If a cell was capable of bypassing metaphase and going directly from prometaphase to anaphase, what is the most likely consequence of this?.

Answers

Answer 1

The most likely consequence of this conclusion is that the resulting daughter cell would have a different number of chromosomes in its cells.

What is the function of Metaphase?

The function of metaphase is that the chromosomes are usually lined up in one plane and construct an equatorial plate, in which these chromosomes are attached to the spindle fiber through the centromere.

If a cell has the tendency of bypassing metaphase, it will definitely have some abnormal attributes like a different number of chromosomes, irregular cell division, abnormal function, etc. In the given scenario, the function of metaphase has to be eliminated.

Therefore, the resulting daughter cell would have a different number of chromosomes in its cells is the most likely consequence of this.

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Related Questions

Humans who have an abnormally high level of cholesterol are said to suffer from familial hypercholesterolemia marries a woman who is homozygous for the recessive allele. What is the probability that they will have children that suffer from the disorder?

Answers

The probability that the offspring of the cross between a familial hypercholesterolemia diseased father and a homozygous recessive mother suffering from the disease will be zero.

Familial hypercholesterolemia is an autosomal dominant disease in which the levels of low density lipid (LDL) are abnormally high in the patient. The disease is very serious and may even result in death at a a very young age. The person carrying only one allele for the disease is called a carrier for the disease and is relatively at low risk.

A cross between familial hypercholesterolemia (HH) diseased father and a homozygous recessive (hh) mother:

HH × hh → Hh and Hh

The above cross shows that the offspring will only be a carrier of the disease and not actually suffer from the disorder.

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glycolysis generates more stored energy than it expends. what is the net number of activated carrier molecules produced in this process (number and type of molecules produced minus the number of those molecules used as input)?

Answers

The net number of activated carrier molecules produced in this process is 2 ATP and 2 NADH.

Two ATP molecules supply the necessary energy for the splitting of glucose. Energy is released during glycolysis, and this energy is used to create four molecules of ATP. Thus, during glycolysis, there is a net gain of two ATP molecules and 2 NADH molecules are formed at the end of glycolysis.

Where does glycolysis take place?

One 6-carbon glucose molecule undergoes glycolysis in the cytoplasm, where it is oxidized to produce two 3-carbon pyruvate molecules. Pyruvate's fate is determined by whether or not the cells have oxygen.

Therefore, The net number of activated carrier molecules produced in this process is 2 ATP and 2 NADH

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How does an object's mass affect its kinetic energy?

Answers

Mass and kinetic energy have a positive relationship which means that as mass increases kinetic increases if all other factors are held constant, the kinetic energy of a moving mass object is directly proportional to its mass

Answer:

as mass increases, kinetic energy increases, if all other factors are held constant.

Explanation:

The velocity at which an object is sent moving and the mass of the object both play a hand in the level of kinetic energy that object produces. Mass and kinetic energy have a positive relationship

Which statements describe functions of DNA? Select three options.

DNA gives instructions on how to make keratin, the protein that makes up human hair and skin.
DNA contains information about eye and fur color that is passed on from parents to kittens.
DNA provides energy for cheetahs to run fast.
DNA helps create substances that fight the bacteria that enter the body.
DNA stores energy for a bear as it hibernates during the winter.

Answers

The correct answer about the description of what the DNA does are as follows:

DNA gives instructions on how to make keratin, the protein that makes up human hair and skin.DNA contains information about eye and fur color that is passed on from parents to kittens.DNA helps create substances that fight the bacteria that enter the body.

The correct answer choice are options a, b and d.

How DNA gives instructions for protein synthesis

It follows that DNA known by deoxyribonucleic acid is one of the nucleic acid found in the nucleus of living organisms. The DNA has 1001 functions; among which include the giving instructions on the production of proteins in the body.

The DNA gives codes on how to make proteins in the process of transcription. During this process, it works on the principle of using deoxyribonucleic acid as a template to produce the messanger ribonucleic acid also in the nucleus. This whole process result in the synthesis of proteins.

So therefore, we can accurately confirm that one the major functions of DNA is that it helps in the manufacture if proteins.

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A B and C

Explanation:

Is vegetable oil a carbohydrate, protein, or lipid or none of the above? if not explain why?

Answers

Answer:

lipid

Explanation:

vegetable oils are 100% fats, and contain no protein or carbohydrates.

Vegetables oils are lipids in nature.

What are the functions of lipids?

Fats, waxes, sterols, fat-soluble vitamins, monoglycerides, diglycerides, phospholipids, and other naturally occurring molecules are included in the large class of molecules known as lipids.

Lipids are fatty substances that have many different jobs to do in your body. They are a component of your cell membranes and aid in regulating what enters and exits your cells. They aid in producing hormones, absorbing vitamins, and transporting and storing energy.

Lipids serve the body's needs for energy storage, hormone regulation, nerve impulse transmission, protection of sensitive organs, and the transportation of fat-soluble nutrients.

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is food biotic or abiotic factor? answer pls​

Answers

Answer:

biotic factor for humans and abiotic for plants

Food is a biotic factor.
What is a biotic factor?
A living thing that affects its environment is a biotic factor. Aquatic plants, fish, amphibians, and algae are a few possible examples in a freshwater ecosystem. An ecosystem's unique qualities are shaped by a combination of biotic and abiotic elements.
Supporting answer.
Ecosystems are composed of both biotic and abiotic components. Abiotic factors are non-living elements like water, soil, and atmosphere, whereas biotic factors are live entities found in an ecosystem including plants, animals, and bacteria. In an ecosystem, how these elements interact is crucial.
Hence, food is a biotic factor.
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The purpose of the Calvin Cycle is to…

A. convert carbon dioxide into oxygen using water

B. convert carbon dioxide in the atmosphere into pizza that Ms. Vetter likes to eat.

C. convert carbon dioxide in the atmosphere into carbohydrates or sugars

D. convert sugar into cocoa puffs cereal that Mrs. Wade loves to eat

Answers

convert carbon dioxide in the atmosphere into carbohydrates or sugars is the purpose of the Calvin Cycle.

The Calvin cycle is a set of events that occurs in plants to fix carbon from carbon dioxide into three carbon atoms. Dr. M. Calvin made the initial discovery of the Calvin cycle in 1957. The products of these three carbon atoms include amino acids, nucleotides, and starch. The sugar that is created during the Calvin cycle may be utilised by both plants and animals as a source of long-term energy storage. The Calvin cycle also contributes to keeping the atmosphere's carbon dioxide concentration stable.Because the Calvin cycle is not directly fueled by photons from the sun, it is also known as a light-independent process. However, they are using energy that is created as a result of photosynthesis in the form of ATP and NADPH.

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in the origin of the eukaryotes, endosymbiosis

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Endosymbiosis most likely began with a heterotrophic endosymbiont entering the cell as undigested prey or as an internal parasite during the origin of eukaryotes.

The leading hypothesis, known as the endosymbiotic theory, holds that eukaryotes evolved from a fusion of Archaean and bacterial cells, in which an ancient Archaean engulfed (but did not eat) an ancient, aerobic bacterial cell.

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3. Which of the following is the largest single membrane-bound intracellular
compartment
a. Ribosome
b. Golgi apparatus
c. Nucleus
d. Endoplasmic reticulum

Answers

The largest single membrane-bound intracellular Endoplasmic Reticulum

The cellular membrane, also known as the plasma membrane, is found in all cells and separates the indoors of the mobile from the outdoor surroundings. The cellular membrane includes a lipid bilayer this is semipermeable. The mobile membrane regulates the transport of materials getting into and exiting the mobile.

What Are cell Membranes fabricated from?

With few exceptions, cellular membranes — together with plasma membranes and internal membranes — are product of glycerophospholipids, molecules composed of glycerol, a phosphate organization, and two fatty acid chains.

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12. Fill in the table below

Answers

Saturated fats are solid at room temperature. unsaturated fats are liquid at room temperature. Commonly saturated fats are found in animal foods and also in plant foods. Unsaturated fats are mostly found in plant foods. The bonds connecting in saturated fats are single bonds and in unsaturated fats are one or more double bonds.

What is saturated fats?

When the fatty acid chains in a fat have only single bonds, the fat is said to be saturated. Glycerides, a type of fat, are composed of two different kinds of smaller molecules: fatty acids, which each have a long linear or branched chain of carbon (C) atoms, and glycerol, which has a short backbone.

it is solid at room temperature because of it's molecular shape.

mostly found in animals fats.

What is unsaturated fats?

Chemical composition is a defining characteristic of unsaturated fats. They can be categorised as monounsaturated or polyunsaturated and are liquid or soft at room temperature (as in oils and spreads). Unsaturated fatty acids may have a variety of health advantages, but overall, they are better for you than saturated fats.

it is liquid at room temperature.

mostly found in plant fats .

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Which describes the major thesis contained in darwin’s book, on the origin of species by means of natural selection?.

Answers

Plants and animals gradually evolved through a process called natural selection.

Natural selection in Darwin's theory

In reality, natural selection is a bit more complicated than that. It's the process by which organisms adapt to their environment to survive and reproduce. And it's the basis for Darwin's theory of evolution. Natural selection is the process in which organisms better adapted to their environment tend to survive and reproduce more than those less adapted to their environment. For example, tree frogs are sometimes eaten by snakes and birds.

What is the Origin of the Species by Charles Darwin?

The Origin of the Species by Charles Darwin is one of the most important books in the history of biology. In it, Darwin proposed the theory of evolution by natural selection. This theory states that species evolve through the process of natural selection. This occurs when some individuals in a population are better equipped to survive and reproduce than others. These individuals are more likely to pass on their genes to the next generation, and over time, the population as a whole will change.

Darwin's theory of evolution by natural selection is one of the most important scientific theories of all time. It has helped biologists to understand how life on Earth has changed over time, and it is still an essential part of our understanding of biology today.

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Which can cause cracks in rock formations over time?

Answers

Answer:

Mechanical Weathering

Explanation:

Mechanical weathering, also known as physical weathering and disaggregation, causes rocks to crumble.

Just need help soon thanks

Answers

Lysosomes

Golgi apparatus

Cell membrane

Rough ER

Smooth ER

hope this helps!! :)

GOOD LUCK WITH WHATEVER YOU ARE WORKING ON

What are genera of protists that parasitize humans except?

Answers

Chlamydomonas are genera of protists that parasitize humans except

Chlamydomonas is a genus of green algae with only one cell (Chlorophyta). In soil, fresh water, oceans, and even in the snow on mountaintops, these algae can be found all over the planet. This genus of algae has two anterior flagella that let them to swim with a motion akin to the breaststroke, a cell wall, a chloroplast, and a "eye" that can detect light. Chlamydomonas has been described in more than 500 different species, however most researchers only work with a few of them.

Chlamydomonas reinhardtii is the species utilized in laboratories the most frequently. This species' haploid cells can thrive on an easy inorganic salts media while employing photosynthesis to generate energy.

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lymphocytes group of answer choices possess mhc antigens for recognizing self develop into clones of either b and t cells with extreme variations of specificity have membrane receptors that recognize foreign antigens all of the choices are correct

Answers

In the question, all the choices are correct.

Lymphocytes have membrane receptors that recognize foreign antigens. They also gain tolerance to self by the destruction of lymphocytes that could react against self. Lymphocytes also possess MHC antigens for recognizing the self and develop into clones of B and T-cells with extreme variations of specificity.

What are the different types of Lymphocytes?

The two primary categories of lymphocytes are T cells, or T lymphocytes, and B lymphocytes. T cells regulate your body's immune response and go directly after and eliminate cancerous and diseased cells. B cells, or B lymphocytes: The B cell produces antibodies. Proteins are called antibodies to hunt down viruses, bacteria, and other foreign invaders.

Therefore, all the choices are correct.

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the all-or-none law applies to which part(s) of a neuron?

Answers

The all-or-none law applies to an axon part(s) of a neuron.

When a strong enough stimulus results in an action potential, a neuron sends information down an axon and toward the synapse.

The all or none law is applied to each individual fiber of a motor unit. This idea states that when a motor unit is subjected to a stimulus that is potent enough to elicit a response, all of the muscle fibers will contract simultaneously and as forcefully as is possible.

In physiology, the all-or-none law (also known as the all-or-none principle or all-or-nothing law) states that if a single nerve fiber is activated, it will always respond maximally and generate an electrical impulse with a single amplitude.

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What category do you think humans fall into.

Answers

Answer:

Mammals

Explanation:

Humans are classified as mammals because humans have the same distinctive features found in all members of this large group. Humans are also classified within: the subgroup of mammals called primates; and the subgroup of primates called apes and in particular the 'Great Apes'

Standard NCES.7.L.1.3-Miranda learned how the human body carries out life functions. Which is the MOST basic level of organization in the human body?
Group of answer choices

an organ

a system

a tissue

a cell

Answers

Answer:

A cell

Explanation:

The first and most basic level of organization is the cellular level. A cell is the basic unit of life.

PLSSS HELP IF YOU TURLY KNOW THISS

Answers

Answer:

D

Explanation:

PLS HELP RN PLS


When two molecules of water are oxidized by PSII, how many total hydrogens are generated in the thylakoid lumen?

If 4 molecules of water are oxidized by the light-dependent reactions, how many molecules of ATP are formed directly as a result?

Answers

When two molecules of water are oxidized by PSII, the total hydrogens generated in the thylakoid lumen is 4 hydrogen ions.

When 4 molecules of water are oxidized by the light-dependent reactions, six molecules of ATP are formed directly as a result

What is the light reaction in photosynthesis?

The light-dependent reaction in photosynthesis is the reaction that occurs in the presence of sunlight as a catalyst.

The light reactions of photosynthesis occur in photosystems I, PSI, and photosystems II, PSII present in the thylakoid membrane of the chloroplast.

In the light reactions of photosynthesis, water molecules are oxidized to oxygen and ATP molecules are produced which drives the dark reactions of photosynthesis.

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Which organism would you expect to have the longest digestive track?
Rhinoceros- herbivore
Baboon- omnivore
Lion- carnivore
Human- omnivore

Answers

The group of organisms that are expected to have the longest digestive tract is the herbivore rhinoceros (Option A).

What does the longest digestive tract mean?

The expression longest digestive tract makes reference to the length of the digestive system which is directly associated with the digestibility of food that one organism consumes. This parameter (digestion) is favored by the retention time which increases regarding the gut length

Therefore, with this data, we can see that herbivores such as rhinoceros will exhibit a long digestive tract to favor the retention time and which is associated with gut length.

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Which of the following are the electron carriers used in aerobic cellular respiration? Check all that apply.
A. ATP
B. FADH2
C. NADH
D. NADPH

Answers

The electron carriers used in aerobic cellular respiration are as follows:

FADH2NADH

What are electron carriers?

Electron carriers also called electron shuttles, are small organic molecules that play key roles in cellular respiration.

As their name implies, electron carrier pick up electrons from one molecule and drop them off with another.

Cellular respiration is the process whereby living organisms obtain energy by breaking down food molecules in their cells.

During cellular respiration, two molecules called nicotinamide adenine dinucleotide (NAD+) and flavin adenine dinucleotide (FAD) act as electron carriers.

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Which of these describes the phases of the cell cycle in the correct order? A. cell growth → DNA replication → preparation for mitosis → cell division B. cell division → DNA replication → preparation for mitosis → cell growth C. DNA replication → preparation for mitosis → cell growth → cell division D. preparation for mitosis → cell division → DNA replication →cell growth

Answers

Answer:

the answer is A

Explanation:

The cell needs to grow first before it can replicate. Then from there, it begins prepping for mitosis and divides after.

the phenomenon that probably gives rise to the organelles in eukaryoptes is

Answers

The phenomenon that probably gives rise to the organelles in eukaryoptes is endosymbiosis

The term "endosymbiont" refers to a microbial cell that has established a stable home inside another microbial cells. According to the endosymbiotic theory, several organelles of eukaryotic cells are thought to be descended from endosymbionts. Studies of mitochondria and chloroplasts, which are assumed to have evolved from bacteria living in big cells, are particularly supportive of the idea that eukaryotic cells originated from an association of prokaryotes that engaged in endosymbiosis. The origin of eukaryotes and mitochondria. The origin of eukaryotic cells is explained by this idea. Chloroplasts and mitochondria are the same size as prokaryotic cells and divide through a process known as binary fission. In order to create the mitochondria and chloroplasts, an ancestral eukaryotic cell first had to internalize prokaryotes. This process is known as primary endosymbiosis.

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Often appear as change in skin, such as a growth, irritation, or sore that does not heal or as a change in a wart or mole.

Answers

Skin cancer often appear as change in skin, such as a growth, irritation, or sore that does not heal or as a change in a wart or mole.

What is Cancer?

This is referred as a medical condition in which cells of the body divide in an uncontrollable manner and then spreads to other parts which makes it dangerous.

It also occurs in different types of forms such as a growth, irritation, or sore that does not heal or as a change in a wart or mole which is why special attention and observation is needed for quick detection and treatment in other to increase survival chances.

Cancerous cells compete with healthy cells for nutrients and other resources in the body and are usually treated through chemotherapy or radiotherapy which helps in killing the cancer cells.

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Which sentence best describes the production of oxygen gas (0₂) by one of
the light reactions?
O
O
A. ATP molecules made by the thylakoids react with water molecules
to produce O atoms and H* ions.
B. Energized electrons from chlorophyll are transferred to water
molecules, releasing oxygen gas (0₂).
C. Hydrogen ions (H*) build up inside the thylakoids until they cause
water molecules to split into atoms of O and H.
OD. Photons of light absorbed by chlorophyll provide the energy to
split water molecules, forming O2 and H+.

Answers

During light-dependent reactions, photons from sunlight exhite electrons that move along the electron transporter chain. D) Photons of light absorbed by chlorophyll provide the energy to split water molecules, forming O₂ and H+.

What are the light-dependent reactions?

Photosynthesis involves two stages: light-dependent and light-independent reactions.

Light-dependent reactions occur in the thylakoids.

During these, oxygen is released, while ATP and NADPH are produced. Both of them are used during light-independent reactions.

Photosynthetic pigments are in charge of light absorption.

When sunlight reaches the pigments, electrons get excited by photons and move along the electron transport chain, placed in the thylakoid membrane.

As chlorophyll donates electrons when they get excited, new electrons provided by water molecules replace the excited ones.

Water splits into oxygen and two protons in the thylakoid space.

The final products are oxygen, ATP, and NADPH.

The correct option is D) Photons of light absorbed by chlorophyll provide the energy to split water molecules, forming O₂ and H+.

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The elements produced in stars by nuclear fusion are called_________
Othe light elements
O the heavy elements
Othe carbonic elements
Ohydrocarbons

Answers

The production of chemical elements within stars through nuclear fusion reactions is known as stellar nucleosynthesis. Since the initial generation of hydrogen, helium, and lithium during the Big Bang, stellar nucleosynthesis has taken place.

The elements produced in stars by nuclear fusion are called the light elements

What elements are created by nuclear fusion in stars?Fusion occurs in three stages in stars like the Sun. In the first, deuterium is created when two hydrogen atoms combine. The deuterium is then fused with another hydrogen atom to produce a rare isotope of helium with a nucleus made up of two protons and one neutron.The nuclei of two atoms come together in a nuclear fusion process to form a brand-new atom. Most frequently, two hydrogen atoms will combine to form a helium atom in the center of a star.The production of chemical elements within stars through nuclear fusion reactions is known as stellar nucleosynthesis. Since the initial generation of hydrogen, helium, and lithium during the Big Bang, stellar nucleosynthesis has taken place.

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Even a population that is 98% melanic retains the factor for light color in some of its members. What would hap-
pen fi the environmental conditions were again reversed? Peppered moth

Answers

How is melanism passed down?

In conclusion, melanism can develop from mutations of the extension gene that change MC1R or mutations of the agouti gene that change ASIP. However, genetic research on farmed bird species has shown numerous genes that can lead to various melanisms.

What would happen if we reversed climate change?

Earth's temperature would continue to rise for a few decades even if all human emissions of heat-trapping gases were to stop today. This is because ocean currents would transport extra heat stored in the deep ocean back to the surface. Earth's temperature would settle once this extra heat was dissipated into space.

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Most cell types are permeable to water. An exception is cells of the __________, which can be either impermeable or permeable, depending upon the location of __________.

Answers

Most cellular kinds are permeable to water. An exception is cells of the distal nephron which may be either impermeable or permeable depending upon the region of aquaporins.

Excessive medullary interstitial osmotic pressure affords the driving pressure for the osmotic flow of water via accumulating ducts making water permeable with the aid of the action of vasopressin. high permeability permits osmotic equilibrium among urine and medullary interstitial fluid. The distal nephron epithelium is impermeable to water without vasopressin.

The frame loses water on the whole thru the kidney machine. In common, a person produces 1.5 liters of urine in line with the day. Urine output varies with hydration tiers, but minimum urine output is needed for the proper frame feature. changes in pH are the end result of modifications in the quantity of carbon dioxide within the body.

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(q005) if the genome of the bacterium e. coli requires about 20 minutes to replicate itself, how can the genome of the fruit fly drosophila be replicated in only 3 minutes?

Answers

If the genome of the bacterium e. coli requires about 20 minutes to replicate itself, the genome of the fruit fly drosophila be replicated in only 3 minutes because drosophila DNA contains more origins of replication than E. coli DNA.

The word "bacteria," which is plural, is spelled "bacterium." To put it another way, you only use the word "bacteria" when there are multiple them and "bacterium" when there is only one.

A bacterium is a very small living entity that lacks a recognisable nucleus and has cell walls in biology. The term itself is derived from the Greek word bakterion, which means "small stick or rod" and describes the form of a bacteria under a microscope.

The basic shapes of bacteria are grouped into five categories: spherical (cocci), rod-shaped (bacilli), spiral-shaped (spirilla), comma-shaped (vibrios), and corkscrew-shaped (bacilli) (spirochaetes).

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