in which eukaryotic organelle are various macromolecules broken down and destroyed? group of answer choices endoplasmic reticulum the golgi apparatus

Answers

Answer 1

Eukaryotic organelles are various macromolecules broken down and destroyed in lysosomes.

What are lysosomes?

The endomembrane system is a group of membranes and organelles in eukaryotic cells that works together to modify, package, and transport lipids and proteins. The endomembrаne system includes the nucleаr envelope, lysosomes, vesicles, the ER, аnd Golgi аppаrаtus, аs well аs the plаsmа membrаne.

The RER modifies proteins аnd synthesizes phospholipids used in cell membrаnes. The SER synthesizes cаrbohydrаtes, lipids, аnd steroid hormones; engаges in the detoxificаtion of medicаtions аnd poisons; аnd stores cаlcium ions. Sorting, tаgging, pаckаging, аnd distribution of lipids аnd proteins tаke plаce in the Golgi аppаrаtus. Lysosomes аre creаted by the budding of the membrаnes of the RER аnd Golgi. Lysosomes digest mаcromolecules, recycle worn-out orgаnelles, аnd destroy pаthogens.

Your question is incomplete, but most probably your full multiple choices were

a. lysosome

b. the Golgi apparatus

c. mitochondria

d. endoplasmic reticulum

Thus, the correct answer is A.

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Related Questions

Explain the difference between DNA replication and protein synthesis. When does each process occur? Why does each process occur? Which process happens more often? Explain your reasoning.

Answers

)Protein synthesis is the process by which a linear chain of amino acids is produced on the basis of information stored in a gene. DNA replication is the procedure by which an identical replica (copy) of an already existing double-stranded DNA molecule is produced

why is phosphorylation/dephosphorylation a prominent switch mechanism (compared to allosteric binding)?

Answers

Phosphorylation/dephosphorylation is a prominent switch mechanism (compared to allosteric binding) because It is a rapid mechanism to switch on/off, and universally (targeting Tyr, Ser, Thr residues).

An event that occurs primarily on a protein surface, phosphorylation and dephosphorylation are significant posttranslational changes of natural proteins. These biological mechanisms are crucial for intracellular signal transduction cascades and enzymatic activity switching. It is essential to select fluorogenic probes with high binding affinity to phosphorylated peptides and proteins if you want to be able to see these activities in real time.

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which of the following is true about pepsin? select one: a. most pepsin is released directly from chief cells b. pepsin is most active at high ph c. pepsin accelerate protein digestion d. pepsin accelerates fat digestion

Answers

The true statement about pepsin is: (d) pepsin accelerates fat digestion.

Pepsin is the digestive enzyme. It has the precursor called pepsinogen which is released from the chief cells. The site of action of the enzyme is the stomach that has an acidic environment. The pepsin enzyme is involved in the digestion of fats.

Digestion is the process of ingesting food in the form of large macromolecules into smaller soluble molecules. In this, the large carbohydrates, proteins and fats are broken down. For this a complete digestive system is present inside the body with several organs, enzymes and hormones involved.

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1. At what auxin concentration
are the stems stimulated to grow the most?

Answers

Auxin in high concentrations increases stem development while inhibiting root growth.

Why do roots grow?

Under ideal circumstances, root growth happens equally well from nursery stock that has been grown in containers, fields, or as bare roots. This enables the tree to continue growing vigorously and establish itself fast. The structure of the root system is another fac tree formation tor in.

Trimming roots encourages growth?

Long used in nursery tree development as well as to manage fruit tree vigor and cropping. Despite the anecdotal evidence suggesting pruning can promote root growth and can be especially helpful in reversing the effects of root circling, gardeners are frequently hesitant to cut and clip roots.

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Study the illustration.

Which statement best describes the genetic material that is being separated in the illustration?

Answers

Answer:

Homologous chromatids

Homologous pair: two chromosmes, each inherited from a different parent, and identical in appearance and length.

Chromatids: two halves of a chromosome that have been replicated during cell division.

explain the role of meiosis in sexual reproduction and evolution, distinguishing between somatic and germ-line cells (gametes).

Answers

Meiosis is a process that takes place while gametes develop and results in cells with half the usual amount of chromosomes.

By preventing reduction division, meiosis prevents an increase in the number of chromosomes.

Any cell in a multicellular organism that is not a germ-line cell is referred to as a somatic cell. Gametes, or germ-line cells, are haploid reproductive cells (eggs and sperm). During fertilization, combine to create a zygote.

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human enzymes digest proteins in which areas of the body? multiple choice mouth and stomach mouth and small intestine small and large intestines stomach and small intestine

Answers

Protein digestion starts at stomach and mainly proteins are digested in the small intestine which has all the enzymes.

Amino acids are used to make dietary proteins. Protein from food can be used by the body for energy, muscular building, or integration into substances containing nitrogen. Protein is first broken down into smaller peptides in the stomach by an enzyme called pepsin, and then it is further broken down in the small intestine by pancreatic and intestinal lining enzymes. These peptides are subsequently converted into dipeptides and tripeptides, which can pass through the lining of the intestine. Any of these processes that are changed or aberrant might lead to disorders of protein digestion.

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What is determined by genes that direct the amount of eumelanin or pheomelanin produced by
melanocytes associated with hair follicles?

Answers

The type and amount of melanin produced by melanocytes is determined by genes. Eumelanin is a dark brown to black pigment that is responsible for brown and black hair colors. Pheomelanin is a reddish-brown pigment that is responsible for red and blonde hair colors.

What are eumelanin and pheomelanin?

A dark pigment called eumelanin is the main component of black and brunette hair. The pigment eumelanin comes in two varieties (brown eumelanin and black eumelanin). Blond hair is reportedly caused by a minor amount of brown eumelanin in the absence of other pigments. The redder parts of the skin, such as the lips, are concentrated with pheomelanin, a lighter pigment that is present in red hair. People with red hair typically have fairly pale skin that burns rapidly when exposed to the sun because they are less able to produce the dark eumelanin pigment.

The amount of a pigment called melanin in hair determines hair color. People with black or brown hair have high levels of eumelanin, one kind of melanin. Red hair is caused by an excess of pheomelanin, another pigment.


Hence, eumelanin and pheomelanin are responsible for hair color.
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Look at the diagram. What is the compound shown? Give the name, not the symbols.

Answers

Answer:

where is that diagram shown

what is the connection between ATP and the two other energy-carrying molecules in cellular respiration?

Answers

Answer:

6

Explanation:

explain what biological process are occurring for the specific changes in co2 observed (for both light and dark conditions). elaborate on this by including an explanation for the reactants and products (internal processes)?

Answers

The biological process responsible for the precise changes in CO2 that have been seen is photosynthesis (for both light and dark conditions). Carbon dioxide and water are the reactants of photosynthesis, and light energy transforms them into glucose and oxygen (the products).

Plants ingest water (H2O) and carbon dioxide (CO2) during photosynthesis from the soil and atmosphere. In contrast to carbon dioxide, which is reduced within the plant cell and gains electrons, water is oxidized within the partition of the plant. Due to this, carbon dioxide and water are converted into glucose and oxygen, respectively. Once the oxygen has been returned to the atmosphere, the plant stores energy within glucose molecules.

Accordingly, we can conclude that the biological process is responsible for the specific changes in CO2 that have been observed in photosynthesis. The reactants, carbon dioxide and water, are changed into glucose and oxygen by light energy during photosynthesis.

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in crosses between fish of the two different morphologies, the lack of bony armor segregates as a recessive trait that maps to the ectodermal dysplasin (eda) gene. comparisons between the eda-coding regions of the armored and non-armored fish revealed no differences. what is the explanation for this result? in crosses between fish of the two different morphologies, the lack of bony armor segregates as a recessive trait that maps to the ectodermal dysplasin (eda) gene. comparisons between the eda-coding regions of the armored and non-armored fish revealed no differences. what is the explanation for this result? the difference between the two species of sticklebacks would be in allelic forms of eda. the difference between the two species of sticklebacks would be regulatory sequences controlling eda expression. the difference between the two species of sticklebacks would be some other gene controlling the development of bony plates. the difference between the two species of sticklebacks would be conferred by environmental signals.

Answers

The explanation for the result of comparisons between the EDA-coding regions of the armoured and non-armoured fish revealed no differences in the difference between the two species of sticklebacks that would be conferred by environmental signals.

Thus, the correct option is E.

What is ectodermal dysplasia (EDA)?

The EDА gene provides instructions for mаking а protein cаlled ectodysplаsin А. This protein is pаrt of а signаling pаthwаy thаt plаys аn importаnt role in development before birth. Specificаlly, it is criticаl for interаctions between two embryonic cell lаyers cаlled the ectoderm аnd the mesoderm.  

Аrmor plаte chаnges in sticklebаcks аre а clаssic exаmple of repeаted аdаptive evolution. Previous studies identified ectodysplаsin (EDА) gene аs the mаjor locus controlling recurrent plаte loss in freshwаter fish. Here we show thаt freshwаter EDА аlleles hаve cis-аcting regulаtory chаnges thаt reduce expression in developing plаtes аnd spines. Аn identicаl T → G bаse pаir chаnge is found in EDА enhаncers of divergent low-plаted fish. Recreаtion of the T → G chаnge in а mаrine enhаncer strongly reduces expression in posterior аrmor plаtes.

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1. What is fluid? What states of matter are considered fluids?


2. What role does blood have in the human body?


3. In what way(s) can fluids be harmful to society or the environment?


4. Describe 3 examples (s) in which fluids can help a machine operator.


5. List 3 of the fluids in our bodies that are important for our survival.

Please don't copy and paste

Answers

Answer:

1. Fluids are substances such as liquid and gas that can easily flow and have random molecular motion.

2. Blood transports oxygen to many parts of our bodies. It also takes carbon dioxide to the lungs, kidneys, or other filters to be removed from our bodies.

3. When a fluid is contaminated, it may cause serious damage to the environment. For example, if an organism consumes polluted water, it could get very sick and possibly die.

4. Fluids such as water can be used to cut metal by being sprayed at a high speed. Gasoline is used to run all kinds of machines. Water can also be used to clean and cool down machines.

5. Blood, sweat, and urine are all important fluids in our bodies and are created by our bodies.

Explanation:

Really hope this helps you!

explain the test the scientist devised to examine cats knowledge

Answers

Cats knowledge is tested via the objects showing to the cats if they look for it or not.

What is the cats level of intelligence ?

A cat's behavior is exactly to that of 2 years old toddler.

To test a cat's intelligence, show a cat a toy and hide the object  behind something. In case if the  cat tries to find the toy behind the object then the cat  may have above-average intelligence. A try can be done on this as well that we can also try placing a container of your cat's food or treats next to its food bowl.

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what is the main fate of pyruvate in skeletal muscle when oxygen is limited, such in the first minute of high intensity exercise? what is the purpose of this reaction in muscle during exercise? what happens to the product of this reaction in the body?

Answers

NAD+ is produced during the production of lactate, and it can be recycled during glycolysis.

Intensity and an example are what?

According to the dictionary, intensity is the characteristic of being extremely powerful, concentrated, or difficult, or the strength or difficulty level of anything. Being able to run at your full speed for miles on end is an example of intensity. The speed at which a treadmill is going is an illustration of intensity. noun.

What is light intensity?

The pace at which light disperses over a surface of a specific region some distances from a source is referred to as intensity. The intensity changes depending on the source's power and distance from it.

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why do other species have such different ranges of sensitivity for both visual and auditory stimuli compared to humans?

Answers

In order to best fit their specific environmental niches, other species have evolved. Due to the fact that only noises within this frequency range can cause the cochlea in humans to be stimulated, humans have a limited range of auditory sensitivity. Because the cochlea's hair cells have varied lengths, they can pick up different sound frequencies.

The pressure fluctuations caused by vibrating molecules are known as sound waves. The three psychological aspects of sound—loudness, pitch, and timbre—are influenced by the physical properties of sound waves. The amplitude, or height, of sound waves determines how loud something is. The perceived sound volume increases with increasing amplitude.

Although different frequencies of sounds (tones) have the same sound pressure levels, the human ear does not respond to them all equally. The subjective or individual magnitude of a sound is referred to as its loudness. A sound's loudness is not inversely proportional to its sound pressure level and varies depending on the frequency.

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if almost every surface we touch is inhabited by bacteria, why don't bacterial infections occur more often?

Answers

It is because our immune system fights off bacteria.

In most cases, bacteria and the immune system communicate through proteins on the surfaces of the bacteria that the immune system recognizes.

Additionally, certain bacteria produce chemicals that affect our immune cells, either by altering their composition or function by producing more or fewer immune cells.

A strong immune system can fight against pathogens—or disease-causing microorganisms—invading healthy tissue, including bacteria, viruses, parasites, and cancer cells.

The fight against the COVID-19 pandemic depends on our ability to comprehend how the immune system functions and how we can better safeguard our bodies.

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After an initial infection, b-cells recognize the measles virus. How is this helpful in human immune response?.

Answers

Answer:

The B-cells use this recognition to defend the body against other pathogens, such as bacteria.

Explanation:

Hope this helps^^

Answer: See Below

Explanation:

B-cells function is to memorize the characteristics of the antigen that activated their parent B cell during initial infection such that if the memory B cell later encounters the same antigen, it triggers an accelerated and robust secondary immune response.

what are the possible phenotypes of the children if the mother has type o blood and the father has type ab blood? (use the punnett square to verify your answer.)

Answers

The possible phenotypes of the children if the mother has type o blood and the father has type ab blood are A, B, and AB.

An O mother can pass only one O alleles to her son or daughter. An AB father can pass the A or B allele to a son or daughter. This couple may have an A or B child. A parent of O and a parent of AB can only have children of A or B.

At the end of this answer, I have added a table showing all possible blood group combinations for two parents and their children's possible blood groups. Exceptions to these rules are very rare. In fact, an AB parent may have her O child. But it is by no means common. In fact, it is no exaggeration to say that it is extremely rare. Usually, AB parents and A parents can only have A or B children.

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metamorphosis is . group of answer choices the evolutionary transition from fishes to amphibians. an intermediate condition, such as length of legs in mice between longer legs of some mice and shorter legs in others, a condition caused by varied gene expression during development (hox genes). changing of one body form to another within a species, such as the change from an aquatic tadpole to a terrestrial frog. the developmental changing of a scale to a feather.

Answers

Metamorphosis is the change from one body form to another within a species, such as the change from a water tadpole to a land frog.

Metamorphosis is a process of growth and development of an animal that affects body shape and physical appearance. Metamorphosis is divided into two types:

Imperfect metamorphosis is a change in form in an animal whose growth and development go through 3 stages, namely egg, nymph, and imago (adult animal). In this metamorphosis, nymphs are young animals that are similar to adult animals but smaller in size with different body ratios.Complete metamorphosis is a change in form in an animal whose growth and development undergoes 4 stages, namely egg, larva, cocoon/pupae, and imago (adult animal). Animals that undergo this metamorphosis have different forms when they are young (larvae) and when they are adults (imago).

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Answer all please I need it asap
1. A(n) _____________________ transports electrons, along with their energy, to another molecule.

2. What is the equation for photosynthesis?


3. In the __________________________, NADPH and ATP combine with carbon dioxide to produce sugars.


4. In the _________________________, light energy from the sun splits water and generates ATP and NADPH.


5. True / False: Chloroplasts are organelles found in the cells of heterotrophs.


6. True / False: Autotrophs need light in order to carry out photosynthesis.

Answers

1. A(n) electron-carrier molecule transports electrons, along with their energy, to another molecule.

2. The equation for photosynthesis is given below as follows:

6 CO₂ + 6 H₂O + light energy ----> C₆H₁₂O₆ + 6 O₂

3. In the light-independent reaction, NADPH and ATP combine with carbon dioxide to produce sugars.

4. In the light-dependent reaction, light energy from the sun splits water and generates ATP and NADPH.

5. Chloroplasts are organelles found in the cells of heterotrophs is False.

6. Autotrophs need light in order to carry out photosynthesis is True

What is photosynthesis?

Photosynthesis is the process by which plants produce sugars from carbon dioxide and water molecules using the energy of sunlight.

Photosynthesis occurs in two stages:

light stage or light-dependent reactiondark stage or light-independent reaction

Organisms that produce their own foods are called autotrophs whereas organisms that depend on already-made food are heterotrophs.

Autotrophs have chloroplasts in their cells whereas heterotrophs lack chloroplasts in their cells.

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what is found in plant cells but not yeast cells

Answers

Answer:

The plant cell wall is made up of cellulose but that of the yeast is a fungi and its cell wall is made up of chitin

Answer:

Yeast cells lack chloroplasts.

Explanation:

As heterotrophs, yeasts. They cannot make their own food through photosynthesis. Chloroplasts are absent in yeast cells.

____________________

Hope this helps!

Have a great day!

uiuc anth 246 what other traits in humans do you think follow the characteristics of simple inherited traits?

Answers

The following traits are examples of simple inherited traits: They are monogenic, or caused by just one particular gene. They could be binary or discontinuous.

What sort of characteristics are examples?

Characteristics like honesty, loyalty, kindness, and impatience are examples of character traits. These are just a few of the many character traits that might help you better understand yourself or the people around you.

What characteristics are common?

The most common system of attributes is the Five-Factor Theory. The acronym OCEAN, which stands for Openness, Conscientiousness, Extraversion, Agreeableness, & Neuroticism, can be used to remember these five basic characteristics.

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you have chosen to study the genetics of snapdragon flower color. true-breeding red-flowered plants crossed with true-breeding white-flowered plants generate all pink-flowered f1 offspring. when the f1 offspring are crossed, you get the following numbers of f2 offspring: 24 red, 54 pink, and 22 white. you interpret this inheritance pattern as

Answers

The pattern of genetics in snapdragon flower color is that of incomplete dominance.

When a true breeding red flowering plant (RR) crosses with a true breeding white flowering plant (RR), the resultant plant is heterozygous (Rr) and has pink flowers. One allele does not override the effects of the other, and neither characteristic predominates over the other. Because of this, the phenotypic outcome is a combination of the two phenotypes, resulting in plants with pink flowers (a third different phenotype). As a result, it is a type of intermediate inheritance.

However, no genuine blending of alleles or genetic material is visible—only blending of phenotypes. As a result, it cannot be argued that inheritance is being blended. This phenomenon is also known as intermediate dominance.

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which of the following is not the name for a major class of receptors? group of answer choices channel-linked receptors voltage-gated receptors enzyme-linked receptors g-protein coupled receptors intracellular receptors

Answers

The name which does not belong to the group of major classes of receptors is: voltage-gated receptors.

Receptors are the molecules present on the cell membrane or inside any cell that receive any signal by binding to another substance called ligand. They further transmit the signal to accomplish some target inside the cell. The receptors act as molecular switches that can turn the signaling on or off.

Voltage-gated are the channels present on the cell membrane and not receptors. The function of ligand gated channels is to mediate the transport of ions through them. They act depending upon the membrane potential of the cell.

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how common are mutations during dna replication? a. about 5 nucleotides in 6.5 billion are changed during each replication. b. about 50 nucleotides in 6.5 billion are changed during each replication. c. no nucleotides are changed during each replication. d. about 5,000 nucleotides in 6.5 billion are changed during each replication. e. about 500 nucleotides in 6.5 billion are changed during each replication.

Answers

The mutations are common in the sense that about 5 nucleotides in 6.5 billion are changed during each replication (Option a).

What is the mutation rate?

The mutation rate refers to the number of nucleotide changes that emerge at each replication cycle of the DNA molecule, which varies between different types of organisms, especially when comparing prokaryotes and eukaryotes.

Therefore, with this data, we can see that the mutation rate is the number of alterations in the DNA molecule after replication and the number is variable between different groups of species in nature.

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which of the following provides support for the endosymbiotic hypothesis? multiple choice mitochondria and chloroplasts have their own genomes. double membranes are around mitochondria and chloroplasts. mitochondria and chloroplasts contain genes that are strikingly similar to bacterial genes. mitochondria and chloroplasts can synthesize proteins. all of the above statements provide support for the endosymbiotic hypothesis.

Answers

Statements that provide support for the endosymbiotic hypothesis are mitochondria and chloroplasts have their own genomes, double membranes are around mitochondria and chloroplasts, mitochondria and chloroplasts contain genes that are strikingly similar to bacterial genes and mitochondria and chloroplasts can synthesize proteins.

The Endosymbiotic Theory states that the mitochondria and chloroplast in eukaryotic cells have been as soon as cardio bacteria (prokaryote) that have been ingested via way of means of a huge anaerobic bacteria (prokaryote). This principle explains the beginning of eukaryotic cells.

The endosymbiotic speculation for the beginning of mitochondria (and chloroplasts) indicates that mitochondria are descended from specialised bacteria (possibly crimson nonsulfur bacteria) that one way or the other survived endocytosis via way of means of every other species of prokaryote or a few different cell type, and have become included into the cytoplasm.

Correct option is 5) All of the above.

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What is a group of cells that run from left to right and are identified by numbers?.

Answers

Using the concepts of cell ,we got that range is a group of cells that run from left to right and identified by numbers.

Cell, in biology, is basically the basic membrane-bound unit that contains the fundamental molecules of life and of which all the living things are composed. A single cell is also  a complete organism in itself, such as a bacterium or yeast. Other cells which acquire specialized functions as they mature. These cells cooperate also with other specialized cells and become building blocks of large multicellular organisms, such as humans and other animals.

Hence, the group of cells that run from left to right and are identified by numbers is range.

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complex structures like supramolecular systems and organelles are formed from macromolecules through the process of

Answers

The method by which organelles and other complex structures like systems are created.

Which organelle is the most important?

The nuclear is arguably the most significant cellular organelle. In fact, the mere existence of a core is seen to be one of a eukaryotic cell's distinguishing characteristics. Since this structure is where the cell cycle is stored and where the process of reading it starts, it is extremely Since this structure is where the cell cycle is stored and where the process of reading it starts, it is extremely.

What are functions of organelle?

Cytosolic components known as organelles perform tasks required to keep the cell's homeostasis in check. They have a part in a variety of functions, including the production of proteins and secretions, the elimination of toxins, and the interpretation of outside signals.

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what is another term for the cellular response that results in the delay of division of cells in the cell cycle?

Answers

Mitotic delay is another name for the cellular reaction that causes a delay in cell division during the cell cycle. Microtubule poisons that cause a mitotic delay also activate DNA damage signalling, which has an impact on subsequent cell cycle progression and apoptosis.

The term "mitotic catastrophe" refers to a mechanism of postponed mitosis-related cell death, a series of circumstances resulting from cells entering mitosis prematurely or inappropriately, which can be brought on by chemical or physical stresses. Mitotic catastrophe, which is seen in cells lacking functional apoptotic pathways, is unrelated to programmed cell death. It has been noticed after ionising radiation-induced delayed DNA damage. Other factors that can cause it include substances that affect the integrity of microtubule spindles, some anticancer medications, and mitotic failure brought on by faulty cell cycle checkpoints. When there are errors in the division of the genetic material between daughter cells, this mechanism can go into action. The main cause of reproductive cell death in cancer cells exposed to ionising radiation is mitotic catastrophe. Many cells die after an aberrant mitosis brought on by a mitotic catastrophe, however not all do. Following subsequent attempts at cell division, cells that do not immediately die are likely to produce aneuploid cells, which increases the risk of oncogenesis. Using meiotic cell division pathways, a tiny portion of these aneuploid cells produced by mitotic catastrophe may later undergo reductive division to decrease DNA ploidy.

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help me please ! correct answer gets brainliest A and B are similar cuboids.surface area of A: surface area of B = 16:2.Work outvolume of A: volume of B the price of a 2 liter bottle of sprite holds 67.6 oz and costs $3.38. what is the unit price per oz Are the graphs of the pair of equations parallel, perpendicular, or neither?y = 2x + 12x - y = 3 Graph this line using the slope and y-intercept: y= 1/5x + 8 Explain how the greenhouse gas effect contributes to climate change. much research and development are needed to create the next iphone. do companies capitalize and amortize research and development costs over the life of the product, or are research and development costs expensed as incurred? A: 10:00 am a truck started traveling from point A with a speed of 40mph. 3 hoursand 10 minutes later a car started to drive from point A in the same directionwith anaverage speed of 60mph. At what time will the car catch up withthe truck? 1. They made a plan to visit the office in Chicago. Function: _____________________ How long is long? Please help I need to know A wave on a rope is shown in the diagram. In the diagram, d = 3 m.(a) What is the wavelength of this wave?(b) If the frequency is 5 Hz, what is the speed of the wave? Alrighty Hamilton fans, I've got a query for you: Identify five major weaknesses in the articles of confederation according to Alexander Hamilton's opinions on the constitutional convention. A box is dropped out of a moving airplane. The airplane is traveling at 50 m/sEast. The box is dropped from rest with respect to the airplane. The box travels avertical distance of 40 m before landing on a trampoline. The airplane continuestraveling at a constant speed after the box is dropped and the wind resistance onthe falling box is negligible.Choose the option that correctly identifies the missing terms, in order of theirappearance in the sentences.The box has an initial horizontal velocity ofofm/s. The box takesseconds to reach the ground. The box experiences an accelerationm/s2. The box will land directlythe airplane. in order to estimate the proportion of all credit card holders who pay their credit card bills in full each month a credit counseling bureau took a random sample of 450 credit card holders and found that 127 pay all their credit card bills in full each month. a 99% confidence interval for the proportion of all credit card holders who pay all their credit card bills in full each month is: What is the CPT code for Hemiglossectomy?What is the CPT code for a transnasal biopsy of the esophagus?What is the CPT code for a percutaneous endoscopic colostomy? Pete's appliance received a bill dated July 15 for $26,000 with terms of 2/10, 1/15, n/60. On July 27 Pete sent in a partial payment of $6,000. What is the amount credited as well as the balance due? help meeeeee pls bro the nurse is preparing discharge education for a patient with a permanent colostomy. what information concerning diet and nutrition will the nurse include? The plot of Hamlet involves the appearance of a ghost. In the text entry box below, answer the following questions : Why are ghost stories popular? How do they relate to beliefs about the afterlife ? abc, inc. has purchased a factory for $150,000 with an expected useful life of 6 years or 50,000 hours of use. they use the machine 5,000 hours per year to produce their product. the expected salvage value is $25,000. what will the depreciation expense be for each year? what will be the balance of accumulated depreciation? assume you are using the following methods: a. straight-line b. double-declining balance c. units-of-production