Answer:
An original section of dna has the base sequence agcgttaccgt. A mutation in this dna strand results in the base sequence aggcgttaccgt. This change represents a frameshift mutation. It is a genetic mutation caused by indels (insertions or deletions) of a number of nucleotides in a DNA sequence that is not divisible by three.
Explanation:
Answer:
one is a mutant
Explanation:
In which situation is light refracted?
A When light hits a wall
B When light hits a mirror
C When a light wave hits another light wave
D When light travels from air into water
You are a geneticist working at a veterinary hospital. Your job is to help people understand genetic disorders that could affect their pets.
Answer:
To be connected with pet owners.
Explanation:
For doing this job, i have to be connected with the people having pets in their houses because with this interaction I provide all information about genetic disorders that their pet can gain. I will attend group discussion with these people in order to avoid threats of genetic disorder to their pets. With this information, these people are able to diagnose any genetic disorder symptoms in their pets and if we knew on time this genetic disorder can be eliminated from their pets and their health should be maintained.
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Answer:
The hood island tortoise.
Explanation:
It has the longest neck (adaptation), and will be able to reach food that is higher up, like a vine growing on a tree.
It is also because of it's saddle-shaped shell, that will make it easier to stretch.
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What is the biggest difference when comparing a prokaryotic and a eukaryotic cell?
Answer:
Well, the primary distinction between these two types of organisms is that eukaryotic cells have a membrane-bound nucleus and prokaryotic cells do not. ... Prokaryotes, on the other hand, have no membrane-bound organelles. Another important difference is the DNA structure.
Answer:
The biggest difference between the two are that eukaryotic cells have a membrane-bound nucleus and prokaryotic cells do not.
A W E G
5 3 12
Between which two genes would you expect the highest frequency of recombination?
A) A and W
B) E and G
C) A and E
D) A and G
The genes E and G are located far apart on the chromosome, hence they are expected to show the highest frequency of recombination. Therefore, the correct answer is option B) E and G.
The term recombination can be defined as the process in which new combinations of alleles or genes are created through genetic exchanges that occur between homologous chromosomes or between DNA molecules. The frequency of recombination is typically expressed as a percentage of the total number of offspring in a population. The two genes that exhibit the highest frequency of recombination are usually located far apart on a chromosome. Therefore, the answer to the question is option B) E and G.
To understand the given problem statement, one must have a basic idea of gene recombination and linkage analysis. As per the given information, the given symbols A, W, E, G are symbolic notations for genes located on the chromosome. And, the numbers 5, 3, 12 indicate the frequency of recombination that occurs between two genes present on the same chromosome.The genes that are located near to each other on a chromosome tend to stay together and are said to be linked. Whereas, the genes located far apart on the chromosome exhibit a high degree of recombination between them. The probability of recombination between two genes increases with the increase in the distance between them. On the other hand, the genes that are closely located to each other exhibit a low degree of recombination as they are usually inherited together.
The highest frequency of recombination is expected between the genes that are located far apart on the chromosome. Thus, as given in the options, the genes E and G are located far apart on the chromosome, hence they are expected to show the highest frequency of recombination. Therefore, the correct answer is option B) E and G.
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Why can certain drugs or viruses cause birth defects?
please help quickly i will give a thanks you will get all the points and brainliest with 5 stars
(first one to answer gets brainliest!), What % of wind energy does the United States use?
Answer:
Although wind makes up about 8% of total U.S. electricity generating capacity, wind generators provided a smaller share (5%) of total U.S. electricity generation in 2016 because wind turbines have relatively low capacity factors.
Explanation:
the mass of a 235 92u nucleus is _____ the sum of the masses of a 141 56ba nucleus, a 9236kr nucleus, and two neutrons, all separated from each other.
The mass of a 235 92U nucleus is less than the sum of the masses of a 141 56Ba nucleus, a 9236Kr nucleus, and two neutrons, all separated from each other.
The mass of the nucleus is affected by the number of protons and neutrons it contains. The total mass of a nucleus is determined by adding up the masses of the individual protons and neutrons. The mass of a 235 92U nucleus is less than the sum of the masses of a 141 56Ba nucleus, a 9236Kr nucleus, and two neutrons, all separated from each other.The mass of the nucleus is less than the sum of its parts due to a phenomenon known as nuclear binding energy.
The energy required to break a nucleus down into its individual protons and neutrons is referred to as nuclear binding energy. When a nucleus is created, nuclear binding energy is released, which lowers the overall mass of the nucleus by a small amount.The amount of nuclear binding energy present in a nucleus is determined by the number of protons and neutrons it contains. The larger the number of protons and neutrons, the greater the amount of nuclear binding energy. The nucleus becomes more tightly bound as a result of the increased nuclear binding energy, and its overall mass is reduced slightly.
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50 points and brainliest
Type 2 things that you learned that are unique to humans’, flatworms’, and plants’ waste removal systems.
(two each)
real answers please
Explanation:
while these infections can occur in cows and pigs, it isn't an animal-specific condition. Tapeworms can also infect humans, although it's not a common infection. The Centers for Disease Control and Prevention (CDC) estimates there are less than 1,000 new tapeworm infections in humans in the United States eachwhile these infections can occur in cows and pigs, it isn't an animal-specific condition. Tapeworms can also infect humans, although it's not a common infection. The Centers for Disease Control and Prevention (CDC) estimates there are less than 1,000 new tapeworm infections in humans in the United States each
Which of the following is true of ribosome rescue? A. The process produces a protein that is tagged for degradation. B. No protein is produced in the process. C. A partially translated mRNA becomes fully degraded before it can be translated further.
D. Proteases enter the A-site of the ribosome to degrade the C-terminus of the synthesized peptide.
E. Stalled ribosomes are released in the absence of a stop codon.
In the case of ribosome rescue, no protein is created throughout the procedure. The genetic code transcribed in mRNA is translated into an amino acid sequence by the ribosome, which is universally responsible for protein synthesis. Hence (b) is the correct option.
The beginning, extension, and termination of peptide synthesis are carried out by ribosomes using cellular auxiliary proteins, soluble transfer RNAs, and metabolic energy. Protein synthesis is carried out on ribosomes during translation, which takes place when mRNA from the nucleus is coupled to the ribosome and translates codons for protein synthesis in the presence of ribozyme and tRNA. Translation is the process of turning mRNA into proteins.
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regulation of the heart rate, speed of electrical conduction and strength of contraction are influenced by the brain via the _____ nervous system
Regulation of the heart rate, speed of electrical conduction, and strength of contraction are influenced by the brain via the autonomic nervous system.
The autonomic nervous system (ANS) has two separate branches: the sympathetic and parasympathetic nervous systems. The sympathetic system speeds up physiological processes in response to an emergency or stress, whereas the parasympathetic system slows them down to conserve energy and promote healing.
The nervous system is responsible for sending signals and controlling physiological functions such as heart rate, respiration, and digestion. It is made up of the brain, spinal cord, and peripheral nerves, which communicate with the rest of the body to regulate vital processes. The autonomic nervous system is a component of the peripheral nervous system that controls involuntary activities.
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How is liver malfunction likely to affect digestion?
O A. It will affect the digestion of high-protein foods.
O B. It will affect the digestion of high-fiber foods
O C. It will affect the digestion of fatty foods.
O D.
It will affect the digestion of fruits.
Answer:
C
Explanation:
It will affect the liver because the liver helps to store fatty foods
What causes objects to change their motion? *
1 a force
2 the mass of an object
3 the velocity of an object
Answer: 1 a force
Explanation:
Answer:
answer is 1 hope this helps
Choose the best definition for an ecosystem.
a place where one type of organism lives.
a place where organisms are interacting with other organisms and with their environment
a place where a group of organisms is interacting with another group of organisms
all of the nonliving things in the environment
Answer:
a place where organisms are interacting with other organisms and with their environment
Explanation:
HOPE IT'S HELPS YOUTHANKYOUAnswer:
a place where one type of organism lives.
describe the stretch-shortening cycle (ssc), and explain how it relates to exercise.
The Stretch Shortening Cycle (SSC) is a reactive power storage and release process that occurs in muscles and tendons during exercise. It is a neuromuscular phenomenon that has been shown to improve muscular power output and improve muscle contractile properties in response to rapid, explosive movements.
The Stretch Shortening Cycle (SSC) is the action of contracting a muscle after it has been stretched, such as when jumping, hopping, or running. The process is initiated when a muscle is pre-stretched prior to the concentric phase of a movement, allowing for elastic energy to be stored in the muscle-tendon complex. This stored energy is then used to produce more power during the concentric phase of the movement, leading to an overall increase in muscular force production. The stretch reflex is a critical component of the SSC, as it helps to facilitate the transition from the eccentric to the concentric phase of the movement. Some exercises that utilize the SSC include plyometrics, which involve rapid, explosive movements such as jump training, sprints, and agility drills. These exercises are designed to enhance muscle power and reactive strength, which can improve athletic performance in sports that require explosive movements, such as basketball, soccer, and volleyball. In conclusion, the SSC plays a significant role in improving muscle power output and contractile properties during exercise. It is a neuromuscular phenomenon that is facilitated by the stretch reflex and is critical for producing rapid, explosive movements in sports and other athletic activities.
The stretch-shortening cycle (SSC) is a neuromuscular phenomenon that occurs during certain types of movements, particularly in activities involving jumping, running, and throwing. It involves a sequence of muscle actions that consists of three phases: eccentric, amortization, and concentric.
1. Eccentric Phase: The SSC begins with the eccentric phase, during which the muscle lengthens under tension. This phase occurs when a muscle is stretched or loaded prior to a contraction. For example, when you prepare to jump, your leg muscles lengthen as you lower yourself into a squatting position.
2. Amortization Phase: Following the eccentric phase, there is a brief transition called the amortization phase. This phase is crucial and time-sensitive, as it represents the transition between muscle lengthening and muscle shortening. The muscle quickly changes direction and prepares for the subsequent concentric contraction. It is characterized by a rapid isometric pause, meaning the muscle does not change length significantly during this phase.
3. Concentric Phase: The final phase of the SSC is the concentric phase, during which the muscle contracts and shortens, generating force. In the context of jumping, this is when the leg muscles rapidly contract to propel the body upward.
The SSC is essential for enhancing the efficiency and power of various athletic movements. It leverages the elastic properties of muscles and tendons, as well as the stretch reflex, to generate greater force and power output. Here's how it relates to exercise:
1. Increased Power and Force: The SSC allows muscles to store and release energy, resulting in enhanced power production. When the muscle is eccentrically loaded, it stretches the tendons and stores elastic energy. This stored energy is then rapidly released during the subsequent concentric contraction, resulting in greater force production and movement efficiency. Exercises that utilize the SSC, such as depth jumps or plyometric exercises, can help improve power and explosiveness in athletes.
2. Improved Muscular Performance: By training the SSC, individuals can enhance their neuromuscular coordination, timing, and muscle activation patterns. The rapid transition from eccentric to concentric muscle actions improves the neural pathways involved in coordinating muscle contractions, leading to improved motor performance and efficiency.
3. Injury Prevention: Proper utilization of the SSC can also contribute to injury prevention. The rapid eccentric loading and subsequent concentric contraction help strengthen the tendons, making them more resilient to forces encountered during dynamic movements. Training the SSC can enhance joint stability, decrease the risk of muscle strains, and improve overall movement mechanics.
It's important to note that the SSC should be trained with care, as it places greater stress on the muscles, tendons, and joints. Proper technique, progression, and appropriate training volume should be considered to ensure safety and maximize the benefits of incorporating the SSC into exercise routines. Consulting with a qualified exercise professional can provide personalized guidance based on individual fitness levels and goals.
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WILL GIVE BRAINLIST!!!! What effects do weathering, erosion, and deposition have on agriculture in Texas?
Answer:
cause the soil to become less fertile therefore causing the loss of nutrients and farmers can no longer plant crops causing profits to drop.
Explanation:
Delayed analysis of synovial fluid affects the results of all of the following tests except the:
A. Mucin clot test
B. Glucose
C. Crystal examination
D. WBC count
Delayed analysis of synovial fluid affects the results of all of the following tests except the: mucin clot test (option A).
A mucin clot test is not necessary for the diagnosis of joint disease, but it helps in the diagnosis of pseudogout and gout. Synovial fluid analysis is a diagnostic technique that involves withdrawing synovial fluid from a joint cavity, then analyzing the fluid to diagnose joint diseases. The technique is a standard test used by physicians, particularly rheumatologists, to detect joint conditions.
What is synovial fluid analysis?Synovial fluid analysis is a laboratory test that involves examining synovial fluid samples. Synovial fluid is a clear, viscous liquid that fills the joint cavity, lubricating the joint and protecting it from friction. The liquid is produced by synovial membranes that line the inner surface of the joint capsule. Synovial fluid contains numerous substances that help in the diagnosis of joint diseases.
What are the contents of synovial fluid?Synovial fluid contains a variety of substances that help diagnose joint diseases, including:
White blood cells (WBCs), including monocytes, macrophages, and lymphocytes.
Proteins such as albumin, globulin, and fibrinogen.
Crystals, which are associated with specific types of arthritis.
Glucose, lactate, and pyruvate are all energy sources in the body.
What happens when synovial fluid analysis is delayed?Synovial fluid analysis must be done as soon as feasible after the joint is aspirated. The composition of synovial fluid changes as time passes, affecting test findings. The number of WBCs in the sample rises with time, indicating an inflammatory response. Therefore, delayed synovial fluid analysis affects all of the tests mentioned except the mucin clot test. Hence, the correct answer is Option A.
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What type of muscle tissue is this
Answer:
It is skeletal muscle tissue also if you see my comment spread the word.
Explanation:
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What does this table show?
Answer:
doesn't it just show metals and non metals and their atomic number and mass number?
Explanation:
During a field trip, an instructor touched a moth resting on a tree trunk. The moth raised its forewings to reveal large eyespots on its hind wings. The instructor asked why the moth lifted its wings. One student answered that sensory receptors had fired and triggered a neuronal reflex culminating in the contraction of certain muscles. A second student responded that the behavior might frighten predators. Which statement best describes these explanations?
Answer:
The first explanation refers to proximate causation, whereas the second refers to ultimate causation.
Explanation:
The first example refers to proximate causation, whereas the second example to ultimate causation.
What is ultimate causation?The ability of one variable to impact another is known as causality, also known as causality. The first variable might create the second or might change the incidence of the second variable.
Correlation, which shows how much two variables tend to rise or fall together, and causation are frequently misconstrued. Correlation does not, however, automatically imply causality. The variations in both variables could be caused by a third component, for instance.
A statistically significant association has been shown between yellow cars and a reduced accident frequency. Just because there are fewer accidents involving yellow cars does not mean that they are any safer. A third element, such as the person's personality type.
Therefore, The first example refers to proximate causation, whereas the second example to ultimate causation.
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Some vitamins can be produced by the body.
TRUE
FALSE
Answer:
true
Explanation:
my freind says so..
1. Which equation best represents the dissociation of water molecules into hydrogen ions and hydroxide ions?
Look at the speedometer at the top. What do you notice about the speed when the skater goes from a height of 6m down to 0m and back up to 6m?
Answer:
First increases then decreases.
Explanation:
The speed of skater tends to increases when it moves from high elevation of 6 m to the low height area due to sloppy region while on the other hand, when the skater moves again from 0 m or from the ground level to 6 m height its speed decreases when reaches to the highest point. First the speed of the skater increases due to moving in the direction of gravity while on other hand, the speed of the skater decreases due to movement of skater against the gravity of earth.
When a normal cell undergoes mitosis it produces two, identical cells that are clones of the “mother” cell. How is that different from what sex cells do when they undergo meiosis?
Answer:
when a sex cell undergoes meiosis, it producs two haploid cells each having half the chromosome number of the "mother" cell
Pelvic inflammatory disease (PID) is also a risk factor for ectopic pregnancies, in which a fertilized egg implants outside the uterus. Explain the connection between PID and ectopic pregnancies. - Inflammation resulting from PID can accelerate the development of the fertilized egg, so that it is able to implant sooner before reaching the uterus. - PID damages the ciliated epithelium lining the uterine tubes, making it more difficult for the fertilized egg to reach the uterus. - Fertilized eggs are more likely to implant in the uterine tubes that are inflamed because of the extensive blood supply. - PID causes scarring of the uterine tubes, which can obstruct the passage of a fertilized egg to the uterus where it would normally be implanted.
The connection between pelvic inflammatory disease (PID) and ectopic pregnancies is that PID can damage the ciliated epithelium lining the uterine tubes, making it more difficult for the fertilized egg to reach the uterus. Additionally, PID can cause scarring of the uterine tubes, which can obstruct the passage of a fertilized egg to the uterus where it would normally be implanted.
PID is an infection of the reproductive organs, typically caused by sexually transmitted bacteria. Inflammation resulting from PID can damage the ciliated epithelium lining the uterine tubes, impairing their ability to move the fertilized egg toward the uterus. This increases the risk of the fertilized egg implanting in the fallopian tubes or other locations outside the uterus, resulting in an ectopic pregnancy.
Furthermore, PID can cause scarring of the uterine tubes, creating physical obstructions that prevent the fertilized egg from reaching the uterus, leading to an increased likelihood of ectopic pregnancies. Therefore, the correct answer is that PID causes scarring of the uterine tubes, which can obstruct the passage of a fertilized egg to the uterus where it would normally be implanted.
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What produce the type iii secretion system virulence factor?
Answer:
The genes encoding several type III secretion systems reside on pathogenicity islands, which are inserted DNA segments within the chromosome that confer upon the host bacterium a variety of virulence traits, such as the ability to acquire iron and to adhere to or enter host cells.
s achieved when there is an equal concentration of water and electrolytes inside and outside the body's cells. 2. Charged ions such as sodium, potassium, and chloride are called . 3. The feeling of dry mouth experienced during dehydration is part of the body's . 4. The process by which water moves in and out of cells from an area of lower concentration of solutes to an area of higher concentration of solutes is called . 5. If you are not consuming enough water, or if you are excreting too much water from your body, can occur. 6. are substances that cause the body to lose water via urine. 7. The liquid that is between cells is called . 8. occurs when the extracellular concentration of sodium is too low.
Answer:
1. Fluid or water balance
2. Electrolytes
3. Thirst mechanism.
4. Osmosis
5. Dehydration
6. Diuretics
7. Interstitial fluid
8. Hyponatremia
Explanation:
1. Fluid or water balance is achieved when there is an equal concentration of water and electrolytes inside and outside the body's cells. The thirst mechanism of the body serves to maintain fluid balance of the body state by ensuring that enough fluid is consumed to allow for an equal concentration of electrolytes between the intracellular and extracellular fluid compartments.
2. Charged ions such as sodium, potassium, and chloride are called electrolytes. They are the molecules which help the body to maintain fluid balance when they are pumped in or out of the cell.
3. The feeling of dry mouth experienced during dehydration is part of the body's thirst mechanism.
4. The process by which water moves in and out of cells from an area of lower concentration of solutes to an area of higher concentration of solutes is called osmosis.
5. If you are not consuming enough water, or if you are excreting too much water from your body, dehydration can occur.
6. Diuretics are substances that cause the body to lose water via urine.
7. The liquid that is between cells is called interstitial fluid.
8. Hyponatremia (low sodium concentration) occurs when the extracellular concentration of sodium is too low. It can occur when too much water is consumed over a short period of time, or it can occur due to sodium loss from the body due to kidney diseases.
which product of aerobic cellular respiration could not form in an anaerobic environment
A.) ATP
B.) Acetyl CoA
C.) Carbon Dioxide
D.) Water
where is wind energy taken from
Answer:
The sun's uneven heating of the atmosphere, changes in the earth's temperature, and the earth's rotation all contribute to wind. Wind flow patterns are influenced by mountains, bodies of water, and plants. Wind turbines work by spinning propeller-like blades around a rotor to turn wind energy into electricity.
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