there is no scarcity and makes it the correct choice.
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We use genetically modifed animals for protein tracking as well as novelty pets.
True
False
Do you think the processes that form and shape the small stream bed are similar to those that form and shape the Grand Canyon? Why or why not?
Answer:
Due to the flowing of stream and river.
Explanation:
The processes that formed the small stream bed are similar to those that formed the Grand Canyon because both are formed by the flowing of river. The river flow through these regions and with this flow they takes rock particles with itself and makes several shapes and structures of that region. So we say that rivers and streams are responsible for the formation of stream bed and Grand Canyon.
The most numerous of the agranulocytes often having a relatively large nucleus as the smallest WBC and making up 20-25% of the total number of WBC. a. lymphocyte b. basophil c. neutrophil d. monocyte e. eosinophil
The correct answer to your question is d. monocyte. Monocytes are a type of white blood cell (WBC) that are agranulocytes, meaning they do not have granules in their cytoplasm.
They typically have a large and kidney-shaped nucleus, making them the smallest WBC in terms of cell size. Monocytes make up about 4-8% of the total number of WBCs in the body and are important in the immune system's defense against foreign invaders, such as bacteria and viruses. Once they enter the tissues, they can differentiate into macrophages, which play a critical role in engulfing and destroying foreign particles. Monocytes also play a role in regulating inflammation in the body.
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When recording a customer payment in the Receive Payments window, which account should you select in the Deposit To field in order to later group multiple payments for deposit to the bank?
A. Cost of Goods Sold.
B. Accounts Receivable.
C. Undeposited Funds.
D. Checking account.
When recording a customer payment in the receive payment window one should choose a checking account. the correct option is D, checking account.
What is a checking account?
A checking account is a type of bank account that allows individuals or businesses to deposit, withdraw, and manage their funds easily.
Key features of a checking account:
Deposits and Withdrawals.Check Writing.Debit Card Access.Online and Mobile Banking.Account Statements.The checking account represents the bank account where the payments will be deposited once they are grouped together. Selecting the Checking account in the Deposit To field, ensure that the received payments are properly tracked and recorded. This allows you to later group multiple payments for deposit to the bank.
Therefore, the correct option is D.
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Which air mass has formed immediately north of Antarctica in the image?
Study the image.
maritime polar
continental polar
maritime tropical
continental tropical
Answer:
Maritime polar
Explanation:
In the image, the maritime polar is the air mass that has formed immediately at the north of Antarctica.
Whta is a maritime polar air mass?A maritime polar air mass is a type of mass of extremely cold atmospheric air generated in the Noth and South poles.
These polar aim masses travel to lower latitudes in order to produce important rain precipitations.
As maritime polar air masses move they may collect warm and moist air from the surrounding ocean water.
In conclusion, the maritime polar is the air mass that has formed immediately at the north of Antarctica.
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