The DNA is TTC AGC CCA CTG GGC ATT and the mRNA is AAG UCG GGU GAC CCG UAA, and the process is transcription. The translated product of the mRNA is Lys-Ser-Gly-Asp-Pro.
What is the difference between transcription and translation?From the original DNA, first the mRNA is formed by the process of transcription, as the DNA does not directly involve itself in protein synthesis, and then the mRNA enters the translation process to form the polypeptide chain.
Hence, the DNA is TTC AGC CCA CTG GGC ATT and the mRNA is AAG UCG GGU GAC CCG UAA, and the process is transcription. The translated product of the mRNA is Lys-Ser-Gly-Asp-Pro.
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If the temperature is 40°F and the wind is blowing at 10 mph, what is the WET?
The WET when the temperature is 40°F and the wind is blowing at 10 mph is approximately 71.76°F.
What is the WET?The Wind Chill Equivalent Temperature (WET) is a measure of how the temperature feels to the human body when the effects of wind are taken into account.
The formula to calculate the WET takes into account both temperature and wind speed, and the result gives an estimate of the lowest temperature that a person would feel if exposed to those conditions.
WET = 35.74 + 0.6215 * T - 35.75 * V^0.16 + 0.4275 * T * V^0.16
where
T is the temperature in Fahrenheit and
V is the wind speed in miles per hour.
Plugging in the values from your question, we have:
WET = 35.74 + 0.6215 * 40 - 35.75 * 10^0.16 + 0.4275 * 40 * 10^0.16
WET = 35.74 + 24.86 - 7.72 + 17.88
WET = 71.76
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Why is a chemically defined medium necessary for the detection of citrate utilization by bacteria?
What is the importance of cytochrome oxidase to bacteria that possess it?
Do anaerobic bacteria require oxidase? Explain your answer.
Citrate utilization by bacteria Citrate is a process that determines the ability of bacteria to use citrate as a source of energy. Citrate utilization test is done to detect the ability of microorganisms to utilize citrate as a source of carbon in the presence of limited nutrients in a chemically defined medium.
The medium is essential in determining the utilization of citrate by microorganisms since it allows for the identification of bacteria that can utilize citrate as the only source of carbon (Basavanna, et al. 2017).Importance of cytochrome oxidase to bacteria Cytochrome oxidase is a protein that is crucial to the functioning of the electron transport chain in most bacteria that possess it. The electron transport chain is a chain of molecules that accept or donate electrons to power cellular respiration. The cytochrome oxidase molecule accepts electrons from cytochrome c molecules and donates them to oxygen molecules, forming water. This process is critical in generating ATP, which is used to fuel the energy needs of the cell.
Bacteria that possess cytochrome oxidase, therefore, use it to produce ATP and power their cellular processes. Anaerobic bacteria and oxidase Anaerobic bacteria are microorganisms that can survive in the absence of oxygen. Since cytochrome oxidase is used to transport electrons to oxygen, anaerobic bacteria do not require it. Instead, anaerobic bacteria use other molecules, such as nitrate, sulfate, and carbon dioxide, as electron acceptors in the electron transport chain to generate ATP (Ljubijankic, et al. 2020). In conclusion, a chemically defined medium is necessary for the detection of citrate utilization by bacteria because it allows for the identification of bacteria that can utilize citrate as the only source of carbon.
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2) Which substance is a product of photosynthesis?
A)
C)
Nitrogen
Glucose
B)
D)
Water
Carbon dioxide
Answer:
Product of photosynthesis is Glucose
The science disaster at mission middle school… I need the answers the answer should be a score
The Science Disaster at Mission Middle School is a written assignment designed to emphasize science lab safety standards and regulations. This exercise focuses on any and all safety restrictions/ precautions that you may implement in your scientific lab.
What are basic lab safety protocols?The Environment, health and safety practices that must be employed to ensure a save laboratory environment are:
With respect to Food and Drink:
First and foremost, eating or drinking in the lab increases your chance of exposure to harmful compounds.Food and drink can make a mess, raising the risk of infection and perhaps attracting pests.Eating or drinking in the lab can potentially be a source of distraction, resulting in a spill or a more serious incident.With respect to Personal Protective Equipment:
When working in the lab, long trousers and shoes that completely cover the top of the foot should be worn at all times.Lab coats protect your clothes and skin and should be worn at all times.Eye protection is provided by safety glasses or goggles, which must be worn at all times.Gloves shield your skin from potentially harmful substances. When you're finished with them, make sure to properly dispose of them.Other practices to abide by are:
Maintain good personal hygieneUse recommended storage containersEnsure that your work space and work tools are labelledRemain at alert about your environment and never work aloneUse and put away batteries properly.Learn more about laboratory protocols:
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Who developed the system of interchangeable parts?.
Given what we know, we can confirm that the person credited with the development of interchangeable parts is Eli Whitney.
Why was this development so important?This development greatly improved production efficiency, as know almost anyone could produce complex goods by just building specific parts.
This also greatly reduced the cost of goods and their maintenance.
Now, instead of having to replace a product when something broke, it was possible to just purchase a replacement part to fix the problem.
Therefore, given the importance of the development of interchangeable parts in terms of production and costs, it has been very well documented in history and its invention is credited to Eli Whitney.
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What causes one embryo to develop unique characteristics compared to the embryos of different species?
A. Particles of color are passed from parents to children.
B. Cells that become the colored part of the eye are passed from parents to children.
C. Nothing having anything to do with eye color is passed from parents to children.
D. Molecules (DNA) that contain the information that determines eye color are passed from parents to children
Answer:
D
Explanation:
Hope this helps
Answer:
d
Explanation:
Awnser the science problem
Answer:
okay
Explanation:
1. When different forces have the same magnitude but go in oppisate direction
2.oppisate direction
3. speed and time
what crop variety of wheat is not grown in the midwest region
One crop variety of wheat that is not commonly grown in the Midwest region of the United States is the Hard Red Winter (HRW) wheat. HRW wheat is well-suited to the climate and soil conditions of the Midwest, making it a popular choice among farmers in that region. However, there are other wheat varieties that are not as prevalent in the Midwest.
One example is Durum wheat, which is mainly grown in the Northern Plains and intermountain regions. Durum wheat is primarily used for making pasta due to its high protein content and semolina quality. Its growth requirements, such as specific soil and temperature conditions, make it less suitable for the Midwest region.
Another example is Soft Red Winter (SRW) wheat, which is commonly grown in the southeastern and eastern parts of the United States. SRW wheat is known for its use in baking pastries and cookies, and it thrives in the milder climate and well-drained soils found in those regions. However, the growing conditions in the Midwest are generally not as conducive to SRW wheat, which is why it is less frequently grown there.
Overall, while HRW wheat is a dominant variety in the Midwest, other wheat types like Durum and SRW are less commonly cultivated due to variations in their adaptability to the region's specific climate and soil conditions.
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what happens to protein in the digestion system
Answer:Once a protein source reaches your stomach, hydrochloric acid and enzymes called proteases break it down into smaller chains of amino acids. Amino acids are joined together by peptides, which are broken by proteases. From your stomach, these smaller chains of amino acids move into your small intestine.
What advantage do invasive species of plants have over native species?.
Which answer choice correctly lists the flow of food through the GI tract (gastrointestinal tract) of the digestive system?
mouth-- stomach-- small intestine-- large intestine-- rectum
rectum-- large intestine--- small intestine--- stomach--- esophagus-- mouth
mouth-- esophagus-- stomach-- small intestine--- large intestine--- rectum
mouth-- stomach-- small intestine-- esophagus--- large intestine-- rectum
Answer:
mouth--esophagus--stomach--small intestine---large intestine---rectum
Explanation:
at what distance from the earth's surface is the gravitational potential energy of a spaceship-earth system reduced to half the energy of the system before the launch?
Answer:
the right answer is not aviable at this time
Explanation:
The mass of an object and its distance from other objects both affect its gravitational potential energy.
What energy of an earth system reduced to half the energy?The work required per unit mass by an external force to move a heavy object from a predetermined position of zero potential, often infinity, to a certain point in The gravitational potential is the name given to a gravitational field.
An object's location in the mass-Earth system determines the gravitational potential energy of any object close to the surface of the planet.
There is a stronger gravitational pull for heavier items. Remember that a larger object does not necessarily have more mass. Gravitational pull is stronger for objects that are nearer to one another.
Therefore, At an infinite distance from the earth, the gravitational potential is zero.
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If the population of hawks in this area increases, their prey populations might decrease. Later, with fewer prey, the hawk population might decrease. The prey populations might then increase. This is an example of
Answer:
This question lacks options, the options are:
1. an ecosystem completely out of balance
2. how ecosystems maintain stability over time
3. interaction between biotic and abiotic factors within an ecosystem
4. ecological succession
The answer is 2
Explanation:
An ecosystem comprises of biotic organisms, abiotic substances etc. that interact with one another. The biotic components of an ecosystem are known to feed on one another in order to obtain energy. However, stability of an ecosystem must be maintained between predators and prey or else there will be extinction of many species of organisms.
One way balance in an ecosystem is maintained over time is by the increase and decrease in population of predators and preys in an ecosystem. For example, If the population of hawks (predator) in an area increases, their prey populations might decrease because there will be less predation.
Also, at a later time, when there is a fewer population of prey, the hawk population might decrease because there is less food to eat. The prey populations might then increase.
the green color of leaves is evidence that green light is...
Answer:
photosinthesis is the correct answer
Answer:
photosynthesis bouncing off the leaf
Explanation:
All of the following are nucleotides found in DNA except for one. Which one does not belong with the others?
The deoxyribose sugar, phospate molecule, and one nitrogenous base from adenine, guanine, thymine, and cytosine make up the nucleotides that form the DNA strands. Uracil is never found in a DNA nucleotide. Tyroxine does not exist in nucleotide.
Adenine, guanine, cytosine, thymine, uracil, a sugar molecule, and one phosphoric acid molecule make up a nucleotide. A nucleotide is made up of three parts: a 5-carbon sugar, a phosphate group, and a nitrogenous base. Phospholipids are not found in nucleotides. Ribose and its related chemical, deoxyribose, are the building blocks of nucleic acid backbone chains, often known as DNA and RNA.
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benefits of including roughages in the diet of humans
Answer:
roughages, or fiber helps with digestive issues such as constipation but it also plays many important roles in your body for example the roughages in plants can promote optimal gut health, help you manage your weight and even reduce your rick of heart disease
Why is classification of species important in light of a changing environment and changing ecosystem
Answer:
In order for scientists to keep track of endangered species and discover new species that are created due to the constant change.
Emphysema is a disease that damages alveoli describe how this disease would affect a persons ability to breathe then explain how emphysema would affect the concentration of oxygen and carbon dioxide in the bloodstream
Answer:
Emphysema is one of the lung disorders caused by damage to the air sacs in the lungs, which reduces the body's ability to take advantage of oxygen from the air. This results in inefficient breathing, because it takes extra effort to empty the air from the lungs. This disease progressively destroys the fibers that allow the airways to remain open. This problem causes the collapse of these pathways when a person exhales air. That is, the air that the lungs expel that contains carbon dioxide cannot get out, and consequently, the fresh, oxygen-filled air does not enter the lungs.
Explanation:
When we breathe, the air comes through the bronchial tree to a kind of small sacs called alveoli, which are located at the end of the bronchi and fill the lungs. From the lungs, oxygen is transported, through the arteries, to the different tissues and organs of the body. But, generally due to smoking, people with emphysema have damaged alveoli: the inner walls of these sacs weaken and break, which creates larger air spaces and therefore reduces the air exchange surface of the cells lungs. Consequently, the amount of oxygen that reaches the blood decreases and this can produce in the patient a sensation of shortness of breath, which is the frequent characteristic manifestation of this respiratory pathology. In the pulmonary alveoli, the oxygen in the air is exchanged for carbon dioxide in the blood. The walls of the air sacs are thin and fragile, so the injuries that occur in these air sacs are irreversible. Emphysema causes the alveoli - the small air sacs in the lungs that provide oxygen to the bloodstream - to weaken and they become less elastic. That means the body has difficulty getting enough oxygen or has excess carbon dioxide in the body.
Answer:
My answer is down below. Don't directly copy because you will get plagiarism, and that's not what I want to happen to you. The only reason why I posted my answer is if you are in need of some help to think of things to write. Hope you enjoy it!
Explanation:
One of the sad things about this disease is that we currently do not have a cure for it. Which is very unfortunate for the people that end up getting it. There is some hope of relieving some pain, but there isn't a 100% cure. What emphysema does is it destroys the walls between your alveoli. What happens to your lungs? Well, it makes the lungs less able to absorb oxygen into our bloodstream and also remove carbon dioxide from our blood. The good news/bad news is that if you are diagnosed with emphysema you are likely to still live anywhere from 1-5 more years, which is pretty amazing that our body can last that long with damaged lungs.
Imagine a very fast, very deep, very wide river. Tiny shore fish live in shallow water along the banks of the river. But they do not go across the river. The middle is too deep, too fast, and full of dangerous predators.What would you expect to find if you looked at shore fish on one side of the river, and compared them to shore fish on the opposite bank?*Note: assume "shore fish" are all of the same biological species.Group of answer choicesPopulations of shore fish on opposite sides of the river would be genetically different.Populations of shore fish on opposite sides of the river would be genetically identical to each other.
Populations of shore fish on opposite sides of the river would be genetically identical to each other.
8. Why are some microbes called pathogens?
Answer:
Microbes that cause disease are called pathogen.
(: A pathogen is a micro-organism that has the potential to cause disease
the term means urinary incontinence during sleep. it is also known as bed-wetting.
Nocturnal enuresis is the term used to describe urinary incontinence during sleep, commonly referred to as bed-wetting.
It is characterized by the involuntary release of urine during nighttime sleep, typically in children. Nocturnal enuresis can have several underlying causes, including delayed maturation of the bladder, hormonal imbalances, genetic factors, or psychological factors.
It is important to note that nocturnal enuresis is not a deliberate behavior or a sign of laziness or disobedience. Treatment options for nocturnal enuresis may include behavioral techniques, such as bedwetting alarms and nighttime voiding schedules, as well as medication in certain cases.
Understanding and providing support for individuals experiencing nocturnal enuresis is crucial in managing the condition and promoting overall well-being.
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What is the difference between the axial and appendicular skeleton?
A. the axial skeleton helps with blood flow and the appendicular skeleton helps with temperature regulation
B. the axial skeleton allows for movement and the appendicular skeleton protects vital internal organs
C. the axial skeleton protects vital internal organs and the appendicular skeleton allows for movement.
D. the axial skeleton helps with temperature regulation and the appendicular skeleton helps with blood flow.
Answer: C. the axial skeleton protects vital internal organs and the appendicular skeleton allows for movement.
Explanation:
Which diagrams best illustrate the daughter cells that result from normal mitotic cell division of this zygote
Answer:
A is your answer for that question
Cortisol promotes the breakdown of tissue protein to form _____, which are used by the liver to synthesize new glucose.
Cortisol promotes the breakdown of tissue protein to form amino acids, which are used by the liver to synthesize new glucose. The adrenal gland produces a hormone called cortisol. It belongs to the group of hormones called glucocorticoids, which means that it affects glucose metabolism.
Cortisol is the primary hormone that is released in response to stress. It promotes the breakdown of tissue protein to form amino acids, which are then utilized by the liver to synthesize new glucose. The liver has a central role in glucose metabolism. It is responsible for storing glucose as glycogen, which can then be released to provide energy when needed. The liver can also produce glucose from other sources such as amino acids and fatty acids. When blood glucose levels are low, the liver converts stored glycogen into glucose and releases it into the bloodstream to maintain normal glucose levels. However, if glycogen stores are depleted, the liver will use other sources such as amino acids to produce glucose. This process is known as gluconeogenesis. Cortisol plays a critical role in glucose metabolism. It promotes gluconeogenesis by stimulating the breakdown of tissue protein to form amino acids, which are then utilized by the liver to synthesize new glucose. This ensures that there is always an adequate supply of glucose in the bloodstream to meet the energy needs of the body.
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Who’s know stuff about child development?
The child development stuff is well known to the doctors and the nurse, and they advise mothers during the time of the pregnancy to take care of the baby in different ways.
What is the role of the medical staff?The medical field employs a variety of personnel, including doctors, experts, nurses, caregivers, and others, but the doctor and nurse roles are directly related to patients. They take care of patients of different types, such as those with minor to major health issues.
Hence, the child development stuff is well known to the doctors and the nurse, and they advise mothers during the time of the pregnancy to take care of the baby in different ways.
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explain how studying these processes can provide insights into evolutionary relationships
Studying processes such as DNA sequencing, comparative anatomy, and embryonic development can provide insights into evolutionary relationships by identifying similarities and differences between species. These similarities and differences can be used to construct phylogenetic trees, which show the evolutionary relationships between different groups of organisms.
Comparative anatomy can also provide insights into evolutionary relationships. By comparing the physical structures of different organisms, scientists can identify similarities and differences that suggest a common ancestor. For example, the presence of similar bone structures in the limbs of different mammals suggests that they share a common ancestor.Embryonic development can also reveal evolutionary relationships. By studying the development of embryos from different species, scientists can identify similarities and differences that suggest a common ancestor. For example, the early development of the vertebrate embryo is similar in all vertebrates, suggesting that they share a common ancestor.Overall, studying these processes can provide a wealth of information about the evolutionary relationships between different species, helping us to better understand the history of life on Earth.
recorded on phylogenetic trees. If two or more species are recorded above the same split in a phylogenetic tree, or node, then they are related to each other, however distantly.
If Carbon-14 goes through 2 half-lives...
a. How many years have gone by?
b. What percentage of the original mass will remain?
The carbon-14 half-life is 5730 years. There is 50%=12 of the initial amount left after 1 half-life. There are 25% of the original amount, or 14 half-lives, left. There are 12.5%, or 18 of the initial amount, left after 3 half-lives.
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When a man walks across the carpet and reaches for the door knob, why does he get shocked ?
A man gets shocked when he walks across the carpet and reaches for the door knob is because of static electricity.
Static electricity occurs when there is an imbalance of electric charges within or on the surface of a material. When a man walks across the carpet, his shoes rub against the carpet fibers, causing electrons to be transferred from the carpet to his body. This transfer of electrons causes an imbalance of electric charges, and the man becomes negatively charged. When he reaches for the door knob, which is made of metal and is a good conductor of electricity, the excess electrons on his body are transferred to the door knob, causing a shock. This transfer of electrons is what causes the shock that the man feels.
To summarize, the shock that a man feels when he walks across the carpet and reaches for the door knob is caused by the transfer of electrons due to static electricity.
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What is the process that removes dead yeast cells in the traditional champagne method?
In the traditional champagne method, also known as méthode champenoise, the process that removes dead yeast cells is called riddling or remuage. After the wine undergoes its secondary fermentation in the bottle, the yeast cells die and form a sediment in the bottle.
To remove this sediment, the bottles are placed on special racks called pupitres at a 45-degree angle, and the bottles are rotated slightly every day to encourage the dead yeast cells to settle in the neck of the bottle. This process can take several weeks or even months, depending on the producer's preference.
Once the dead yeast cells have settled in the neck of the bottle, the next step is called disgorging. The neck of the bottle is frozen to form a plug of ice containing the sediment. The bottle is then quickly opened, and the pressure from the carbon dioxide in the wine forces the plug of ice out, along with the dead yeast cells. The wine is then topped up with a mixture of wine and sugar, called the dosage, to replace the lost volume and balance the wine's acidity.
Overall, riddling and disgorging are crucial steps in the traditional champagne method, as they remove the dead yeast cells and ensure a clear, bright wine that is ready for consumption.
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How does the physical environment in a tide pool change between tides?