The pulmonary artery is the pathway through which blood travels from the right ventricle of the mammalian heart to the lungs. By taking out carbon dioxide and providing oxygen, the lungs are in charge of oxygenating the blood.
Following this, the pulmonary veins carry the oxygen-rich blood back to the heart, where it enters the left atrium. It then enters the left ventricle before being pumped through the aorta to the remainder of the body.
The superior vena cava and the inferior vena cava are two significant veins that carry oxygen-poor, carbon dioxide-rich blood back to the right side of the heart. The blood is then transported to the lungs through the pulmonary artery, where it absorbs oxygen and exhales carbon dioxide.
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Match the answer to the question.
Tx factor that produces the Nieuwkoop Center
diffusible factor that blocks the action of another hormone stage of the Xenopus embryo that has only one axis embryonic tissue that will develop into the skin and neural tissues
embryonic tissue that will develop into gut
transcription factor that produces the Spemann Organizer hormone responsible for induction of ventral mesoderm t
he first stage of the Xenopus embryo that has three axes embryonic tissue that will develop into muscle, bone, and blood
Choose...
goosecoid mesoderm
blastula endoderm gastrula ectoderm siamois noggin
BMP4
The "Embryonic tissue that will develop into gut" is endoderm. It is the innermost germ layer, which gives rise to the respiratory and digestive tracts, liver, and pancreas.The "Embryonic tissue that will develop into muscle, bone, and blood" is mesoderm. It is the middle germ layer, which gives rise to muscle, bone, cartilage, and blood.
The correct match for each answer to the given question is as follows:Tx factor that produces the Nieuwkoop Center - nogginDiffusible factor that blocks the action of another hormone - chordinHormone responsible for induction of ventral mesoderm - BMP4Embryonic tissue that will develop into the skin and neural tissues - ectodermEmbryonic tissue that will develop into gut - endodermEmbryonic tissue that will develop into muscle, bone, and blood - mesodermThe "Tx factor that produces the Nieuwkoop Center" is noggin. Noggin is a molecule that helps in the formation of the head organizer or Nieuwkoop center.
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These two graphs show the amount of food consumed by a single species of organism. One graph shows food intake during one week in the summer, when the organism is very active. One graph shows food intake during one week in the winter, when the organism is mostly at rest. Which graph represents each time period? Why are the two graphs different? Explain your answer, citing multiple pieces of specific evidence from the graph. Also, explain how the graph provides evidence that food is important for organisms.
Bar graphs are used to compare data sets classified into categories and make interpretations about a research results. Graph A represents food intake during one week in the winter, when the organism is mostly at rest. Graph B represents food intake during one week in the summer, when the organism is very active.
What is a bar graph?
Bar graphs are a simple way of summing up a set of data into categories. The height of each bar is proportional to the specific aggregation, which depends on the data.
They can be used to interpret results easily and to make comparisons. Relationships between variables can be seen in these graphs.
In the exposed example we have two graphs,
One of them shows food intake during one week in the summer, when the organism is very active.The other one shows food intake during one week in the winter, when the organism is mostly at rest.We need to read each graph and interpret its data to determine which period each graph represents.
Graph A
During seven days, individuals consumed high-calorie food. Intake of food ranged between 12 and 16 kcal. We might estimate an average of 14.5 kcal intake during this period.
Graph B
During seven days, individuals consumed low-calorie food. Intake of food ranged between 1.5 and 2.7 kcal, approximately. We might estimate an average of 1.84 kcal intake during this period.
During summer, consumed food is usually low in calories, while during winter the tendency is to consume food high in calories.
This pattern occurs because during winter, the basal metabolic rate increases due to the low temperatures, so the organism needs more calories to get energy.
On the contrary, during summer, the metabolic rate decreases, so the individual does not need to consume high-calorie food.
According to this information and the graphs comparison, we can assume that,
graph A represents food intake during one week in the winter, when the organism is mostly at rest.graph B represents food intake during one week in the summer, when the organism is very active.You can learn more about bar graphs at
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In ventilation-perfusion coupling, bronchodilation occurs under what conditions?
Bronchodilation occurs in areas of the lungs with increased ventilation in order to match airflow with blood perfusion.
Ventilation-perfusion coupling refers to the matching of airflow (ventilation) and blood flow (perfusion) in the lungs to optimize gas exchange.
In areas of the lungs where there is increased ventilation (more air reaching the alveoli), bronchodilation occurs to widen the airways and facilitate increased airflow. This makes sure that ventilation and perfusion are balanced properly, enabling effective gas exchange between the alveoli and the circulation.
Bronchodilation helps to maximize the oxygenation of blood and the removal of carbon dioxide in regions with increased ventilation.
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When there is a larger ventilation-to-perfusion ratio (V/Q ratio) in the lungs, ventilation-perfusion coupling results in bronchodilation. This indicates that the blood flow (perfusion) in the surrounding capillaries is less than the air flow (ventilation) in the alveoli.
The expansion or dilation of the bronchial airways is referred to as bronchodilation. It enables better lung ventilation and higher airflow. When more oxygen is needed or when carbon dioxide needs to be removed effectively, it happens.
Situations where bronchodilation takes place specifically include:
Exercise: As a result of the increased demand for oxygen brought on by physical exercise, the bronchial airways widen and allow for more airflow to satisfy the body's increased oxygen requirements.
Stress or excitement: The body's fight-or-flight reaction can cause bronchodilation as a part of the process to increase oxygen intake and be ready for probable physical activity.
In general, when the body needs more oxygenation and better ventilation to meet the metabolic demands, bronchodilation occurs in ventilation-perfusion coupling.
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What type of substance is formed when two or more substances are
mixed completely?
When homogeneous mixture substances are mixed completely, a new substance called a mixture is formed. This is because the properties of the substances in the mixture remain unchanged and they can be easily separated by physical means.
Mixtures can be classified into two main types: homogeneous mixtures and heterogeneous mixtures. Homogeneous mixtures have a uniform composition throughout, meaning that the substances are evenly distributed and cannot be visibly distinguished. Heterogeneous mixtures, on the other hand, have a non-uniform composition, meaning that the substances are unevenly distributed and can be visibly distinguished. Overall, mixtures play an important role in our daily lives and are used in various industries such as pharmaceuticals, agriculture, and manufacturing.
A homogeneous mixture is a type of mixture where the components are evenly distributed throughout, resulting in a uniform appearance and composition. Some common examples of homogeneous mixtures include solutions, such as saltwater or sugar dissolved in water.
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Which of the following codes would you expect to
see in the web address of a scientific journal that
was published by a nonprofit organization?
A. .edu
B..com
C. .org
D..jnl
Which of the above makes up most of the muscle tissue?
carbohydrates
lipids
proteins
nucleic acids
Explanation:
Proteins
Learn at brainlyAfter photosynthesis, energy that the coral can use is stored in
molecules of?
Answers:
O2
CO2
H2O
C6H12O6
Answer:
Energy is stored in glucose molecules C6H12O6
Explanation:
Producers make sugars stored as monomers bonded together to form polysaccharides, long chain hydrocarbon molecules as a result of the process of photosynthesis. These molecules, like the monosaccharide glucose, store converted solar energy as stable chemical energy in covalent bonds. In covalent bonding, the elements share electrons with each other.
These high-energy bonds are stable and not easily destabilized or broken. The energy is retrieved the the process of respiration in the mitochondria.
Glucose is broken down, while energy is transferred to bonds between ADP and inorganic phosphate, to produce ATP (adenosine triphosphate).
Eg. for aerobic respiration...
C6H12O6 (glucose) + 6 O2 → 6 CO2 + 6 H2O + ≅38 ATP
glucose+ oxygen → carbon dioxide+ water+ energy
PLEASE SOMEONE AWNSER THIS FOR REALLLL PLEASEEEEE
Equilibrium is when the concentration is the same throughout and entire system. Explain how a cell reaches equilibrium in all three types of solutions (hypertonic, hypotonic and isotonic).
Answer:
It is pertinent to understand what hypertonic, hypotonic, and isotonic solution means before setting out to explain how a cell reaches equilibrium in each type of solution.
A hypertonic solution is one whose solute concentration is higher than that of the sap of a cell that is immersed in it.
A hypotonic solution is one with the same solute concentration as that of the sap of the cell immersed in it.
An isotonic solution has a lower solute concentration than that of the sap of the cell immersed in it.
In biological systems, water molecules move by osmosis from the region of higher water potential or lower concentration of solutes to the region of lower water potential or higher concentration of solute. An equilibrium is reached when there is no net movement of water between two sides. Hence;
A cell placed in a hypertonic solution will lose water to the surrounding solution until an equilibrium is reached. This means that such a cell will end up shrinking (wilting) or even dying due to loss of water from the cell sap.
A cell placed in a hypotonic solution will gain water from the surrounding solution until there is no net movement of water anymore. Such a cell might become turgid or even burst out its cell content.
A cell placed in an isotonic solution will neither gain nor lose water because the cell sap and the surrounding solution have equal solute concentrations.
Explanation:
A cell reaches equilibrium in a hypertonic solution by losing water, in a hypotonic solution by gaining water, and in an isotonic solution by neither losing nor gaining water.
A hypertonic solution is a solution that has a higher solute concentration than the cell. This means that water will move out of the cell by osmosis, in an attempt to equalize the solute concentration. This can cause the cell to shrink.
A hypotonic solution is a solution that has a lower solute concentration than the cell. This means that water will move into the cell by osmosis, in an attempt to equalize the solute concentration. This can cause the cell to swell.
An isotonic solution is a solution that has the same solute concentration as the cell. This means that there is no net movement of water into or out of the cell.
The way a cell reaches equilibrium in a hypertonic, hypotonic, or isotonic solution depends on the cell's membrane. The cell membrane is a selectively permeable membrane, which means that it allows some substances to pass through it more easily than others.
In a hypertonic solution, the cell membrane will allow water to pass through it more easily than solutes. This means that water will move out of the cell by osmosis, until the solute concentration inside and outside the cell is equal.
In a hypotonic solution, the cell membrane will allow solutes to pass through it more easily than water. This means that solutes will move into the cell by osmosis, until the solute concentration inside and outside the cell is equal.
In an isotonic solution, the cell membrane will allow both water and solutes to pass through it equally easily. This means that there is no net movement of water or solutes into or out of the cell.
The ability of a cell to reach equilibrium in different types of solutions is essential for its survival. If a cell is unable to reach equilibrium, it can either shrink or swell, which can damage or even kill the cell.
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Which of the following applications of genetic engineering is preventative and helps
individuals fight infection before its onset?
A)Insulin production
B)Vaccine production
C)Stem cell therapy
D)Gene therapy
What are three new things that you learned about the creation of the universe?
Answer:
The universe is 14 billion years old.
Quasars reside in the cores of galaxies.
We thought the expansion of the universe was slowing down.
We've seen the same moment of time on more than one occasion.
The three new things related to the development of the universe should be that it have the 14 billion years old, cores of galaxies, and the expansion should be fall down.
What is the universe?The universe refer to the space and the time that involved the planets, stars, galaxies, etc with respect to the matter and energy.
The big bang theory represent the cosmological description at the time of development of the universe.
In this way, the three new things should be learned.
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3. List one advantage and disadvantage of a monocot root system.
Relative to the length of time life has been on Earth, have modern humans appeared recently or in the distant past?
pLeAsE HeLp Me...
Answer:
recently
Explanation:
earth has had like for billions of years
humans have been here for hundreds of thousands
so to put it simply humans have been here for like 1/10000 of earths lifetime and that's very inaccurate but ik just making a point
In this exercise we have to explain why human beings are considered recent in relation to the time of the earth, so we can say that;
taking into account that the earth is 4.5 billion years old and human beings only existed for approximately 200 thousand years, we can say that we are extremely recent.
How old is a human being on Earth?Anatomically modern humans have their first fossil record in Africa, about 195,000 years ago, and molecular biology studies provide evidence that the approximate time of the common ancestral divergence of all modern human populations will have been 200,000 years ago.
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Postery
2
5. An urban or city forest is an area that is planted with trees all around the city. Justify the idea of
a city forest in terms of preserving a balanced ecosystem.
Answer:
The correct answer is - it helps not just in the beautification of the city but impacts climate by reducing pollution and smog and temperature and many more ways to a balanced ecosystem.
Explanation:
A city forest or urban forest is an area that has plants and trees planted all over the city. This helps a city in various including the beauty of the city to various positive roles impacting the ecosystem and help the climate and ecosystem balanced.
Such cities help in developing natural habitat for the flora and fauna and habitat for the wild animals who lose their habitat due to city of concrete. It also helps in reducing heat by reducing carbon dioxide and increasing oxygen in nature.
Drag each label to the correct location on the image.
A diagram of an animal cell is shown below. Each arrow points to a different organelle. Correctly label each organelle.
ribosome
centriole
smooth
endoplasmic
reticulum
mitochondrion
cell
membrane
rough
endoplasmic
reticulum
PRO
Golgi
apparatus
nucleus
The label on the animal cells for each organelle is attached below.
What makes up an animal cell?Cell membrane: The cell membrane is the outer layer of the cell. It protects the cell from its surroundings and controls what enters and leaves the cell.
Rough endoplasmic reticulum: The rough endoplasmic reticulum is a network of membranous sacs that are dotted with ribosomes. The ribosomes are responsible for making proteins.
Ribosome: Ribosomes are small organelles that are responsible for making proteins. They are found free in the cytoplasm or attached to the rough endoplasmic reticulum.
Golgi apparatus: The Golgi apparatus is a stack of flattened sacs that are involved in processing and packaging proteins.
Mitochondrion: The mitochondrion is the "powerhouse" of the cell. It produces energy in the form of ATP.
Centrosome: The centrosome is a small structure that contains two centrioles. The centrioles are involved in cell division.
Smooth endoplasmic reticulum: The smooth endoplasmic reticulum is a network of membranous sacs that are not dotted with ribosomes. The smooth endoplasmic reticulum is involved in a variety of functions, including lipid synthesis and detoxification.
Nucleus: The nucleus is the control center of the cell. It contains the cell's DNA, which is the genetic material.
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the major type of cell found in fibrous connective tissue is the
The most prevalent form of cells in connective tissue are fibroblast. Both fibers and an amorphous powder material are produced by them.
What does a body's tissue allude to?Tissue, epithelial tissue, muscular tissue, and nerve cells are the four fundamental forms of tissue. Other cells are held together and supported by connective tissue . A cover is provided by epithelial tissue.
What do cells in tissues do?Your body is comprised of cells, and tissues are created when clusters of cells carry out similar tasks. Your body contains mostly of four different types of tissue connective, epithelial, musculoskeletal, and nervous tissue. Organs are cushioned and connected together by connective tissue. The skin's outer layer is comprised of epithelial tissue.
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¿Qué ha hecho posible la vida en la Tierra? Es decir, ¿qué características tiene el Planeta Tierra que permite
que se desarrolle vida y no lo tienen otros planetas?
Life on Earth is possible due to several characteristics of our planet. One of the most important factors is the presence of liquid water, which is necessary for the chemical reactions that sustain life.
Additionally, Earth has a suitable distance from the Sun, which provides the right amount of solar energy for life to thrive. Our atmosphere also plays a critical role, shielding us from harmful solar radiation while allowing in enough light for photosynthesis.
Other planets may have the potential to support life if they have similar conditions. Scientists have identified some exoplanets, which are planets outside our solar system, that have the potential to harbor life based on factors like their distance from their star and the presence of liquid water. However, more research is needed to determine if these planets actually have the right conditions for life to exist.
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Translated Question ;
What has made life on Earth possible? That is to say, what characteristics does Planet Earth have that allow
what do life develop and what do other planets have?
Write mechanism of absorption
Answer: The mechanism for absorption is that a photon transfers all its energy to an electron in the absorbing material. The photon is "lost" from the light beam as it is absorbed in a single event. The electron is excited by the gain in energy to a higher energy state in the electron configuration around the atom. (hope it helps)
Answer: I don't know
Explanation: i am brainless
describe 4 ways a temperature increase of only 1c (global warming) would impact humans and / or ecosystems
Answer:
1. Food cycle- With Global Warming on the rise the food cycle is being thrown off due to some animals dying off because they aren't getting used to the extreme sudden heat this can also affect humans especially if we seafood. Global warming affects the ocean too killing off a lot of sea creatures that we eat sometimes like Shrimp for example. Study shows that Global Warming is heating up the ocean cooking the live shrimp in the ocean.
2. Timing of seasonal changes- Study shows that places that don't get hit by snowy weather in the Wintertime are getting pounded by winter storms. A perfect example of this is East Coast getting hit by wintery weather while West Coast sees some high temperatures with no moisture this is caused by global warming.
3. Extinction Risks- Another study shows that some animals such as elephants, Siberian Tigers, red Pandas are all on the Endangered species list due to the sudden change in the weather because of Global Warming which brings the extinction-level to an almost high rate. People all around the world are trying all they can to prevent animal species to go extinct and as I mentioned before if a species goes extinct it'll throw off the food cycle.
4. Range shifts- Since the temperatures are changing dramatically because of global warming it is causing a lot of species to migrate to a new area this is their way of surviving instead of dying off this can also disrupt the food cycle because if a certain species a predator perhaps moves to a different area the prey species will increase and those predators that migrated to a new area is causing a lot of habitat changes to another species its like natural selection and can cause a pretty bad change
So that is why people are up and arms about global warming and why they want to hurry up and come up with a plan to stop global warming or figure out a way to cool down the Earth because it'll not only end in species' extinction but it can lead to Human extinction.
Hope this helped :)
any one have a file for natural selection lab
These experiments are designed to test general theories about the genetic basis of developmental and life-history traits by examining patterns of phenotypic changes and correlations that emerge under specific selection regimes.
What is Natural selection lab?The laboratory describes the broad category of natural selection experiments that we refer to as selection experiments that include all experiments that use selection pressure to change populations over time.
Laboratory natural selection is currently heavily used in this setting, with its use in applied studies making a significant difference, when compared to other selection experimentation methods such as artificial selection and directed evolution.
Thus, these experiments are designed to test general theories about the genetic basis of developmental and life-history traits by examining patterns of phenotypic changes and correlations that emerge under specific selection regimes.
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any language
PLZ I will mark you brainlist
Answer:
Symbol
Explanation:
_ single stranded nucleic acid that contains the base uracil.
Answer:
RNA
Explanation:
However, unlike DNA, RNA is usually a single-stranded molecule. Also, the sugar in RNA is ribose instead of deoxyribose (ribose contains one more hydroxyl group on the second carbon), which accounts for the molecule's name. RNA consists of four nitrogenous bases: adenine, cytosine, uracil, and guanine.
NADP+ is converted into NADPH during the light-dependent reactions. Where does the hydrogen
come from?
what is the chromosomal defect associated with down syndrome, and what is the resulting number of chromosomes in somatic cells?
The chromosomal defect associated with Down Syndrome is trisomy 21, which results in an extra copy of chromosome 21 in somatic cells, resulting in a total of 47 chromosomes.
Trisomy 21: The Chromosomal Defect Associated with Down SyndromeDown Syndrome is a genetic disorder caused by a chromosomal defect known as trisomy 21. This means there is an extra copy of chromosome 21 in somatic cells, resulting in a total of 47 chromosomes instead of the usual 46.
Exploring the Causes and Effects of Down SyndromeThis is the cause of the physical and cognitive disabilities associated with Down Syndrome, as well as the characteristic facial features that are often present. It is the most common genetic cause of intellectual disability, and is estimated to affect 1 in every 700 babies born around the world.
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The diagrams show objects' gravitational pull toward
each other.
N
X
Y
d return
Which statement describes the relationship between
diagram X and Y?
O Gravity attracts only larger objects toward one
another.
O Gravity attracts larger objects only if they are close
to one another.
O If the masses of the objects increase, then the
force between them also increases.
If distance between the objects increases, then the
amount of force also increases.
Next
Submit
The closest possible answer from the given options is :
So we can infer that if the distance between the objects increases, then the amount of force also increases.
Therefore option D is correct.
What is the inverse square law?The inverse square law states that the force of gravity between two objects decreases as the square of the distance between them increases.
This statement is a fundamental principle of gravity.
The Newton's law of universal gravitation has a relationship with the inverse-square law, in the effects of electric, light, sound, and radiation phenomena.
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which mutations from the list would lead to excessive cell growth only when the cell was homozygous for the mutation?
Mutations that lead to excessive cell growth only when the cell is homozygous for the mutation are those that affect tumor suppressor genes or activate oncogenes.
Examples of such mutations include loss-of-function mutations in tumor suppressor genes such as TP53, RB1, and PTEN, or gain-of-function mutations in oncogenes such as KRAS, BRAF, and PIK3CA. In a heterozygous state, the presence of a normal copy of the gene can often compensate for the effects of the mutated copy, but in a homozygous state, the mutation can lead to uncontrolled cell growth and the development of tumors.
A mutation that would lead to excessive cell growth only when the cell is homozygous for the mutation is a recessive mutation. This means that both copies of the gene (one from each parent) must have the mutation for the cell to exhibit excessive growth. When a cell is homozygous for a recessive mutation, the resulting phenotype will be the excessive cell growth.
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Which blood vessel carries the blood from the heart to the lungs for oxygenation?
The blood vessel that carries blood from the heart to the lungs for oxygenation is called the pulmonary artery.
The pulmonary artery is a major blood vessel that is responsible for transporting deoxygenated blood from the right ventricle of the heart to the lungs, where it will pick up oxygen and release carbon dioxide. This process is crucial for maintaining the proper balance of oxygen and carbon dioxide in the body, which is necessary for our cells to function properly.
As the blood becomes oxygenated in the lungs, it then travels back to the heart via the pulmonary veins, entering the left atrium. From there, the oxygen-rich blood is pumped into the left ventricle, which then sends it throughout the body via the aorta. This continuous process ensures that all of our organs and tissues receive the oxygen they need to perform their functions effectively.
In summary, the pulmonary artery is the blood vessel that carries deoxygenated blood from the heart to the lungs for oxygenation, playing a crucial role in maintaining our body's overall health and functionality.
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In your own words explain why carbon dioxide and oxygen are important to life on earth
Answer:
Kyon Ke Bina oxygen ke Insan Nahin Rah sakta aur Bina carbon-dioxide ke Janwar Nahin Rah Sakta Agar Insan carbon dioxide exhale Nahin Karenge to Fir plants kya kar banaa kar lenge
Agar ka plant carbon Exide Nahin Lenge to Fir vah photosynthesis ka process kaise karenge Aaja photosynthesis ka process Nahin hoga to Fir plants grow Kaise Karega vah Apna food Kaise banae Ja Ajab Apna food Nahin Banega to vah grow Nahin Karega FIR vah Kuchh se Kanya Kuchh minut ya Kuchh Dinon ke bad vah Mar Jayega Agar vah Mar Jaega To fir oxygen Kaun exhale Karega oxygen to plants exhale Karta Agar plants oxygen in excel Nahin Karenge to Fir Ham Insan kya Lenge Agar Ham oxygen Nahin Lenge to Fir Ham bhi Mar sakte hain
this is answer in your word
30 POINTS!!!!
I need help writing a 5+ sentence summary about this passage!!!
Benefits of Biotech in NC
North Carolina is an attractive terrain for biotechnology firms—from 2001 to 2010, the state experienced the highest job growth rate (23.5%) of any of the top biotechnology states in the country. Since 2001, the popularity of NC as a biotech destination has resulted in the creation of more than 12,000 jobs in pharmaceuticals, research, testing and medical labs, agricultural feedstock and chemical industries. All have shown robust growth. Related image
Students in NC have more opportunities to enter the field of biotechnology after graduation than in most states thanks to two very important research centers. The North Carolina Research Center located in Kannapolis and Research Triangle Park near Raleigh, are very important to the NC economy. Both of these facilities bring in tax revenue to our state and offer job opportunities in many science-based fields of study. Image result for research triangle
More than 250 companies and 50,000 people with expertise in fields such as micro-electronics, telecommunications, biotechnology, chemicals, pharmaceuticals, and environmental sciences are located here in NC. Industries invest more than $300 million in Research & Development at the region’s universities each year – double the average R&D investment for innovation clusters elsewhere in the nation. Because of these centers, NC is a leader in biotechnology advances in agriculture, energy and medicine. Our state is home to some of the leading physicians, research scientists, biotechnologists, and agricultural scientists in the US.
Some of the key factors that make North Carolina attractive for the biotechnology industry include:
the presence of the pioneering North Carolina Biotechnology Center and Research Triangle Park have lead to financial incentives the state government has provided to companies such as Merck and Quintiles; and the educational programs developed at both the community college and university level to help firms fill openings with qualified local employees with knowledge and training in biotechnology.
Tax revenues increase because of the large number of developing careers in the field of biotechnology in North Carolina.
Biotechnology affects us in every area of our lives, our food, water, medicine and shelter, improving quality of life. When it comes to Biotechnology, nothing could be finer than to live in North Carolina!
Answer:
look at Explanation
Explanation:
North Carolina’s biotech industry is quickly expanding.
Within the state, there are more than 600 life science companies employing 61,000 people at an average salary exceeding $81,000 a year – which is nearly twice the state’s overall private sector wage, according to the North Carolina Biotechnology Center.
In total, life science companies and institutions in North Carolina generate $73 billion in economic activity, which is an increase of 23 percent in two years, and account for 228,259 direct and indirect jobs, says North Carolina Biotechnology Center.
Furthermore, while employment in the nation’s life science industry rose by 7.4 percent from 2001 to 2012, North Carolina’s grew at a surprising 31 percent, even with setbacks from the Great Recession of 2008.
Following closely behind California, North Carolina outpaced life science industry growth in other states, including Texas, New York, Massachusetts and Florida, between 2009-2012, according to the U.S. Bureau of Labor Statistics. In the chart below, North Carolina's life science industry grew 5.2% from 2009 to 2012. While California's life sciences industry increased even more at 5.5% during the same time period, other states such as Pennsylvania and New Jersey actually saw their life sciences sectors shrink by 7% and 7.3%, respectively.
Which level of taxonomic classification do thresher sharks and great white sharks not have in common?
A- kingdom
B-genus
C-order
D-phylum
Answer:Genus
Explanation: I took the test :)
ANSWER ASAP PLEASE!
_______ stores and transports materials like nutrients
A. Cytoplasm
B. Nucleus
C. Vesicle
D. Organelles
Answer:
c
Explanation:
Explanation:
that would be d because ctyroplasm is like your skin it holds all your organs in place nucleous