Mendel's primary contribution to our understanding of inheritance was
al The idea that genes are found on chromosomes
b) Explanation of the patterns of inheritance
c) The discovery of alleles
d) Determining that informations contained in DNA are for protein synthesis​

Answers

Answer 1

Answer:

D.) (Determining that informations contained in DNA are for protein synthesis)


Related Questions

The change in Gibbs free energy for a particular reaction is MOST useful in determining
A) the amount of energy catalysts required for biosynthesis or catabolism.
B) the potential metabolic reaction rate.
C) whether there will be a requirement or production of energy.
D) energy stored in each compound.

Answers

When deciding whether energy will be created or used, the variation in free binding energy for a certain process is MOST useful.

What makes it free energy?

Gibb's natural energy is often called free energy because it is always available. The reaction can acquire this energy if necessary without making any effort. To calculate the fluctuation in Gibb's free energy, enthalpy and the system's warm-entropy product are added.

What does ATP's free energy do?

Normal circumstances result in the release of Gibbs free energy during the glycolysis reaction between glucose and oxygen. Energy is liberated since this reaction is exergonic. To exhaust this free energy, this reaction works in conjunction with other bodily processes.

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5. Water first percolates through the LARGE PORes between Soil PARtick
7. Then, water reaches the
beneath. tummot
DOBITI
3. Eventually, the water reaches the
soil are already_
od deviath
with water.
where the rocks and

Answers

5.) Water first percolates through the soil

7.) Then, water reaches the rocks beneath.

3.) Eventually, the water reaches the water where the rocks and soil are already saturated with water.

What is water ?

Water can be defined as a universal solvent that is characterized by being odourless, tasteless and colourless and which is chemical made up of hydrogen and oxygen molecules.

When water is allowed to pass through the soil which is porous, it percolates through it to the rocks beneath the upper layers of the soil.

The movement of water through the soil is said to be saturated when there is no net movement of water through the soil.

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Complete question:

5.) Water first percolates through the ______

7.) Then, water reaches the ____ beneath.

3.) Eventually, the water reaches the ____ where the rocks and soil are already ____ with water.

Many whole families died when the plague hit Europe. Since the bite of a flea was the main transmission of plague, how did it MOST likely spread to the rest of the family?

A.
Every person would have to be bitten by an infected flea.

B.
The plague was passed through contaminated water and sewage.

C.
If the family were in close contact with the sick person’s boils, they could get the bacteria.

D.
If the plague had spread to the lungs and a person coughed, it could spread to others.

Answers

d coughing has saliva and someone who was probably but by a flea( a is a solid choice but not the best) coughs carry saliva a good distance, infecting people and animals


choice D

Which of the following cells do not undergo telomere shortening as a result of mitosis?
O embryonic stem cells O cancer cells O somatic cells

Answers

Embryonic cell and cancer cell do not undergo telomere shortening as a result of mitosis.

Human blastocysts, an early stage of the growing embryo lasting from the fourth to the seventh day after fertilisation, include embryonic stem cells (ESCs) in the inner cell mass. They vanish after the seventh day and start to form the three layers of embryonic tissue in a normal development.

These stem cells are pluripotent, which means they can divide to create other stem cells or any form of cell in the body. Embryonic cells can be employed to rebuild or treat damaged tissue and organs because of their adaptability.

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which one of the followiwhich one of the following statement is accuarate
ng statement is accuarate

Answers

Answer:

the particle's mass will increase as it approaches the speed of light

Explanation:

the statement which is accurate for the object approaching the speed of light

The mass of object as observed by a moving observer is given by m=1−(cv​)2​m0​​.where m0​ is the rest mass of the object.Hence, as speed approaches the speed of light, that is, as v→c, m→∞

speed of light, the rate at which light waves move through various substances. Specifically, the speed of light in a vacuum is presently calculated to be 299,792,458 metres per second.

One of nature's basic constants is the speed of light. Its importance extends far beyond its use in characterising an aspect of electromagnetic waves. It acts as the universe's only limiting velocity, setting an upper limit on both the speed of all material particles and the speed at which signals can travel. The speed of light (c) acts as a constant of proportionality in the well-known relativity equation, E = mc2, connecting the heretofore dissimilar ideas of mass (m) and energy (E) (E).

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using sunflower plants to naturally remove heavy toxins from contaminated soil is an example of

Answers

Answer:

Phytoremediation.

Explanation:

Small regulatory RNA can regulate gene expression by:
Select all that apply.
inhibiting rRNA synthesis.
inhibiting RNA splicing.
degrading RNA transcripts.
inhibiting translation.
altering chromatin conformation.

Answers

Small regulatory RNA can regulate gene expression by inhibiting rRNA synthesis. So the correct option (a).

Multiple RNABPs41 work together to regulate RNA by binding to 'core' and 'auxiliary' elements, which are necessary for and modify pre-mRNA processing steps, respectively. Exons and the sequences necessary for their splicing are separated by core splicing elements.

Long non-coding RNAs (lncRNAs) and microRNAs (miRNAs) are two important kinds of RNA molecules with regulatory functions, and their dysregulation has been linked to the development and progression of many human cancers.

The CsrB/C (carbon storage sRNA regulatory system)49 and 6S RNA are two well-studied examples of regulatory protein-binding sRNAs.

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Select a region of the world and explain how its latitude, elevation, geographical features, and relationship to winds and ocean currents determine its climate.

Answers

We are attempting to explain how Ecuador's latitude, elevation, geographic characteristics, and interaction with winds and ocean currents affect its climate.

Geographical Effects:

For every 100 meters of elevation, the temperature typically drops by 1°C. In comparison to land, oceans heat up and cool down far more slowly. This means that, at the same latitude and elevation, seaside areas are warmer in the winter and more laid-back in the summer.

By moving warm water and precipitation from the equator to the poles and cold water from the poles back to the tropics, ocean currents function much like a conveyor belt. In order to balance out the uneven distribution of solar energy reaching the Earth's surface, ocean currents govern the global climate.

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which of the following is a benefit gained from learning how to sequence dna?
a) identification of faulty genes
b) development of treatments for diseases
c) modification of crops to increase yields
d) understanding of our evolutionary history
e) All of the answer choices are benefits gained from DNA sequencing.

Answers

The correct answer is option e (All the mentioned statements are benefits gained from the technique DNA sequencing)

DNA sequencing uses a variety of biochemical techniques to establish the nucleotide order (A, G, C, T). Any gene sequence can be used to determine the purpose of the proteins that are made by that gene. Additionally, if a mutation occurred in the DNA, the changed base can also be recognized. This allows for easy identification of the defective genes that cause any disease in any organism using DNA sequencing.

Additionally, DNA sequencing can be used to identify and treat any disease. The researcher can control that gene or a specific portion of that gene for any potential treatment by knowing the relevant mutation or variant.

Additionally, it enables crop customization to boost production. The function of any gene can also be ascertained by knowing its sequence. Genetic engineering can control a number of genes that cause illness in plants to boost production.

Given that DNA sequencing has previously been used to anticipate the whole human genome sequence, sequencing techniques also aid in our understanding of evolution. It can be used to determine the order of other organisms as well as the sequence of their ancestors.

The evolutionary relationship between organisms can be anticipated by analyzing their evolutionary sequences.

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Scientists use a general process known as the scientific method to ask and answer questions about natural phenomena.
O A hypothesis is a testable statement that proposes an explanation for a set of observations. It leads to predictions that can be tested by an experiment.
O A prediction describes specific results that can be expected if a hypothesis is true.
O A theory is broader in scope than a hypothesis, is supported by a large body of evidence, and generates many new hypotheses.
O A scientific experiment often involves both a treatment and a control, which are alike except for the variable that the experiment is designed to test.
O A variable is a factor that is either manipulated or measured in an experiment.
O A correlation is a quantitative relationship between variables.
O A review process is in place to make sure that no bias has skewed the results of an experiment.

Answers

The scientific method is a method of problem-solving that is at the heart of biology and other sciences.

The scientific method consists of five fundamental steps and one for feedback: Make a discovery, Pose a query, Create a testable explanation or a hypothesis. on the basis of the hypothesis, make a prediction. Test the prediction.

Iterate: Create fresh hypotheses or forecasts in light of the findings.

All sciences, including chemistry, physics, geology, and psychology, employ the scientific method. Different tests and questions are posed by the scientists in various disciplines. However, they approach questions in the same fundamental way in order to arrive at rational, evidence-based solutions.

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A hypothesis is a testable statement that proposes an explanation for a set of observations. It leads to predictions that can be tested by an experiment. The scientific method is a problem-solving approach that is important to biology and other disciplines.

The scientific method is made up of five basic processes and one for feedback: Make an observation, Ask a question, Make a hypothesis or a tested explanation. Make a forecast based on the hypothesis. Put the prediction to the test.

Iterate: Develop new hypotheses or projections in response to the findings.

The scientific method is used in all fields, including chemistry, physics, geology, and psychology. Scientists from numerous fields provide various exams and questions. However, in order to arrive at reasonable, evidence-based solutions, they address challenges in the same fundamental way.

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1 Answer:
The greenhouse effect occurs when
a. cooling towers malfunction.
b. radiated heat from the Earth is absorbed by the atmosphere.
c. steam heating systems are used.
d. ultraviolet light is absorbed by the atmosphere.
2 Answer:
When steam condenses
a. it changes from the gas phase to the liquid phase.
b. it gives off heat.
c. molecules move closer together.
d. all of the above occur.
3 Answer:
In a solar heating system, heat is transferred to water in a storage
tank by means of a
a. cooling tower.
b. solar collector.
c. heat exchanger.
d. radiator.
4 Answer:
In a radiant electric system, heat is produced from
a. electric resistance in cables or wires.
b. thermostats.
c. heat pumps.
d. packed fiberglass.
5 Answer:
Weatherstripping prevents heat loss by
a. lessening evaporation.
b. reducing convection and conduction.
c. preventing condensation.
d. increasing radiation.
6 Answer:
Which of the following is not part of a cooling system?
a. storage tank
b. refrigerant
c. compressor
d. cooling tower
7 Answer:
In which stroke of a four-stroke engine does a spark plug ignite the
gas?
a. intake
b. compression
c. power
d. exhaust
8 Answer:
A diesel engine
a. uses only air during the intake stroke.
b. is an external-combustion engine.
c. uses a spark plug to ignite fuel.
d. uses Freon.
9 Answer:
A cooling tower
a. is controlled by a thermostat.
b. cools water as it flows through pipes.
c. cools water through insulation.
d. causes thermal pollution.
10 Answer:
In passive solar heating,
a. buildings have pipes to circulate hot water.
b. a heat exchanger is needed.
c. buildings are heated directly by the sun.
d. a solar collector absorbs sunlight.

Answers

(1) The usage of steam heating systems causes the greenhouse effect.

(2) Heat is released as steam condenses.

How does the greenhouse effect work?

The majority of the infrared energy from the Sun is absorbed & re-emitted in all dimensions by green house gases molecule and clouds, creating the greenhouse effect. This causes the earth's atmosphere and indeed the Earth's surface to warm.

The greenhouse effect: beneficial or harmful?

The positive effects of the greenhouse effect. In order to maintain life on planet, well, habitable, it warms the world to its pleasant average temperature of 59 ℉ (15 degrees Celsius). Without it, the world would resemble Mars more and be a freezing, dangerous place.

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Each phosphodiester linkage in DNA or RNA includes a phosphate joined by covalent bonds to
(a) two bases
(b) two sugars
(c) two additional phosphates
(d) a sugar, a base, and a phosphate
(e) a sugar and a base

Answers

Option b is Correct. In DNA or RNA, a phosphate is connected to two sugars by covalent bonds to form each phosphodiester linkage.

The 5' carbon of one sugar (deoxyribose or ribose) and the 3' carbon of another sugar molecule are joined to form the phosphodiester linkage in DNA or RNA (deoxyribose or ribose). Consequently, two sugar molecules form the phosphodiester bond.

The 3' carbon atom of one sugar molecule and the 5' carbon atom of another, deoxyribose in DNA and ribose in RNA, are linked by a phosphodiester bond in DNA and RNA. Over two ester linkages, two pentoses with five carbons each create strong covalent bonds with the phosphate group.

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Please help and correctly please

Answers

Answer:

In contrast, the ribonucleic acids or RNA typically consist of uracil, guanine, adenine, and cytosine. The thymine place is replaced by uracil in RNA. So in RNA, the adenine has a complementary pair with the uracil. So due to this fact, RNA has uracil, not DNA, and thus the statement is wrong

Which of the following is a function of the placenta? Check all that apply.
A. Allows the building blocks of proteins to diffuse from maternal to fetal blood
B. To prevent gestational diabetes, the placenta blocks glucose from passing from the fetus to the mother
C. Helps the fetus dispose of metabolic waste that would normally be excreted by its own kidneys
D. Allows for gas exchange
E. Transfers stem cells from the mother's bone marrow to the fetal tissue

Answers

The following are a function of the placenta:

The placenta allows the building blocks of proteins to diffuse from maternal to fetal blood.The placenta helps the fetus dispose of metabolic waste that would normally be excreted by its own kidneys.The placenta allows for gas exchange.

The placenta, commonly called the afterbirth, is a disc of tissue that connects the mother's uterus to the umbilical cord and ultimately serves to deliver nutrients and oxygen to the fetus.

The placenta usually separates from the uterine wall after birth. In placenta accreta, part or all of the placenta remains firmly attached to the uterus. This condition occurs when a blood vessel or other part of the placenta penetrates too deeply into the uterine wall.

Functions of the placenta include:

Provides your baby with oxygen and nutrients. It removes harmful waste products and carbon dioxide from your baby. It secretes hormones that help the baby grow.

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LIMITED TIME, HELP URGENTLY!!!!!!!!!!!
Ginkgo trees are native to Asia but are now cultivated widely in North
America.
Thus, they are divided into two geographically separated groups.
According to the biological species concept, these populations
could be classified as belonging to the same species if they ______

Select one:
O can produce fertile offspring
O look like each other
O cannot reproduce with each other
O for fruits that smell the same

Answers

Can produce fertile offspring

What does this graph tell us about the cost of tails for males and female preference?
O a. Longer and more elaborate tails cost more to make and maintain, but they cost relatively more for higher-quality males. Females prefer shorter tails, so mating success decreases as a function of tail length O b. Longer and more elaborate tails cost more to make and maintain, but they cost relatively less for higher-quality males. Females prefer longer tails, so mating success increases as a function of tail length O c. Longer and more elaborate tails cost more to make and maintain, but they cost relatively less for lower-quality males. Females prefer longer tails, so lower-quality males can increase their reproductive success with longer tails.
O d. Longer and more elaborate tails cost more to make and maintain, but they cost relatively less for lower-quality males. Females prefer tails of medium length, so lower-quality males can increase their reproductive success with longer tails.

Answers

This graph tell us about the cost of tails for males and female preference that longer and more elaborate tails cost more to make and maintain, but they cost relatively less for higher-quality males.

The phrase "tail length" refers to the length of the tail as measured in a straight line from the first abdominal segment's anterior edge to its terminal section.

The length of poly(A) tails found in vivo is probably influenced by the rivalry between synthesis and degradation since poly(A) tail synthesis has not been proven to have any inherent length limitations. The interaction of poly(A) polymerase with other proteins that influence its activity can change the equilibrium.

Complete question:

What does this graph tell us about the cost of tails for males and female preference?

O a. Longer and more elaborate tails cost more to make and maintain, but they cost relatively more for higher-quality males. Females prefer shorter tails, so mating success decreases as a function of tail length O b. Longer and more elaborate tails cost more to make and maintain, but they cost relatively less for higher-quality males. Females prefer longer tails, so mating success increases as a function of tail length O c. Longer and more elaborate tails cost more to make and maintain, but they cost relatively less for lower-quality males. Females prefer longer tails, so lower-quality males can increase their reproductive success with longer tails.

O d. Longer and more elaborate tails cost more to make and maintain, but they cost relatively less for lower-quality males. Females prefer tails of medium length, so lower-quality males can increase their reproductive success with longer tails.

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18. Using the video, build the protein using the given DNA sequence. What is the final amino acid sequence?
Important: Be sure to write each correct amino acid before clicking, as it will disappear!

Answers

The sequence of amino acids that will be synthesized from a DNA or mRNA sequence can be determined using the codon table.

What does DNA do, and why?

The information molecule is DNA. It contains the design specifications necessary to produce proteins, another type of large molecule. These instructions are spread out along 46 long structures called chromosomes and are present in each of your cells. Each of these chromosomes is composed of several smaller DNA pieces called genes.

What does DNA remain in?

Cellular DNA

Although the cell nucleus (where it is known as nuclear DNA) houses the majority of DNA, a small amount can also be discovered there (where it is called mitochondrial DNA or mtDNA). Cell organelles called mitochondria (Figure 5) convert dietary energy into a form that cells can use.

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Why is bottom trawling damaging to the seafloor?

Answers

Answer:

Bottom trawling is damaging to the seafloor because it involves dragging heavy nets across the seafloor, which can disturb or destroy seafloor habitats, such as coral reefs and seagrass beds. This can also lead to a decrease in the abundance and diversity of marine life that lives on or near the seafloor.

Explanation:

Diffusion of a substance across the cell membrane is influenced by all of the following except:
A. the presence of the membrane channels.
B. concentration gradient.
C. lipid solubility.
D. hydrolysis of ATP.
E. the charge on the ion.

Answers

Diffusion of a substance across the cell membrane is influenced by all of the following, except hydrolysis of ATP

When a chemical moves from an area of higher concentration to one of lower concentration, this process is called diffusion. Diffusion happens spontaneously and without the use of energy. Since liquids and gas particles are able to travel randomly from one area to another, diffusion occurs in these media.

The gradient of the substance's concentration, together with the substance's size, charge, and the presence of transport proteins in the membrane, can all affect how well an object diffuses across a cell membrane. Conversely, the hydrolysis of ATP is an energy-intensive process that is utilised by cells for a variety of purposes, including active transport.

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LIMITED TIME!!! HELP QUICK!!!!
The biological species concept emphasizes whether populations

Select one:

can mate with each other.

look the same

have similar ecological requirements.

share common ancestry.

Answers

Answer:

have similar elocogical requirements

LIMITED TIME!! HELP!!!!
In the grass species Anthoxanthum odoratum, some of these plants
live near mines where the soil has become contaminated with
metals. Meanwhile, neighboring plants don't live in polluted soil. The
two types of plants are close enough that they could potentially
fertilize each other. However, the two types of plants have evolved to
flower during different seasons. This is an example of _______ isolation.

Select one:
geographic

temporal (time)

genetic

behavioral

Answers

Answer:

temporal (time)

Answer:

temporal (time) is the answer I believe

37. Which one of the ff is not direct cause of maternal death ? A. Hemorrhage C. Infection B. Cardiovascular disease D. Preeclampsia

Answers

B. Cardiovascular disease is not a direct cause of maternal death. It is a chronic health condition that can increase the risk of maternal death, but it is not a direct cause of maternal death. Hemorrhage, infection and preeclampsia are all direct causes of maternal death.

The salinity of a small inland lake has recently started to increase. Researchers are planning to investigate how freshwater organisms survive significant following physiological mechanisms will the researchers most likely observe among the surviving organisms in the lake?
a. Prokaryotic organisms will use various mechanisms to counter act swelling of cels as a result of increased water uptake
b. Single-celled organisms will use various mechanisms to counteract the increased flow of water from cells to the environment
c. Eukaryotic organisms will use various mechanisms to counteract the diffusion of positively charged ions across the cell membrane
d. Multicellular organisms will use various mechanisms to counteract the loss of cell adhesion as a result of calcium deficiencies

Answers

Single-celled organisms will use various mechanisms to counteract the increased flow of water from cells to the environment is the correct answer.

Halophiles are organisms that can survive in extremely salty environments. Due to the harsh conditions they endure on Earth, halophiles are regarded as extremophiles.

The physiological mechanisms used by creatures that survive in salty environments allow them to adjust their water flow from cells to their surroundings. Since the other physiological processes of organisms can be affected by the increased water flow, bacteria have developed a technique to combat the increased water flow.

As a result, Option-B is the right response.

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explain details all process of phosphorous cycles?​

Answers

Answer:

The biogeochemical cycle known as the phosphorus cycle describes how phosphorus moves across the Earth's ecosystem. All living things require phosphorus as a necessary nutrient, and it is required for many biological functions including DNA synthesis, energy transmission, and cell division.

Explanation:

The phosphorus cycle has several key steps, including:

Weathering: Phosphorus is present in rocks and minerals, and weathering processes such as erosion and dissolution release it into the soil and water.

Adsorption: Once in the soil, phosphorus can be adsorbed (attached) to clay and organic matter particles, making it less available for plant uptake.

Uptake by plants: Phosphorus is taken up by plants through their roots and used for growth and metabolism.

Animal uptake: Animals consume plants and incorporate the phosphorus into their own bodies for growth and metabolism.

Decomposition: When plants and animals die, their bodies are broken down by decomposers, releasing the phosphorus back into the soil.

Leaching: Some of the phosphorus in the soil can be leached (washed out) into waterways and oceans by rainwater and irrigation.

Deposition: Phosphorus can be deposited into sediments and sedimentary rocks through precipitation of minerals such as apatite.

Human activities: Human activities such as mining, agriculture, and waste disposal can also affect the phosphorus cycle by releasing large amounts of phosphorus into the environment and altering natural processes.

The phosphorus cycle is relatively slow because phosphorus is not readily transformed between different forms and it is mostly stored in rocks and soil, unlike the other elements cycles such as carbon and nitrogen that are more dynamic and have a faster turnover.

Evaluate how advanced nursing education and lifelong learning can help improve patient outcomes. Include current research that links patient safety outcomes to advanced degrees in nursing. Based on some real-life experiences, explain whether you agree or disagree with this research. How can the application of the Christian Worldview help improve patient outcomes?

Answers

Answer:

Research has shown that advanced nursing education and lifelong learning can have a positive impact on patient outcomes. Studies have indicated that nurses with advanced degrees have better patient safety outcomes than those without. For example, a study published in the Journal of Nursing Administration found that nurses with a Bachelor of Science in Nursing (BSN) or higher had a lower rate of patient falls than those without.

I agree with this research, as I have seen firsthand the difference that advanced nursing education can make in patient outcomes. In my experience, nurses with advanced degrees have better knowledge of evidence-based practice and are able to better assess and respond to patient needs. They also have better communication skills and are more likely to collaborate with other healthcare professionals.

The application of the Christian Worldview can also help improve patient outcomes. The Christian Worldview emphasizes compassion and caring, and this can be applied to the nursing profession in various ways. For example, nurses can use the Christian Worldview to provide holistic care, which includes spiritual care, as well as physical and emotional care. Nurses can also use the Christian Worldview to provide comfort and support to patients and their families during difficult times. Additionally, the Christian Worldview can help nurses to prioritize patient safety and provide quality care.

Explanation:

Advanced nursing education expresses that the entire and complete methodology of learning that can significantly have a positive impact on patient outcomes.

What is advanced nursing education?

Advanced nursing education prepares nurses to perform a wide variety of tasks in patient care and the broader healthcare system. Some examples of duties performed by APRNs include: Assessing patient symptoms and medical histories and developing diagnoses.

According to the context of this question, major studies and research have indicated that nurses with advanced degrees have better patient safety outcomes than those without.

For example, a study published in the reputed Journal of Nursing Administration searches that nurses with a degree in Bachelor of Science in Nursing (BSN) or higher had a lower rate of patient falls than those without occupying them in their careers.

Therefore, advanced nursing education expresses that the entire and complete methodology of learning that can significantly have a positive impact on patient outcomes.

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Complete the sentence. Lobbyists of ______________ use access to political leaders and other federal members to attempt to influence environmental policy.

the courts

Congress

interest groups

the presidency

Answers

Lobbyists of interest groups use access to political leaders and other federal members to attempt to influence the environmental policy. Hence, correct option is C.

Environmental policy: What is it?

An environmental policy can be defined as any standard that a government, business, or other public or private institution uses to link environmental concerns to human activity.

By interfering with political leaders and other federal members with the help of their interest organizations, someone who is employed, contracts for economic considerations, and is paid makes a considerable effort to affect environmental policy.

Such lobbyists routinely employ this technique to change environmental legislation in some way, either directly or inadvertently.

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What element results if two protons and two neutrons are ejected from a radium nucleus?

Answers

As a result, when two protons and two neutrons are ejected from the radium nucleus, the ensuing nucleus is radon.

How does radon affect people?

The radioactive particles in radon gas might become lodged in your lungs when you breathe it in. These radioactive particles raise the possibility of lung cancer over time. Prior to the onset of health issues, years may pass. According to Environmental Protection Agency (EPA), radon is responsible for 21,000 lung cancer deaths annually.

Why is radon dangerous and what is it?

Lung cancer can be brought on by the naturally occurring radioactive gas radon. Inert, colorless, and odorless describe radon gas. Trace levels of radon are present in the atmosphere naturally. In the open air, radon spreads swiftly and often presents little health danger.

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If scientists were studying the effect of vitamin supplements on kidney disease, which of these would be the variable?
O a. The type of diet each participant eats
O b. Kidney disease
O c. The age of each participant
O d. Changes in blood lipids noted during the study

Answers

If scientists were studying the effect of vitamin supplements on kidney disease then the variable would be the b. Kidney disease.

What is the experimental variable in a scientific investigation?

The experimental variable in a scientific investigation refers to any issue we have to test in an experiment in order to confirm or reject our working hypothesis, ie. the plausible explanation about the change in the variable due to different outcomes.

The experimental variable in a scientific investigation can be measured through changes in the dependent variable, which is modified by effects on the independent variable under study in the experimental and or observational procedures.

Therefore, with this data, we can see that the experimental variable in a scientific investigation is any variable that is under study and it change, which allows us to test one plausible explanation or hypothesis for such an experiment.

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For pea plants, round is dominant for both traits and wrinkled is recessive and yellow is dominant and green is recessive. If you cross a plant that is homozygous dominant for both traits with a plant that is homozygous recessive for both traits, what are the possible genotypes and the probability of each? What is the probability of each possible phenotype?

Answers

If the offspring formed which was a round pea is heterozygous and mated with pea plant with heterozygous genes then there are 3 Probabilities.

Probabilities in genetics:

Statistics and probability are closely related, and both have significant scientific applications. Genetics and probability are also extremely strongly intertwined in a similar way. Genetic inheritance rates are only instances of probability.

Terms in Genetics Probability

Alleles: The pairing of a person's genetic material determines their traits. Alleles are the name for this genetic material. The combination of these alleles defines an individual's characteristics, including height, eye color, hair color, and other attributes.

Genotype: A genotype is the particular pairing of alleles that a person inherits and which code for a certain trait.

Phenotype: Regardless of the genotype, the phenotype is the characteristic that results from that genotype. It is the real physical attribute or look.

What is Punnett square?

Each potential genotype of the descendent is listed in a Punnett square's tabular representation. Outside of the Punnett square, the genotypes of the parents are typically noted. By examining the alleles in the column and row of each input, it is possible to determine the input for each cell in the table.

If the offspring formed which was a round pea is heterozygous and mated with pea plant with heterozygous genes then there are 3 posibilities.

1. The offspring can be rounded with homozygous genes

2.the round pea with heterozygous genes

3. The wrinkled pea with homozygous genes .

hence by estimating ratio of wrinkled pea from these possibilities you can calculate the % chance of getting a wrinkled pea

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1. Why do you think global carbon emissions are still rising given that governments around the world are aware that these emissions need to drop?

Answers

Global carbon emissions are still rising given that governments around the world are aware that these emissions need to drop because we need energy and the measures to avoid the use of carbon dioxide-generating energies are increasing.

What are sustainable modes of energy production?

The expression sustainable modes of energy production is used to denote all types of energies that are able to reduce or maintain the rates of carbon dioxide production worldwide such as solar energy.

Therefore, with this data, we can see that sustainable modes of energy production need to be produced in order to reduce carbon dioxide emissions.

Learn more about sustainable energy production here:

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