Before any cell divides it must first duplicate its entire _______________, which consist of all the cell's _____________ material. subject

Answers

Answer 1

Answer:

genome, which contains all of its DNA (or RNA in certain viruses), the DNA contains the information for cell processes.

Explanation:


Related Questions

As the body prepares to deal with a stressful threat, the adrenal glands release which stress hormone?

Answers

Adrenaline

Fight or flight response from the sympathetic nervous system.

Many bacteria facilitate the uptake of iron by secreting low molecular weight molecules, called ___________, to form complexes with the iron that can then be readily transported into the cell.

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Many bacteria facilitate the uptake of iron by secreting low molecular weight molecules, called siderophores, to form complexes with the iron that can then be readily transported into the cell.

What are siderophores?Siderophores are natural or synthetic, low molecular weight molecules which have a high binding affinity to iron.Microorganisms like bacteria and fungi secrete these molecules to enhance iron uptake through the cell.Iron is abundant in the earth’s crust but it is not readily available in soluble form.Siderophores can chelate iron (form water soluble complexes). This complex is then taken up by the cell through membrane receptors.These are the strongest and largest class of iron chelators known thus providing the much needed iron to the microorganisms.Siderophores can also form complexes with aluminium, copper, zinc, manganese, cadmium, lead, etc.

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A scientist is researching Cystic Fibrosis. He is
studying what type of disease?
A. Somatic disease
B. Chromosomal disease
C. Single-Gene disease
D. Multifactorial disease

Answers

he is studying Somatic disease.

Dancer to the solution is a

A cluster of cells in the ovule of a fertilized flowering plant that has not yet formed into an embryo? fertilization pro-embryo suspensor double fertilization

Answers

The cluster of cells in the ovule of a fertilized flowering plant that has not yet formed into an embryo is called a proembryo.

What is a proembryo?

It is a structure that is developed after the egg is segmented and the formation of the true embryo is yet to take place.

After the egg and the sperm nuclei are fertilized, the apical and basal cells are formed after cell division. The cell division is asymmetrical in the case of monocot and transverse in the case of divots.

Apical cells turn into the proembryo and eventually the embryo. This development is supported by the suspensor cells from the basal cells.

Therefore, the cluster of cells in the ovule of a fertilized flowering plant that has not yet formed into an embryo is called a proembryo.

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Aside from having potent anti-inflammatory effects, glucocorticoids also promote homeostasis of which system?

Answers

Along with anti-inflammatory effects, glucocorticoids also promote homeostasis  in T lymphocytes.

what are the role of glucocorticoid?

Glucocorticoids are steroid hormones have  anti-inflammatory effects. as well as glucose homeostasis activity.

The hormones secreted from the cortex regulate glucose metabolism, synthesis in the adrenal cortex.

It promote gluconeogenesis in liver, but in skeletal muscle and white adipose tissue decrease glucose uptake, modulate the function of pancreatic α and β cells and help in to regulation of glucagon and insulin.

It also affect on glucose homeostasis to preserve plasma glucose for brain during stress.

Hence, glucocorticoids also promote homeostasis  in T lymphocytes.

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The neuroleptic side effect marked by muscle rigidity, fever, altered consciousness, and autonomic nervous system dysfunction is called?

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Neuroleptic malignant syndrome (NMS) is a life-threatening idiosyncratic reaction to antipsychotic drugs characterized by fever, altered mental status, muscle rigidity, and autonomic dysfunction.

Biological processes that systematically vary over a 24-hour cycle are called _____ and are regulated by a cluster of neurons called the _____.

Answers

Biological processes that systematically vary over a 24-hour cycle are called circadian rhythms and are regulated by a cluster of neurons called the suprachiasmatic nucleus.

What is the circadian rhythm?

The circadian rhythm refers to the biological process regulated by the duration of a calendar day, which is common for many organisms ranging from animals to plants.

The circadian rhythms enable the maintenance of homeostatic control of physiological functions and thus perform metabolic activities.

In conclusion, biological processes that systematically vary over a 24-hour cycle are called circadian rhythms and are regulated by a cluster of neurons called the suprachiasmatic nucleus.

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An important difference between the peritubular capillaries and the vasa recta in the kidney is that?

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Vasa recta are a unique kind of peritubular capillary that feeds the kidney's medulla with oxygen and nutrients, whereas peritubular capillaries are capillaries that emerge from the efferent arteriole. This is the main distinction between the two types of capillaries.

Vasa Recta: What are they?

The unique peritubular capillaries known as vasa recta supply oxygen and nutrients to the kidney's medulla. They especially come from juxtamedullary nephrons' efferent arterioles and wind around those organelles' Henle loops. They also create a parallel series of hairpin loops inside the kidney's medulla. Vasa recta have high water and solute permeability.

Peritubular Capillaries: What Are They?

The efferent arteriole that emerges from the glomerulus gives rise to the capillary network known as peritubular capillaries. The renal cortex receives nutrients and oxygen via peritubular capillaries. As a result, the renal cortex contains a greater percentage of peritubular capillaries. They encircle the distal and proximal tubules.

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Briefly explain why only chromosomes of a homologous pair can have their alleles referred toas homozygous or heterozygous

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Only chromosomes of a homologous pair can have their alleles referred to as homozygous or heterozygous because only homologous chromosomes would have the same genes at the same physical locations on those chromosomes. Otherwise, the alleles of different genes would have no relationship.

Homologous chromosomes, or homologs, are a set of one maternal and one paternal chromosome that pair up with each other inside a cell during fertilization. Homologs have the same genes in the same loci where they provide points along each chromosome which enable a pair of chromosomes to align correctly with each other before separating during meiosis.

This is the basis for Mendelian inheritance which characterizes inheritance patterns of genetic material from an organism to its offspring parent developmental cell at the given time and area.

Chromosomes are linear arrangements of condensed deoxyribonucleic acid (DNA) and histone proteins, which form a complex called chromatin. Homologous chromosomes are made up of chromosome pairs of approximately the same length, centromere position, and staining pattern, for genes with the same corresponding loci. One homologous chromosome is inherited from the organism's mother; the other is inherited from the organism's father.

After mitosis occurs within the daughter cells, they have the correct number of genes which are a mix of the two parents' genes.

In diploid organisms, the genome is composed of one set of each homologous chromosome pair, as compared to tetraploid organisms which may have two sets of each homologous chromosome pair. The alleles on the homologous chromosomes may be different, resulting in different phenotypes of the same genes.

This mixing of maternal and paternal traits is enhanced by crossing over during meiosis, wherein lengths of chromosomal arms and the DNA they contain within a homologous chromosome pair are exchanged with one another.

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Proteins may be classified according to their three-dimensional shapes. Determine whether the following examples and descriptions refer to fibrous proteins, globular proteins, or both fibrous and globular proteins. True or false?.

Answers

Answer:

Explanation:

Polymers of amino acids can be both fibrous as well as globular protein. Hemoglobin is a globular but the collagen is the fibrous protein both being the amino acids.

action occurs when the drug is absorbed into the bloodstream. a. Local b. Remote c. Systemic d. Antagonist

Answers

Answer:

absorption

Explanation:

drug absorption

The action that occurs when the drug is absorbed into the bloodstream is Antagonist. The correct option is d.

What is Antagonist action?

A substance or chemical known as an antagonist lessens the effects of an agonist. Competitive antagonists prevent the effects of agonists by attaching to the same location on a receptor as the agonist but without activating it.

A drug used in medicine that blocks the effects or actions of another medication. For instance, an oestrogen receptor antagonist is a medication that prevents oestrogen from activating tumour cells.

A chemical that can attach to and functionally activate a target is called an agonist. Usually, a metabotropic and/or ionotropic receptor is the target.

A chemical known as an antagonist binds to a target and blocks the binding of other compounds. The action of receptors is unaffected by antagonists.

Thus, the correct option is D.

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Loss of fluid from the plasma will in part be replaced by fluid moving ______ cells.

Answers

Fluid migrating skeletal muscle cells will partially replace the fluid lost from the plasma.

What major force propels liquid out of the plasma chamber?

The pressure that a liquid applies against a wall, hydrostatic pressure is what moves fluid across sections. The force that blood applies to the vascular endothelium as a result of the cardiovascular motion is known as the hydrostatic tension of blood. Due to the constant interchange of water, ions, and tiny solutes throughout the walls of the capillaries via pores, and capillary clefts, plasma, and interstitial fluid are remarkably similar to one another.Large skeletal muscles' movements assist in pumping blood and lymph liquid all across the system. Our body's vessels are pushed aside as we exercise and contract both major and tiny muscular, acting as a compressor to circulate fluids throughout our system.

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Suppose a country’s population is aging and the size of the workforce is declining. in the long run, output will ________ and the price level will ________.

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In the long run, the output will reduce and the price level will increase because there is a low size of the workforce.

How are output and price levels affected?

We know that production or output is dependent on the workforce. If a country has large workforce, then the production of the country is higher which make the economy better which results in the lower price of products while on the other hand, if a country has low workforce, then the output of the country is also lower that make the economy worse which results in the higher price of products and inflation.

So we can conclude that in the long run, the output will reduce and the price level will increase because there is a low size of the workforce.

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With your own words about the dangerous diseases in Honduras

for today please.​

Answers

Chikungunya ( virus gotten thru mosquitoes )

Dengue Fever ( virus gotten thru mosquitoes )

Malaria ( parasite gotten thru mosquitoes ) treatment : quinine

Hepatitis B ( contagious ... like food eaten which was cooked from unclean hands) treatment : vaccine , antiviral medicine

Rabies ( bite of an rabid animal like dog or bat) treatment: needs shots right away, antiviral medicine, blood transfusion

Tetanus (cut from rusted metal) treatment : vaccine ,

Travellers' Diarrhoea

cdc

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Which of the following statements best expresses the concept of punctuated equilibrium?

A. Small variations gradually accumulate in evolving lineages over periods of millions of years.

B. Stability is achieved when selection favors the heterozygote, while both types of homozygotes are at a relative disadvantage.

C. Random mating ensures that the proportions of genotypes in a population remain unchanged from generation to generation.

D. Evolutionary changes consist of rapid births of speciation alternating with long periods in which species remain essentially unmodified.​

Answers

Answer: D

Explanation:

Between 1994 and 1997, 70 Addax were released into fenced sections of protected areas in Tunisia and Morocco. By
2003, their numbers had increased to about 200. This is an example of
OA. Ex situ conservation
OB. Coppicing
OC. Habitat management
D. In situ conservation

Answers

It is an example of Ex situ conservation. The correct option is A.

What is ex-situ conservation?

It is a method of conserving biodiversities outside their natural habitats.

Ex situ conservation is in direct contrast to in situ conservation. This means that in in-situ conservation, biodiversities are conserved in their natural habitats.

In the illustration, the Addax were released into fenced sections of protected areas in two countries.

The fenced section means that the Addax were not allowed to roam freely as they would in their natural habitats. The fenced section means that their movement is limited as compared to natural habitats.

Thus, the Addax were being conserved ex-situ.

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Which are examples of how the hypothalamus directly regulates endocrine activity?

Answers

Two hormones are produced and kept in the posterior pituitary gland. generating control chemicals that either stimulate or inhibit the anterior pituitary gland. encourages the release of essential hormones from the adrenal cortex.

By releasing particular regulatory hormones, the hypothalamus regulates the anterior lobe of the pituitary gland's ability to produce hormones. Hypothalamic neurons produce regulatory substances into the interstitial fluids around the median eminence, swelling close to the infundibulum's connection. The pituitary gland, which produces and distributes additional critical hormones throughout the body, collaborates with the hypothalamus. The hypothalamus and pituitary gland jointly regulate a large number of the body's hormone-producing glands, collectively known as the endocrine system. The thyroid, gonads, and adrenal cortex.

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Upon absorption, fat-soluble vitamins travel through the lymphatic system within ______ before entering the bloodstream.

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Fat-soluble vitamins travel through the lymphatic system within chylomicrons before entering the bloodstream.

What is the function of chylomicrons?

Chylomicrons are produced in order to transport dietary triglycerides and cholesterol that are absorbed by intestinal epithelia. Chylomicron produce in the intestinal mucosa and excretion into the plasma is facilitated through the lymphatic system.

After absorption into enterocytes, fat-soluble vitamins become packaged into chylomicrons and then secreted into the lymphatic system before entering the bloodstream.

So we can conclude that Fat-soluble vitamins travel through the lymphatic system within chylomicrons before entering the bloodstream.

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Students are measuring the rate of enzyme activity. The graph below shows the rate of enzyme action as they increase the temperature

Answers

The subtrate will no longer fit within the enzyme because the heat will cause the enzyme to denature (deform).

Enzyme

Proteins called enzymes serve as biological catalysts (biocatalysts). Chemical reactions are sped up by catalysts. Substrates are the molecules that enzymes can interact with, and the enzyme changes the substrates into new molecules known as products. Almost all cellular metabolic activities require enzyme catalysis in order to proceed at speeds quick enough to maintain life. Enzymes are necessary to catalyze specific steps in metabolic pathways. Enzymology, the study of enzymes, and the pseudoenzyme analysis area acknowledge that some enzymes have lost the capacity to perform biological catalysis during evolution, which is frequently reflected in their amino acid sequences and peculiar "pseudocatalytic" capabilities.

Students are measuring the rate of enzyme activity. The graph below shows the rate of enzyme action as they increase the temperature

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Dna profiling relies on an individual's ________, no two of which are the same between different people, except identical twins

Answers

DNA profiling relies on an individual's unique set of short tandem repeats within DNA. no two of which are the same between different people, except identical twins.

What is DNA?Deoxyribonucleic acid is a polymer made of two polynucleotide chains that coil around one another to form a double helix and which contains the genetic material necessary for all known creatures, including many viruses, to develop, function, grow, and reproduce. Nucleic acids include DNA and ribonucleic acid.The molecule that carries the genetic information required for an organism to grow and function is called deoxyribonucleic acid, or DNA.The structure of DNA is a double helix, which is made up of two connected strands that loop around one another to resemble a twisted ladder.The instructions required for a creature to grow, endure, and reproduce are encoded in its DNA. DNA sequences must be transformed into messages that can be utilized to create proteins, which are the complex molecules that carry out the majority of the work in our bodies, in order to perform these activities.

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Doctors are investigating the possible inheritability of a disease with no current known cause. What tool might be useful to help track the disease’s prevalence?

Answers

Pedigrees tool might be useful to help track the disease’s prevalence.

A pedigree chart, which is most frequently used to represent people, show dogs, and race horses, depicts the incidence and manifestation of phenotypes of a specific gene or organism and its ancestors from one generation to the next. A pedigree reveals the connections between family members and identifies the members of a family who have particular genetic pathogenic variations, features, and diseases as well as their current health. A family's pedigree might reveal how diseases are passed down through the generations.

Pedigree analysis is used to identify the mode of inheritance, which may be autosomal, mitochondrial, dominant, partial dominant, or sex-linked. Additionally, it calculates the likelihood that a person or their progeny will be impacted by the particular cross.

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The middle ear communicates with the:_______
a) nasopharynx through the auditory meatus.
b) pharyngotympanic tube auricle.
c) bony labyrinth.
d) membranous labyrinth

Answers

The middle ear communicates with the: nasopharynx through the auditory meatus.

Since it creates the most pronounced anatomic opening between the two compartments in both animals and humans, it has long been considered that the round window membrane serves as the main pathway of communication between the middle ear and perilymph.The middle ear interacts with the pharynx, adjusts to changes in pressure outside, and transfers vibrations from the eardrum to the inner ear.The small passageway, also known as the auditory tube or eustachian tube, that runs from the middle ear to the nasopharynx. Pressure is equalized on both sides of the tympanic membrane via the tube (eardrum). The inner ear membrane in the fenestra ovalis receives sound waves from the incus through the stapes.

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Biologically-based personality tendencies evidence in early childhood are called?

Answers

Answer: Temperament

Explanation:
It’s a person's or animal's nature, especially as it permanently affects their behavior.

When a segment of chromosome 3 is removed and attaches to chromosome 5, what word do we use to describe what has happened?

Answers

When a segment of chromosome 3 is removed and attached to chromosome 5, we use the word exonucleolytic activity to describe what happened.

How important is the Exonucleolytic 3 → 5 activity of DNA polymerases?

The 3' → 5' exonucleolytic activity of DNA polymerases is a self-correcting mechanism that allows them to check for the last nucleotide incorporated, correcting their own incorporation errors as they move along the DNA template.

What a chromosome?

Chromosomes are structures formed by DNA, which in turn are composed of several genes and other nucleotides (DNA and RNA). They are found in all cells and each has specific functions.

With this information, we can conclude that we use the word exonucleolytic activity to describe what happened.

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Smaller neurons require more current to change their membrane potential.
a) true
b) false

Answers

This is false that Smaller neurons require more current to change their membrane potential.

A potential gradient known as membrane potential causes ions to passively migrate in one direction: positive ions are drawn to the "negative" side of the membrane, while negative ions are drawn to the "positive" side. Human life is impossible without membrane potentials. Over their membrane, every living cell maintains a potential difference. Simply said, differences in the concentration and permeability of significant ions across a membrane are what cause membrane potential.

A change in membrane potential results from a change in ion permeability. The membrane potential moves closer to the ion's Nernst equilibrium potential as permeability to that ion increases. The membrane potential is shifted away from the ion's Nernst equilibrium potential as permeability to that ion decreases.

The less probable it is that the arriving ions will collide with something that might cause them to bounce back, the bigger the axon's diameter of a neuron. Positive ions must continuously move away from the cell body in order for the action potential to exist, and this is made much simpler in a bigger axon.

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(03.02 MC)

Is this a scientific model? Use complete sentences to explain why or why not.

A graphic organizer showing the water cycle

the picture is the water cycle

Answers

The picture is a scientific model which is used to explain the concept of the water cycle by means of pictures and descriptions.

What is a scientific model?

A scientific model is a representation which may be in form of pictures, illustrations, objects, or ideas which are used to explain a particular concept by scientists.

Scientific models are usually employed to explain either difficult to understand concepts or scarcely observable phenomena in order to enrich the knowledge and comprehension of others.

The given illustration is an example of a scientific model. It is used to explain the concept of the water cycle. By means of pictures and descriptions, the various processes of the water cycle can be fully comprehended.

Also, by means of a cyclical illustration, the model helps to explain that the water cycle is a continuous repetitive process.

In conclusion, scientific models may be in form of pictures, illustrations or objects.

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If plaque ruptures and weakens the artery walls, a(n) _______________ may form leading to ischemia

Answers

Atherosclerosis is thickening or hardening of the arteries caused by a buildup of plaque in the inner lining of an artery. Risk factors may include high cholesterol and triglyceride levels, high blood pressure, smoking, diabetes, obesity, physical activity, and eating saturated fats.

The scientist tests each sample three ties, explain why it is important to do this

Answers

A scientist conducts 3 ties for a sample in a particular experiment. Because an experiment starts with a set of observations which might change due to some factors. So in order to conclude a concrete hypothesis it is a important process.

What is an experiment?

An experiment is a scientific process to discover something , test a hypothesis on it and make some observations on that subject. A scientific study can only be possible by performing different kinds of experiments. Scientists can perform and verify the experiment in numerous ways. There are different studies of science which give exposure to numerous scientific fields. The different parts of science are chemistry , biology , physics and many more. Different observations are made on an experiment. You can always explore something new in this field. Scientist propose hypothesis for a phenomenon. There are 3 different types of hypothesis are : simple, complex and directional hypothesis.

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In the theory of plate tectonics, how should you picture the earth?

A. The plastic atmosphere floats on the lithosphere.

B. The continents are held in place by the solid core below and never move.

C. The lithosphere (crust) is like pieces of a puzzle, slowly moving causing the continents
to move.

D. The mantle is like pieces of a puzzle, slowly moving.

Answers

Answer:

C

Explanation:

As shown in the picture I attached to my answer, we can see all of the tectonic plates, which make up the lithosphere. The pieces do move very slightly every year.

In the theory of plate tectonics, the lithosphere  is like pieces of a puzzle, slowly moving causing the continents to move.

What is tectonic plate ?

A tectonic plate can be defined as a massive, irregular slab like structure composed of both continental and oceanic lithosphere.

The size of tectonic plates can vary that ranges from  few hundred to thousands, for example the Pacific and Antarctic Plates are among the largest.

The thickness of tectonic plates are varies , ranging from 15 km for young oceanic lithosphere to about 200 km and it is more ancient continental lithosphere.

The Continental crust is  made up of granitic rocks relatively lightweight minerals such as quartz and feldspar,  the oceanic crust is composed of basaltic rocks which are denser and heavier.

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A point mutation that does not result in a change to the amino acid coded for is said to be a _______ mutation. a. spontaneous c. selective b. synonymous d. stabilizing

Answers

A point mutation that does not result in a change to the amino acid coded for is said to be a synonymous mutation.

What is synonymous mutation?

A synonymous mutation is a change in a protein's amino acid sequence that occurs in the DNA sequence that codes for that amino acid but does not affect the encoded amino acid. These alterations typically take place in the third position of a codon because of the genetic code's redundancy (several codons encode the same amino acid).

For instance, the codes for glycine are GGT, GGA, GGC, and GGG. The identical amino acid will be integrated into the protein sequence with any modification in the codon's third position (for example, A is replaced by G).

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