Which of the following about GMOs is TRUE?

GMOs have not yet been approved for use in US food products.

Drought resistance is the most common GMO trait inserted into crops.

GMOs are organisms that have had their genetic information altered.

Genetic engineering can create traits we want our crops to have.

Answers

Answer 1

Answer: GMOs are organisms that have had their genetic information altered.

Explanation: GMO = genetically modified organism


Related Questions

Busy schedules, workplace stress, and finances can take a toll on our health. If an individual experiences long-term stress for many years, what could be some consequences? Explain your rationale with physiological evidence from the previous page.

Answers

Answer:

If an individual experiences long-term stress for many years, it can have significant consequences on their health. One consequence is the development of chronic diseases such as hypertension, diabetes, and cardiovascular diseases. This is because long-term stress can cause the body to release cortisol, a hormone that can increase blood sugar levels, blood pressure, and inflammation, which are all risk factors for these chronic diseases.

What does overnutrition include?

protein deficiency

vitamin deficiency

obesity

calorie deficiency

Answers

The term "overnutrition" describes the ingestion of nutrients in excess, which can result in a number of health issues.

Alternatives to overnutrition, such as the ones stated in the question, all involve vitamin shortages of various kinds. Therefore, none of the answers to the question's possibilities pertain to overnutrition.

Overnutrition

Overeating can result in obesity and other health issues like type 2 diabetes, heart disease, and some types of cancer. Overnutrition can also include consuming too many calories.

Additionally, it may involve consuming too much sodium, extra sugar, or specific nutrients like saturated and trans fats, which can worsen pre-existing diseases.

A shortage of important nutrients in the diet results in undernutrition, which includes protein insufficiency, vitamin deficiency, and calorie deficiency.

These deficiencies may be brought on by things like poverty, food insecurity, and a lack of access to healthcare, which can result in a variety of health issues.

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How do we know UV light has energy?
Describe what happens when it is absorbed by ozone and melanin.

Please help
90 points

Answers

Answer:

Melanin absorbs dangerous UV rays that can do severe skin damage. But melanin can't absorb all the UV rays, and some people don't have much melanin in their skin.

Explanation:

The sun is by far the strongest source of ultraviolet radiation in our environment. Solar emissions include visible light, heat and ultraviolet (UV) radiation. Just as visible light consists of different colours that become apparent in a rainbow, the UV radiation spectrum is divided into three regions called UVA, UVB and UVC. As sunlight passes through the atmosphere, all UVC and most UVB is absorbed by ozone, water vapour, oxygen and carbon dioxide. UVA is not filtered as significantly by the atmosphere.Ozone is a particularly effective absorber of UV radiation. As the ozone layer gets thinner, the protective filter activity of the atmosphere is progressively reduced. Consequently, the people and the environment are exposed to higher levels of UV radiation, especially UVB.

Ozone depletion is caused by human-made chemicals released into the atmosphere and will continue until the use of chlorine and bromine compounds is drastically reduced. International agreements, in particular the Montreal Protocol, are gradually succeeding in phasing out the production of ozone-depleting substances. However, the long life span of the chemicals already released will cause ozone depletion problems to persist for many years to come. A full recovery of the ozone level is not expected until 2050.Most UV-A does reach the surface, but UV-A does little genetic damage to tissues. UV-B is largely responsible for sunburn and skin cancer, though it is mostly absorbed by ozone before reaching the surface. Levels of UV-B radiation at the surface are especially sensitive to the amount of ozone in the stratosphere.

What is the second reaction of photosynthesis

Answers

The production of glucose from carbon dioxide!

I believe this is the answer. please look it up and do some research before you answer the question! May God bless you!

How you will show that there are more bacteria on your hands before you wash them

Answers

Answer:

Explanation:

i think u can use a microscope or something

How do the prevailing westerlies impact weather patterns in mid-latitude regions?

Answers

The prevailing westerlies are winds that blow from west to east in the middle latitudes, between 30° and 60° north and south of the equator. These winds are important in shaping weather patterns in mid-latitude regions, including North America, Europe, and Asia.

The prevailing westerlies are part of a global circulation pattern of the atmosphere known as the Ferrel Cell. As warm air rises at the equator and moves toward the poles, it cools and sinks at around 30° north and south. This sinking air creates a zone of high pressure, which leads to the development of the prevailing westerlies.

The prevailing westerlies have several impacts on weather patterns in mid-latitude regions:

1. They bring moist air from the ocean to the coast, leading to the development of rain and snow.

2. They help to distribute heat from the equator toward the poles, which helps to moderate temperatures in mid-latitude regions.

3. They can bring cold air from the poles toward the equator, leading to the development of cold fronts and storms.

4. They can influence the formation and movement of storms, including cyclones and hurricanes.

The prevailing westerlies are winds that blow from west to east in the middle latitudes, between 30° and 60° north and south of the equator. These winds are important in shaping weather patterns in mid-latitude regions, including North America, Europe, and Asia.

The prevailing westerlies are part of a global circulation pattern of the atmosphere known as the Ferrel Cell. As warm air rises at the equator and moves toward the poles, it cools and sinks at around 30° north and south. This sinking air creates a zone of high pressure, which leads to the development of the prevailing westerlies.

The prevailing westerlies have several impacts on weather patterns in mid-latitude regions:

They bring moist air from the ocean to the coast, leading to the development of rain and snow.

They help to distribute heat from the equator toward the poles, which helps to moderate temperatures in mid-latitude regions.

They can bring cold air from the poles toward the equator, leading to the development of cold fronts and storms.

They can influence the formation and movement of storms, including cyclones and hurricanes.

Overall, the prevailing westerlies are a key factor in determining the climate and weather patterns in mid-latitude regions. They help to bring precipitation, moderate temperatures, and can influence the development of storms. Understanding these wind patterns is important for predicting weather events and managing the impacts of climate change.

Write a complete scientific explanation to account for why the heavier ball caused more flour to spread out. Be sure to include the relationship between amount of mass and amount of kinetic energy in your explanation, and include a claim, evidence, and reasoning.

Answers

The heavier ball spread out more flour because it had more kinetic energy due to its greater bulk, according to the claim. Reasoning: As the heavier ball is rolled over the flour, it gives the flour particles greater kinetic energy.

Why does a heavier ball spread the flour out more?

Larger, faster balls have more kinetic energy than smaller, slower-moving balls. As the ball lands, this energy is transmitted to the flour and cocoa powder.

Are heavier items more gravitationally influenced?

Because the downward force on an object is equal to its mass times the acceleration component, g, a heavier object would feel a stronger downward force. Yet heavier things also have higher inertia, which makes them more resistant to motion than lighter ones.

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In horses, one which runs best in water (or in wet conditions) is called (WATER), and one which runs best in dry conditions is called (DRY). (WATER) is recessive to (DRY). A horse can also be either a trotter, which we will designate (GAIT) or a pacer, which we will designate (PACE). (PACE) is recessive to (GATE). We have mated two horses, a stallion named Halter-Man and a mare named Erlich-Mane. Halter-Man is a (WATER)(PACER), while Erlich-mane is a (DRY)(GAIT). One of Erlich-Mane's parents was a (WATER)(PACER). What are the chances of Erlich-Mane and Halter-Man producing a (WATER)(GAIT) foal?

Answers

Horses who run faster in wet conditions (or in water) are referred to as (WATER), and those that go faster in dry conditions are referred to as (DRY). Recessive to (WATER) (DRY).

What's an illustration of designate?

To formally select someone to perform a specific job: The president traditionally appoints the successor. Team captain Thompson has been chosen. The task of planning the meeting has been assigned to her.

Definition of "de designate"

In the case of non-performance as outlined in Government Code Sections 7076.1 and 7076.2, the Department's action terminating this Agreement and/or rescinding the Enterprise Zone designation shall be effective.

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From the list below, select the least likely explanation for the relatively high mobility of the arms.
A) The clavicle articulates to the axial skeleton at only the sternal end.
B) The scapula does not articulate to the axial skeleton directly.
C) The subscapular notch is a passageway for nerves.
D) The relatively open glenoid cavity of the glenohumeral joint.

Answers

The likely explanation for the relatively high mobility of the arms, is option C, The subscapular notch is a passageway for nerves.

The supra scapular notch is located next to the coracoid process's base on the lateral portion of the superior border of the scapula. The transverse scapular ligament transforms the notch into a foramen, which acts as a pathway for the suprascapular nerve.

The superior transverse scapular (suprascapular) ligament, which spans the notch, allows the suprascapular nerve to pass through it. Just above the ligament, the suprascapular artery and vein cross across the nerve.

The arms have very considerable movement as a result.

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A system is a group of parts that work together as a whole.
1.True.
2.False

Answers

The statement "A system is a group of parts that work together as a whole" is true.

A system is defined as a collection of interrelated components that work together to achieve a specific objective. The individual components or parts of a system are interconnected and interact with one another in a coordinated manner to produce a desired output or result. Examples of systems can be found in many different fields, such as engineering, biology, and sociology.

Understanding systems and how they work is important for problem-solving, decision-making, and innovation in many different domains. Therefore, the statement that a system is a group of parts that work together as a whole is true and reflects the fundamental nature of systems.

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In industrial agriculture, fossil fuels are used for all of the following EXCEPT:
Please choose the correct answer from the following choices, and then select the submit answer button.
Answer choices

running farm equipment.

feeding them to animals.

producing synthetic fertilizers.

manufacturing pesticides.

Answers

Answer:

Explanation:

Feeding them to animals, It would harm the animal if it was feed a fossil fuel

Reliance on monoculture crops has led to a decrease in

genetic diversity.

synthetic fertilizers.

increased irrigation.

high-yield varieties.

Answers

Answer: genetic diversity

Explanation: monoculture = single crop species

Carbon Cycle Biology Edge

Answers

Answer:

Explanation:

The carbon cycle is the process by which carbon moves between the Earth's oceans, atmosphere, land, and living organisms. It is a natural and essential cycle that helps regulate the Earth's climate and support life.

In the carbon cycle, carbon is exchanged between the atmosphere, oceans, and land through a variety of processes. For example, photosynthesis by plants and other organisms removes carbon dioxide from the atmosphere and converts it into organic matter. This process is known as carbon fixation. Respiration by living organisms, including plants, animals, and microbes, releases carbon dioxide back into the atmosphere.

Other natural processes involved in the carbon cycle include the decomposition of organic matter by microbes, the weathering of rocks, and the movement of carbon through the ocean via ocean currents. Human activities, such as burning fossil fuels and deforestation, have also significantly impacted the carbon cycle by releasing large amounts of carbon into the atmosphere.

Overall, the carbon cycle plays a critical role in regulating the Earth's climate and supporting life on the planet. Understanding the carbon cycle is essential for addressing global climate change and managing natural resources sustainably.

What data here suggests that there are 2 species of pandas?
Which populations (A, B, C, D) are in each species?

Answers

The two pandas' different body sizes and variations in skull anatomy raise the possibility that they belong to different species. The giant panda and the other two species of pandas (Ailuropoda melanoleuca).

What three forms of skull morphology are there?

Abstract. 117 adult human skulls were evaluated for the existence of sutural bones in each of the three morphological forms of dolichocephalic, mesocephalic, and brachycephalic.

Based on morphology, what are the two different types of bones?

Bone can be divided into two main categories based on how its protein fibrils and osteocytes are arranged: weaving, in which collagen bundles and the long axis of osteocytes are randomly orientated, and lamellar, in which they are both aligned in distinct layers.

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Because of their differing body proportions and variances in skull architecture, the two pandas may belong to separate species. The big panda, as well as the other two panda species (Ailuropoda melanoleuca). Sutural bones were found in 117 adult human skulls from all three morphological forms: dolichocephalic, mesocephalic, and brachycephalic. Bone is classified into two types depending on the arrangement of its protein fibrils and osteocytes: weaving (in which collagen bundles and the long axis of osteocytes are randomly oriented) and lamellar (in which they are both aligned in discrete layers).

Some people propose that genetically modified foods should have labels that identify them as such. Could such a measure decrease criticism about the safety of genetically modified foods? Based on what you have read, decide whether you would buy genetically modified foods at the grocery store.

Answers

Corn and legumes are two frequently changed foods. GMOs can be processed into cornstarch, maize syrup, soybean oil, canola oil, corn oil, and powdered sugar.

What are GMOs' benefits and drawbacks?

The benefits of GMO crops include the potential for higher nutritious content, use of fewer pesticides during production, and generally lower cost than non-GMO crops. The drawbacks of GMO crops include the possibility that they will increase antibiotic use and trigger allergy reactions as a result of their altered DNA.

What function do GMOs serve?

The majority of the GMO plants used today were created to aid farmers in weed management, crop loss prevention, and food preservation. The three most typical characteristics of GMO crops are: immunity to several harmful insects. tolerance to particular weed-killing chemicals.

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the function of the T tubules in muscle contraction

Answers

Answer:

The transverse tubules (T-tubules) of mammalian cardiac and skeletal muscles are invaginations of the sarcolemma. They play a crucial role in excitation-contraction coupling as well as in intracellular signaling and in regulation of glucose transport

Explanation:

T-tubules allow the depolarization impulse to rapidly propagate through the interior of the muscle fiber. This ensures that calcium release from the sarcoplasmic reticulum occurs uniformly throughout the fiber allowing for synchronized contraction of myofibrils in each muscle cell.

(✿❛◡❛)

In what two way so plan cells use the sugar made in photosynthesis

Answers

In order to give the plant life-sustaining energy and to create other kinds of organic molecules, plant cells employ the sugar produced during photosynthesis in these two ways. C and D are the right answers.

Why does photosynthesis occur?In order to convert light energy into chemical energy that may be released to power an organism's activities through cellular respiration, plants and other lifeforms use a process called photosynthesis.When a plant is photosynthesising, its leaves capture light energy. Water and carbon dioxide are converted by plants into glucose, a sugar, using the energy of the sun.For energy and the production of cellulose and starch, among other materials, plants utilize glucose. To build cell walls, cellulose is employed. So, the right answers are c and d.

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Complete question : In which two ways do plant cells use the sugar made in photosynthesis ?

A. to produce phosphate groups

B. to store inorganic matter

C. to supply the plant with energy for life

D. to make other types of organic molecules

please answer this !

Answers

Upon analyzing the given graph, The Block A has twice as much mass as block B. So, the option B is correct.

What is force?

Force is a physical quantity that describes the interaction between two objects or systems. It is a vector quantity, which suggests it has both magnitude and direction.

Force can cause an object to accelerate, change direction, or deform. It can be described mathematically using Newton's second law of motion, which states that the acceleration of an object is directly proportional to the force applied to it and inversely proportional to its mass.

Force can be measured in a variety of units, including Newtons (N), pounds-force (lbf), and dynes. Some common examples of forces include gravity, friction, tension, and electrostatic forces. Forces can also be classified as contact forces, which require physical contact between two objects, or non-contact forces, which act at a distance, such as gravity or magnetism.

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If the sequence of one single strand of dna is C-A-A-G-T-G-G-C-T what is the sequence of complementary strand

Answers

Answer:

Explanation:

The complementary strand of DNA is formed by pairing each nucleotide with its complementary base. The complementary base pairs are adenine (A) with thymine (T), and cytosine (C) with guanine (G).

So, for the given sequence C-A-A-G-T-G-G-C-T, the complementary strand can be determined by pairing each base with its complement:

C-A-A-G-T-G-G-C-T

G-T-T-C-A-C-C-G-A

Therefore, the sequence of the complementary strand is G-T-T-C-A-C-C-G-A.

Do you think all of these foods should be required to have labels to indicate that they include ingredients from GMOs? Explain your answer.

3. How would your food purchasing behavior change if such labels were required?

Answers

I think that it would be informative for companies to put out there that their product contains GMO as they would show transparency and be honest with the clients.

3. If every company that included GMO ingredients were open about it, many people including I would rethink about purchasing it, especially if my goal was to eat clean and stay away from long-term risks.

Prokaryotic cells regulate their protein synthesis through a set of genes called

Answers

Answer:

genes turn of during this stage

Explanation:

most regulatory proteins are negative therefore they turn Gene's off

Create a model showing the complementary RNA and the amino acid sequence for both the normal and mutated sequence.
1. Transcribe the complementary RNA for the normal and show how the RNA for the mutated sequence is different. You can organize the codons by number to indicate the location of the difference on the mutated sequence.
2. Use the codon chart to identify the complementary amino acid sequence for the normal sequence. Show the change in the amino acid in the mutated sequence.

*Sample Answer Organization:
Normal sequence RNA - 1. GUG 2. ______
Amino Acid sequence 1. ______ 2._______

Answers

Model of the complementary RNA and amino acid sequence for normal and altered DNA sequences. Transcription and cRNA Sequences, Normal DNA sequence: CAC GTG TGA GGA GAC TGA CAC

Replace each DNA base with its equivalent RNA base to transcribe this into RNA: CAC GTG GA UGA GGA UGA CAC CUC GAC

DNA mutation: GTG, To make RNA, we replace each DNA base with its equivalent

RNA nucleotide: CAC GUG, The altered sequence replaces TGA at positions 3-4 with GUG.

Amino Acid Sequences: We utilise the codon chart to find the amino acid for each three-letter RNA codon.

Normal sequence RNA codons and amino acids:

Histidine GTG Valine GAC Aspartic acidGlycine → Halt UGAGGA → Glycine TGA → Halt GAC → Aspartic acid

The typical DNA amino acid sequence is:

Histidine-Valine-Aspartic acid-Stop-Glycine-Histidine-Leucine-Glycine-Stop.Mutated sequence RNA codons and amino acids:CAC → Histidine GUG → Valine

Hence, the altered DNA sequence amino acid sequence is:

Histidine-ValineThe mutation replaces position 2 aspartic acid with valine. This substitution can alter protein function.

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A mutation can be a change of just one nucleotide in a gene. How can a mutation create a new allele of a gene:

Answers

Answer:

A mutation can create a new allele of a gene by changing the DNA sequence of the gene. A gene is made up of a sequence of nucleotides, and a mutation can occur when one of these nucleotides is altered. For example, a single nucleotide change can result in a different amino acid being incorporated into the protein that is produced from the gene. This can affect the structure and function of the protein, which can lead to new traits in the organism that carries the mutated allele.

If the mutation occurs in a gamete (a sperm or egg cell), it can be passed on to the next generation. If the mutation provides a selective advantage to the organism, it may become more common in the population over time, leading to the creation of a new allele. Over many generations, accumulation of mutations can result in the evolution of new species with unique traits and characteristics. Therefore, mutations are a key driving force of genetic diversity and evolution in populations.

Explanation:

above

Make a prediction: what if the capybara could find a better way to evade the anacondas? What do you think would happen within this ecosystem?

Answers

If capybaras were able to find a better way to evade anacondas in their ecosystem, it is likely that their population would increase, as fewer capybaras would be preyed upon by anacondas. This increase in capybara population would have a cascading effect on the ecosystem, as capybaras are an important food source for many other predators in the region. The decrease in anaconda predation on capybaras could also lead to a change in the behavior of the anacondas, as they may need to switch to alternative prey species or alter their hunting strategies to be successful. Additionally, with more capybaras around, there could be increased competition for resources such as food and water, which could lead to changes in the behavior of other herbivores in the ecosystem. Overall, any changes to the balance of predator-prey interactions within an ecosystem can have far-reaching effects, and it would be interesting to observe how such changes would play out in this specific ecosystem.

describe how widespread antibiotic use results in evolution of more resistant strains of bacteria.

Answers

Answer:A circuit with total resistance of 20Ω has a potential difference of 12V and current of 1.2A. calculate energy done in 5 minutes​

Explanation:A circuit with total resistance of 20Ω has a potential difference of 12V and current of 1.2A. calculate energy done in 5 minutes​

Answer:

Overuse of antibiotics is creating stronger germs. Some bacteria are already "resistant" to common antibiotics. When bacteria become resistant to antibiotics, it is often harder and more expensive to treat the infection. Losing the ability to treat serious bacterial infections is a major threat to public health.

What is the greatest ongoing challenge to continuing agricultural practices to feed our growing population?

monoculture operations

agricultural pests

use of fossil fuels

climate change

pesticide use

Answers

The greatest ongoing challenge to continuing agricultural practices to feed our growing population is climate change. Option D

Is Climate change the greatest contemporary challenge to agriculture?

Climate change is certainly one of the greatest contemporary challenges facing agriculture. Agriculture is heavily dependent on climate patterns and weather conditions, and changes in these patterns can have significant impacts on crop yields, livestock productivity, and overall agricultural production.

Climate change is leading to more frequent and intense weather events such as droughts, floods, and heatwaves, which can damage crops and reduce yields. It is also leading to changes in temperature and precipitation patterns, which can affect the timing of planting and harvesting.

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Compare the ATP available to cells when oxygen is present versus when it is absent. How might this help explain why brain and heart functions are so quickly affected when a person cannot breathe?

DO NOT COPY AND PASTE. EXPLAIN IN YOUR OWN WORDS.

Answers

When oxygen is present, cells undergo aerobic respiration, which produces ATP molecules more efficiently compared to anaerobic respiration.

What are aerobic and anaerobic respiration?

Aerobic respiration occurs in the mitochondria and involves the breakdown of glucose into carbon dioxide and water, with the help of oxygen. This process yields a net gain of 36-38 ATP molecules per glucose molecule.

In the absence of oxygen, cells undergo anaerobic respiration, which is less efficient than aerobic respiration and produces only 2 ATP molecules per glucose molecule. Anaerobic respiration involves the breakdown of glucose into lactic acid.

When a person cannot breathe, oxygen supply to the brain and heart is cut off, leading to a shift from aerobic to anaerobic respiration. This results in a rapid depletion of ATP molecules and a buildup of lactic acid, leading to cellular damage and eventual organ failure.

Moreover, the brain and heart have high energy demands, and any disruption in the ATP supply can quickly affect their function. Without a steady supply of ATP, the brain and heart cells cannot maintain their normal electrical activity, which can lead to seizures, cardiac arrhythmias, and even death.

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A brief summary detailing what you think the two biggest challenges would be with your specialty and what you feel would be most rewarding or enjoyable about it (three to five sentences). For forensic DNA analyst

Answers

As a forensic DNA analyst, one of the biggest challenges would be the pressure to produce accurate results within a strict time frame while dealing with a high volume of cases. Another challenge would be staying up-to-date with the latest advancements in DNA analysis technology and techniques.

However, the most rewarding aspect of this job would be the knowledge that my work is helping to bring justice to victims and their families. It would also be fascinating to use scientific methods to solve crimes and connect suspects to their crimes based on their DNA.

J.___ The final electron acceptor, for the electron transport chain, in anaerobic respiration is almost exclusively an organic molecule and usually NAD+.

True or false ^^

Answers

Answer: False.


Explanation: In anaerobic respiration, the final electron acceptor is typically an inorganic molecule such as sulfate, nitrate, or carbon dioxide. In fermentation, which is also a form of anaerobic respiration, the final electron acceptor is an organic molecule such as pyruvate or acetaldehyde. NAD+ is not a final electron acceptor, but rather a coenzyme that shuttles electrons between metabolic pathways.

What *type* of mountain is Makalu Mountain?

Answers

Makalu mountain is a isolated peak in the shape of a four-sided pyramid mountain and has two notable subsidiary peaks.
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