which of the following is the correct sequence of events that follow fertilization of an egg?
A. Gamete formation, fertilisation, zygote, embryo
B. Embryo, zygote, fertilisation, gamete formation
C. Fertilisation, gamete formation, embryo, zygote
D. Gamete formation, fertilisation, embryo, zygote

Answers

Answer 1

The correct sequence of events that follow fertilization of an egg is Gamete formation, fertilisation, zygote, embryo. The correct option to this question is A.

Reproduction is a biological process in which a live creature gives birth to offspring that is biologically similar to its parents.

In humans, reproduction happens as a result of the union of male and female gametes, which eventually fertilize to form an embryo.

These male and female gametes are created in the bodies of their respective parents.

Internal fertilization refers to the entire process of fertilization in humans, as it occurs within a female's body.

Male and female reproductive cells divide meiotically to create gametes.

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Answer 2

Following fertilization of an egg, the right order of events is gamete production, fertilization, zygote, and embryo. The answer to this question is option A.

A living organism produces offspring that is biologically identical to its parents through the biological process of reproduction. The merging of the male and female gametes, which eventually fertilize to create an embryo, is what causes reproduction in humans. The bodies of their respective parents are where these male and female gametes develop.

Internal fertilization is the term used to describe the entire human fertilization process as it takes place inside the body of a female. Gametes are produced by the meiotic division of male and female reproductive cells.

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Related Questions

which of the following conditions are characterized by the flattening of the hemidiaphragms and widening of the intercostal spaces?
a. Pneumothorax b. Pleural effusion c. Emphysemsa d. Pneumonia.

Answers

Pneumothorax is characterized by the flattening of the hemidiaphragms and the widening of the intercostal spaces.

Pneumothorax is a condition where air or gas leaks into the space between the lung and the chest wall, causing the lung to collapse. This results in the flattening of the hemidiaphragm, the muscle that separates the chest and abdominal cavities, on the affected side. It also causes the intercostal spaces, the spaces between the ribs, to widen.

Pleural effusion is the accumulation of fluid in the pleural cavity, the space between the lung and the chest wall. This can also cause the hemidiaphragm to become flattened, but it is not characterized by the widening of the intercostal spaces.

Emphysema is a lung disease characterized by the destruction of the air sacs in the lungs and the loss of elasticity of lung tissue. Pneumonia is an infection of the lungs that cause inflammation in the lung tissue and the buildup of fluid in the air spaces.

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All life begins as ______ cell.
For ____________ organisms, this single cell will undergo rapid ____________ and divide over and over again until it becomes an adult body.
As the cells divide, these replicates of the original cell will receive signals from the environment and turn on ____________ pathways that instruct the cells to turn on certain sets of genetic instructions and turn off others.
In doing so, the cells become ____________ , which allows tissues and organs to form and have specific roles within the body.

Answers

All life begins as a single cell.

For multicellular organisms, this single cell will undergo rapid cell division and divide over and over again until it becomes an adult body.

As the cells divide, these replicates of the original cell will receive signals from the environment and turn on differentiation pathways that instruct the cells to turn on certain sets of genetic instructions and turn off others.

In doing so, the cells become specialized, which allows tissues and organs to form and have specific roles within the body.

Thus, the cells proceed to divide and differentiate, and they ultimately form the complex structures and systems of the adult organism, such as the nervous system, the circulatory system, and the immune system.

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sunspots are regions of strong blank fields

gas
liquid
heat
magnetic

Answers

Sunspots are the regions of strong Magnetic field. Hence option D is the correct answer

Sunspots are the areas on the sun which have a strong magnetic field. It is dark in appearance because it cooler than the other parts of the sun.

To know the level of solar activity in a 11 year solar cycle these sunspots are used since the frequency and intensity of sunspots clearly shows it.

There is still not a clear understanding about the sunspots but the theory proposed by Horace Babcock in 1960 is somewhat accepted by the scientists which says the sunspots are forged by the sun's magnetic field itself.

The World Data Center for the Sunspot Index and Long-term Solar Observations(opens in new tab) at the Royal Observatory of Belgium track the sunspots and records the highs and lows of a solar cycle which helps in weather forcasting.

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which of the following is consistent with the data presented in the figure, which depicts three hypothetical interactions between macromolecule a and macromolecules b, c, and d?

Answers

The surfaces of A and D are well matched, which allows them to generate sufficient weak connections to endure temperature shocks, keeping them connected throughout the experiment.

Since the two carbons share electrons to form a potent covalent bond, the carbon-carbon bond is not regarded as a noncovalent interaction.

Non-covalent interactions between molecules entail a scattered variety of electromagnetic interactions rather than the exchange of electrons.

The donor atom must be electronegative for a hydrogen bond to form.

Ionic interactions: Attractions between two ions with opposing charges.

A tiny, transitory asymmetric electron distribution around atoms causes the formation of van der Waals forces.

Enzymes control the synthesis of it within the cell. Carbon-carbon bonds can be found in it. Hydrogen bonds hold the monomers of the molecule together. It is created by hydrolyzing monomers.

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redox-switchable chalcogen bonding for anion recognition and sensing [opens in a new tab]open in new

Answers

Redox-switchable chalcogen bonding is a method for recognizing and sensing anions, which are negatively charged ions.

The method utilizes the reactivity of chalcogens, such as sulfur and selenium, which can form strong bonds with anions through interactions known as chalcogen bonding. By using a redox-active component, the strength of these bonds can be dynamically adjusted, allowing for the selective recognition and sensing of specific anion species. This approach has potential applications in areas such as analytical chemistry, material science, and medicinal chemistry. It allows for a more specific detection of anion and a way to switch on or off the recognition.

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which of the following correctly identifies the difference between the offspring of prokaryotic cells versus eukaryotic cells?

Answers

The difference between the offspring of prokaryotic cells versus eukaryotic cells is that Prokaryotic cells do not have a membrane-bounded nucleus, but eukaryotic cells do not have such a nucleus.

On Earth, there are two distinct types of cells: prokaryotic and eukaryotic cells. The primary difference between the two is that eukaryote have a distinct nucleus that houses the cell nucleus.

In contrast, prokaryotic cells lack a nucleus and have genetic material that is free to move around the cell. The ribosomes are larger, more complex, and membrane-bound in eukaryotic cells.

They can be present in various locations, such as the nuclear membrane, the endoplasmic reticulum, and occasionally in the cytoplasm (covering the nucleus).

Ribosomes are dispersed and free to float in the cytoplasm of prokaryotic cells. Prokaryotic cells have ribosomes containing smaller subunits as well.

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Prokaryotic cells do not have a membrane-bounded nucleus, whereas eukaryotic cells do not have such a nucleus. This is the distinction between prokaryotic cells and their offspring.

Prokaryotic and eukaryotic cells are the two main types of cells found on Earth. Eukaryotes have a unique nucleus that houses the cell nucleus, which is the main distinction between the two.Prokaryotic cells, in contrast, are devoid of a nucleus and have freely movable genetic material. In eukaryotic cells, the ribosomes are bigger, more intricate, and membrane-bound.

They can be found in a variety of places, including the cytoplasm, endoplasmic reticulum, and the nuclear membrane (covering the nucleus). The cytoplasm of ribosomes is scattered and free to float. bacterial cells. Ribosomes in prokaryotic organisms also contain smaller subunits.

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Based on the information provided, which of the following statements is true about the 400,000 people living with hemophilia?

They are all males because females can only be carriers of the trait.
The males with the disorder can’t pass the trait to their daughters.
Due to the method of inheritance, the majority of those with the disorder are males.
The females affected with the disorder inherited the trait from their father.

Answers

The true statement about hemophilia is that it is passed down through the genes from parents to children.

What is hemophilia?

Hemophilia is described as an inherited bleeding disorder caused by a deficiency of one of the following two blood clotting factors: factor VIII or factor IX.

Hemophilia is  passed down through the genes from parents to children However, about 30% of cases occur without a previous family history. This can happen due to a genetic change that can occur at the time of conception.

The main concern for people with hemophilia is bleeding in the joints.

Hemophilic arthropathy happens when there is repeated bleeding in the same joint which causes severe pain, stiffness and weakness.

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An organism produces feces there at least 2 different ways to understand what the feces represents

Answers

Answer:

that should be excretion the ability to ,excret

use what you know about natural selection and evolution to describe how plasmids might confer a selective advantage to their host bacteria.

Answers

By transferring adoptive genes from the plasmid to the bacterial chromosome, plasmids may provide their host bacterium a selection advantage.

Plasmids found in bacteria have the potential to encode genes for characteristics that might be advantageous to their hosts. These characteristics may include resistance to antibiotics, virulence, tolerance to heavy metals, and the ability to catabolize unusual sources of nutrients. Plasmids, when exposed to certain environmental circumstances, have the potential to confer a wide variety of selection advantages, such as resistance to antibiotics, resistance to toxins or ultraviolet light, and the ability to build biofilms.

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How did Jenner form his hypothesis?

Answers

Jenner formed his hypothesis by basing his hypothesis on prior knowledge of smallpox which is therefore denoted as option B.

What is Hypothesis?

This is part of the scientific process which is denoted as being a proposed explanation for a phenomenon.

Edward Jenner's smallpox inoculation experiment was based on an observation by a dairymaid that she could not get smallpox because she already had it and Jenner's knowledge of the virus made him to propose a hypothesis stating what would happen if he deliberately innoculated someone with cowpox fluid from another person.

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The question is:

How did Jenner form his hypothesis?

He based his hypothesis on prior knowledge of smallpox.

He based his hypothesis on a statement made by a dairymaid.

He based his hypothesis on an observation made during a prior experiment.

He based his hypothesis on the relationship between cowpox and smallpox.

2. Members of the phylum Annelida include earthworms, leeches, and
e. cephalopods
d. many segmented marine worms
a. chitons
b. some mollusks

Answers

The answer would be “many segmented marine worms”.

Point mutations, such as silent, nonsense, and missense mutations, are caused by
A. The deletion of a single chromosome within the nucleus.
B. the deletion of a single nucleotide along the DNA strand.
C. the change in a single nucleotide along the DNA strand.
D. the addition of a single nucleotide along the DNA strand.

Answers

Point mutations, such as silent, nonsense, and missense mutations, are caused by C. the change in a single nucleotide along the DNA strand.

What is the source of missense mutations?

Missense mutations occur when a single nucleotide base in a DNA sequence is replaced with another, resulting in a different codon and, therefore, a different amino acid. These mutations are relatively frequent, and in most situations, they have little effect on the protein's overall structure and function.

A silent mutation occurs when the mRNA codon codes for the same amino acid as the point mutation, a missense mutation occurs when the mRNA codon codes for a different amino acid, and a nonsense mutation occurs when the mRNA codon becomes a stop codon.

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how are stars distributed in space?
a: evenly distributed throughout space with no significant clumping
b: in clumps that are evenly distributed in space, with scattered stars between
c: in clumps that are themselves evenly distributed in space
d: in clumps that are themselves unevenly distributed in space ​

Answers

Answer:

I would think:

D) in clumps that are themselves unevenly distributed in space

Stars don't really have a pattern in which where they are in space, therefor D is the correct option.

Explanation:

Hope it helps! =D

What was Dr. Kettlewell's conclusion on his experiment with bird predation on the moths?

Answers

He discovered that birds were twice as likely to eat a bright moth as a dark insect on dark tree trunks.

Who was  Dr. Kettlewell?

If the tree's bark was light, the same birds would notice the dark moth twice as frequently. This provided evidence in favor of the hypothesis that dark moths would fare better in a dark forest.

In the middle of the 1950s, Kettlewell conducted a biological experiment to investigate the peppered moth's industrial melanism's evolutionary mechanism.

The investigation revealed that birds hunt on peppered moths selectively depending on their body color in relation to their background surroundings.

Therefore, He discovered that birds were twice as likely to eat a bright moth as a dark insect on dark tree trunks.

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Which of the following is a likely explanation for why invasive species take over communities into which they have been introduced?Iwasive species are less efficient than native species in competing for the limited resources of the environmentwaive species are not held in check by the predators and agents of disease that have always been in place for native speciesHumans carefully select which species will outcompete nuisance native speciesInvitive species have a higher productive potential than native species.Invasive species come from geographically isolated regions, so when they are introduced to regions where there is more competition, they thrive.

Answers

The explanation for why invasive species take over communities into which they have been introduced is invasive species are not held in check by the predators and agents of disease that have always been in place for native species.

Thus, the correct option is B.

Invаsive species аre non-nаtive species thаt hаve colonised а new аreа to the point of dаmаging the surrounding environment аnd аre saw аs one of the top five mаjor threаts to the ecosystem todаy. They cаn be brought into а new environment from pаthwаys such аs ships, fishing equipment or аccidentаl releаses. This is worrying for us аs invаsive species cаn dаmаge the services the ecosystems provide us with.

Invаsive species аre cаpаble of cаusing extinctions of nаtive plаnts аnd аnimаls, reducing biodiversity, competing with nаtive orgаnisms for limited resources, аnd аltering hаbitаts. Invаsive species cаn hаve impаcts on the mаrine industries, such аs growing on mаrine structures, killing or competing with mаrine аquаculture species аnd by spreаding diseаse.

Your options were not well arranged, but most probably the good arrangement was

A. Invasive species are less efficient than native species in competing for the limited resources of the environment

B. Invasive species are not held in check by the predators and agents of disease that have always been in place for native species

C. Humans carefully select which species will outcompete nuisance native speciesInvitive species have a higher productive potential than native species.

D. Invasive species come from geographically isolated regions, so when they are introduced to regions where there is more competition, they thrive.

Thus, the correct option is B.

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item 10 click and drag each label into the correct category to indicate whether the statement describes a substance to which the membrane is permeable or impermeable.

Answers

Small polar molecules, oxygen molecules and carbon dioxide are substances to which cell membrane is permeable whereas it is impermeable to large polar molecules, ions, proteins, glucose, nucleic acids.

The cell membrane is present around the cell and performs a number of important functions like providing mechanical support and regulation of substances leaving and entering the cells.

The cell membrane is basically a semi-permeable membrane which allows only selected molecules to pass through it. Permeability is basically the ease with which a molecule can pass through the cell membrane. The cell membrane is impermeable to large polar molecules, ions, proteins, nucleic acids and glucose but it is permeable to small polar molecules, oxygen molecules and carbon dioxide.

--The given question is incomplete, the complete question is

"Identify each label into the correct category to indicate whether the statement describes a substance to which the membrane is permeable or impermeable : Glucose, Proteins, Oxygen molecules, Small polar molecules, Large polar molecules, Ions, Nucleic acids, Carbon dioxide" --

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A genetic cross of a parent who has a dominant phenotype, but an unknown genotype (R?,Y?), with a parent who contains only recessive alleles (rr yy) is known as ___________.
A. a testcross
B. a monohybrid cross
C. an impossible cross
D. a dihybrid cross

Answers

A genetic cross of a parent who has a dominant phenotype, but an unknown genotype (R?,Y?), with a parent who contains only recessive alleles (rr yy) is known as a testcross.

Results from this type of cross show whether the dominant parent was homozygous or heterozygous for the dominant allele.

In a diploid organism, two alleles for a particular gene are expressed and interact to produce physical traits. A species' observable characteristics are referred to as its phenotype. The genotype is the genetic composition of an organism, which includes both the alleles that are physically expressed and those that are not. Mendel's hybridization studies show how phenotype and genotype differ from one another. For instance, the diploid genotypes of the plants in the P, F1, and F2 generations are related to the phenotypes that Mendel observed in his crosses between pea plants with different features.

We'll use seed colour as an illustration of the second attribute Mendel studied. A single gene with two alleles controls seed colour. In contrast to the green-seed gene, the yellow-seed allele is dominant. All of the F1 hybrid progeny had yellow seeds when true-breeding plants with one parent having yellow seeds and the other having green seeds were cross-fertilized. In other words, the yellow-seeded true-breeding parent's hybrid offspring shared the same phenotypes as it. The allele provided by the parent who planted green seeds, however, was not simply lost, as some of the F2 offspring carried it. As a result, the F1 plants have to be genetically distinct from the parent with the yellow seeds.

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Choose the statement that best describes the method of cytotoxic T cell-mediated killing of a target cell. a.) agglutination b.) Opsonization c.) Apoptosis

Answers

Apoptosis best describes the method of killing a target cell by cytotoxic T cells.

Cytotoxic T cells use their effector chemicals to kill infected host and tumor cells. As a result, the statement best describes the functions of B cells and cytotoxic T cells. A cytotoxic T cell is activated by interacting with antigen-presenting cells and receiving signals from helper T cells.

(A-pop-TOH-sis) A type of cell death in which a cell dies as a result of a series of molecular steps. This is one way the body gets rid of unwanted or abnormal cells. Cancer cells may be unable to undergo apoptosis. Also known as programmed cell death. In multicellular organisms, apoptosis is a type of programmed cell death. Biochemical events cause distinct cell changes and death. Blebbing, cell shrinkage, nuclear fragmentation, chromatin condensation, DNA fragmentation, and mRNA decay are examples of these changes.

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TRUE OR FALSE when modeling a trophic structure in a region of great biodiversity, the terms producer and primary consumer are interchangeable as long as the organisms both produce and consume biomass.

Answers

The statement given is False. It's false that when modeling a trophic structure in a region of great biodiversity, the terms patron and primary consumer are exchangeable as long as the organisms produce and consume biomass.  

When modeling a trophic structure in a region of great biodiversity, the terms patron and primary consumer are exchangeable as long as the organisms produce and consume biomass. The trophic structure is principally defined as biomass partitioning between trophic situations.   Biodiversity is the principle of all the different kinds of life we will find in one area — the variety of creatures,  shops, fungi, and microorganisms like bacteria that make up our natural world.

Primary consumers produce the alternate trophic position. They also eat primary directors —  shops or algae — and nothing differently. Hence, it's false that when modeling a trophic structure in a region of great biodiversity, the terms patron and primary consumer are exchangeable as long as the organisms produce and consume biomass.

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during observation a patient depresses the mandible. while opening the mandible moves/gets pulled to the right instead of depressing in a straight line. which of the following is LEAST likely?a. hypertonic right lateral pterygoid
b. hypertonic right medial pterygoid
c. hypertonic right temporalis
d. hypertonic left lateral pterygoid

Answers

While opening the mandible moves/gets pulled to the right instead of depressing in a straight line. Hypertonic Right Lateral Pterygoid is LEAST likely.

The craniomandibular muscle known as the lateral pterygoid performs a significant role in the inferior temporal area. It is active during chewing and mandibular motions like protrusion (moving the jaw forward), abduction (moving the mandible downward), and mediotrusion (mandibular condyle movement towards the midline). It functions best when speaking, singing, and clenching.

There are two heads or bellies on the lateral pterygoid muscle. In comparison to the superior belly, the inferior belly is three times bigger. It is the only masticatory muscle with fibres oriented horizontally among all the masticatory muscles.

With the help of the mylohyoid muscle and the anterior belly of the digastric muscle, the lateral pterygoid muscle depresses the jaw and opens the mouth. The lateral pterygoid is the only one of the four masticatory muscles (medial pterygoid, lateral pterygoid, masseter, and temporalis) that is involved in lowering the jaw.

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ii. the law of independent assortment can account for a 9:3:3:1 phenotypic ratio seen in the f2 generation.

Answers

Two distinct genes assort independently during gamete production, according to Mendel's law of independent assortment.

One needs to perform a dihybrid cross to come to this conclusion. This implies that two genes controlling two distinct features must be examined simultaneously.

1) Beginning with the paternal generation of a cross between two pure lines, one with green and wrinkled seeds and the other with yellow and round seeds, both of which are homozygous for both genes (yyrr). The F1 will have homogenous phenotypes (round and yellow) and heterozygous genotypes (YyRr).

2) To establish the phenotypic ratio of the F2 if the F1 individuals are crossed, a Punnett Square must be performed.

The F1 individuals will generate their various gametes with the same likelihood if the genes assort separately. There will be a 1/4 fraction of each potential gamete: YR, YR, yR, yr.

Analyzing the potential phenotypes that emerge from the dihybrid cross yielded the 9:3:3:1 ratio.

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13. Scientists have developed new techniques for producing organisms with desirable traits.
Genetic modification allows scientists to insert genetic material from one organism into another
organism. For example, one type of genetically modified corn contains genetic material from a
species of bacterium. The genetically modified corn plants produce a specific substance that
causes pests to die when they feed on these corn plants.
Which statement best describes how genetic modification technology differs from the
technique used with teosinte plants thousands of years ago?
A. Genetic modification technology is available to more people.
B. Genetic modification technology requires a longer time to create a change in a species.
C. Genetic modification technology introduces completely new traits into an unrelated
organism.
D. Genetic modification technology influences which traits are passed from parents to
offspring.y

Answers

Genetic modification technology introduces completely new traits into an unrelated organism.

Define  Genetic modification technology.

DNA is inserted into an organism's genome as part of the GM technology. New DNA is introduced into plant cells to create a GM plant. The cells are typically cultured in tissue culture after which they transform into plants. The modified DNA will be passed along to the seeds that these plants generate.

Human insulin, human growth hormone, and the hepatitis B vaccination are examples of products produced using genetic engineering techniques. Other genetically engineered species including disease-resistant plants have also been created using these techniques. It offers the possibility of treating some illnesses or disorders in people who already have them and of preventing illnesses in people whose genes made them more susceptible to such illnesses.

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what do black holes convert into gravity waves when they collide

- rational velocity
light
momentum
dark matter

Answers

Momentum is converted into gravity waves when they collide. In this case, Option C is correct

How do gravitational waves originate from black holes?

This happens because the two merging black holes are so massive that there are gravitational waves that emanate from the collision and ripple space-time. Gravitational waves are created when black holes transform their momentum. They spiral inward as their angular momentum decreases until they actually collide. Nothing can escape a black hole, so what should be one of the universe's most energetic explosions is completely silent and dark

Additionally, as the two black holes move in opposition, gravitational waves are produced.

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Which statement about the relationship between economics and the
environment is true?
O Long-term effects often receive more weight than short-term effects.
O Internal and external environmental costs are usually considered equally.
OHarm to the environment can harm economies.
O The relationship usually receives serious consideration.

Answers

if we consider all the given options, the third one suits much above all as we all know the economy is run by the environment directly or indirectly.

the economy is run by the products we get from the environment so both have interrelation between them if the environment is harmed it will affect the economy because we get everything from the environment that we introduce to the economy so they have a link between them .environment fulfills our basic to professional needs we must keep the environment safe and maintain the balance among both of them.

you have isolated a mutant strain of serratia marscesens that has an abnormal ribosome that is not functioning well. which of the following might be affected by this change? group of answer choices motility ability to survive harsh environmental conditions biofilm formation production of proteins three dimensional shape of the cell

Answers

Which of coming up next is right and supports the contention that most microorganisms don't actually hurt people? Microorganisms can perform photosynthesis, and disintegration, and be utilized in food creation.

Various gatherings of microorganisms fluctuate in their defenselessness to biocides, with bacterial spores being the safest, trailed by mycobacteria, then, at that point, Gram-negative organic entities, with cocci, by and large, being the most delicate.

It has been resolved that in a shut framework or cluster culture (no food added, no squanders eliminated) microorganisms will fill in an anticipated example, bringing about a development bend made out of four unmistakable periods of development: the slack stage, the remarkable or log stage, the fixed stage, and the passing or decline stage.

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Place the following steps in order to describe gene expression in cellsDrag the text blocks below into their correct order.The protein chain and mRNA molecule break off from the ribosomeThe amino acids bond together to form a growing protein chain.The protein chain is further modified and the mRNA strand is used again.DNA within the nucleus serves as a templatemRNA is processed before leaving the nucleus to a ribosome within the cytoplasmtRNAs carry amino acids to the mRNA

Answers

The steps in order to describe gene expression in cells:

1. DNA within the nucleus serves as a template.

2. mRNA is processed before leaving the nucleus to a ribosome within the cytoplasm

3. tRNA carries amino acids to mRNA

4. The amino acids bond together to form a growing protein chain

5. The protein chain and mRNA molecule break off from the ribosome.

6.  The protein chain is further modified and the mRNA strand is used again.

Most genes contаin the informаtion needed to mаke functionаl molecules cаlled proteins. А few genes produce regulаtory molecules thаt help the cell аssemble proteins. The journey from gene to protein is complex аnd tightly controlled within eаch cell. It consists of two mаjor steps: trаnscription аnd trаnslаtion. Together, trаnscription аnd trаnslаtion аre known аs gene expression.

Your question is incomplete, but most probably your full question can be seen in the Attachment.

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Which of the following is not a consequences of a signal binding to a receptor?

Activation of a receptor enzyme activity

Release of the signal from the receptor

Diffusion of the receptor in the plasma membrane

Change in the conformation of the receptor protein

Breakdown of the receptor into amino acids

Answers

Note that the option that is not a consequence of a signal binding to a receptor is: "Breakdown of the receptor into amino acids" (Option D)

What is a receptor?

In biochemistry and pharmacology, receptors are protein-based chemical structures that receive and transmit signals that can be incorporated into biological systems.

Receptor proteins send information to the cell by sensing the presence or absence of their associated ligands, a process that can be complicated and multi-step.

Organic substances that possess both amino and carboxylic acid functional groups are known as amino acids. Although hundreds of amino acids occur in nature, the alpha-amino acids that constitute proteins are by far the most significant.

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Alzheimer's disease is a degenerative brain disorder that affects more than 4 million
Americans. Neuroscientists have many theories about the causes of Alzheimer's and are
searching for clues as to causes of the neuronal destruction of the brain in this disease.
Which of the following factors would not contribute to a loss of brain function?
A. stroke
B. aging
C. head trauma
D. arthritis
E. clogged arteries

Answers

Answer:

D . arthritis.........

1. If you started with a fossil sample that has 2000 grams of potassium 40, how much would be left after 4 half-lives?
My answer: After 1st half-life: 1000 after a 2nd: 500 after a 3rd: 250 after a 4th: 125

2. How many years would you need to wait for those 4 half-lives to occur in problem a?

3. Scientists found a layer of rock with a very old trilobite fossil. They tested the rock layer and found that there was only 12.5% of the original Uranium-235 in it. How old is this trilobite?

Answers

A fossil has the sample that containing 2000 grams of k+ 40 in the beginning will contain 12.5 grams or potassium 40 during four half lifetimes, or 5200 million years.

What is fossil?

The preserved remnants of the organisms and plants that has submerged in the sediments like the sand and the mud just beneath the ancient seas, lakes, as well as the rivers are known as fossils.

Any preserved sign of the life that has seems to be typically older than 10,000 years is considered a fossil. Erosion, which is made up of tiny rocks, bury this.

Therefore, A fossil has the sample that containing 2000 grams of k+ 40 in the beginning will contain 12.5 grams or potassium 40 during four half lifetimes, or 5200 million years.

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If a person had mutation which caused a shape and function change of DNA polymerase so that it had decreased repair activity, which of the following would y expect to happen? More: A. mutations B. free radicals C. gene expression D. replication

Answers

If a person had mutation which caused a shape and function change of DNA polymerase so that it had decreased repair activity, option A: mutations would consequently be likely to happen.

Mutations occur as a result of either errors in DNA replication or the harmful effects of mutagens, such as chemicals and radiation, which react with DNA and change the structures of individual nucleotides. So, if a person who had mutation it its DNA polymerase, DNA replication would not occur effectively, leading to mutations. Therefore, option A is the right choice.

Each organism's DNA sequence is unique. Its base-pair sequence can change from time to time. It is known as a mutation. A mutation can cause changes in the proteins that are translated by the DNA. Cells can usually recognize and repair any mutation-induced damage before it becomes permanent. A mutation is a sudden, heritable change in an organism's characteristics. Mutagens are factors that contribute to mutations.

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