When two centrosomes are separate and moved towards opposite sides of the nucleus, forming the two poles of the mitotic spindle.
The microtubule act and distribution undergo profound changes when the interphase microtubule array get vanished and microtubules extend from the enlarged centrosomes to inquiry about the 3-D space around each centrosome to set up the short prophase spindle .
Thus , G1 phase is phase associated with the growth of organelles and cell. The S phase is associated with synthesis of DNA when it is replicated. Stabilization of interphase microtubules, and the formation of microtubule clumps during prometaphase to the transient formation of multipolar spindles mostly occurs prior to anaphase .
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When anne uses anecdotes to show how mrs. Van daan tells her parents how to raise their children, what theme is anne developing?.
Anne develops the notion that Mrs. van Daan is crazy when she uses anecdotes to demonstrate how Mrs. van Daan instructs her parents on how to nurture their children.
Anecdotes are "stories with a point," such as characterizing by highlighting a particular quirk or characteristic, or communicating an abstract idea about a person, place, or thing through the concrete parts of a brief narrative. Anecdotes are occasionally funny, but unlike jokes, their primary objective is to reveal a truth rather than to make people laugh. Only statistical evidence can determine how typical a phenomenon is; arguments based on anecdotal evidence have the limitation that such evidence is not always indicative of the norm.
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complete question: When Anne uses anecdotes to show how Mrs. van Daan tells her parents how to raise their children, what theme is Anne developing?
A.)That Mrs. van Daan is very intelligent.
B.)That Mrs. van Daan is friendly.
C.)That Mrs. van Daan is nosy.
D.)That Mrs. van Daan is mad.
the cell fragments that are a component of blood are
The cell fragments that are a component of blood are red blood cells, white blood cells, platelets, and plasma.
What do you mean by cell fragments?
Cell fragments are small pieces of cells that have been broken down due to mechanical, chemical, or biological processes. They may include parts of the cell membrane, organelles, and other cellular components. Cell fragments can be found in a variety of biological samples, such as blood and tissue.
Red blood cells (also known as erythrocytes) are the most abundant type of cell in the blood and they carry oxygen throughout the body. White blood cells (also known as leukocytes) are the main component of the body’s immune system and they help protect the body from infection. Platelets (also known as thrombocytes) are small cell fragments that help the blood clot when there is a wound. Plasma is the liquid component of the blood and it helps transport blood cells, hormones, and other substances throughout the body.
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PL Z H ELP ME I'll DO ANYTHING I NEED TO SUBMIT THIS ASSIGNMENT P LZ ANYBODY I NEED HEL P !!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
9. Which arrow or arrows indicate a process that cycles carbon from living or nonliving organisms? Describe the process or processes you selected.
10. Which arrow or arrows represent reactions that demonstrate a conservation of mass and energy? Explain your answer.
Carbon cycling from living to non-living things is represented by arrow E and F. this is due to the fact that it demonstrates how carbon from a dead tree is converted into fossil fuel.
What is carbon cycle?The carbon cycle is nature's method of recycling carbon atoms, which repeatedly go from the atmosphere into Earth's living things and back into it.
Because it shows how carbon from a dead tree is transformed into fossil fuel, arrow E represents the carbon cycle between living and non-living things.
Energy and mass conservation are indicated by the arrows B and C. When living things pass away, they are transformed into fossil fuels that are employed in the manufacturing process to create the energy needed for a variety of activities.
Thus, this is the process of carbon cycle.
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What practices would you suggest to control and eradicate pest infestations?
Seal all cracks and crevices walls and floors to prevent pests from entering the home.
Keep food in tightly sealed containers and clean up any food debris immediately. Store firewood away from the home and regularly inspect it for infestations. Place screens on doors and windows to keep pests out. Use traps and baits to bait and kill the pests. Regularly inspect the home for signs of pests.
Remove clutter and damp spots where pests can hide. Vacuum and dust regularly to remove any food particles that pests may feed on. Make sure that all garbage is disposed of properly and away from the home. Use natural deterrents such as peppermint oil or cayenne pepper to repel pests.
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What is one reason funding has such an important effect on scientific research?
Funding targets specific areas of research.
People are not interested in new discoveries.
It encourages scientists to promote findings.
Research results cannot be published without it.
Answer:
Funding targets specific areas of research
Explanation:
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What happens to Claire's baby in Outlander?.
Claire's baby died in a miscarriage in Outlander.
Clаire Frаser is one of the most empowering chаrаcters in the romаntic fаntаsy Outlаnder. Clаire hаs trаveled аcross the world with her hаndsome Highlаnder husbаnd аfter mysteriously pаssing through а circle of stones аnd lаnding up in 18th century Scotlаnd.
Clаire might hаve experienced the most fаntаstic аdventures, but she hаs аlso been through severe trаumа. She hаs seen blood, gore, аnd guts spilling out of people she couldn't sаve. She hаs аlso lost а bаby in а pаinful miscаrriаge аnd lived twenty yeаrs of her life in аn unhаppy mаrriаge аwаy from the mаn she loved.
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43. Which of the following has a closed blood vascular system?
(a) Cockroach
(b) Hydra
(c) Sponge
(d) Earthworm
(d) Earthworm has a closed blood vascular system.
A closed blood vascular system is a circulatory system in which the blood is enclosed in blood vessels and is circulated by a heart. The blood vessels transport oxygen and nutrients to the cells and remove waste products. This type of circulatory system is more efficient than an open circulatory system, in which the blood flows through the body cavity and does not have a dedicated network of vessels. Earthworms have a closed blood vascular system with a tubular, segmented body, which has a well-defined circulatory system consisting of a heart, blood vessels and capillaries. The blood vessels transport oxygen and nutrients throughout the body, which are essential for the earthworm's survival. Cockroaches, Hydra and Sponges do not have a closed blood vascular system.
Hope This Helps You!
Answer:
(d) Earthworm
Explanation:
Closed blood vascular means that the worm's blood flows only in one direction and is contained within vessels. And there are three main vessels that supply the blood to organs within the earthworm : 1- the aortic arches, 2- dorsal blood vessels, and 3- ventral blood vessels.
Why do leaves fall without changing color?.
Leaves fall but do not change color as the temperatures drop and days become shorter as the seasons change. Trees receive less direct sunlight, and the chlorophyll in their leaves degrades.
The absence of chlorophyll reveals yellow and orange pigments that were previously hidden in the leaves during the warmer months. Darker red leaves result from a chemical change: sugars trapped in the leaves produce new pigments (called anthocyanins) that were not present during the growing season. Some trees, such as oaks and dogwoods, are prone to producing red leaves.
A late spring or a severe summer drought can cause the onset of fall color to be delayed by a few weeks. A warm period in the fall will also reduce the intensity of the autumn colors. Warm, wet spring weather, pleasant summer weather, and warm, sunny fall days with cool nights should result in the most vibrant autumn colors.
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Identify the source of initial energy in
geothermal power generation and explain how
geothermal systems can be used to generate
electricity.
To create energy, geothermal power plants use steam. The hot water reservoirs, which are located many miles or more below the surface of the earth, are where the steam is produced.
Where does the initial energy come from when producing geothermal energy?Rocks and subsurface aquifers nearby are heated by magma. Geysers, hot springs, steam vents, submerged hydrothermal vents, and mud pots are just a few of the places where hot water can be released. Geothermal energy can be found in each of these places. Either their steam or their heat can be used to create power or to directly heat a space.To create energy, geothermal power plants use steam. The hot water reservoirs, which are located many miles or more below the surface of the earth, are where the steam is produced. A generator that generates electricity is turned on by the steam.To learn more about geothermal energy refer to:
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How do you make RNA from a cell?.
DNA transcription, which shares certain characteristics with DNA replication in how it produces all of the RNA in a cell, is how DNA is replicated. A little section of the DNA double helix is first opened and unraveled during transcription in order to reveal the nucleotides on each DNA strand.
Simply put, producing a gene's matching protein is called expression, and it involves a complex process with two main components. The initial step of transcription is the transformation of DNA information into an mRNA (messenger RNA) molecule. The manufacture of a pre-mRNA molecule is aided by the enzyme RNA polymerase II, which also catalyzes the transcription of complementary base pairs from a gene's DNA to create mature mRNA. The resulting mRNA needs to be translated into a protein molecule because it is a single-stranded copy of the gene.
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What is the name of the enzyme responsible for the synthesis of RNA in prokaryotic cells like E coli?.
The enzyme which is responsible for the synthesis of RNA in prokaryotic cells like E. coli is RNA polymerase or more specifically it is referred to as E. coli RNA polymerase. It is a multisubunit enzyme. It consist of five subunits. Among them the two polypepetide subunits are identical.
The process of producing RNA from the genetic material found in DNA is called transcription. Transcription is the first step in a gene's expression. The DNA sequence of a gene needs to be duplicated in order to produce an RNA molecule.Transcription is carried out by RNA polymerases, which combine nucleotides to form an RNA strand. RNA polymerases are the enzymes involved in transcription. The prokaryotic RNA polymerases transcribe all the genes in prokaryotes.
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A human baby is born with two X chromosomes what must be true about
this baby
Answer:
It is a Female
Explanation:
Read the following description.
When your body becomes dehydrated, the brain detects the lack of water and signals the pituitary gland to secrete a hormone called ADH. ADH travels through the blood and
causes the kidneys to remove less water from the body.
This is an example of which of the following?
O negative feedback to amplify small signals
O positive feedback helping to maintain homeostasis
O negative feedback helping to maintain homeostasis
O positive feedback to amplify small signals
O negative feedback helping to maintain homeostasis
When the brain detects the lack of water in the body and signals the pituitary gland to secrete ADH, which causes the kidneys to remove less water from the body, this is an example of negative feedback. Negative feedback is a mechanism that helps to maintain homeostasis, or balance, in the body by counteracting changes in a particular condition or variable.
It is a mechanism that helps the body to return to its normal state by working in the opposite direction of a change. In this case, the decrease of water in the body triggers a response to conserve the water and return to normal hydration level.
i’m genetic engineering
Genetic engineering is also referred to as genetic modification and it ids defined as the process of using recombinant DNA (rDNA) technology to alter the genetic makeup of an organism.
What is a Gene?
This contains DNA and it is present in the nucleus of cells and acts as the basic unit of heredity which is passed from parent to child. during the process of reproduction.
It allows scientists to move desired genes from one plant or animal into another thereby resulting in the production of organisms which have high yield or resistance to certain diseases therby making it a very good innovation.
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The full question is:
What is Genetic engineering?
Which process allows glycolysis to continue in the absence of oxygen?
A. Chemosynthesis
B. Photosystem 1
C. Cellular respiration
D. Fermentation
During glycolysis, two ATP were produced, two NAD+ were converted to two NADH + H+, and glucose was split into two pyruvate molecules. Pyruvate will Fermentation when there is no oxygen present.
The NADH + H+ from glycolysis will be recycled back to NAD+ during the fermentation process, allowing glycolysis to continue.
NAD+ is reduced during glycolysis to form NADH + H+. Glycolysis will not be able to continue if NAD+ is not present. The NADH formed in glycolysis will be oxidized during aerobic respiration to reform NAD+ for use in glycolysis again. When oxygen is unavailable or an organism is unable to perform aerobic respiration, pyruvate undergoes a process known as fermentation. Because fermentation does not require oxygen, it is classified as anaerobic. The NADH + H+ produced by glycolysis will be replenished by fermentation.
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One gene has several different forms, resulting in more than two
phenotypes
When one gene has several different forms, resulting in more than two phenotypes is called multiple alleles.
Аlleles аre the pаirs of genes occupying а specific spot cаlled locus on а chromosome. Typicаlly, there аre only two аlleles for а gene in а diploid orgаnism. When there is а gene existing in more thаn two аllelic forms, this condition is referred to аs multiple аllelism. Аllelism refers to аny of the severаl forms of а gene. These genetic vаriаtions аrise usuаlly through mutаtion аnd therefore аre responsible for hereditаry vаriаtions. Аn exаmple of multiple аlleles is the АBO blood group system in humаns.
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Choose the option that best matches the description given. Therapy sessions may involve an individual or a group of clients who meet with a counselor or therapist to discuss their thoughts, feelings, and .
Therapy sessions involve a collaborative process between the therapist and the client or group of clients.
Therapy sessionsThe purpose of these sessions is to provide a safe and supportive space for individuals to explore their thoughts, feelings, and behaviors in order to better understand and cope with the challenges they are facing in their lives.The therapist will listen to the client's story and help them to identify patterns and connections between their experiences and feelings.The therapist will also provide guidance and support to help the client find more effective ways to cope with their difficulties.Therapy sessions may also involve role-playing, relaxation techniques, and problem-solving activities.Therapy sessions are beneficial for many individuals and can help to reduce stress, anxiety, depression, and other mental health issues.To learn more about Therapy sessions refer to:
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What are the 3 main purposes of mitosis?.
Answer:
The following are the roles of mitosis:
1. It is the way of asexual reproduction for unicellular organisms.
2. Replacement of damaged and worn-out cells is crucial.
3. It is largely concerned with growth. Mitosis generates cells that are necessary for the body to gain bulk.
Explanation:
1. Growth and development
Mitosis is the process by which an embryo develops after meiosis has generated a gamete that has united with another gamete to become an embryo. This growth occurs throughout the lives of plants, animals, and fungi. The original chromosomal set is so retained.
2. Replacement of cells
This happens when the original cell is injured or damaged. New cells are formed to replace the destroyed ones. Healing from a cut or a shattered bone are two examples of this. When old cells die, new ones take their place to guarantee that the body continues to operate.
3. Sexual reproduction is not possible.
Mitosis is an asexual reproduction process used by single-celled organisms and certain multicellular creatures. This comprises reproduction by fragmentation, as in planaria, and reproduction through budding, as in sea anemones. Mitosis is a kind of reproduction used by many plants.
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why is compartmentalization important in eukaryotic cells
Organelles are specialised, have unique PHs, and have the ideal circumstances for particular required reactions.
More surface area is made available by compartmentalization, facilitating the exchange of materials between cells and their surroundings.
Why is compartmentalization important?
Let's look at a building construction example. If a structure is to be constructed by just one worker, the project will take decades to finish because the worker will quickly become exhausted and make several mistakes. The same applies in a cell. A cell has to carry out numerous tasks concurrently, and for those tasks, numerous events must occur simultaneously in that cell, such as protein synthesis, energy production, lipid synthesis, etc., all without disrupting other processes. Therefore, compartmentalization in a cell is required for the same reason.
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The sum of the kinetic and potential energies of an object remains a constant value unless there are forces acting on the object that cause a loss of energy overall.
Mechanical energy is the total amount of kinetic and potential energy in an object. The sum of the potential energy and the kinetic energy is all that constitutes mechanical energy. In this case, Option A is correct
Why does the total kinetic and potential energy remain unchanged?
The mechanical energy is the total of the kinetic and gravitational potential energies. The mechanical energy will not change in a closed system, which is one without external dissipative forces.
Do kinetic and potential energy add up to the same amount?
Kinetic energy, or "moving energy," is the outcome of an object's motion. Positional energy, or "stored energy," is another source of mechanical energy (i.e., potential energy). The sum of the potential energy and the kinetic energy is all that constitutes mechanical energy.
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Conservation of mechanical energy is defined as
A. The sum of the kinetic and potential energies of an object remains a constant value unless there are forces acting on the object that cause a loss of energy overall, such as friction and air resistance
B. Potential energy added to kinetic energy
C. Energy of motion
D. Law of conservation of energy
Differentiate blunt ends and sticky ends and how each can be used?
The balance of the coral reef ecosystem is being affected by warming oceans, changing ocean currents, and what other external factor?
1.
The acidification of the oceans
2.
The light that enters the system
3.
Marine animals leaving the reef
4.
Not enough information is given
Answer:
3. Marine animals leaving the reef
Explanation:
Tell me if I'm wrong pls:)
Hope it helps:)
What role do the muscles and blood vessels play in the negative feedback loop of thermoregulation?.
The muscles and blood vessels act as effectors that help maintain the body temperature by constricting or dilating the blood vessels and by generating heat through shivering or sweating.
What is mean by thermoregulation? Thermoregulation is the process by which an organism maintains its body temperature within a certain range. This process is essential for all organisms, as it helps them to maintain their internal biochemical processes, as well as their overall health and wellbeing. Thermoregulation is especially important for endothermic (warm-blooded) animals, such as mammals and birds, as they need to maintain their body temperature in order to stay alive. Thermoregulation is achieved through a variety of physiological, behavioral, and environmental mechanisms. Physiologically, animals use their metabolism, sweat, and fat layers to generate or dissipate heat. Animals can move to warmer or colder areas, or change their posture to regulate their body temperature. Environmentally, animals can use their environment to their advantage, such as by seeking places in the shade or sun, or by burrowing into the ground. Overall, thermoregulation is a complex process, and one that is essential for the survival of all organisms.To learn more about thermoregulation refer to:
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why there are more substances on Earth than are listed on the periodic table of elements.
Elements can combine and form various types of substances. Hence, there are more substances on Earth than are listed on the periodic table of elements.
What are elements?A substance is considered to be an element if it cannot be reduced to a less complex form. The periodic table groups the elements according to their atomic number and draws attention to those with related qualities.
Examples of elements are carbon, oxygen, hydrogen, gold, silver, and iron. There is just one type of atom in every element.
Elements form various compounds on combining.Hence, there are more substances on Earth than are listed on the periodic table of elements.
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what is the importance of photosynthesis in nature
Answer:
It gives plants light so they can grow
Explanation:
Explanation:
First let us understand what is Photosynthesis
●Photosynthesis is the process whereby plants use carbon dioxide in the air, sunlight and water to manufacture their food and release oxygen as a by product.
Now why is the importance of photosynthesis in Nature?
● Plants have small units in their cells known as chloroplasts which contain chlorophyll to absorb sunlight. Afterwards, they use the carbon dioxide they obtain from the emission of animals and us human beings and water for the manufacturing of their food substance, glucose.
●While doing so, after making their foot substance, they release oxygen as a by product in the air, which permits us to breathe and release carbon dioxide. ( Co2)
●Photosynthesis therefore is known as a cycle to maintain the balance and composition of air in the environment constant.
if there were no Photosynthesis , there would be no oxygen in the air , that would cause a disbanlance in the atmosphere.
Explain how a palisade mesophyll cell is adapted for its function
Palisade mesophyll cells are closely sealed to soak maximum light. They are at right angles to the leaf surface to reduce the number of transverse walls. A large vacuole pushes the chloroplast to the edge of the cell.
Chloroplasts at the edge enable a shorter diffusion path for carbon dioxide and absorb maximum light. There are cylindrical cells and air spaces to provide a store of carbon dioxide. These cells provide a large surface area and moist cell surface for easy diffusion of gases. Chloroplasts in these cells can move towards light and move away from high light intensity to avoid damage.
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Which of the following processes would increase variation in a population?
1. Adding a new food source to the environment.
2. Inheritance of random portions of genes from each parent.
3. A population choosing to remain in the same environment.
A decrease in mutations due to a stable environment.
The following processes which would increase variation in a population is inheritance of random portions of genes from each parent and is therefore denoted as option 2.
What is Variation?This is referred to as the difference in DNA among individuals or the differences between populations.
Variation is increased when there are different random traits which are passed on from the parent to the offspring during the process of reproduction. This inherited traits will make the organisms more unique and different hence the reason why option 2 was chosen as the correct choice.
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What is the name of the structure connecting adjacent plant cells to form the Symplast of a plant?.
The structure connecting conterminous factory cells to form the symplast of a factory is called the Plasmodesmata.
Plasmodesmata are bitsy channels that connect the cytoplasm of two conterminous cells. They're formed by a series of proteins that form a tube- suchlike structure between the membranes of conterminous cells. Plasmodesmata allow for the movement of motes similar as proteins and RNA between cells, allowing communication and transport of substances between cells. This is important for the growth, development and functioning of the shops. For illustration, the movement of proteins and RNA between cells is important for the development of technical cell types during the process of cellular isolation. Plasmodesmata are also important in the conformation of the symplast, which is the nonstop network of cytoplasm and tube membranes that's set up in numerous factory cells.
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Gina’s foster mother told her that all of the snow this past winter had caused some of the local rivers to rise. While they are out hiking in the woods, Gina and her foster mother came up to a lake that looked three times bigger than it was last year. They both agreed the change in the lake was probably also because of all the snow this year. If someone wanted to measure the new size and depth of the lake, what type of survey would they complete?
A.
a geodesic survey
B.
a plane survey
C.
a hydrographic survey
D.
a topographical survey
The kind of survey that would be used is a hydrographic survey. Option C
What is a hydrographic survey?A hydrographic survey is a type of survey used to measure and map the topographic, bathymetric and oceanographic features of a water body such as oceans, seas, lakes, rivers, or canals.
The primary purpose of a hydrographic survey is to gather data that can be used to produce accurate nautical charts and maps, which are used for navigation and to support activities such as maritime transportation, offshore oil and gas exploration, and coastal engineering.
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a rooster with grey feathers is crossed with a hen of the same phenotype. they produce 15 chicks with grey feathers, 7 chicks with black feathers, and 8 chicks with white feathers. what is the simplest explanation for this inheritance pattern?
The simplest explanation for this inheritance pattern is that the rooster and the hen are both heterozygous for the gene that controls feather color and they are both carrying one dominant allele for grey feathers and one recessive allele for black or white feathers.
What is the definition of phenotype?Phenotype refers to the observable physical and physiological characteristics of an organism, which are determined by the combination of its genetic makeup (genotype) and the environment. Phenotype is the physical appearance of the organism which we can observe and measure, it can be shape, size, color, etc.
When rooster and hen cross, the dominant allele for grey feathers masks the expression of the recessive alleles, so all of the offspring appear grey. However, when the offspring inherit one dominant allele and one recessive allele from each parent, the recessive alleles are able to express their phenotype in a ratio of 7 black feathers: 8 white feathers offspring.
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