during hdn, the newborn develops hyperbilirubinemia after birth, but not in utero because: a. excretion of unconjugated bilirubin through the placenta into the mother's circulation is no longer possible. b. the liver of the fetus is too immature to conjugate bilirubin from a lipid-soluble to water-soluble form. c. the destruction of erythrocytes producing bilirubin is greater after birth. d. hemoglobin does not break down into bilirubin in the intrauterine environment.

Answers

Answer 1

During HDN, the newborn develops hyperbilirubinemia after birth, but not in utero because of the reason: (a) excretion of unconjugated bilirubin through the placenta into the mother's circulation is not possible.

Hyperbilirubinemia is the condition of excessive bilirubin present in the neonate's blood. Bilirubin is formed inside the body when the RBCs break down. The common causes resulting in the condition are: fetal-maternal blood group incompatibility, prematurity, or a previously affected sibling.

Placenta is a tissue formed in the mother's uterus after fertilization. It is the source of providing food and nutrients to the fetus. It is also involved in the removal of wastes.

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Related Questions

in the control sample histogram, does the population of cells in the s phase show a distinct peak? why or why not?

Answers

No, As the S phase develops, the amount of DNA in each cell varies, giving the S phase cells a variety.

What about histogram?A histogram is a graphic representation of data that uses bars of various heights.A histogram's bars divide numbers into ranges.More data falls inside that range, as shown by taller bars.The form and distribution of continuous sample data are shown in a histogram. It is used to display summaries of discrete or continuous data that have been interval-scaled. It is frequently used to conveniently depict the main characteristics of the data distribution. While bar charts show categorical variables, histograms show quantitative or numerical data. The majority of the time, a histogram's numerical data will be continuous (having infinite values).It would be impossible to show every potential value of a continuous variable along an axis. A collection of rectangles with bases and the spaces between class boundaries can be referred to as a histogram. Each rectangular bar represents some type of data, and every rectangle is next to another. Rectangle heights are inversely correlated with matching frequencies for both similar and dissimilar groups. Large amounts of data as well as the frequency of the data values can be seen in histograms. A histogram can be used to find the data's median and distribution. It might also highlight any anomalies.

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the continental margins of the east and west cost of the united states are very different. Are there tectonic differences?

Answers

The west coast is considered the active margin where earthquakes, volcanoes, and mountains are formed whereas the Eastern Seaboard is a passive margin.

What continental margin is the western United States?

Continental margins commonly fall into two classes: "active" and "passive." The West Coast of the United States is an active margin that is distinguished by rugged coastlines with narrow beaches and steep sea cliffs. The continental margin of western North America is close to a set of plate boundaries. There are convergent boundaries, like where there is diminution off of the Pacific Northwest. There is a transform boundary that is present in the San Andreas Fault. The “Pacific Ocean” is marked by the active continental margins which are mainly the narrow tectonically active areas related to the volcanoes,

So we can conclude that a continental margin is the outer edge of continental crust abutting oceanic crust under coastal waters.

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proton-pump inhibitors are drugs that block the secretions of gastric acids. which cells are affected by these drugs? proton-pump inhibitors are drugs that block the secretions of gastric acids. which cells are affected by these drugs? diffuse neuroendocrine system (dnes) cells mucous neck cells chief cells parietal cells

Answers

Drugs called parietal cells prevent the stomach juices from being secreted.

Proton pump inhibitors transport what kinds of chemicals into the stomach?

Acid activates proton pump inhibitors (PPIs), which are prodrugs. Gastric H+, K+-ATPase and activated PPI are bonded covalently by a disulfide bond. PPIs bind to Cys813, which is the main location that inhibits the acid pump enzyme.

How do proton pump inhibitors impact stomach acid?

Gastric H,K-ATPase is blocked by proton pump inhibitors (PPIs), which reduces the production of gastric acid. As part of combination regimens, this effect allows for the healing of peptic ulcers, gastroesophageal reflux disease (GERD), Barrett's esophagus, Zollinger-Ellison syndrome, and Helicobacter pylori eradication.

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when the immune response mistakenly targets normal body cells and tissues, a(n) develops. a) autoimmune disease b) immunodeficiency disease c) allergic response d) cross-reaction e) agglutination reaction

Answers

When the immune response mistakenly targets normal body cells and tissues develops an autoimmune disease.

When the body's natural defense system can't distinguish between your cells and alien cells, it develops an autoimmune illness and unintentionally attacks healthy cells. Autoimmune illnesses come in more than 80 different varieties and affect many different body parts.

Fundamentally, autoimmune illness develops when the immune system, one of the body's natural defenses, attacks healthy tissue. There are various theories among researchers as to why this occurs. The immune system activates and launches an attack when the body detects a virus or infection as a threat.

More than 80 autoimmune illnesses afflict over 4% of the world's population, the most prevalent of which are type 1 diabetes, multiple sclerosis, rheumatoid arthritis, lupus, and Crohn's disease.

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which molecules synthesized by plants is a major source of energy for cellular processes in both plants

Answers

Glucose is a chemical that both plants and animals can produce and is a primary source of energy for cellular operations.

What is glucose?

Blood sugar, usually referred to as glucose, is the main sugar found in your blood.It comes from the food you eat and is the main energy source in your body.All of the cells in your body utilize glucose, which is transported by blood, to provide energy. Your blood sugar levels are excessively high if you have diabetes.Although there are many different kinds of carbohydrates, the body primarily uses glucose. Fructose and other sugars are converted into glucose and used as an energy source.All plants contain glucose, a sugar that has been solubilized. In addition to being a universal source of carbon, glucose also functions in plants as a signaling molecule, controlling a variety of metabolic activities.From germination to senescence, a variety of plant processes are controlled by glucose.

Therefore, Glucose is the molecule that is the major source of energy

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which of the following is true of a nonsense suppressor mutation? group of answer choices it reverts the mutant genotype to the wild type dna sequence it prevents binding of a translation termination/release factor it is always located in the anticodon loop of a trna it results in a protein with the wild type amino acid sequence it can restore the wild type phenotype of a gene with a single nucleotide deletion mutation

Answers

A second mutation that affects the translational machinery can produce a nonsense suppressor. With this mutation, the cell can respond to the nonsense codon by insertion of an amino acid, leading to a wild-type or nearly wild-type phenotype.

What takes place in nonsense mutations?

DNA undergoes nonsense mutations when a sequence change results in a stop codon rather than a codon that specifies an amino acid. The new stop codon leads to the creation of a truncated protein that is probably not functional.

What impact does a suppressor mutation have?

In a procedure known as synthetic rescue, a suppressor mutation is a second mutation that lessens or reverses the phenotypic effects of an already existing mutant. Therefore, genetic suppression brings back the phenotype that existed before the original background mutation.

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Tavon wants to conduct a survey asking parents about their spending habits for their children.

Tavon should adhere to responsible ethical practices in his research. Which one of the following behaviors must be completed?

A. Tavon must record the names and ages of the children.

B. Tavon must pay the parents with money or a gift card for their time.

C. Tavon must see the parents' bank records to make sure they are telling the truth.

D. Tavon must keep the families' names in the study confidential and private.

Answers

Answer:

D

Explanation:

A. would infringe on safeguarding and ethical grounds

B. not adhering to ethical guidelines, no guarantee for confidentiality

C. would also infringe on safeguarding and ethical grounds

in a cross of a homozygous dominant individual with green peas to a homozygous recessive individual with yellow peas, what are the expected genotype frequencies for the offspring?

Answers

Mendel noted in his breeding studies that 100% of the YG progeny will have a yellow phenotype because the Y (yellow) allele is dominant over the G (green) allele in pea plants.

Heterozygous genotype refers to an organism with one dominant allele and one recessive allele. This genotype's designation in our case is Bb. Finally, homozygous recessive refers to an organism's genotype that consists of two recessive alleles. This genotype is represented as bb in the example of the eye colour.

A mating experiment between two organisms that are equally hybrid for two traits is referred to as a dihybrid cross. A heterozygous organism is one that possesses two distinct alleles at a certain genetic location, making it a hybrid.

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Flow of filtrate through the tubules is elevated. Complete the following statements to indicate the effectS Of IS T re than once, or not at all. G and drop the terms on the left to complete the sentences on the right. Words may be used once, more than once, or not at all. Decreases Filtrate flow through the renal tubule increases when glomerular filtration rate

releasing When filtrate flow through the renal tubule increases, reabsorption of sodium chloride by the tubule

vasoconstricting When filtrate flow through the renal tubule increases, the concentration of sodium chloride remaining in the filtrate

not releasing When filtrate flow through the renal tubule increases, the macula densa responds by vasoconstrictors

increases When filtrate flow through the renal tubule increases, the afferent arteriole responds by

vasodilating

Answers

Decreases Filtrate flow through the renal tubule increases when glomerular filtration rate releasing When filtrate flow through the renal tubule increases, reabsorption of sodium chloride by the tubule.

The nephron, a functional unit of the kidney, is made up of structures called renal tubules. Nephron functions include controlling the balance of water and body electrolytes, reabsorption of glomerular filtrate, and secretion of waste products. The majority of reabsorption takes place in the proximal contoured tubule of the renal tubules. Electrolyte equilibrium is affected by Henle's handling. Distal contoured tubule in charge of secreting chemicals for elimination.99% of the glomerular filtrate can be reabsorbed by the renal tubules. Since the tube flow is dependent on the rate of glomerular filtrate, which is roughly 120 millilitres per minute, an increase in glomerular filtrate will result in an increase in both the amount of filtered fluid flowing and the amount that flows.

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A protein that is found in the Golgi apparatus was synthesized:

a. in the nucleus.

b. on ribosomes located in the smooth ER.

c. on ribosomes bound to the rough ER.

d. on ribosomes located in the chloroplast.

e. on ribosomes located in the cytoplasm..

Answers

The Golgi apparatus processes and sorts proteins from the ER for transport to lysosomes, the plasma membrane, or secretion. Therefore, option (C) is correct.

What are golgi apparatus?

Proteins obtained from the ER are further processed and sorted in the Golgi apparatus, or Golgi complex, where they are eventually transported to lysosomes, the plasma membrane, or secretion. As was already mentioned, the Golgi also produces sphingomyelin and glycolipids.

The flattened cisternae and related vesicles make up the Golgi apparatus. The Golgi apparatus' cis face is where proteins and lipids from the ER enter, and its trans face is where they leave.

The transport, sorting, and modification of both protein and lipid are the three main tasks performed by the Golgi apparatus, and these tasks are reflected in the protein makeup of the organelle.

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I need help, there are more questions.. but ill post them afterwards.

Answers

Answer:

 

Explanation:

1. biogeochemical cycle, any of the natural pathways by which essential elements of living matter are circulated. The term biogeochemical is a contraction that refers to the consideration of the biological, geological, and chemical aspects of each cycle.

nitrogen cycle

nitrogen cycle

Elements within biogeochemical cycles flow in various forms from the nonliving (abiotic) components of the biosphere to the living (biotic) components and back. In order for the living components of a major ecosystem (e.g., a lake or a forest) to survive, all the chemical elements that make up living cells must be recycled continuously. Each biogeochemical cycle can be considered as having a reservoir (nutrient) pool—a larger, slow-moving, usually abiotic portion—and an exchange (cycling) pool—a smaller but more-active portion concerned with the rapid exchange between the biotic and abiotic aspects of an ecosystem.

2.  oxygen, carbon, hydrogen, nitrogen, sulfur, and phosphorus

175,000 kcal/m2/yr , and the plant respiration is estimated to be 115,000kcal/m2/yr . what is the total amount of energy transferred during photosynthesis for this ecosystem?

Answers

The total energy exchanged during photosynthesis for this environment is 290,000 cal/m2/yr.

The term "net primary productivity" refers to the amount of energy retained by an environment's biomass when energy is released for metabolism and maintenance. Net primary productivity, as opposed to gross primary productivity, refers to the total energy input into the ecosystem before taking into account energy loss.

Net primary productivity (NPP) is calculated mathematically as Gross Primary Productivity (GPP) - Respiration.

NPP = 175,000 cal/m2/yr for the pine forest, and respiration = 115,000 cal/m2/yr, hence GPP = 175,000 + 115,000 = 290,000 cal/m2/yr.

Therefore, 290,000 cal/m2/yr of energy is transported throughout photosynthesis for the environment as a whole.

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undifferentiated blood cell: a.hematopoietic stem cell b.thrombocyte c.lymphocyte d.segmented cell e.granulocyte

Answers

Undifferentiated blood cells are hematopoietic stem cells.

The hematopoietic stem cell (HSC) is the sole type of cell that makes up the mammalian blood system, which is composed of more than ten distinct mature cell types.

Undifferentiated and multipotent, hematopoietic stem cells (HSCs) have the potential to transform into any and all blood cells, including lymphoid- and myeloid-lineage cells.HSCs can be found in a variety of organs, including umbilical cord blood (UCB), bone marrow (BM), and peripheral blood (PB). Functional maturation of a small population of multipotent HSCs that are capable of self-renewal and differentiation is the process by which all blood cell lineages are created.

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case study review the nitrogen and phosphorus cycles. how is fertilizer runoff related to algal blooms?

Answers

Fertilizer runoff leads to excess nutrient and promotes algal blooms. The major nutrient responsible for algal bloom is nitrogen and phosphorus.

Nutrient pollution, or an excess of the vital plant nutrients phosphorous and nitrogen, is what can cause blooms. These substances enter rivers through a variety of pathways, including point sources (such as industrial and wastewater treatment plant discharges), nonpoint sources (such as septic tanks and stormwater runoff from cities, farms, and residential areas), and nutrient-rich rainfall. The ideal triad of temperature, sunlight, and low flow can cause an algal bloom when the levels of nitrogen and phosphorus in a body of water rise. Although nitrogen and phosphorus are present in nature and are vital plant nutrients, an excess of these nutrients can lead to serious ecological imbalances in a water body, with blooms as one symptom.

Stormwater ponds in Florida frequently have large populations of algae during the warmer months. The purpose of stormwater facilities is to collect polluted runoff. The ponds aid in the removal of sediment and nutrients before these pollutants enter sensitive waterways.

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which lead reciprocal views may show heart injury of the inferior wall of the left ventricle when the normal lead views from leads ii, iii, and avf may show no injury?

Answers

When lead images from leads I and a VL lead are taken reciprocally, a left ventricular damage to the inferior wall of the heart injury may be visible.

What is the duration of a chest injury?

Your type of damage and the severity of your wound will determine how much pain you experience and how long it might continue. In general, it takes roughly 4-6 weeks for cracked ribs and sternums to heal, and it is common to still experience some discomfort after this time. Healing from bruises can take two to four weeks.

When a chest injury becomes serious ?

Significant chest damage when pain or breathing problems appear right away after an injury, the lungs, heart, or blood vessels inside the chest may have been harmed. Other symptoms, such as extreme breathlessness or shock-related symptoms, frequently appear suddenly.

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Which choice best describes when a cell becomes 1n?

Answers

The best choice that describes a cell becoming 1n is option A, after meiosis when forming a gamete

What is the process of meiosis?

In prophase 1, a crossing occurs between homologous chromosomes before they are lined up in the metaphase plate is called meiosis. During this process, homologous chromosomes are separated to form daughter cells in the first division to create what are called haploid cells, 1n cells.

The primary function of meiosis is to reduce gametes from being diploid (2n) to haploid (1n). These 1n cells now contain a set of 23 chromosomes instead of 2 sets.

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A motorcycle is moving at a constant speed of 40 km/h. How long does it 1
take the motorcycle to travel a distance of 8 km?
Your answer

Answers

Calculating with the definition of speed, it will take the motorcycle 0.2 h (12 minutes) to travel a distance of 8 km.

First, you have to know that speed ​​is a measurement quantity that explains the relationship between the distance travelled by an motorcycle in the given case. Thus the speed is linked with the change of position of motorcycle in distance within a definite amount of time.

The speed can be calculated using the following formula;

In the given case;

speed= 40

distance travelled= 8 km

time= ?

Putting this into the definition of speed:

solution;

40 × time= 8 km

time= 8 km÷ 40

time= 0.2 h= 12 minutes (because, 1 h=60 minutes)

If we conclude, it will take the motorcycle 0.2 hr (12 minutes) to travel a distance of 8 km.

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If a woman is homozygous for red hair and her husband is homozygous for brown hair, what is the probability that they will have a redheaded child?
A. 0%
B 100%
c. 50%

Answers

Well, you failed to mention which one is the recessive trait in this instance. But, let’s say red hair is recessive, denoted by r and brown hair is dominant denoted by R. Mom is rr and dad is RR. All children are going to be Rr and so heterozygous. They will all carry the trait for red hair but will express brown hair themselves, so 0% probability of having a child with red hair from the initial parents

To solve this we must be knowing each and every concept related to homozygous. Therefore, 0% is the probability that they will have a redheaded child. The correct option is option A.

What is homozygous?

Having identical genes for only one attribute is what is meant by being homozygous. Additionally, an allele denotes a single distinct variant of a gene.

Since it is unknown which characteristic is recessive. If we think of brown hair as the dominant characteristic, denoted by R, and red hair as the recessive trait, signified by R. Dad is RR, while mom is RR. All offspring will be heterozygous since they will all be Rr. The likelihood of producing a kid having red hair from either the original parents is thus 0%.

Therefore, 0% is the probability that they will have a redheaded child. The correct option is option A.

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if your skin and the whites of your eyes appear yellow, what is not being excreted? group of answer choices globin chains biocarbonate ion carbon dioxide heme carbonic acid

Answers

Heme group is not being excreted. This is the reason for skin and white of eyes to turn yellow.

In vitro and in vivo, TinIV-protoporphyrin IX (Sn-protoporphyrin) potently inhibits heme breakdown to bilirubin. In experimental animals, including primates, it totally controls neonatal hyperbilirubinemia. Additionally, it lowers plasma bilirubin levels in several types of induced or naturally occurring jaundice in both humans and animals.

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A) what is the gender of the individual?
B) could this be the karyotype of a human sperm cell? Explain you reasoning.
C) what evidence is there of non-disjunction

Answers

A karyotype is the chromosomic dotation of an individual. It is a representation of all the chromosomes present in a cell. A) The individual is a male. B) This si not the karyotype of a sperm cell. C) A trisomy in pair 16 is evidence of non-disjunction.

What is a karyotype?

A karyotype is a term used to refer to the complete set of an individual's chromosomes. It refers to the total number of chromosomes found in each individual cell. The karyotype is the individual's chromosomic dotation.

Each species has its own karyotype because the number of chromosomes per species might vary. For instance,

The karyotype of human beings is composed of 23 pairs of chromosomes or 46 chromosomes.

The karyotype of Drosophila melanogaster is composed of 4 pairs of chromosomes.

Whenever there is affection, karyotypes might vary among individuals of the same species. For example, people affected by Down syndrome have 47 chromosomes in pair 21 because of a chromosomic segregation failure during meiosis.

The karyotype concept can also be used to refer to clinical diagnosis.

When looking at the exposed karyotype, we can say that,

A) The individual is a male because there is an X and a Y chromosome.

B) This is a human being's karyotype but does not belong to a sperm cell.

Let us remember that sperm cells are gametes, and gametes are haploid. The number of chromosomes found in gametes is 23.

This karyotype represents a diploid cell with 44 autosomes and 2 sexual chromosomes aligned and paired with their homologous chromosome.

C) There is a trisomy in what should be pair 16. There are three chromosomes instead of two. This fact is evidence of a failure in homologous chromosome segregation during the anaphase of meiosis (non-disjunction).

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when a vector that employs the lac z gene as a second marker is used in a cloning experiment, bacteria that harbor the recombinant dna will give rise to a. red colonies. b. blue colonies. c. all of the choices are correct. d. white colonies. 0.2 points

Answers

Bacteria that harbor the recombinant DNA will give rise to white colonies. Thus, option D is correct.

Bacteria develop on strong media as colonies. A colony is characterized as an obvious mass of microorganisms all beginning from a single mother cell, in this manner a colony constitutes a clone of microbes all hereditarily alike.

In the recognizable proof of microbes and organisms, much weight is put on how the life form develops in or on media. This workout will assist you to distinguish the social characteristics of a bacterium on an agar plate - called colony morphology.

Plasmids that are commonly utilized in quality cloning are around 3000 nucleotide sets in length, have an ampicillin resistance quality, and have a quality that encodes the protein beta-galactosidase.

The quality encoding this chemical is called the LacZ or blue color quality. The beta-galactosidase chemical will utilize galactose sugar as a substrate.

In case an uncommon form of this sugar called X-gal is put within the media, a flawless thing happens interior the microbes that have the blue color quality.

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if heterozygous round crossed with homozygous round produce 2400 plant how many plant are pure round

Answers

If a heterozygous round plant is crossed with a homozygous round plant then from the 2400 plants produced, 1200 will be pure round plants. Pure round plants are homozygous for the trait.

What are genes?

Genes are the units of hereditary information. Genes carry the genetic information about the various characteristics in an organism in the form of sequences of amino acids and nucleotides.

Mendel described in his laws that genes present on DNA carry the genetic information which is transferred to the offspring during reproduction. Each gene has a pair of alleles which are responsible for contrasting character such as in case of plant height, two alleles are present from which one is dominant which is tall and the other one if short or dwarf which is recessive.

The number of plants which are pure red = 1/2 of the total plants produced or 50% of the total F1 progeny.

Thus, number of pure round plants = 1/2 × 2400

Number of pure round plants = 1200

Therefore, there will be 1200 pure round plants produced by the cross between heterozygous round plant and homozygous round plant.

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through what mechanisms does the hypothalamus control the production or release of hormones from the pituitary gland? how do its effects on the anterior and posterior portions of the pituitary differ?

Answers

The hypothalamus-hypophyseal portal veins deliver hypothalamic releasing and inhibitory hormones directly to the anterior pituitary gland.

Distinct anterior pituitary cell receptors bind to specific hypothalamus hormones, controlling the release of the hormones those cells generate.Your hypothalamus connects to the anterior pituitary lobe via hormones and the posterior pituitary lobe by nerve impulses via that stalk. Oxytocin and antidiuretic hormone are likewise produced by your hypothalamus, which also instructs your posterior pituitary when to store and release these hormones.The hypothalamus-hypophyseal portal veins deliver hypothalamic releasing and inhibitory hormones directly to the anterior pituitary gland. Distinct anterior pituitary cell receptors bind to specific hypothalamus hormones, controlling the release of the hormones those cells generate. Your hypothalamus connects to the anterior pituitary lobe via hormones and the posterior pituitary lobe by nerve impulses via that stalk. Oxytocin and antidiuretic hormone are likewise produced by your hypothalamus, which also instructs your posterior pituitary when to store and release these hormones.It releases several hormones into the bloodstream that function as messengers, carrying signals from the pituitary gland to far-off cells and controlling their activity. For instance, the mammary glands in the breasts are stimulated to create milk by the hormone prolactin, which is produced by the pituitary gland.

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PLS HELP ITS FOR MY EATH SCIENCE CLASS?!?!

Our closest exoplanet and Earth-sized planet is Proxima Centauri b.
Proxima Centauri b is in the habitable zone, but why is it not a suitable
Earth 2.0?

A enormous amounts of radiation from mega flares hit the planet
roughly once every year

B it lacks an atmosphere, therefore most likely lacks water

C extreme temperature changes on the surface

D all of the above

Answers

Answer:

A

Explanation:

https://phys.org/news/2018-04-proxima-centauri-flare-powerful-visible.html

B cannot be correct because there is in fact, water on Proxima Centauri B.

It most likely isn't C, I researched for any truth in answer C but I couldn't find any.

Hope this helps! I'm really sorry if I'm wrong because I tried very hard to look for a solid answer :[

which of the following occurrences describes how recombination between linked genes comes about? group of answer choices independent assortment sometimes fails. nonrecombinant chromosomes break and then rejoin with one another. linked genes travel together at anaphase. crossovers between these genes result in chromosomal exchange.

Answers

crossovers between these genes result in chromosomal exchange.

Linked genes move along at the same anaphase.

Genes that are near to one another on the same chromosome are linked and move through meiosis together. As a result, related genes do not assort separately.

The genes are positioned near together if the recombination frequency is low; however, if it is high, the genes are spread out.

Every trait is inherited independently of every other trait, according to Gregor Mendel's Law of Independent Assortment.

The genes independently assort if they are situated on various chromosomes.

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condition associated with sideropenia, causing deficient production of hemoglobin: a.iron deficiency anemia b.pernicious anemia c.hemolytic anemia d.thalassemia e.aplastic anemia

Answers

Condition associated with sideropenia, causing deficient production of hemoglobin "aplastic anemia".

People having pernicious anemia frequently have extremely low hemoglobin levels but little hemoglobin-related symptoms, like exhaustion. Additionally, they can have low numbers of platelets, which are necessary to clot blood as well as stop bleeding, and white blood cells, which are crucial in fighting infections.

Megaloblastic anaemia can have a variety of reasons, but the most frequent one in children is a folic acid or vitamin B-12 deficiency. These are some additional sources of megaloblastic anaemia: intestinal ailments Megaloblastic anaemia can be caused by specific lower digestive tract illnesses.

Therefore, the correct answer will be (e)

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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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Patrick offered a house for sale to Peter, who agreed to buy at the stated price. Peter was however under the impression that the land on which it stood was a part the deal. Patrick gave peter the title deed for the house but not the land. Peter took Patrick to court. what was likely outcome of the case???????

Answers

Answer: it depends on what was on the contract for the sale peter should've asked Patrick if the land was included if Patrick didn't have it put in the contract for the land to also be sold then peter waisted his time and money

Explanation:

inputs of cellular respiration are oxygen and chemical potential energy. outputs of cellular respiration are: group of answer choices water, glucose, and sucrose. carbon dioxide, water, and atp. carbon dioxide, glucose, and fructose. water and energy in the form of adp.

Answers

The output of the cellular respiration are Carbon dioxide, water, and ATP.

Cell respiration is a sequence of chemical reactions that wreck down glucose to provide ATP, which may be used as power to strength many reactions at some point of the frame. There are 3 major steps of cellular respiration: glycolysis, the citric acid cycle, and oxidative phosphorylation.

Cellular respiration is the manner that occurs in the mitochondria of organisms (animals and plants) to interrupt down sugar in the presence of oxygen to release power in the form of ATP. This procedure releases carbon dioxide and water as waste products.

There are two sorts of mobile breathing (see mobile breathing concept): aerobic and anaerobic. One happens inside the presence of oxygen (cardio), and one happens inside the absence of oxygen (anaerobic). both begin with glycolysis - the splitting of glucose.

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fitting the very long dna strands from a chromosome into the limited space of the nucleus is achieved by coiling the dna around beads of histones with repeating subunits. these dna-wrapped histones are called:

Answers

Fitting the very long DNA strands from a chromosome into the limited space of the nucleus is achieved by coiling the DNA around beads of histones with repeating subunits. these DNA-wrapped histones are nucleosomes.

A nucleosome is a basic unit of DNA packaging in eukaryotes. It consists of a segment of DNA wound around the histone proteins. This structure is often compared to beads on a string. Nucleosomes form the fundamental repeating units of chromatin, higher-order structures of DNA and proteins that make up chromosomes. The nucleosome core particle, defined as the DNA-histone octamer, is the basic unit of chromatin.

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