Microtearing that occurs during which muscle action is responsible for delayed onset muscle soreness (DOMS) involves eccentric activities.
What are Eccentric activities?This activities involve the lengthening of the muscles during certain activities such as lowering into the bottom of a pushup etc.
This activities are usually slow which causes microtearing and delayed onset muscle soreness in individuals.
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(argumanta la importancia del desarrollo cientifico en el manejo del agua)
ayuda porfa :c
Answer:
La gestión del agua es importante ya que ayuda a determinar las expectativas futuras de riego. La gestión del agua es la gestión de los recursos hídricos bajo políticas y regulaciones establecidas. El agua, que alguna vez fue un recurso natural abundante, se está convirtiendo en un bien más valioso debido a las sequías y el uso excesivo.
Explanation:
La gestión de los recursos hídricos es un tema muy importante desde varios ángulos, como el desarrollo de masas de agua para el futuro, la protección de las masas de agua disponibles de la contaminación y la sobreexplotación y la prevención de disputas. Una cuestión primordial es el agua: su disponibilidad, calidad y gestión.
Aquí hermano te ayudé ^-^ ;) :)
a 3month old boy is brought for evaluation because of bilateral simple syndactylies between the long and ring fingeres. during which gestational age range did this developmental anomaly most likely occur?
The developmental anomaly of bilateral simple syndactyly between the long and ring fingers in a 3-month-old boy most likely occurred during the embryonic stage of gestation.
The embryonic stage spans from the third week to the eighth week of gestation. During this period, the fingers and toes of the developing fetus undergo differentiation and separation.
Any disruptions or abnormalities in the genetic or environmental factors during this crucial stage can result in congenital anomalies such as syndactyly.
Therefore, it is likely that the syndactyly in this case occurred between the third and eighth week of gestation and developmental anomaly occurs.
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If a planet is too far from the sun, why would it not be supportive for life?
Answer:
No one will live in that planet also some planets dont need heat
what are some global recommendations to help the environment
need help asap!!
Answer:
Recycling!
Explanation:
A basic answer, but a globally, recycling is one of the most well known ways to help the environment. It conserves energy, reduces air and water pollution, reduces greenhouse gases, and conserves natural resources. Stanford recycled, composted, and otherwise source reduced 62% of its waste and reduced landfill by 35%. Recycling paper alone cuts down 75% of air pollution!
What feedback mechanisms help you regulate your body temperature?
Answer:
It would be negative feedback.
Explanation:
The reason negative feedback is the type of feedback mechanism that helps you regulate your body temperature is because it reduces excessive responses and keeps a variable within the normal range.
How does classroom temperature affect the student's performance in a test
Answer:
If a certain temperature is uncomfortable for a student, too hot or too cold this can cause the student to have their mind only on the temperature and result in less attention payed to the test and can act as a distraction.
Explanation:
The mechanism of natural selection changes all of the following except:
Answer:
imprinting
Explanation:
Question 1: Basic Solow Growth Model Consider the Solow growth model without population growth or technological change. All the assumption of basic Solow Growth model applies (the ones we discussed in class). The saving rate is given by s and and the depreciation rate is given by (δ). The production function is given by Y=K
α
L
(1−α)
. Let k denote capital per worker, y denote output per worker, c denote consumption per worker, and i denote investment per worker. 1. What is the per-worker production function? 2. Provide equation of motion for this model. 3. Find the steady-state capital per worker (k
∗
). 4. Find the steady-state level of output per worker (y
∗
). 5. Find the steady-state level of consumption per worker (c
∗
). 6. Draw a well-labeled figure showing steady state capital per worker, steady state output per worker, and steady-state consumption per worker. (You will not receive full credit if it is not well-labeled) 7. In your own words, explain two implications of this Basic Solow Growth Model (no population growth and no technological growth).
1.The per-worker production function in the Basic Solow Growth Model can be written as: Y = K * α * L * (1 - α)
where Y is output per worker, K is capital per worker, L is labor, and α is the elasticity of output with respect to capital. 2.The equation of motion for this model is: dY/dt = s(Y-c) - (δ+1)K. where s is the savings rate, c is consumption per worker, δ is the depreciation rate, and t is time.
3.The steady-state capital per worker (k∗) is given by:
k∗ = δ + 1
4.The steady-state level of output per worker (y∗) is given by:
y∗ = αk∗L
where α is the elasticity of output with respect to capital.
5.The steady-state level of consumption per worker (c∗) is given by:
c∗ = s(y∗-L)
6.A well-labeled figure showing steady state capital per worker, steady state output per worker, and steady-state consumption per worker would include the following:
Steady-state capital per worker (k∗) on the x-axis and steady-state output per worker (y∗) on the y-axis.
A line showing the relationship between capital and output in the steady state.
A point representing the steady-state level of capital per worker (k∗) and a point representing the steady-state level of output per worker (y∗).
A line showing the relationship between consumption and output in the steady state.
A point representing the steady-state level of consumption per worker (c∗) and a point representing the steady-state level of output per worker (y∗).
Labels for each point and line, including the variables they represent and the equations that relate them.
7.The implications of the Basic Solow Growth Model with no population growth and no technological growth are:
The economy grows at a constant rate determined by the rate of return on investment in capital.
The steady-state level of output per worker is determined by the elasticity of output with respect to capital and the level of capital per worker.
The steady-state level of consumption per worker is determined by the savings rate and the level of output per worker.
The model predicts that there is a positive relationship between capital and output, and a negative relationship between consumption and output in the steady state.
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the process of making porteins on the ribosome based on instructions from mrna is called
The process of making proteins on the ribosome based on instructions from mRNA is called translation. Translation is a fundamental biological process that occurs in all living organisms.
Organisms, also known as living beings or life forms, are entities that exhibit the characteristics of life. They can range from microscopic single-celled organisms, such as bacteria and protists, to complex multicellular organisms like plants, animals, and humans. Organisms are capable of growth, reproduction, metabolism, response to stimuli, and adaptation to their environment. They can be found in various ecosystems and exhibit diverse forms, functions, and behaviors. Organisms are the basic units of life and play vital roles in the Earth's ecosystems and the overall functioning of the biosphere.
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Any estimate of the heritability of a particular trait is specific to?
Any estimate of the heritability of a particular trait is specific to one population in one environment.
The degree to which genetic variations among persons may adequately explain the variations in their attributes is known as heritability. Characteristics like height, eye color, and IQ are examples of traits, as are illnesses like schizophrenia and autism spectrum disorder.Heritability, which is denoted by the statistic h2 in science, describes the proportion of a trait's variation that can be attributable to genetic variation. An estimation of a trait's heritability is particular to one population in a particular setting, and it might alter over time as conditions change.Between 0 and 1 heritability estimates are given. A heritability near to zero indicates that environmental variables, rather than genetic differences, account for the majority of variation in a trait among individuals. Due to their lack of genetic control, traits like religion or spoken language have a heritability of zero. A heritability near to one means that genetic differences account for almost all of the variability in a characteristic, with little to no influence from environmental factors. High heritability is a characteristic of many diseases, including phenylketonuria (PKU), which is brought on by variations (also known as mutations) in a single gene.learn more about heritability here: https://brainly.com/question/6965635
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Genetic recombination can occur in many different stages. Identify the possible stages below. Select all that apply.
A. Horsetail sporangia
B. Moss sporophyte
C. Fern sori
D. Club moss strobili
E. Moss gametophyte
According to the given information the correct answer is Genetic recombination can occur in various stages of the life cycle in different organisms. Based on the options you provided, the stages where genetic recombination can occur are:B. Moss sporophyteC. Fern soriD. Club moss strobili
These stages involve the production of spores through meiosis, which allows for genetic recombination to occur.Genetic recombination is a process that occurs during meiosis, the cell division process that produces gametes (sperm and egg cells) in sexually reproducing organisms. During meiosis, homologous chromosomes pair up and exchange genetic material through a process called crossing over. This results in the shuffling and recombination of genetic information between the maternal and paternal chromosomes, creating new combinations of genes that are different from those in the original chromosomes.
The process of genetic recombination is important because it increases genetic diversity within a population, which can increase the chances of survival in changing environments. It also allows for the mixing of beneficial traits from different individuals, potentially leading to offspring that are better adapted to their environment.
In addition to crossing over, genetic recombination can also occur through a process called independent assortment. During meiosis, the homologous chromosomes separate randomly, so each gamete receives a random combination of chromosomes from the parent. This random assortment of chromosomes can lead to new combinations of genes in the gametes, further increasing genetic diversity.
Genetic recombination plays a key role in evolution and the development of new species. By creating new combinations of genes, it provides the raw material for natural selection to act upon, leading to the emergence of new traits and characteristics in populations over time.
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Fog is a cloud that has___?
A small vertical extent
Particles made of ice crystals
No ability to produce rain
It’s base at or near the ground
Answer:
D) its base at or near the water
what is a sound wave
Answer:
A sound wave is a vibration.
Explanation:
Which of the following statements is true about negative feedback inhibition?
A.
It works on the pituitary gland but not the hypothalamus.
B.
It contributes significantly to the maintenance of homeostasis.
C.
It works in opposite fashion to a thermostat.
D.
It works in only one direction.
The negative feedback mechanism contributes significantly to the maintenance of homeostasis. Option B
What is negative feedback inhibition?The term negative feedback implies that the process is stopped as long as the action is complete. This implies that once the process is set in motion, it is going to continue until an accepted level is reached then the process reverses itself.
The negative feedback mechanism is the reason behind homeostasis thus, negative feedback mechanism contributes significantly to the maintenance of homeostasis.
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What are the rungs of a DNA spiral made up of ?.
Answer:nucleotide base pairs
Explanation:
What is the major difference between rays and skates?
a) rays are endothermic, while skates are ectothermic
b) rays lay eggs, while skates give birth to live offspring
c) rays give birth to live offspring, while skates lay eggs
d) rays have flattened bodies, while skates do not
Answer:
c) rays give birth to live offspring, while skates lay eggs
Explanation:
Rays and skates are two species of cartilaginous fishes found in deep regions of the oceans. They are both flat shaped. In the system of classification, both organisms differ only in the order they belong to.
Rays and skates have few structural differences, however, one major difference between these two species of aquatic organisms is in their MODE OF REPRODUCTION.
- Rays have a VIVIPAROUS mode of reproduction i.e give birth to their young ones live.
- Skates have an OVIPAROUS mode of reproduction i.e. they lay fertilized eggs in cases called "mermaid's purses".
Answer:
c) rays give birth to live offspring, while skates lay eggs
Explanation:
The major difference between rays and skates is that rays give birth to live offspring (they do not lay eggs).
Also, I took the quizie :)
Infectious disease is caused by bacteria and virus true or false
Answer:
true
Explanation:
true
separation of the sister chromatids is a characteristic of which stage of mitosis? group of answer choices prometaphase metaphase anaphase telophase
The separation of sister chromatids is a characteristic of the anaphase stage of mitosis.
Mitosis is a type of cell division that produces two genetically identical daughter cells. Mitosis is essential for growth, repair of damaged tissues, and asexual reproduction. It is divided into four stages: prophase, metaphase, anaphase, and telophase. Chromosomes become visible in prophase.
Prophase: The chromosomes condense, the nuclear envelope disintegrates, and spindle fibers start to form. Metaphase: The chromosomes line up at the equator of the cell, called the metaphase plate.Anaphase: The sister chromatids separate at the centromere and are pulled to opposite poles by the spindle fibers.Telophase: The chromosomes reach the poles, the nuclear envelope reforms, and the spindle fibers disintegrate. The cell then undergoes cytokinesis, dividing the cytoplasm and creating two daughter cells.Learn more about mitosis-
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Question: Which one of these can cause a foodborne illness?
a. Viruses
b. Bacteria
c. Parasites
d. Fungi
e. All of the above
In 2-3 sentences, explain how crossing over and independent assortment in sex cells affect the appearance of the fully developed organism.
Compare how asexual and sexual reproduction affect the genetic variation of a population
By generating genetic variation, crossing over and independent assortment in sex cells influence how the fully grown creature looks.
During meiosis, crossing over occurs when homologous chromosomes exchange genetic material, resulting in new combinations of alleles. Independent assortment occurs when chromosomes line up randomly during meiosis, which can lead to different combinations of maternal and paternal chromosomes in the resulting gametes. These gametes can unite during conception to produce kids with fresh and distinctive genetic combinations, which can lead to a variety of physical traits and attributes.
Contrarily, meiosis and the generation of gametes are not involved in asexual reproduction. Instead, a single parent generates genetically identical offspring using processes like binary fission or budding. Because of this, neither meiosis nor fertilisation can produce genetic variation, and the progeny are identical to their parents. As there is no new genetic material to adjust to changing environmental conditions, this may limit the population's ability to adapt.
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What type of symmetry do the species in Archaebacteria possess? Choose from the following and give a reason why: Radial, bilateral, translational, none.
Answer:
Archaebacteria can possess radial symmetry. When looking head-on at a Spirillum (elongated spiral) or Bacillus (pill-shaped), they can be split numerous times, and a Coccus is a sphere, so it can be split any number of times.
What is the purpose of control in an experiment?
Answer:
An experimental control is used in scientific experiments to minimize the effect of variables which are not the interest of the study. The control can be an object, population, or any other variable which a scientist would like to “control.”.
Explanation:
What is the cell membrane made up of?
a
proteins
b lipids
Thing
c carbohydrates
d nucleic acids
I need help please
Answer:
I believe the answer is A & B.
Explanation:
If it only allows you to pick one, i suggest picking A.
.... is an example of what extrusive rock. *
gabbro
basalt
Granite
diamond
Basalt is an example of what extrusive rock.
Explanation:Extrusive igneous rocks form when magma reaches the Earth's surface a volcano and cools quickly. Most extrusive (volcanic) rocks have small crystals. Examples include basalt, rhyolite, andesite, and obsidian.
why is screening or presumptive testing important? question 4 options: it saves time. it saves money. it is less complex than dna typing. it types the blood stain/sample into abo and rh groups. all of the above
The correct answer is: all of the above. Screening or presumptive testing is a type of testing that is used to quickly and efficiently identify the presence of certain substances or characteristics in a sample. This type of testing is important for a number of reasons:
It saves time: Screening or presumptive testing allows analysts to quickly identify the presence of certain substances or characteristics in a sample, which saves time compared to more complex and time-consuming testing methods.It saves money: Screening or presumptive testing is often less expensive than more complex testing methods, which can save money in the long run.It is less complex than DNA typing: Screening or presumptive testing is generally less complex and time-consuming than DNA typing, which involves analyzing the genetic material of a sample.It types the blood stain/sample into ABO and Rh groups: Screening or presumptive testing can be used to quickly identify the ABO and Rh blood groups of a blood sample, which is important in medical settings for blood transfusions and other purposes.Overall, screening or presumptive testing is an important tool that can save time, money, and resources while providing valuable information about the characteristics of a sample.
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if tetanus tocoid is tje antigen and it produced IgG in vaccination, what is it considered?
a. polysaccharide
b. chemotaxin
c. it is a protein
d. anaphylatoxin
The tetanus toxoid, which produces IgG in vaccination, is considered a protein. The correct answer is c. It is a protein, referring to the tetanus toxoid antigen.
tetanus toxoid IgG (Immunoglobulin G) is a type of antibody produced by the immune system in response to an antigen. In this case, the antigen is the tetanus toxoid, which is a modified form of the tetanus toxin. The tetanus toxoid is a protein-based antigen, DNA vaccine and when it is introduced into the body through vaccination, it stimulates the production of IgG antibodies.
Polysaccharides are carbohydrates composed of multiple sugar molecules linked together, and they are not applicable in this context. Chemotaxins are substances that attract immune cells to a specific site, which is not relevant to the question. Anaphylatoxins are complement proteins involved in triggering allergic reactions, and they are not related to the production of IgG antibodies.
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What is the name of all the cell contents between the nucleus and the cell membrane.
Cytoplasm, the semifluid substance of a cellular this is outside to the nuclear membrane and inner to the cell membrane, once in a while defined because the nonnuclear content material of protoplasm. In eukaryotes (i.e., cells having a nucleus), the cytoplasm carries all the organelles.
Protects cell contents; makes touch of different cells carries channels, transporters, receptors, enzymes and cellular identification markers; meditates the access and go out substance. Cellular contents among the plasma membrane and nucleus, along with cytosol and organelles.
The complete cell content material of a residing cellular is known as protoplasm. The cytoplasm, nucleus and all different residing additives of the cellular collectively make up the protoplasm of a cellular.
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how does fertilization increase genetic diversity within a species
Fertilization, the fusion of male and female gametes, has a significant effect on genetic diversity within a species. Each gamete contributes half of the genetic material that will be passed down to the next generation. This process ensures that the offspring has a unique genetic makeup as compared to its parents.
The genes that determine the traits that are inherited from the parents are shuffled in different combinations during fertilization, resulting in different variations of traits in the offspring of a species.Fertilization increases the genetic diversity within a species because it produces offspring that have new gene combinations that were not present in the parents.
This combination of traits can create unique physical and behavioral characteristics that may give the offspring an advantage in adapting to their environment. This genetic variation plays a vital role in the evolutionary process. Some of the offspring will have variations that allow them to better adapt to their environment and have a higher chance of survival, whereas others may have traits that are not advantageous and may not survive to reproduce.
Fertilization plays a critical role in the production of genetically diverse offspring that can help a species to adapt and survive in a constantly changing environment.
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In mice, a condition called waltzer is recessive. A waltzer mouse (nn) has a defect of the inner ear that interferes with balance and causes the mouse to run in circles. A mouse that runs normally is crossed with a waltzer mouse. Half the offspring are waltzer mice. What are the genotypes of the parents?
If a mouse that runs normally is crossed with a waltzer mouse and half the offspring are waltzer mice (genotype nn) then the genotypes of the parents are Nn (heterozygous parent) and nn.
What is a recessive homozygous genotype?A recessive homozygous genotype refers to the presence of both recessive alleles or gene variants for a given locus/loci, which is masked by the dominant alleles in heterozygous individuals.
Therefore, with this data, we can see that homozygous genotypes are due to the presence of both alleles and the recessive allele is masked by the dominant allele in heterozygous individuals.
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Give some example of microorganisms
ASAP
Answer:
some examples of microorganisms
Bacteria.
Archaea.
Fungi.
Protozoa.
Algae.
Viruses.
Multicellular Animal Parasites.