A loosely bound aggregation of several tens or hundreds of atoms, ions (electrically charged atoms), or molecules, forming a colloidal particle
one of a number of ultramicroscopic particles dispersed through some continuous medium
What are Micelles ?Globular or roughly spherical structure composed of organic molecules so their nonpolar ends are oriented toward the interior of the aggregate and the polar ends are oriented away from the interior.
Soaps and detergents form micelles when temperatureis above Kraft temperature and concentration is above critical micelle concentration (CMC). For soaps, CMC is about 10−4 to 10−3 M.Micelles are composed of hydrophobic and hydrophilic components assembled into nanosized spherical, ellipsoid, cylindrical, or unilamellar structures.Learn more about Micelles here:
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What was the significance of the radioactive isotopes Hershey and Chase chose?
A. Both sulfur and phosphorus are found in large amounts in DNA.
B. Both sulfur and phosphorus are found in large amounts in proteins.
C. Phosphorus is abundant in DNA, while sulfur is abundant in protein.
D. Phosphorus is abundant in protein, while sulfur is abundant in DNA.
The significance of the radioactive isotopes Hershey and Chase chose is that C. Phosphorus is abundant in DNA, while sulfur is abundant in proteins.
What is the relative importance of the experimental procedure by Hershey and Chase?The relative importance of the experimental procedure by Hershey and Chase is based on the fact that they found which of these biomolecules (i.e. DNA or proteins) represents the genetic material in the organisms which is inherited across generations in order to shape the phenotypic features of the species. This experiment is based on the use of radioactive isotopes that were incorporated into the biomolecules.
Therefore, with this data, we can see that the relative importance of the experimental procedure by Hershey and Chase is founded on the observation that DNA is the genetic material inherited across generations in order to shape traits.
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How do psychiatrists assess patients?
Psychiatrists are medically trained professionals who help diagnose, treat, and prevent mental disorders.
A medical professional who practices psychiatry is known as a psychiatrist and psychiatry is that branch of medicine which majorly focuses on the diagnosis, prevention as well the treatment of a number of mental illnesses or disorders like anxiety disorders, bipolar disorders, depressive disorders, stress disorders etc.
A psychiatrist is a doctor who can perform mental as well as physical examinations on a patient. These examinations are very important to diagnose the disease and also for the prescription of personalized medicine to avoid any side effects. The psychiatrist provides treatment either in the form of non-medicinal assistance like counselling or through medications.
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(Describe what scientific principles and other relevant knowledge might limit the possible solutions such as(the lifespan of the California condor, the mating habits of the condor, the ecology of the habitat, how to duplicate the habitat in a reserve, what laws needed to be approved and enforced, how did human behavior need to change.
The scientific principles and other relevant knowledge that may limit the possible solutions for the California condor include:
The lifespan of the California condor: The natural lifespan of a California condor is typically around 60 years, which may limit the ability to repopulate the species through captive breeding programs.
The mating habits of the condor: California condors have a very low reproductive rate, with females only breeding every 2-3 years. This may limit the potential for population growth.
The ecology of the habitat: The California condor's natural habitat is limited to specific regions of the western United States and Mexico. Understanding the specific ecological needs of the condor, such as food sources and nesting sites, is crucial for any conservation efforts.
How to duplicate the habitat in a reserve: In order to create a successful reserve for the California condor, it is necessary to replicate the natural habitat as closely as possible. This requires a detailed understanding of the ecology of the species' natural habitat.
Laws needed to be approved and enforced: Conservation efforts for the California condor require laws and regulations to protect the species and its habitat. These laws need to be approved and enforced in order to be effective.
Human behavior needs to change: Human activities, such as hunting, pollution, and habitat destruction, have contributed to the decline of the California condor population. Changing human behavior is essential for the conservation of the species.
What is captive breeding program?Captive breeding programs are efforts to breed and raise certain species of animals in captivity, with the goal of preserving the species, increasing its population, or reintroducing it to the wild.
These programs are often used for endangered or threatened species that are at risk of extinction in the wild. They can be run by zoos, wildlife parks, conservation organizations, or government agencies. The breeding programs can also be used for research, education, and veterinary care.
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What is the incentive for producers?
A higher price for a good or service creates an incentive for buyers to buy less of that good or service and for producers to produce or sell more of it.
When the price of goods and services falls, it creates an incentive for buyers to buy more of those goods and services and for producers to produce or sell less of them. Price-based incentives are economic factors that motivate and persuade buyers to take action and complete purchases.
Special pricing allows users to get financial benefits on their purchases. Incentive function of the price mechanism
Manufacturers offer more products because they offer opportunities to generate more revenue and profits. The price increase incentive function is associated with increasing supply along the existing supply curve.
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Esther was on the YMCA diving team. She was on the 30 meter platform preparing to do a dive. If Esther's mass was 50 kg and she hit the water with a force of 980 N, what was her acceleration?
The acceleration of Esther on the YMCA was found to be about 19.6 m/s^2
What are the three acceleration laws?
Unless pushed upon by a force, every item travels in a straight line. An object's acceleration is directly proportional to the net force applied and inversely proportional to the object's mass. There is an equal and opposite reaction to every action.
In basic terms, what is acceleration?
Acceleration is the rate at which velocity varies over time, both in terms of speed and direction. A point or object travelling in a straight path is accelerated if it accelerates or decelerates. Even if the speed is constant, motion on a circle is accelerated because the direction is constantly changing.
as per the formula F=ma
then this formula was rewritten as a=F/m
where m= mass = 50Kg
F= force exerted =980N
acceleration (a) = 980/50
a =19.6 m/s^2
The acceleration of Esther on the YMCA was found to be about 19.6 m/s^2
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Proteins with all essential amino acids are found primarily in ______-based foods.
Meat, dairy products, nuts, and some grains and legumes are good sources of protein in your diet. Complete proteins can be found in meat and other animal products.
Which foods made of plants have all nine necessary amino acids?In East Asian cuisine, tofu, tempeh, and edamame are all products made from soybeans. Whole sources of protein include soybeans. In other words, they give your body all the critical amino acids it need.
Do mostly animal-based meals have proteins that contain all nine necessary amino acids?Complete proteins are those found in animal products like meat, eggs, and milk because they contain all the essential amino acids our bodies require. The highest-quality sources of protein are found in animal products.
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Where does the second stage of cellular respiaration occur
Which factor given is the most significant agent of erosion?
O acidity
O temperature
O wind
O pressure
Answer:
Wind
Wind also contributes to erosion, such that it moves the soil particles from one place to another. The strong winds or gusts also result in dust storms
How do earthworms spread to new areas?
Earthworms spread slowly in nature, but human activities like planting, earthmoving for construction, and the release of worms used as fishing bait can swiftly introduce them.
Worldwide, earthworms are an invasive species. There are roughly 120 widely spread earthworm species worldwide out of a total of about 6,000 species. These earthworms are peregrine or cosmopolitan. In many places, some of them are invasive species. An earthworm uses two distinct sets of muscles to move. Longitudinal muscles run the length of the body, while circular muscles loop around each segment. The earthworm extends as a result of the circular muscles contracting, growing longer and thinner.
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Which of the following could be performed by a biomechanist?
A. quantitative analysis of human movement
B. qualitative analysis of human movement
C. both A and B
D. none of the above
The following could be performed by a biomechanist correct options is
C. both A and B
The science of biomechanics is crucial for addressing issues with human mobility. Biomechanics is only one of several elements in a kinesiology professional's arsenal related to sport and human movement science.
Measures of the severity of head injuries have been developed as a result of the biomechanical study of automobile accidents. These measurements have been used in biomechanical testing and in the design of numerous types of helmets to avoid brain injuries.
The qualitative analysis of human movement is one of the most crucial abilities of kinesiology specialists, and biomechanics is the key contributor to this talent because it is essentially the science of movement method.
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What is a codon and what is its role in protein synthesis?
A codon is a DNA or RNA sequence of three nucleotides that serves as a unit of genomic information and codes for a specific amino acid or signals the end of protein production.
Any of the 64 distinct DNA sequences of three consecutive nucleotides that either encode information for the creation of a particular amino acid or act as a stop signal to end translation are referred to as codons in genetics (protein synthesis). Adenine (A), guanine (G), cytosine (C), and uracil (U) are the four nitrogenous bases that make up codons (U). The 20 amino acids that make up proteins are specified by 61 of the 64 available codon sequences, while three are stop signals.In the process of protein synthesis, polypeptide chains are created inside of cells using programmed combinations of individual amino acids. A coded sequence, enzymes, and messenger, ribosomal, and transfer ribonucleic acids are necessary for the creation of new polypeptides (RNAs).
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Answer: A codon is a DNA or RNA sequence of three nucleotides
Explanation:
Give an example of a common “parent-daughter” combination.
the passages is downs below
A common "parent-daughter" combination that geologists use is radioactive uranium and non-radioactive lead. As shown in the diagram above, uranium is trapped in a newly formed rock. As the rock ages, more and more of the uranium changes into lead.
The age of the rock in years can be found by measuring the rate at which a parent element decays and then measuring the ratio of parent element to daughter element in the rock. The ages in years of the different geological time periods are found by measuring the absolute ages of many rocks from all of the different periods. The absolute ages of some of the different geologic time periods are shown along the right side of the Staircase of Time.
The steps of the Staircase of Time are drawn to be almost the same size, so you might think that the time periods are the same length, but they are not. The absolute ages of rocks taken from the different time periods have shown that the time periods were of greatly differing lengths. Some were very short, like the Quaternary period (only 2 million years), while others were very long, like the Proterozoic Era (almost 2 billion years). According to absolute-age measurements, an accurate representation of the lengths of the major geologic time periods is shown in the time bar at right.
link: http://www.cotf.edu/ete/modules/msese/earthsysflr/ages.html
A common "parent-daughter" combination that geologists use is radioactive uranium and non-radioactive lead.
What is the "parent-daughter" combination about?The passage that is provided above is discussing a method used by geologists to determine the age of rocks. The method is based on the principle of radioactive decay, which is the process by which an unstable, or radioactive, element changes over time into a stable, or non-radioactive, element.
A common "parent-daughter" combination used by geologists is radioactive uranium (parent element) and non-radioactive lead (daughter element).
Therefore, the passage further explains that the age of different geological time periods can also be found by measuring the absolute ages of many rocks from all of the different periods.
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Narcotics act on the nervous system by producing a?
Answer:
Opioid drugs also disrupt the natural production of norepinephrine and act as central nervous system depressants. Opioids block pain sensations, induce drowsiness, reduce body temperature, and slow heart rate, blood pressure, and respiration functions.
During what phase of mitosis do centromeres divide?
The sister chromatids of each chromosome begin dividing at the anaphase II stage and migrate to the ends of the cell.
Kinetochore microtubule shortening causes separation and migration.
Telophase II precedes Late II.
Anaphase II during meiosis is comparable to anaphase during mitosis. Centromeres appear as contractile regions of chromosomes and play an important role in helping cells break down their DNA during division (mitosis and meiosis). In particular, the area where the cell's spindle fibers attach.
The centromere divides during the late II stage of meiosis II. Thus, during meiosis II, the daughter cell's number of chromosomes remains the same as it was at the beginning of meiosis II or at the end of meiosis I, which is exactly half the number of chromosomes in the original parent and mother cells.
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Why do nonpolar compounds tend to have lower melting points and boiling points than polar compounds?.
Because of their weak van der Waals interactions, non-polar molecules have the lowest melting and boiling points.
What accounts for the higher melting points of polar molecules?Polar molecules can be drawn to the positive and negative regions of nearby polar molecules in the same way that they are drawn to the positive and negative plates in an electric field. Polar compounds thus frequently have melting points that are higher than those of nonpolar ones.
Which factor accounts for the high melting and boiling points of polar molecules?The underlying idea is straightforward: the stronger the noncovalent connections between molecules, the more heat energy is needed to separate them. Stronger materials have higher melting and boiling points.
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How many atoms are there in a 2 moles of oxygen atoms? how many atoms are there in 2 moles of oxygen molecules? group of answer choices.
The number of atoms in 2 moles of oxygen atoms is 1.204 x 10²⁴.
One mole of an element is the number of atoms contained in a substance which totals 6.02 x 10²³ atoms or is the gram weight of the element which is equal to its relative atomic mass (Ar). If there are 2 moles of O₂ atoms then the number of atoms is
Number of atoms = n x L
The number of atoms of O₂ = n x L
The number of atoms of O₂ = 2 x 6.02 x 10²³
The number of atoms of O₂ = 12.044 x 10²³ atoms
The number of atoms of O₂ = 1.204 x 10²⁴ atoms
So, the number of atoms of 2 moles is 1.204 x 10²⁴.
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A single base substitution can occur in the first, second, or third position of a codon. Propose which position the point mutation is most likely to go unnoticed.
Why? Use examples from the codon wheel to support your answer.
The first, second, or third positions of a codon can all experience a single-base replacement. What position is the highest likelihood that the point mutation will go undetected? In the third slot, a substitute has the highest chance of going unnoticed.
What would happen if a substitution occurred in the first or second base of a codon?A mutation known as a substitution is one that switches one base for another (i.e., alters just one "chemical letter," for as changing an A to a G). A codon may be changed to one that codes for a different amino acid, which would result in a minor modification to the protein that is made.For instance, twofold degenerate codons can withstand silence mutation rather than Missense or Nonsense point mutations at the third position, whereas fourfold degenerate codons can tolerate any point mutation at the third position, although codon usage bias restricts this in practice in many organisms.If a base substitution takes place in the codon's third position, there is a strong likelihood that a synonymous codon will be produced. The mutation is referred to as silent since the gene's encoded amino acid sequence is unaltered.To Learn more About single-base replacement Refer To:
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Which of the following would be least likely to diffuse through a cell membrane without the help of a transport protein
Answer:
A large polar molecule
Explanation:
Answer:
Large polar molecule
Explanation:
Which of the following would be least likely to diffuse through a plasma membrane without the help of a transport protein? A large polar molecule would be the least likely to passively diffuse through a plasma membrane without the help of a transport protein. Both its size and the hydrophobic interior of the membrane would restrict it.
How do geologic cross-sections help geologists learn about the geologic history of a location?
O They show the oldest and most well-preserved rocks and fossils in a location.
O They reveal the absolute ages of each rock and the fossils it contains.
O. They reveal the rock type, layers, and relative ages of events of a location.
O They present information on the rocks and fossils found at the surface.
They show the oldest and most well-preserved rocks and fossils in a location.
What is geologic cross-sections?A geological cross-section is a visual representation of where the subsurface geological bodies intersect a particular orientation vertical plane. Geological cross sections, which may or may not include accompanying maps, are graphic depictions of vertical slices through the earth used to explain or interpret geological relationships. Line diagrams called "cross sections" depict a landscape from the side. They can display topographic details like hills and valleys or subterranean information like the depth of a river. The height of the land can be determined from cross sections of hills using contour lines.Scientists disagree about whether the rocks are 3.8 billion or 4.4 billion years old, but they were recently discovered in the northeastern edge of Hudson Bay in Canada. The earlier date would place the rocks close to when Earth first created.To learn more about geologic cross-sections refer to:
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Being poisonous, spicy, or tasty are different ways plants can protect themselves or help their seeds spread. What's another internal structure that helps a plant to survive?
Another internal structure that helps a plant to survive is the xylem to suck up water. The correct option is B.
What are adaptations for survival?Adaptations are structures or features that an organism such as a plant or animal has that help it survives in a specific environment.
There are several forms of adaptation such as:
Structural AdaptationsBehavioral AdaptationPhysiological AdaptationsCoadaptation.For example, being poisonous, spicy, or tasty are different ways plants can protect themselves or help their seeds spread.
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What is the impact of the increasing volume as a cell grows on the surface area?
The effect of increasing volume as cells grow over the surface area is the production of melanin or the pigment that gives skin its color.
What are cells growing on the surface?Cells growing on the surface area with excessive volume can cause melanoma. Melanoma can also be caused by exposure to ultraviolet (UV) radiation from sunlight or tanning lamps. To reduce the risk of this condition, a person needs to limit exposure to UV radiation.
The risk of this disease appears to be increased in people under the age of 40, especially in women. Melanoma is the most serious type of skin cancer.
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A human gene was insterted into a plasmid and then produced by a bacterium. Unfortunately, the human protein was not functional. Explain what may have gone wrong.
This gene contains introns, which bacteria do not. If we directly cloned the gene, the bacteria would produce mRNA with introns and would be unable to splice it.
What happens when DNA of humans is inserted into bacterial plasmid?Researchers can create recombinant plasmids by inserting DNA fragments or genes into plasmid vectors. This plasmid can be introduced into a bacterium through a process known as transformation. Because bacteria divide quickly, they can then be used as factories to copy large amounts of DNA fragments.
This gene has introns, which bacteria do not have. If cloned directly, the bacteria would produce mRNA with coding regions and be unable to clip it.
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explain the role of the followinghormone during homeostasis 1.insulin
Answer:
Insulin enables blood glucose to enter cells, where they use it to produce energy. Together, insulin and glucagon help maintain homeostasis, where conditions inside the body hold steady. When a person's blood sugar is too high, their pancreas secretes more insulin.
Insulin allows the cells in the muscles, fat and liver to absorb glucose that is in the blood. The glucose serves as energy to these cells, or it can be converted into fat when needed. Insulin also affects other metabolic processes, such as the breakdown of fat or protein.
How does process of becoming pregnant involving fertilization?
Answer:
5858588874747777766636
Explanation:
777475757474737737373737377373737
what gas is required in order for photosynthesis to occur?
a. O2
b. H2O
c. CO2
d. OH2O
Answer:
CO2
Explanation:
Select the correct answer.
Tim is researching the regenerative property of stem cells as a possible method to treat neurological diseases. His research requires him to grow new nerve cells. Which statement best explains why Tim is using stem cells for this purpose?
A.
Specific genes in a nerve cell’s DNA can be activated to produce new stem cells.
B.
Specific genes in a stem cell’s DNA can be activated to produce new nerve cells.
C.
All genes in a nerve cell’s DNA are activated, so new stem cells are produced each time the cell divides.
D.
All genes in a stem cell’s DNA are activated, so new nerve cells are produced each time the cell divides.
The statement that best explains why Tim is using stem cells for this purpose is option B. Specific genes in a stem cell’s DNA can be activated to produce new nerve cells.
What is stem cell’s DNA?Stem cells have the ability to differentiate into various types of cells, including nerve cells. By activating specific genes in a stem cell's DNA, scientists can direct the stem cell to differentiate into a specific cell type, such as a nerve cell.
Therefore, This is why Tim is using stem cells for his research, as it allows him to grow new nerve cells for potential treatment of neurological diseases.
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The law of segregation states that every organism possesses a pair of?
Mendel's law of segregation occurs late in meiosis (I and II). This is the first stage of meiosis, in which homologous chromosomes are segregated into her two daughter nuclei with different versions of each gene.
Gregor Mendel's law of segregation consists of four parts. First, define the alleles. Second, it states that an organism inherits one allele of her from each parent. Third, a gamete states that he has only one allele for each trait.
According to the law of segregation, only one of the two gene copies present in an organism is distributed to each gamete (egg or sperm cell) it produces, and the allocation of gene copies is random.
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how many molecules of carbon dioxide are released during one turn of the citric acid cycle?
Answer: 4
Explanation:
Krebs cycle, also known as the TCA (tricarboxylic acid) or citric acid cycle, takes place inside the mitochondrial matrix. This cycle is a stepwise oxidative and cyclic degradation of acetyl CoA. The cycle acts on the 2 pyruvate molecules generated during glycolysis.
The end product of glycolysis is pyruvate. 1 molecule of glucose produces 2 molecules of pyruvate. So 1 molecule of pyruvate is responsible for the release of 2 CO2 molecules during 1 Krebs cycle. Since 1 glucose molecule gives 2 pyruvate molecules. There will be two cycles to utilize both the pyruvate molecules. Thus, 1 glucose molecule is responsible for the release of 4 CO2 molecules during Krebs cycle.
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Place A and B recieve the same amount of rainfall. Place A has a lot of concrete surfaces and roads. Place B had fewer concrete surfaces and more open areas such as playground and parks. Explain the diffrence between the water tables in place A and place B
The water table in B is greater than the water table in A.
What is the water table?We know that the water table would have to do with the level of the water that can be found under the ground. The water table is formed from the amount of the water that can be bale to get into the ground from the surface of the ground.
Now, we know that if the ground of the place is made up of concrete then there would be less water that would penetrate the ground and then the water table of the place would be found to be lower than those of open areas.
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6) On what structure in the cell are proteins needed for cells functions made?