Answer:
Because the skin is more exposed to the environment, skin temperature fluctuates more widely than core temperature.
Plz help what is the name of x and y
Answer:
the name of x is the x-axis the name of the y is the y-axis
Match the human activity with how it intensifies the greenhouse effect.
deforestation
burning fossil fuels
waste disposal in landfills
primary cause of human-created
carbon emissions
arrowRight
destroys natural carbon sinks,
leading to more CO2 in the air
arrowRight
emits methane from decomposing
matter
arrowRight
The correct matchings are: Deforestation: Destroys natural carbon sinks, leading to more CO2 in the air. Burning fossil fuels: Primary cause of human-created carbon emissions. Waste disposal in landfills: Emits methane from decomposing matter
1. Deforestation intensifies the greenhouse effect by contributing to increased levels of carbon dioxide (CO2) in the atmosphere. Trees act as natural carbon sinks, absorbing CO2 through photosynthesis and storing it in their biomass.
2. Burning fossil fuels, such as coal, oil, and natural gas, is the primary cause of human-created carbon emissions. These fuels release carbon that has been stored underground for millions of years into the atmosphere as CO2.
3. Waste disposal in landfills intensifies the greenhouse effect through the production of methane (CH4). When organic waste decomposes in oxygen-deprived conditions, methane is released. Methane is a potent greenhouse gas, with a significantly higher warming potential than CO2.
These activities highlight the human-induced factors that contribute to the intensification of the greenhouse effect and the resulting impacts on the Earth's climate system.
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Which choice below would represent an
organism with two dominant alleles?
A. Bb
B. bb
C. BB
Answer:
BB
Explanation:
BB means two dominant alleles
how is a green plants way of making food different from an animals way of feeding
Answer:
Green plants make their own food through a process called photosynthesis, in which they use energy from sunlight to convert carbon dioxide and water into glucose and oxygen. The glucose is then used as a source of energy and as a building material for growth and reproduction. The oxygen is released into the atmosphere as a byproduct.
Animals, on the other hand, cannot make their own food and must consume other organisms in order to obtain energy and nutrients. They obtain food through hunting and foraging, or by consuming other organisms such as plants or other animals.
In summary, green plants make their own food through photosynthesis while animals consume other organisms for food.
Explanation:
Answer:
Green plants use photosynthesis to make food, while animals consume other organisms or organic matter as a source of food. Photosynthesis is a process by which plants use energy from the sun, carbon dioxide from the air, and water from the soil to produce glucose and oxygen.
Explanation:
Green plants use photosynthesis to make food, while animals consume other organisms or organic matter as a source of food. Photosynthesis is a process by which plants use energy from the sun, carbon dioxide from the air, and water from the soil to produce glucose and oxygen. This glucose is used by the plant as a source of energy and as a building block for growth and reproduction. In contrast, animals are heterotrophic, meaning they cannot produce their own food and must consume it from other sources. They obtain food through hunting, grazing, or scavenging, and then use the energy and nutrients from that food for growth, reproduction, and maintenance of bodily functions.
A researcher hypothesizes that in mice, two autosomal dominant traits, trait Q and trait R, are determined by separate genes found on the same chromosome. The researcher crosses mice that are
heterozygous for both traits and counts the number of offspring with each combination of phenotypes. The total number of offspring produced was 64. The researcher plans to do a chi-square
analysis of the data and calculates the expected number of mice with each combination of phenotypes. Which of the following is the expected number of offspring that will display both trait Q and
trait R
Answer:
Explanation:
If we consider the traits Q and R individually, then
P(Q) = 75% (Q is dominant, from hetero-zygous parents)
similarly
P(R) = 75% (Q is dominant, from hetero-zygous parents)
Assuming the two alleles P & Q are indepedent, then
P(Q and R) = 75% * 75% = 56.25%
Out of 64 offsprings, we expect 75*56.25% = 9/16*64 = 36 express both Q and R traits, on the average.
For the given experiment 36 offspring out of 64 will produce both Q and R traits.
Di-hybrid Cross:
It is cross of organisms in which scientist perform the experiment keeping two traits in mind.
One parent is pure and dominant while another is Heterozygous for traits.
The parental genotypes will be,
RRQQ x RrQq
The gametes will be,
RQ, Rq, rQ, and rq
The cross,
RQ Rq rQ rq
RQ RQRQ RQRq RQrQ RQrq
Probability, If the traits Q and R expressed
P(Q) = 75% (Q is dominant, from heterozygous parents)
P(R) = 75% (Q is dominant, from heterozygous parents)
Probability, if two alleles P & Q are independent, then
P(Q & R) = 75% x 75% = 56.25%
The offspring that express both alleles, out of 64 offspring,
\(\bold {75 \times 56.25\% = \dfrac {9}{16\times 64} = 36 }\)
Therefore, for the given experiment 36 offspring out of 64 will produce both Q and R traits.
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Disaster-Risk-Reduction-in-the-Philippines-Status-Report-2019.
The Disaster Risk Reduction Status Report 2019 for the Philippines highlights the progress made by the country in minimizing risks and vulnerabilities associated with natural disasters.
The report emphasizes the government's efforts in improving early warning systems, disaster preparedness, and response measures, as well as the strengthening of institutional capacities to reduce the impact of disasters on the population.
The National Disaster Risk Reduction and Management Council (NDRRMC) and the United Nations Development Programme (UNDP) worked together to create the report with assistance from a number of governmental entities, local governments, civil society groups, and other stakeholders.
It also discusses the challenges faced by the country in achieving its DRR goals and provides recommendations for strengthening DRR efforts.
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Which muscle is highlighted below?
O A. Obliques
O B. Latissimus dorsi
O C. Biceps brachii
O D. Rectus abdominus
Answer:
C: Biceps Brachii
Explanation:
Obliques are your muscles on the side of your back that control lateral movement, latissimus dorsi are back muscles that mainly help with any motion of your back, Biceps are the muscles on your forearm, pictured in the diagram, and rectus abdominus are your abs that help with abdominal movement and helps in breathing and the compression of the abdominal viscera.
The muscle highlighted is biceps brachii.
What is muscle?"A band or bundle of fibrous tissue in a human or animal body that has the ability to contract, producing movement in or maintaining the position of parts of the body."It is of three types: skeletal muscle, smooth muscle and cardiac muscle.Skeletal muscles are striated, voluntary muscle. They connects bones, tendons and ligaments. They helps in movement.Smooth muscles are striated, involuntary muscle. They line organs and provide protection.Cardiac muscle are nonstriated, involuntary muscle present in heart.What is biceps brachii?"It is a muscle that is present on the ventral portion of the upper arm."It helps in flexes and supination of forearm.
Hence, the correct option is C. Biceps brachii.
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how are electrons carried fro glycolysis and the krebs cycle to the electron transport chain
Answer:
The FADH2 and NADH molecules produced in glycolysis and the Krebs Cycle, donate high-energy electrons to energy carrier molecules within the membrane. ... After passing through the electron transport chain, low-energy electrons and low-energy hydrogen ions combine with oxygen to form water.
Explanation:
which of the following statement is not true about systematics? all homoplastic traits are due to convergent evolution. all derived traits are synapomorphies. all homoplasies are homologous traits. all synapomorphies are derived traits. all homologous traits are homoplasies.
all derived traits are synapomorphies. all homoplasies are homologous traits. these statements are not true about systematics.
What are homologous traits?Characteristics that can be passed down from parent to child are known as traits. In biology, the term "homologous" refers to a similarity in internal or chromosomal structures.
Therefore, homologous qualities are common characteristics among various but related species.
Examples of homologous structures include bat wings, mouse legs, human finger bones, crocodile legs, and other four-legged vertebrate legs. Another example would be the altered leaves of carnivorous plants, cacti, and poinsettias, as well as the skeletons of whales and hummingbirds.
Homologous chromosomal structures mean chromosomes that carry the same genetic material, even if the expression of the genetic material differs.
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Blending theory doesn't work. Traits act more like ______________ than ____________ passing intact through generations. Mendel proposed each somatic cell has _______ copies of the gene controlling flower color. He proposed gametes possess only ______ copy. When gametes unite at fertilization ______ are restored
Blending theory doesn't work. Traits act more like alleles than traits passing intact through generations. Mendel proposed each somatic cell has two copies of the gene controlling flower color. He proposed gametes possess only one copy. When gametes unite at fertilization diploidy is restored.
Mendel's law of segregation is based on the principle that the two copies of a gene segregate from each other during the formation of gametes. This is also known as Mendel's First Law of Genetics. The segregation of genes is due to the separation of homologous chromosomes during the anaphase I of meiosis
Blending theory states that when two different traits are crossed in a pure form, the offspring produced is a blend of the two traits. However, the Blending Theory has a disadvantage. It does not offer any explanation on the reappearance of parental traits. Therefore, it was rejected as a mechanism of inheritance of traits.
Traits pass through generations by the process of inheritance. It is the process by which traits are passed from parents to their offspring. The traits may be either physical, such as hair or eye color, or behavioral, such as the ability to speak a certain language. Genes are responsible for the inheritance of traits from one generation to the next.
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As the zygote undergoes cleavage, the number of cells increases but the overall size of each cell gets smaller. By the time the zygote reaches the 16-cell stage, it is called a
Answer:
Morula.
Explanation:
A zygote is the product resulting from fertilization. During the journey of the zygote through the fallopian tubes, until its implantation in the uterus, it divides many times, thus going through different phases. From the 16 cells it is called a morula, this stage represents the set of cells from the division of the fertilized ovum, in the first stages of embryonic development. It represents an intermediate phase between the zygote and the blastocyst. The morula stage is characterized by the fact that the replicating cells are all the same size, and there is no differentiation of organs.
What two types of relationships exhibit symbiosis?.
Two types of relationships that exhibit symbiosis are mutualism and parasitism
Mutualism: Mutualism is a type of symbiotic relationship where both organisms involved benefit from the interaction. Each organism provides a resource or service that is advantageous to the other. For example, certain species of flowers and their pollinators engage in mutualistic symbiosis. The flowers provide nectar as a food source for the pollinators, while the pollinators aid in the flower's reproduction by transferring pollen between flowers.
Parasitism: Parasitism is a symbiotic relationship where one organism, the parasite, benefits at the expense of the other organism, the host. The parasite relies on the host for resources or shelter and often harms or weakens the host in the process. Parasites can be found in various ecosystems, such as fleas on mammals, ticks on birds, or tapeworms in the intestines of animals.
These two types of symbiotic relationships illustrate the diverse interactions that can occur between different species in nature, highlighting the complexity of ecological systems.
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Scientific researchers discovered agents that behaved like bacteria causing diseases such as rabies and hoof-and-mouth, but were much smaller. It became the general view that viruses were biologically "alive." This perception changed in 1935 when the tobacco mosaic virus was crystallized and scientists demonstrated that the particles lacked any mechanisms necessary for metabolic function. It was determined that viruses consisted of a nucleic acid, DNA or RNA, surrounded by a protein shell. Viruses exist in two distinct states. When not in contact with a host cell, the virus remains entirely dormant. During this time there are no biological activities occurring and the virus is nothing more than a static organic particle. Viruses can remain like this for extended periods of time, waiting to come into contact with the appropriate host. When the virus comes into contact with a host, it becomes active, reacts to its environment and/or host and directs its efforts toward self-replication. The viral goal now is to produce more viruses to attack host cells.
The characteristics of life: many are listed in the passage describing viruses. One important piece of evidence arguing against life for viruses is implied by the passage; not stated directly. Viruses are not living, because, as implied by the passage, they
A. Lack a nucleus
B. Have no DNA
C. Are not cellular
D. Do not reproduce
According to the given passage, viruses are not living because they (C) do not have a cellular organization.
Viruses lack a cellular organization which is a basic feature of all living organisms. A virus is a nucleoprotein, with the genetic material enclosed by a protein coat. The genetic material could be either DNA or RNA. The genetic material is responsible for causing infection in the host.
Viruses are inactive outside their specific host cell. They are non-cellular organisms. They possess an inert crystalline structure outside the living host cell. The protein coat of a virus, i.e. capsid, serves as a protective covering for the genetic material.
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Which of the following statements about the function of a vesicle fusion protein is correct?
A. t-SNAREs localize to vesicles and generate appropriate membrane curvature
B. Rab proteins are responsible for docking of vesicles on target membranes
C. NSF is responsible for vesicle-membrane specificity
D. v-SNAREs provide energy for vesicle fusion
The statement "v-SNAREs provide energy for vesicle fusion" is correct. Therefore, option (D) is correct.
Vesicle fusion proteins play a crucial role in transporting cellular cargo from one compartment to another. One such protein is v-SNARE, which is located on the vesicle membrane. It interacts with t-SNARE, a protein located on the target membrane, to initiate the fusion process. This interaction results in the formation of a stable four-helix bundle, which brings the two membranes in close proximity and ultimately leads to fusion.
However, v-SNAREs do not provide energy for this process; instead, it is driven by a combination of factors such as the release of calcium ions, the formation of a lipid bridge, and the rearrangement of membrane lipids. Therefore, the correct statement about the function of a vesicle fusion protein is that v-SNAREs facilitate the fusion process by interacting with t-SNAREs, but they do not provide energy for it.
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What is the best method for describing and mapping terrestrial biomes? Biome Metric System (BMS) There's no standardized method, so the best method is to evaluate climatic conditions and the dominant form of vegetation International System of Biomes (ISB) Universal Biome System (UBS) There's no standardized method, so the best method is to evaluate human uses and valuation of the area
The best method for describing and mapping terrestrial biomes typically involves evaluating climatic conditions and the dominant form of vegetation. This approach is widely used and forms the basis for various classification systems, including the Köppen-Geiger climate classification system and the Holdridge life zone classification system. These systems consider factors such as temperature, precipitation, and vegetation types to classify and map different biomes.
While there is no universally standardized method for describing and mapping biomes, the evaluation of climatic conditions and vegetation provides a robust and scientifically grounded approach. It allows for the identification of distinct biomes based on their ecological characteristics and helps understand the distribution of different biomes across the Earth's surface.
Other approaches, such as the International System of Biomes (ISB) or Universal Biome System (UBS), may incorporate additional factors or emphasize human uses and valuation of the area. These approaches may be more focused on human perspectives or conservation priorities rather than purely ecological considerations. However, when it comes to a scientific understanding of biomes, evaluating climatic conditions and vegetation remain key factors.
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what is the recommended amount of time to leave the catheter clamped when obtaining a urine specimen from an indwelling catheter?
When collecting a urine sample from an indwelling catheter, 30 minutes should be allowed for the catheter to remain clamped.
This gives pee enough time to gather and prevents bladder constriction. In order to prevent contamination, the cap's sterile interior should be facing up.
Clamp the tube below the port for ten to fifteen minutes, or until more urine comes, if more is required. An alcohol swab should be used to clean the catheter's sample port. Most indwelling catheters are not designed to be used for longer than three months, therefore they must be replaced often.
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the protein that walks around in the cell to move stuff, called kinesin, requires energy to move. is it likely to react with atp as it moves?
The protein that walks around in the cell to move stuff, called kinesin, requires energy to move. React with ATP while moving is yes, hydrolysis of ATP gives it energy.
Protein is a combination of various amino acids bound by peptides. Proteins in cells play a role in forming cell structures, forming various enzymes, forming hormones, and several types of proteins have physiological roles.
Kinesin is a motor protein capable of moving across several cellular surfaces. The process of kinesin movement requires energy which is provided through the chemical hydrolysis of adenosine triphosphate (ATP) produced by cellular respiration, for the process of transporting cellular cargo along microtubules and separation of daughter cells.
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During a biochemical reaction, pyruvate (C3H403) is converted into carbon dioxide (CO2) and water (H2O). In what cellular organelle does this biochemical reaction occur?
Answer:mitrochondrion
Explanation:
Answer:
b
Explanation:
Which process plays an important role in the biogeochemical cycles of carbon, nitrogen, and phosphorus?
photosynthesis
transpiration
decomposition
respiration
Answer:
C) Decomposition
Explanation: I took the test on edginuty :)
Decomposition plays an important role in the biogeochemical cycles of carbon, nitrogen, and phosphorus. The correct answer is c) decomposition.
What is decomposition?Decomposition is the process by which microbes break down complex organic materials into less complicated ones.
Decomposers, which include bacteria, fungi, and a few other microorganisms, are those who start the decomposition process. To stay alive, they consume dead organisms.
Dead and decaying animals and plants are used as the raw materials for the breakdown process that results in the production of nutrients, carbon dioxide, water, and other things. Raw elements like dead plants, animals, and their remains are referred to as detritus. Once this debris has been processed by microbes, they are referred to as saprophytes.
The creatures that decompose rotting organisms are called decomposers. They return nitrogen and carbon to the environment throughout the decomposition process. They contribute significantly to the ecology by recycling nutrients.
Phosphorus, nitrogen, and carbon are reabsorbed into the ground when an animal or plant decays and is returned, which is necessary for plant growth in the production of food and energy.
Hence, the correct answer is c).
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In the Linnaean system of classification, camels are members of the order Artiodactyla and the family Camilidae. Llamas are also members of
the family Camilidae. Based on this information, are llamas members of the order Artiodactyla?
а No, because every family member is classified into a different order.
b Maybe, because families and orders are separate and unrelated taxa.
с Maybe, because some but not all family members are classified in the same order.
d Yes, because all family members are classified together in the same order.
Answer:
The correct answer is - Yes, because all family members are classified together in the same order.
Explanation:
In the Linnaean system of classification, there are 7 taxa that are kingdom, phylum or division, class, order, family, genus, species. In these taxa, the kingdom is most inclusive and species is least inclusive taxa.
Order is more inclusive than the family which means various organism families make the order. If a family all the members are classified under the same order. Order have different families and each family have a different genus and so on.
Before DNA could definitively be shown to be the genetic material in cells, scientists had to show that it could
a. tolerate high temperature
b. carry and make copies of information
c. be modified in response to environmental conditions
d. be broken down into small subunits
Answer:
B
Explanation:
DNA can be carried and multiplied
Answer:
B) carry and make copies of information
Explanation:
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photosynt h. Write short notes on: (i) Pulmonary circulation (ii) Fertilization 11. (ii) Systemic circulation (iv) Vegetative reproducti
Pulmonary Circulation and Systemic Circulation are the types of circulation
1. Pulmonary Circulation:
Pulmonary circulation moves blood between the heart and the lungs. It transports deoxygenated blood to the lungs to absorb oxygen and release carbon dioxide.
The oxygenated blood then flows back to the heart. Systemic circulation moves blood between the heart and the rest of the body. It sends the oxygenated blood out to cells and returns deoxygenated blood to the heart.
2. Fertilization:
Fertilization is a Reproductive process in which a male sex cell (sperm) unites with a female sex cell (egg). During the process, the chromosomes of the egg and sperm will merge to form a zygote, which will divide to form an embryo.
3. Systemic Circulation:
In the systemic loop, oxygenated blood is pumped from the left ventricle of the heart through the aorta, the largest artery in the body.
The blood moves from the aorta through the systemic arteries, then to arterioles and capillary beds that supply body tissues. Here, oxygen and nutrients are released and carbon dioxide and other waste substances are absorbed.
4. Vegetative reproduction:
Vegetative reproduction is any form of asexual reproduction occurring in plants in which a new plant grows from a fragment or cuts off the parent plant or specialized reproductive structures, which are sometimes called vegetative propagules.
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The current Question is:
Write short notes on (i) Pulmonary circulation and (ii) Fertilization (ii) Systemic circulation (iv) Vegetative reproduction.
1. The temperature of four ponds was measured at 6:00 AM. Which of the ponds would probably have the highest dissolved oxygen concentration?
O Pond A
O Pond B
O Pond C
O Pond D
The temperature of four ponds was measured at 6:00 AM. Pond A
of the ponds would probably have the highest dissolved oxygen concentration
What would boost the dissolved oxygen level in a pond?By boosting wind and wave motion, introducing plants to water, and exposing water to pure oxygen, dissolved oxygen levels are enhanced. Employing the latter approach may result in supersaturation, or oxygen levels above normal levels.
Most pond water may store 10 to 12 mg/L of oxygen in general. The biological degradation of organic material, such as rotting plants and animals or animal and human wastes, reduces dissolved oxygen. Dissolved oxygen levels below 6 mg/L can have a negative impact on pond life.
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Classify the descriptions of mating strategies as promiscuity, polygyny, polyandry, or monogamy. - Attempt Promiscuity Polygyny Polyandry Monogamy Individuals mate with multiple partners without forming social bonds. - A single female mates with more than one male. - A single male and a single female forma persisting social bond. - This strategy evolves when a male defends a group of females or a patchy resource the females need - This strategy evolves when a female attempts to acquire genetically superior sperm or receives other benefits from multiple matings. - A single male mates with more than one female - This strategy evolves when males and females both make significant contributions to offspring survival
The strategies are:
PromiscuityPolygynyPolyandryMonogamyWhat is Promiscuity?The term "promiscuity" refers to a person's propensity to have several partners or to have sexual relations with no sign of commitment or emotional attachment. Promiscuity is frequently interpreted as a sign of sexual emancipation or a lack of morals, but it can also indicate a person's lack of emotional commitment or connection.
Since promiscuity is a term that can be interpreted differently depending on the context and society in which it is used, there is no universally agreed-upon definition.
Promiscuity: People marry several partners without developing strong social ties.
Polygyny: One male mates with multiple females.
Polyandry: Multiple males mate with a single female.
Monogamy: A lasting social tie is created between a single guy and female.
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if you have a strain of e. coli where an early nonsense mutation has occurred in the gale gene, and grow that strain on galactose minimal media, what will the phenotype be? (colonies/no colonies)
if you have a strain of E. coli where an early nonsense mutation has occurred in the gale gene, and grow that strain on galactose minimal media, it will have a certain phenotype when grown on galactose minimal media.
This phenotype is the inability to form colonies, as the mutated gale gene prevents the bacteria from being able to metabolize the galactose, thereby unable to proliferate. The E. coli strain will not be able to produce any colonies on the galactose minimal media because the gale gene mutation has caused it to lack the necessary proteins needed to break down the galactose, thus leading to its inability to form colonies.
In short, the phenotype of an E. coli strain with an early nonsense mutation in the gale gene when grown on galactose minimal media is the inability to form colonies due to its inability to metabolize the galactose.
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Glycolysis breaks glucose into (1 point)
A. four smaller molecules.
B. five smaller molecules.
C. three smaller molecules.
D. two smaller molecules.
Glycolysis breaks glucose into two smaller molecules.
What does glycolysis process?The metabolic process known as glycolysis turns glucose (C6H12O6) into pyruvate (CH3COCO2H). The high-energy molecules adenosine triphosphate (ATP) and reduced nicotinamide adenine dinucleotide are created using the free energy released during this process (NADH). A series of 10 enzyme-catalyzed processes make up glycolysis.One metabolic route that doesn't require oxygen is glycolysis. Glycolysis occurs frequently in other species, which suggests that it is an old metabolic pathway.In fact, the metal-catalyzed reactions that make up glycolysis and its parallel pathway, the pentose phosphate pathway, take place in the oxygen-free conditions of the Archean oceans.Learn more about glycolysis process refer to :
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Kerstin is getting ready to graduate high school. She wants to become a cardiac perfusionist. Which best describes the path she should take to her career?
Answer:
four-year degree , master’s degree , certification exam from ABCP
Explanation:
Answer:
She should do a four-year degree , master’s degree , certification exam from ABCP
Explanation:
PLEASE HELP I NEED ANSWERS How Could Krusty’s Experiment been Improved? PLEASE DUE TONIGHT WILL GIVE BRAINLIEST!!!!!!
Explanation:
so basically it's test a can be imrope by... you will figure it out but not by cheating
how do the findings of the process of meiosis confirm what mendel had proposed in his laws of genetic inheritance?
Process of meiosis confirm that Mendel had proposed in his laws of genetic inheritance as chromosomal transactions occurring during meiosis enable the Mendelian laws of segregation and of independent assortment.
How is meiosis related to Mendelian laws of inheritance?During meiosis, alleles segregate such that each gamete is equally receive either one of the two alleles present in the diploid individual. Mendel called this phenomenon as the law of segregation which is demonstrated in a monohybrid cross.
Meiosis is the fundamental process underlying Mendelian genetics, as chromosomal transactions taking place during meiosis enable the Mendelian laws of segregation and of independent assortment.
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