Answer:
The correct option is A) Butterflies that express two variants of the enzyme are active over a greater range of temperature.
Explanation:
The butterflies which fly most effectively at 29 degrees Celsius produce one type of variant for the particular glycolytic enzyme in the flight muscles. Whereas the butterflies which fly at 40 degrees Celsius produce anther type of variant for the particular glycolytic enzyme in the flight muscles.
The butterflies which are effective at both temperatures i.e 29 degrees Celsius and 40 degrees Celsius can produce both forms of the variant for the particular glycolytic enzyme in the flight muscles.
Butterflies who inhabit a wide range of temperatures need to produce enzymes that improve their flight. The correct option is 1. Butterflies that express two variants of the enzyme are active over a greater range of temperature.
-----------------------
We know that different variants of the enzyme are optimally active at different temperatures. So there must be an enzymatic variant per temperature or temperature range.
Some individuals of the population live in areas where the temperature is 29ºC, so they produce one type of enzyme. These individuals can fly at 29ºC but not at 40ºC.
Some other individuals live under 40ºC temperature, synthesizing another variant of the enzyme. These individuals can fly at 40ºC but not at 29ºC.
Since this is the same population, there must be individuals who can fly at both temperatures. This is the third group of butterflies.
These individuals are equally active at both temperatures, meaning they can fly at 29º and 40ºC. So they need to have two variants of enzymes that make them good at flight. The one needed to fly at 29ºC, and the other enzyme needed at 40ºC.
1) Butterflies that express two variants of the enzyme are active over a greater range of temperature.
This is correct. These butterflies need both variants of the enzyme to fly at both temperatures, covering a wider range.
2) Butterflies that are active over a wide range of temperatures produce greater amounts of the enzyme.
This is not correct. Independently of the amount of enzyme, they need the two variants to express a good flight at both temperatures.
3) Temperature has little effect on the activity of butterflies.
This is not correct. Temperature influences the butterflies. This is a limiting factor for individuals.
4) Butterflies that are active at warmer temperatures produce more offspring.
This is not correct. According to this information, we can not know which butterfly produce more offspring.
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Solution exposure to air and light with the manual processing technique can be avoided by using a:
A. Thermometer
B. Tank cover
C. Timer
D. Stirring rod
Answer:
Answer is B. Tank cover.
Explanation:
A tank can be described as a container,usually large, but sometimes small, which is used to house gases and liquids.
A cover , which can also be referred to as a lid, serves a role as a closure or seal.
The use of a tank cover will prevent the solution from being exposed to air or light.
Region of the brain lying below the thalamus; secretes factors and hormones that affect the pituitary gland is called_________.
Answer: Hypothalamus
Explanation:
The Hypothalamus is the main coordinating and control center for the autonomic nervous system. it plays important role in homeostasis, and is FOUND JUST BELOW the Thalamus.
Also, it controls the secretion of hormones from the pituitary gland.
The Hypothalamus, alongside Thalamus, olfactory lobes and Cerebrum make up the FORE-BRAIN.
Which of the following water supplies would be affected directly by groundwater contamination?
A. lakes
B. wells
C. rivers
D. streams
B.) Wells since the purpose of wells is to retrieve water from underground
The source of water that would be most affeceted by the contamination of the ground water are the wells.
What is ground water?The term ground water refers to water that is under the ground, stored in underground aquifers. These underground water sources are commonly used to recharge wells.
The source of water that would be most affeceted by the contamination of the ground water are the wells.
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What is the correct definition of antibodies?
A. substances that send the immune system into action
B. special white blood cells in the lymph
C. proteins that attach to antigens, keeping them from harming the body
D.medicines that kill bacteria in the body
Answer: The answer is C
Explanation:
Antibodies or otherwise called Immunoglobulin are special protein that are produced by certain lymphocytes which produces antibodies which can affect the invading bacteria or other foreign bodies called the antigens or other toxins in a number of ways . Certain antibodies known as agglutinins make bacteria harmless by causing them to clump together. The lysins dissolve the outer coats of bacteria, the antitoxin neutralize the toxin of bacteria while precipitins precipitate the toxin as insoluble and therefore , convert them to a harmless compound. Antibodies are always produced by the immune system.
A protective protein called an antibody, also known as immunoglobulin, is created by the immune system in reaction to the presence of an antigen, a foreign substance, hence option C is correct.
What is the function of antibodies?Antibodies are able to identify and attach to antigens, removing them from the body.
The production of a vast number of protective proteins that search the body for any signs of the antigen. A foreign substance that penetrates your body is known as an antigen.
This can include allergens, bacteria, viruses, fungus, venom, and other different types of toxins. Your immune system makes an antibody protein to go after and combat these pathogens.
Theretofore, B cells and antibodies perform one of the immune system's most crucial tasks, namely the recognition of an invasive antigen.
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While traveling through the rain forest of Peru, you are introduced to a rare and exotic plant. You discover that it contains a toxin that blocks the reabsorption of sodium ions from the proximal tubule. If administered, what affect would this toxin have on the reabsorption of glucose? While traveling through the rain forest of Peru, you are introduced to a rare and exotic plant. You discover that it contains a toxin that blocks the reabsorption of sodium ions from the proximal tubule. If administered, what affect would this toxin have on the reabsorption of glucose?
A. The toxin would significantly decrease the amount of glucose reabsorbed.
B. The toxin would significantly decrease the amount of glucose in the filtrate.
C. The toxin will have no effect on the reabsorption of glucose.
D. The toxin would significantly increase the amount of glucose reabsorbed.
Answer:
The correct answer is statement A.
Explanation:
Glucose, NaCl, NaHCO3, amino acids, and other organic molecules are reabsorbed through a particular transport system in the early proximal tubule known as a proximal convoluted tubule. The prime function of the proximal convoluted tubule is to perform selective reabsorption of water, glucose, peptides, and other nutrients from the tubule back into the blood.
Thus, if the toxic possesses the tendency to prevent the reabsorption of sodium ions then it will also possess the tendency to prevent the reabsorption of glucose by the proximal convoluted tubule.
What are the potential pros and cons of having a test to see if you have the BRCA gene done
Answer:
Some advantages of genetic testing include:
A sense of relief from uncertainty
Reduce the risk of cancer by making certain lifestyle changes if you have a positive result
In-depth knowledge about your cancer risk
Information to help make informed medical and lifestyle decisions
Opportunity to help educate other family members about potential risk
Earlier detection, which increases the chance of a successful outcome.
Explanation:
Some disadvantages, or risks, that come from genetic testing can include:
Testing may increase anxiety and stress for some individuals
Testing does not eliminate a person’s risk for cancer
Results in some cases may return inconclusive or uncertain.
Testing for the BRCA gene has potential benefits, such as personalized medical care and early cancer detection, but also cons like psychological distress and ethical dilemmas regarding family planning.
The pros and cons of testing for the BRCA gene, which is associated with increased risks of breast and ovarian cancer, can be significant. One of the clear pros is that test results can be extremely useful in guiding medical care. For instance, if a person is found to have a mutation in the BRCA1 or BRCA2 gene, they can undergo more frequent and earlier cancer screenings, like a Breast MRI, which can lead to early detection and more treatable stages of cancer.
Among the potential cons, knowing one's genetic information can bring emotional and psychological discomfort, as the knowledge of a higher risk for cancer can be daunting. Additionally, there are important ethical considerations; for example, the knowledge may impact someone's decision about having children. High-profile cases, such as that of actress Angelina Jolie, have sparked public discussion about the choices surrounding BRCA testing and subsequent preemptive medical procedures like mastectomy or oophorectomy to reduce cancer risk.
Designing and constructing buildings that are energy efficient, economical, and made of recycled materials, is a trend called
A.friendly construction.
B.green architecture.
C.environmental building.
D.passive design.
E.ecology construction.
Answer:
B.green architecture.
Explanation:
Green architecture or green design is a philosophy whose goal is to build buildings that minimize the harmful effects on the environment by using sustainable energy sources and using recycled materials and eco-friendly construction techniques.
I hope you find this infromation sueufla nd interesting! Good luck!
The base height of the dingdong plant is 10 cm. Four genes contribute to the height of the plant, and each dominant allele contributes 3 cm to height. If you cross a 10 cm plant (quadruply homozygous recessive) with a 34 cm plant, how many phenotype classes will there be in the F2?
There will be 5 phenotype classes in the F2 generation.
Explanation:To determine the number of phenotype classes in the F2 generation, we need to consider the possible combinations of alleles from the parent plants. The quadruply homozygous recessive plant has 4 recessive alleles, while the 34 cm plant is a result of 4 dominant alleles. Each dominant allele contributes 3 cm to the plant's height. When the plants are crossed, the F1 generation will be heterozygous with 2 dominant and 2 recessive alleles.
In the F2 generation, the possible genotype combinations are as follows: 1 plant with 4 dominant alleles (34 cm), 4 plants with 3 dominant alleles (31 cm), 6 plants with 2 dominant alleles (28 cm), 4 plants with 1 dominant allele (25 cm), and 1 plant with 0 dominant alleles (22 cm). Therefore, there will be 5 phenotype classes in the F2 generation.
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Process that moves any material from high concentration to low concentration is called ??
Answer:
diffusion
Explanation:
Diffusion is the process that transports materials from a high-concentration area to a low-concentration area.
This fundamental mechanism controls the spontaneous movement of ions, molecules, and even gasses as they attempt to reach an equilibrium state. Substances travel along their concentration gradient during this process, propelled by particles' innate propensity to disperse and reach a balanced distribution. In biological systems, diffusion is pervasive and essential to many activities, including gas exchange in the lungs and food absorption in cells. Furthermore, it transcends the boundaries of biology, influencing physics and chemical phenomena, demonstrating its universal significance in comprehending the normal movement and distribution of matter.
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A tree community consists of 4 maples, 3 oaks, and 1 alder. The species richness of this community is:________.A. 0.42.B. 0.97.C. 1.5.D. 3.
Answer:
D (3)
Explanation:
Species richness is the number of different species within an ecological community, area, ecosystem or sample etc. It is the numerical characteristics of an ecosystem. Species richness is a measure of the variety of species and it is done by counting the number of different species in that given region. Species richness does not take into consideration the abundance of the different species or how widely distributed they are.
In this case, a tree community is involved. The community consists of three different tree species: Maple, Oak, and Alder. Hence, the species richness is simply the number of different species in the tree community, which is three(3).
Earth formed about __________ years ago, and the oldest known living organisms date to __________ years ago.
A. 4.6 billion years ago ... 3.5 billion years agoB. 6,000 years ago ... 6,000 years agoC. 13.7 billion years ago ... 4.6 billion years agoD. 3.9 million years ago ... 2.0 billion years ago
Answer:
The answer is A.
Explanation:
According to the researchs and studies, the earth formed about 4.54 billion years ago and the oldest known living organism date to around 3-3.5 billion years ago which are the first bacteria that formed in the water.
I hope this answer helps.
Earth was formed about 4.6 billion years ago and the oldest known living organisms are believed to date back to about 3.5 billion years ago.
Explanation:The Earth formed about 4.6 billion years ago. This is established based on scientific research and evidence gathered from various fields like Geology and Astrophysics. The oldest known living organisms on Earth are believed to date back to about 3.5 billion years ago. The evidence of life from this period comes from the discovery of fossilized microorganisms.
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Water found in animal and human cells is most often found in the phase of matter, and oxygen is found in the phase of matter.
Answer:
Water inside a Cell an animal cell- About 60% of the total mass of a animal body is made up of water molecules. As inside the animal body water is found in two different forms of matter basically in the form of the liquids and solid. As in form of liquid water is basically providing medium for transportation different materials inside the animal body. And in the form of solid acting as a part of the organs structure inside the body.
Explanation:
While in blood and urine water exists in the form of liquid inside an animal body.
The oxygen in lungs exists in the form of gas. As we inhale oxygen in form of gas. Oxygen then binds with other molecules to form certain macro molecules to perform different functions inside an animal body.
Water is commonly found in a liquid state in animal and human cells, supporting various life processes. Oxygen is typically found as a gas, essential for energy production in cells.
Explanation:In living organisms like humans and animals, water is most commonly found in the liquid state. Water is a critical nutrient and is the largest component of cells, blood, and the fluid between cells. Water makes up about 70 percent of an adult's body mass, and its chemical properties make it integral to all living processes.
On the other hand, oxygen is usually found in a gaseous state within the body. As a gas, oxygen diffuses across cell membranes to be used in metabolic processes, particularly in the production of energy via cellular respiration.
Therefore, water is most often found in the liquid phase, and oxygen is most often found in the gaseous phase in animals and human cells.
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Given the findings in the passage, which additional result most strongly indicates that the TGFBR1 and TGFBR2 receptors regulate TGFβ-dependent epithelial proliferation?
Final answer:
The activation of the MAP-kinase cascade strongly indicates that the TGFBR1 and TGFBR2 receptors regulate TGFβ-dependent epithelial proliferation.
Explanation:
The additional result that most strongly indicates that the TGFBR1 and TGFBR2 receptors regulate TGFβ-dependent epithelial proliferation is the activation of the MAP-kinase cascade, resulting in cellular metabolism. The MAP-kinase cascade is a signaling pathway that controls cell growth and division.
When TGFβ binds to its receptors (TGFBR1 and TGFBR2), it activates the MAP-kinase cascade, which ultimately leads to the regulation of cell proliferation.
African immigrants living in London neighborhoods were more likely to be diagnosed with schizophrenia if they lived in a predominantly White neighborhood than if they lived in a primarily non-White neighborhood (Boydell et al., 2001). According to the text, what do these findings suggest?
These findings suggest that social environment and ethnic density influence the likelihood of schizophrenia diagnosis among African immigrants in London.
The findings from Boydell et al. (2001) suggest that the social environment significantly influences the mental health of African immigrants. This specific study indicates that African immigrants living in predominantly White neighborhoods in London had higher rates of schizophrenia diagnoses compared to those living in predominantly non-White neighborhoods.
This disparity can be interpreted through several lenses:
1. Social Isolation and Stress: African immigrants in predominantly White neighborhoods may experience higher levels of social isolation and stress due to feeling like outsiders or experiencing discrimination. This increased stress can contribute to the onset or exacerbation of mental health issues, including schizophrenia.
2. Cultural Incongruence: Living in an environment where one's cultural background is not well represented or understood can lead to feelings of alienation and decreased social support. This lack of cultural congruence and support may negatively impact mental health.
3. Discrimination and Racism: Predominantly White neighborhoods might also expose African immigrants to higher levels of overt or covert racism and discrimination, which are known risk factors for various mental health disorders, including schizophrenia.
4. Diagnostic Bias: There may also be a bias in diagnosis, where mental health professionals in predominantly White areas might be more likely to diagnose schizophrenia in African immigrants due to cultural misunderstandings or stereotypes.
Matthias wants to dissolve a solid sample of calcium chloride (CaCl2), which is an ionic compound.
Which solvent will dissolve the sample of calcium chloride?
Answer:
Option D, • Water, a polar solvent
Explanation:
Please see the attachment
The nuclear membrane's role in the regulation of gene expression involves _____. The nuclear membrane's role in the regulation of gene expression involves _____. protein activation translation protein degradation regulating the transport of mRNA to the cytoplasm RNA processing
Answer:
regulating the transport of mRNA to the cytoplasm
Explanation:
In eukaryotes, the process of transcription occurs in the nucleus while ribosomes are present in the cytoplasm or on the surface of the rough endoplasmic reticulum. Therefore, the mRNA should leave the nucleus and enter the cytoplasm to serve in the process of protein synthesis. The nuclear envelope contains the nuclear pore complex (NPC). The nuclear pore complex includes several specific nucleoporins embedded in the nuclear envelope.
The NPC serves as the passageway for the transport of mRNA molecules to the cytoplasm. The mature mRNA binds to specific exporter proteins in the nucleus and forms ribonucleoprotein particles that are allowed to pass through the nuclear pore complex.
The middle and carboxyl domain of mRNA exporter binds to the phenylalanine-glycine (FG) repeats in FG nucleoporins to facilitate the mRNA transport. Therefore, the transport of mRNA from the nucleus to the cytoplasm is regulated by the nuclear pore complex. This is how the nuclear membrane is involved in the regulation of gene expression.
Acetylcysteine may be used as a mucolytic agent. What is an additional indication for the drug?
Answer:
Apart from the role as mucolytic agent( breakdown of mucus in cystic fibrous and chronic obatructive pulmonary diseases (COPD)
IT CAN BE USED TO TREAT OVER DOSE OF PARACETAMOL.
Explanation:
It performs this role by increasing the availability of antioxidant GLUTATHIONE.The latter neutralizes the toxic effect that paracetamol over dose would produce in the blood plasma.
In a gasoline engine, the area in the cylinder head where the air-and-fuel mixture is burned is called the
A. intake valve.
B. cylinder.
C. piston.
D. combustion chamber.
Answer:
The awnser is d hope it helps
Explanation:
the cumbustion chamber is a fire chamber
Answer: combustion chamber
The center of the retina is a pit called the ____________ . The cells that are photoreceptors (detect color) are ____________ . In low light conditions, only rods are activated, and visual acuity is best in the ____________ of the eye. In bright light conditions, visual acuity is best when light is focused on the ____________ of the eye. A single ganglion cell outside of the fovea receives input from ____________ rod(s). Each cone synapses with ____________ ganglion cell(s).
Answer:
The center of the retina is a pit called the fovea centralis The cells that are photoreceptors (detect color) are cones
In low light conditions, only rods are activated, and visual acuity is best in the Corners(as peripheral vision)of the eye.
In bright light conditions, visual acuity is best when light is focused on the center of the macula of the eye.
A single ganglion cell outside of the fovea receives input from _Multiple rod(s). Each cone synapses with one ganglion cell(s).
The fovea is the center of the retina. Photoreceptors, which detect color, are known as cones. In low light, visual acuity is best in the eye's periphery, while in bright light it is best when focused on the fovea.
Explanation:The center of the retina is a pit called the fovea. The cells that are photoreceptors (detect color) are cones. In low light conditions, only rods are activated, and visual acuity is best in the periphery of the eye. In bright light conditions, visual acuity is best when light is focused on the fovea of the eye. A single ganglion cell outside of the fovea receives input from multiple rods. Each cone synapses with one ganglion cell.
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Bile salts are synthesized from cholesterol and are used for the emulsification of dietary lipids. What is the primary fate of bile salts during digestion?
-They are reabsorbed in the ileum
-They are excreted in the feces
-They are digested by pancreatic lipase
-They are packaged into chylomicrons
Answer:
The correct answer is ''They are reabsorbed in the ileum.''
Explanation:
Bile salts are the fundamental constituent of bile, solubilizing dietary lipids so that they can be absorbed. Bile salts are the main products of cholesterol degradation and are poorly absorbed by passive diffusion in the proximal portion of the small intestine and most of the intestinal bile salts are reabsorbed in the terminal ileum, which actively absorbs 90 % of bile salts to the portal venous circulation, which returns them, again, to the hepatocytes that conjugate and excrete, again, the bile into the gallbladder. Bile salts circulate through this pathway from the liver to the intestine and again to the liver (enterohepatic circulation) between 10 and 12 times a day.
A power lifter has been advised by his coaches that he needs to lose some weight while still maintaining his rigorous training schedule. When evaluating this athlete's diet, which macronutrient will likely need to be monitored closely and possibly limited?A. FatB. CarbohydrateC. ProteinD. Water
Answer:
A. Fat
Explanation:
An athlete Fat intake should be between 20-35% of total everyday calories. A 10% of fat intake each from monounsaturated sources, polyunsaturated sources and saturated fat.
Excess weight can have varying negative effects on a athlete body, which ranges from increase in heart rate to high oxygen consumption, body temperature during exercise will increase, followed by high energy usage and a rise in the bones and joints pressure.
Note:
A power lifter with a lower body weight has improved rate of endurance, coupled with a rise in speed and strength when compared with a power lifter with a higher body weight
According to the theory of endosymbiosis, the origin of chloroplasts probably involved:_______
a) the formation of colonies of cyanobacteria.
b) the formation of cell walls around the photosynthetic pigments.
c) engulfing of small photosynthetic prokaryotes by a larger cell.
d) the accumulation of free oxygen in ocean waters.
e) infolding of the cell membrane around circular pieces of DNA in the cytoplasm.
Answer: Option C
Explanation:
Engulfing of the small photosynthetic by a larger cell. The theory of the endosymbiotic states that the ingested bacteria and the host cell can easily become dependent on each other for the survival which results in the permanent relation.
Over millions of year, the mitochondria and the chloroplast have become more specialized and they cannot live outside the cell.
Hence, the correct answer is option C
When a substance abuse treatment program is acquired by another program, what is the the next course of actions?
When a substance abuse treatment program is acquired by another program, the next course of action is that if any patients refuse consent to transfer, those records maybe destroyed or retained in compliance with the statue of limitations
Explanation:
The Substance Abuse Confidentiality Regulations devised by the Substance Abuse and Mental Health Services Administration provides confidentiality to the patients undergoing a treatment program for substance abuse.
Under this regulation, section 2.19 details and sets forth rules to follow when a program is acquired by another program.
This states that the program must either purge the identifying details of the patient from its records or destroy it until or unless the patient consents for the transfer of details or information in the records.
This condition can be exceptional in compliance with the statute of limitations and the records can be retained, like in case of any legal requirements .
Describe the relationship and movement between Temperature and Density in a convection cell. Make sure you identify the direction of travel.
Answer:
There is an inverse correlation.
Explanation:
A convection cell can be described as an area of which it's boundries can be stated where two substances either fluid or gas can move due to the temperature changes.
Temperature and density in a convection cell have a relationship which is inversely correlated meaning that if the temperature increases, the density decreases and the matter which has a higher temperature and also lower density moves towards the part with the greater density. The direction of travel of the warmer substance is upwards and vice versa.
The mantle of the earth or the atmospheric movements between the land and the sea can be given as examples to convection cells.
I hope this answer helps.
What is the difference between a triglyceride and a phospholipid
Triglycerides and phospholipids differ in structure and function. Triglycerides are fats used for energy and composed of glycerol and three fatty acids. Phospholipids, with a glycerol, two fatty acids, and a phosphate group, are major components of cell membranes.
Explanation:The main difference between a triglyceride and a phospholipid lies in their structure and function in the body. A triglyceride is a type of fat that the body uses for energy. It consists of a glycerol molecule and three fatty acids. On the other hand, a phospholipid is a major component of the cell membrane. It has a glycerol backbone, two fatty acids, and a phosphate group.
The distinctive feature of a phospholipid is its amphipathic nature, which means it has a hydrophilic (water-attracting) head and a hydrophobic (water-repelling) tail. This characteristic allows phospholipids to form a bilayer, making up the bulk of the cell membrane, and enabling the barrier function of cell membranes.
Meanwhile, triglycerides are important in the body's energy metabolism. Stored in fat cells, the body breaks down triglycerides to provide energy when needed. High levels of triglycerides in the blood can, however, be a risk factor for heart disease.
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Triglycerides are simple lipids composed of glycerol and fatty acids, while phospholipids are complex lipids that contain a phosphate group. Triglycerides are hydrophobic and nonpolar, whereas phospholipids have both hydrophobic and hydrophilic regions.
Explanation:A triglyceride is a type of simple lipid formed from glycerol and fatty acids, while a phospholipid is a type of complex lipid that contains a phosphate group.
Triglycerides have three fatty acids attached to a glycerol backbone, making them hydrophobic and nonpolar. In contrast, phospholipids have two fatty acids attached to glycerol, with the third binding site occupied by a modified phosphate group, making them amphipathic with both hydrophobic and hydrophilic regions.
For example, a phospholipid like phosphatidylcholine has a hydrophobic tail composed of fatty acids and a hydrophilic head consisting of a charged phosphate group and a nitrogen atom.
All EXCEPT which of the following statements are evidence that DNA, and not protein, is the genetic material in eukaryotes as well as bacteria
The question is incomplete as it does not have the options which are:
UV light is most mutagenic at a wavelength at which DNA and RNA strongly absorb. DNA has four nucleotides. Introduction of a cloned DNA into another organism results in the production of the corresponding protein product. DNA is located only where the primary genetic function is known to occur.Answer:
DNA is located only where the primary genetic function is known to occur.
Explanation:
DNA acts as the genetic material of almost all living organisms on Earth except few viruses which contains RNA as their genetic material.
Since it is not necessary that the DNA is present only at the site where its function is known is incorrect as DNA is found in every cell of the multicellular organism and in a unicellular organism. It is the expression of the specific genes which the cell acquire during the differentiation.
All other provided option except the selected options is evidence of the DNA as the genetic material.
The experiments of Martha Chase and Alfred Hershey in 1952 provided evidence that DNA, and not protein, is the genetic material in eukaryotes and bacteria.
Explanation:The experiments conducted by Martha Chase and Alfred Hershey in 1952 provided strong evidence that DNA, and not protein, is the genetic material in eukaryotes as well as bacteria.
Chase and Hershey studied a bacteriophage virus that infects bacteria and labeled the DNA and protein of the virus with different radioactive isotopes.
They found that only the DNA, and not the protein, was passed on to the next generation of virus particles, confirming that DNA is the hereditary material.
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An individual recovers from the common cold, which is caused by rhinovirus A. The person then becomes infected with the avian influenza virus, which causes the bird flu. Which statement best describes what will most likely happen to this person?
Answer: what will most likely happen to this person is that He will have the symptoms of the bird flu because he is not immune to the avian influenza virus.
Explanation: rhinovirus A is the virus that causes common cold and is different from the virus that cause bird flu which is called avian influenza virus. Although common cold is a symptom of the bird flu disease, he will still show signs of it since he is not immune to the avian influenza virus.
The pancreas is responsible for the elimination of 95% of ingested alcohol from the body through metabolism.
Answer:
FalseExplanation:
The human body mechanisms try to excrete out the ethanol from the body before it gets circulated in the body through blood. The body does so by converting the ethanol to certain metabolic products which get filtered and excreted out through urine.
The metabolism of alcohol takes place in the liver in two steps- Ethanol is converted to acetaldehyde by the alcohol dehydrogenase enzyme. The acetaldehyde is toxic to cells and is the compound responsible for the hangover after drinking.
The acetaldehyde is then converted to acetic acid by an enzyme called acetaldehyde dehydrogenase. The acetic acid through respiration gets converted to water and carbon dioxide and rest is excreted out through urine.
Thus, the liver is the organ responsible for the metabolism of ethanol and not pancreas.
Which of the following best describes energy balance? a. Calorie intake is constant, but calorie output decreases b. Calorie intake increases and exceeds calorie output c. Calorie intake and calorie output both increase at the same rate d. Calorie intake increases and calorie output decreases e. Calorie intake equals calorie output
Answer:
E. Calorie intake equals calorie output
Explanation:
according to the law of thermodynamics, energy can neither be created nor destroyed. thus every energy taken in must be accounted for.
We convert potential energy that’s stored within our food (measured in Calories or kcals) into three major “destinations”: work, heat and storage.
conclusively, energy intake must equal energy output.
The following best describes energy balance - e. Calorie intake equals calorie output.
Energy balanceThe relationship between energy input that includes calories consumed through food and drink we consume to an energy output that is calories used by the body for our energy requirements being equal, is called an energy balance.
This energy balance dictates whether weight is lost, gained, or remains the same. Positive energy balance occurs when energy intake is greater than energy expenditure and negative energy balance is when intake is less than expenditure.
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Organisms can adapt to cold temperatures by increasing the amount of unsaturated fatty acids in their membranes, which help maintain fluidity as temperatures decrease.
A. True
B. False
Answer:
Answer is A. True.
Explanation:
Organisms have developed an adaptive property which will enable them to adapt to cold temperature, through increase in their membranes fatty acid. This process allows them to keep the liquid-crystalline sate of their cell membranes at a cold temperature. This process is known as the homeoviscous adaptation.
This process is done by organisms especially the mammals to maintain functional membrane phenotypes.
Final answer:
True, organisms indeed adapt to cold by increasing unsaturated fatty acids in membranes to maintain fluidity, essential for proper cell function and survival in such environments.
Explanation:
The statement that organisms can adapt to cold temperatures by increasing the amount of unsaturated fatty acids in their membranes, which help maintain fluidity as temperatures decrease, is true. Unsaturated fatty acids contain kinks due to double bonds in their hydrocarbon tails, which prevent the molecules from packing too closely together. This spacing allows for greater fluidity in the cell membrane, especially crucial in cold environments where saturated fatty acids press against each other, forming a rigid structure. Adaptation to cold environments is essential for maintaining membrane fluidity, preventing rupture, and ensuring the proper function of the cell. Examples include poikilothermic organisms like fish, which increase their cell membrane's unsaturated fatty acid content in response to lower temperatures, maintaining the necessary fluidity for survival.