what is the general relationship between species richness and ecosystem function and resilience to disturbances? and, why?

Answers

Answer 1

The mechanism of cohabitation shapes the link between species richness and ecosystem variability. theory linking environmental diversity to species richness.

What distinguishes species diversity from species abundance?

The number of members of each species in a region is known as its species abundance. Additionally, it has a numerical quality. The phrase "species diversity" refers to the variety of species present in a region (also known as "species richness"), as well as their abundance and distribution within that ecosystem. It serves as a gauge of the ecosystem's diversity.

Does the functioning of an ecosystem at the landscape scale depend on species richness?

The association between species richness and ecosystem functioning may thus generally be stronger at the landscape size than at lower ones, according to our findings.

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Related Questions

Which of the following is the best description of an organ system?B. A group of similar cells working together to complete a specificA. The human heart and lungstask.C. The structure of an organD. A group of organs working together to complete a specific task.in an ecosystem.​

Answers

Answer:

D

Explanation:

The answer is is D

A scientist claims that Elysia chlorotica, a species of sea slug, is capable of photosynthesis. Which of the following observations provides the best evidence to support the claim?

Answers

A scientist claims that Elysia chlorotica, a species of sea slug, is capable of photosynthesis. Among the following observations (B)  provides the best evidence to support the claim.

Elysia Chlorotica will continue to develop normally whether it is placed near food sources with or without light. However, if it is placed in light without any sources of nutrition, it should not grow because it would not be able to perform photosynthesis. Since it does grow, this indicates that there is a process similar to photosynthesis involved in the growth of Elysia. The process of producing food and energy in the presence of light, water, and atmospheric CO2 is known as photosynthesis.

So the correct option is (B) Elysia Chlorotica grows when exposed to light in the absence of other food sources.

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What are the levels of classification?

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Eight levels of taxa make the generally used classification scheme, which is based on the Linnean system. They are, from most general to most particular, domain, kingdom, phylum (plural, phyla), class, order, family, genus (plural, genera), and species.

Levels Of Classification:

DOMAIN

The domain has the highest categorization in biology. Eukarya, Archaea, and Bacteria are the three domains. Prokaryotes, single-celled organisms without a real nucleus, are found in both the Archaea and the Bacteria, although they differ in terms of structural, genetic, and metabolic traits.

KINGDOM

The kingdom was the highest taxonomic level in classification until the domain taxon was developed in the 1990s.

PHYLUM

Taxonomy places the phylum (plural, phyla) above the class and beneath the kingdom. For archaea, bacteria, protists, fungi, and mammals, scientists typically use the term phylum; however, they use the term division for plants.

CLASS

In taxonomy, the class comes after the phylum and before the order. A class's members are more similar to one another than they are to other members of the same phylum.

ORDER

In the taxonomic system, the order is placed above the class and beneath the family. An order's groupings are more similar to one another than they are to other people in the same class.

FAMILY

The family is ranked above the genus and below the order in taxonomy. More closely connected to one another than they are to other members of the same order are members of the same taxonomic family.

GENUS

The taxonomic rank between a family and a species is called a genus (plural, genera). A genus is a collection of creatures that are structurally very similar to one another and are very closely linked.

SPECIES

The base of the biological categorization hierarchy and the most fundamental unit in taxonomy is the species.

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what fluid(s) is/are produced by serous, mucous, and synovial membranes? what is the function of each fluid?

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Synovial fluid(s) is/are produced by serous, mucous, and synovial membranes. Synovial fluid help reduce friction between opposing surfaces of bones in movable joints

The inside surface of synovial joint capsules are lined with the synovium, also known as the synovial membrane, which is a specialized connective soft-tissue membrane. It is a crucial part of the tissues that make up an integrated joint, together with bone, articular cartilage, tendon, ligament, and fibrous capsule. As a result, it interacts with other tissues in the joint both structurally and functionally in addition to performing its own unique functions.

Articular cartilage is lubricated by synovial fluid, which also feeds it through diffusion. It is formed from a blood plasma ultrafiltrate that the synovium produces and controls. The epithelium secretes a thin coating of serous fluid that coats serous membranes. When organs in the thoracic or abdominopelvic cavity move against one another or the cavity wall, serous fluid lubricates the membrane and lessens friction and abrasion.

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what in vivo (in the body) situation is stimulated by the concentrations in the amylase and hcl tube

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Saliva formation is teh stimulated by amylase and the Hcl tube concentrations

Chewing well promotes the secretion of saliva. Saliva has the function of washing away food particles and bacteria left in the mouth, which leads to the prevention of tooth decay and gingivitis. Saliva is made up of 99% water. It's no wonder that 60% of the body is made up of water. The remaining 1% of the saliva contains the digestive enzymes, uric acid, the electrolytes, mucus-forming proteins, and cholesterol. That's right, it's saliva, aka saliva (let's say:suh-LIE-vuh). Saliva is a clear liquid that is produced in your mouth 24 hours a day. It is mostly water with some other chemicals. Slippery things are made by saliva (for example,SAL-uh-vair-ee) gland.

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FILL IN THE BLANK. a baby is bitten by a dog and then is afraid of all small animals. this is an example of _____.

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A baby is bitten by a dog and then is afraid of all small animals. this is an example of stimulus generalisation.

The tendency for a new stimulus to elicit a new response or behavior that was prompted by a previous stimulus is known as stimulus generalization. Because of the baby's contact with the one dog that bit him/her in this case, the newborn is now terrified of all dogs.

The capacity to act in a new environment in a way that has been honed in previous similar circumstances is known as stimulus generalization. How to determine which elements of the learning scenarios should be generalized is the issue. Both symbolic and associationist representations find this to be puzzling. Conversely, the stimulus is represented as being categorized along a specific dimension or domain when conceptual spaces are used.

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the phenotype of offspring would most likely be influenced by mutations during which biological process within the parent?

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The phenotype of offspring is most likely influenced by mutations that occur during meiosis, the process of cell division that produces gametes (eggs and sperm) for sexual reproduction.

During meiosis, the genome of an organism is divided into two copies, one for each of the resulting gametes. If a mutation occurs in one of these copies, it will be passed on to the offspring when the gamete combines with another gamete during fertilization. Mutations can also occur during other biological processes, such as DNA replication (the process by which cells copy their DNA before cell division) or after fertilization during embryonic development. However, these mutations are less likely to have a significant impact on the phenotype of the offspring, as they may occur later in the life of the organism and may not be present in all cells. In summary, mutations that occur during meiosis are most likely to influence the phenotype of offspring, as they are passed on to the next generation and are present in all of the cells of the resulting organism.

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what is the major difference between the alternate hypothesis and the null hypothesis?
a. the alternate hyphothesis is more specific than null hyphotesis
b. the alternate hyphothesis suggest there is no effect of the independent variable on the dependent variable, while the null hyphotesis suggest that there is
c.there is no difference between the two types of hyphothesis. they describe the same hyphothesis outcome in the results
d. the null hyphothesis is more specific than the alternate hyphothesis

Answers

d. the null hyphothesis is more specific than the alternate hyphothesis, is the major difference between the alternate hypothesis and the null hypothesis

A Type I mistake in hypothesis testing happens when the null hypothesis is rejected even if it is correct. A hypothesis test is carried out by statisticians to reject the null hypothesis. The chance of making a mistake is present throughout the procedure, though. The term "hypothesis testing mistakes" is used to describe this. The two mistakes that cannot both occur in a hypothesis test are Type I and Type II errors. While Type I mistakes happen when a statistician properly rejects a true null hypothesis, Type II errors happen when a statistician fails to reject a false null hypothesis.

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scientists estimate that whaling activity in the 19th and early 20th centuries had reduced the number of adult female southern right whales to as few as sixty individuals by 1920. this reduction resulted in a genetic bottleneck for the species. treaties to stop whaling have substantially increased the number of southern right whales. despite this increase, the bottleneck still threatens the future of the species. which capacity of the species is most severely diminished by the bottleneck?

Answers

Option d is Correct. The ability of the southern right whale species to maintain a diversified gene pool and maintain genetic stability is the skill that is most severely damaged by the bottleneck.

A population's size decline that results in a fall in genetic diversity is known as a genetic bottleneck. Numerous things, like as disease outbreaks, natural disasters, or human activities like habitat damage or hunting, might cause this. The southern right whale population had a genetic bottleneck as a result of extensive whaling in the 19th and early 20th centuries.

The ability of the species to retain a diversified gene pool, which is required for the species to adapt to changing environmental conditions and tackle new problems, is the capacity of the species that is most severely damaged by the bottleneck. Genetic variety is lost when a population undergoes a genetic bottleneck because there are fewer distinct genes available for selection. This could make it harder for the population to adjust to new problems and could raise the possibility of extinction.

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Correct Question:

Scientists estimate that whaling activity in the 19th and early 20th centuries had reduced the number of adult female southern right whales to as few as sixty individuals by 1920. this reduction resulted in a genetic bottleneck for the species. treaties to stop whaling have substantially increased the number of southern right whales. despite this increase, the bottleneck still threatens the future of the species. which capacity of the species is most severely diminished by the bottleneck?

a. acquiring random mutations

b. responding to environmental changes

c. maintaining a healthy social structure

d. remaining genetically stable.

FILL IN THE BLANK. a solution that has an osmotic pressure less than that of red blood cells is called ________.

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A solution that has an osmotic pressure less than that of red blood cells is called hypotonic solution.

Osmotic pressure is the minimum amount of pressure applied to a solution in order to stop the movement of solvent molecules entering it. The pressure is represented by 'π'. Osmotic pressure is a type of colligative property of the solutions.

Hypotonic solution is the one that has lesser amount of solute particles as compared to any cell or other solution that is separated by means of a semi-permeable membrane. The movement of solvent particles is from the hypotonic solution to the cell or other solution.

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What type of particle have the leat amount if kinetic energy?
a. Ice particle
b. Air particle
c. Skin particle
d. Liquid water particle?

Answers

The kinetic hypothesis states that matter particles are constantly in motion. Kinetic energy is the term for the energy of motion. Gas particles have the maximum kinetic energy, while solid particles have the least.

A solid's kinetic energy may be the least?

Solids have the lowest kinetic energy since they cannot move and can only vary in position relative to their mean. Although liquids have more kinetic energy than solids, they also have kinetic energy in their molecules due to convection.

What particle has the lowest energy?

When an electron and positron collided, a bottomonium particle was produced. This collision's energy resulted in the binding of a bottom quark and an anti-bottom quark.

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15 POINTSSSS. Below is a chart showing the component of a type of nucleic acid.
Which of the components bond directly with cytosine in a section double stranded DNA?

Answers

I’m not sure if there should be more than one answer, but in DNA nucleotides guanine always binds cytosine.

in the figure, the boxed red letter ____ is in the thylakoid lumen and the boxed red letter ____ is in the stroma of the chloroplast.

Answers

In the figure, the boxed red letter c is in the thylakoid lumen and the boxed red letter a is in the stroma of the chloroplast.

Thylakoids are the flattened, membranous sac like structures inside the chloroplast which play important role in the light dependent reaction of photosynthesis. Stroma refers to the internal spaces of the chloroplast which consists of enzymes, chloroplast genome and starch granules which are used during Calvin cycle. These enzymes assist in reaction between ATP and NADPH to fix carbon from carbon dioxide into molecules that can be used to build glucose. These structures are very important for efficient processing of photosynthesis inside the plant. Photosynthesis is the process by which green plants make their own food inside the stomata of leaves using carbon dioxide and water in the presence of sunlight.  

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how might an ecologist use modeling to study fire in a forest ecosystem? what might be some key variables used to create the model

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some key variables used to create the model are wind patterns, forest density, plant and animal populations, type of trees, and weather conditions.

Fire is a normal part of many forest ecosystems. It happens at regular intervals that change depending on the type of forest, the understory, the climate, the type of soil, and other things. Typically, lightning sets off natural forest fires during the warm and dry seasons, which begin with the spring snowmelt and last through the fall. Historically, these lightning-caused fires were successful in slowly removing old, dead, or decaying vegetation because they occurred at regular intervals. Recycled old vegetation was constantly transforming into new growth.

The movement of the fire, locations where prescribed burns should be performed, and areas with the potential for fire outbreaks would be determined by the model. key factors are backwoods thickness, kind of trees, plant and creature populaces, wind examples, and atmospheric conditions.

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Picture of the Question is below

Answers

1) the magnification of the phagocyte using the given formula is 446.15

II) the name of the part labeled A is called the Nucleus.

III) Phagocytes (neutrophils and monocytes) are immune system cells that are important in both the early and late phases of immunological responses. Their primary function is to circulate and move across tissues, ingesting and destroying bacteria as well as cellular waste.

How did we arrive at the magnification above?

Recall that the formula for the same has already been given:

I) Magnification (M) = Diameter of Cell in Diagram(D)/Actual Diameter of Cell (A)

Where the Diameter is 5.8 (as given in the rule from the diagram); and

A = 0.013 (given)

Thus,

M = 5.8/0.013

M = 446.1538461538

M [tex]\approx[/tex] 446.15

II) It is a known fact that Phagocytes have nuclei. A lobed nucleus has functional importance. The lobular configuration is hypothesized to make the nucleus simpler to distort, allowing neutrophils to move through tiny gaps in the endothelium and extracellular matrix more readily.

III) Note that Phagocytes are cells that may swallow and occasionally digest foreign particles such as bacteria, carbon, dust, or dye. It engulfs foreign materials by expanding its cytoplasm into pseudopods (cytoplasmic extensions that resemble feet), which surround the foreign particle and create a vacuole.

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why do yu think it was important to place the body in conditions that simulated those on the mountains?

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The scientists discovered a way to stop the remains from decomposing by simulating the mountain's natural environment.

A 12-year-old girl discovered a single men's size 12 blue and white running shoe on the beach of Jedediah Island in British Columbia on August 20, 2007. A sock was inside when she had a peek. A foot was visible when she glanced inside the sock.

A black-and-white Reebok was discovered by a Vancouver couple on a coastal excursion six days later on neighboring Gabriola Island. There was another foot in disrepair within. It was also a size 12 for men. The shoes themselves were different, and they each contained right feet, thus it was obvious that the two feet didn't belong to the same individual.

The police were in awe. The Vancouver Sun was informed by Garry Cox of the Royal Canadian Mounted Police that "two being found in such a short period of time is highly suspicious." "Finding two feet is insane, but finding one foot is like a million to one chances. Come on, I've heard of dancers with two left feet.

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one of the variables that are being considered for inclusion in a multiple regression model is marital status of the customer. there are four possible responses listed for this variable. based on​ this, three dummy variables will need to be created and incorporated into the regression model. State True or False your answer:
a. True
b. False

Answers

TRUE, one of the variables that are being considered for inclusion in a multiple regression model is marital status of the customer. there are four possible responses listed for this variable. based on​ this, three dummy variables will need to be created and incorporated into the regression model.

Using a line, a regression model statistically predicts the connection between a dependent variable and one or more independent variables (or a plane in the case of two or more independent variables). The connection between one or more independent variables and a response, dependent, or target variable is described by a regression model, which offers a function. A linear regression model, for instance, may be used to explain the link between height and weight. These can be roughly divided into two categories. Regression using a linear model. Rational Regression.

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myofilaments within myofibrils are arranged in repeating microscopic cylindrical units called ____________.

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Myofilaments within myofibrils are arranged in repeating microscopic cylindrical units called sarcomeres.

The contractile components of the cardiomyocyte, or the machinery or motor that causes contraction and relaxation, are contained in myofibrils, bundles of protein filaments.

Myofilaments are grouped within myofibrils in repeating tiny cylindrical units termed sarcomeres (meros=part), which are 2 micrometers in length. The length of the myofibril within the muscle fiber will influence the number of sarcomeres. The thick and thin filaments that make up each sarcomere overlap with one another.

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during middle age, fibrous tissue within sutures ossifies, leaving closed sutures called ______.

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During middle age,fibrous within suture ossifies,leaving closed sutures called SYNOSTOSES

The fusion of bones, which most frequently occurs at cartilaginous or fibro-osseous connections, is referred to as synostosis (plural: synostoses). Synostoses can be healthy, asymptomatic anatomical variations, or they can be aberrant and result in functional loss and clinical complaints.

The latter has clinical significance and may require medical attention. The following are examples of physiological synostoses, which develop as people age as a result of the ossification of synchondroses or syndesmoses:

primary and secondary ossification centers' physeal closure

vertebral synostoses in the sacral region, pubic, ischial, and iliac synostoses (acetabulum, ischiopubic) segments of the sternal body synostoses. Mandibular synchondrosis syostosis

The following are examples of synostoses, which are anatomical variations that are rarely accompanied with symptoms:

1.vertebral symphalangism

Congenital or acquired, intended postoperative results or complications from trauma or surgery can all lead to abnormal synostoses. Clinical conditions  that fall within this category include:

1. physeal closure of the skull too soon

2.Radioulnar synostosis in the Klippel-Feil syndrome

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transitional fossil evidence suggests that two species are closely related. which piece(s) of evidence would contradict this conclusion?

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Evidence against the theory of evolution is that there are large differences in DNA sequences and a lack of shared characteristics in the fossils of two species thought to be related.

Evolutionary theory states that present-day species are the result of past species that evolved by natural selection. An adaptable living thing that will survive by adapting bodily functions as needed. According to the theory of evolution evolution shows that two species are closely related.

Many experts oppose the theory of evolution because it does not have the same characteristics, all the fossils found do not have a perfect shape. Existing fossils are the result of reconstruction of transitional forms. In species that are claimed to be closely related, if further investigated, there are many differences in DNA sequences. Natural selection causes only small phenotypic changes such as color.

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catabolite repression exists in e. coli because: a. it prevents utilizing complex food sources in the presence of simpler sources like glucose b. it represses protein expression globally until sufficient energy in the form of glucose becomes available c. it prevents an overabundance of camp when the cell requires atp d. it allows utilization of glucose at an equal rate to other food sources in order to conserve glucose e. it allows cells to carefully save glucose until all other food sources are exhausted

Answers

Catabolite repression exists in e. coli because a)it prevents utilizing complex food sources in the presence of simpler sources like glucose.So,correct option is a.

Carbon catabolite repression, or basically catabolite constraint, is a significant piece of worldwide control arrangement of different microbes and different microorganisms. Catabolite suppression permits microorganisms to adjust rapidly to a liked (quickly metabolizable) carbon and energy source first. This is generally accomplished through restraint of blend of proteins associated with catabolism of carbon sources other than the favored one.

The catabolite repression was first demonstrated to be started by glucose and accordingly once in a while alluded to as the glucose impact. In any case, the expression "glucose impact" is really a misnomer since other carbon sources are known to prompt catabolite constraint.

Hence, correct option is a.

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Consider these phylogenetic trees. The first tree is based on physical characteristics. The second tree is based on structure, genetics, and evolutionary history.

2 phylogenetic trees are shown. The first tree has 3 branches that go to duck, platypus, and opossum. The second tree has 2 branches that go to duck and platypus. Opossum branches off of the platypus branch.

Which can be concluded from a comparison of the two phylogenetic trees?
A: Phylogenetic trees are not subject to change.
B: Classification can change with new discoveries and evidence.
C: Classification does not change with more evidence.
D: Phylogenetic trees are inaccurate.

Answers

Answer:

B: Classification can change with new discoveries and evidence.

Explanation:

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apply the rule of multiplication to a dihybrid cross. how would you determine the probability of getting an f2 offspring that is homozygous recessive for both traits?

Answers

Dihybrids create four different kinds of gametes. A gamete has a 1/4 chance of carrying both recessive alleles, and two of them joining together has a 14 × 14 or 116 chance.

The likelihood that both of the organism's genes are recessive is 50% x 50% = 25%. T. Krishan 25% (1/4th) of the offspring from the specified dihybrid cross would be homozygous both for characteristics. The Punnett square below shows that there is a 25% chance of having a healthy homozygous (AA) kid, a 50% probability of having a heterozygous (Aa) carrier child, and a 25% risk of having a homozygous recessive (aa) kid that will likely die from this condition. A Punnett square can be used to forecast this ratio in order to illustrate potential results of a gene sequence.

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What are the limitations of classification?

Answers

There are many limitation of classification such as:

1) The kingdom Protista houses the unicellular algae, while the kingdom Plantae houses the multicellular algae. Not all similar organisms are combined.

2) The Protista kingdom has a great deal of diversity. It is forbidden to keep dissimilar organisms in the same group.

3) Every organism except monerans demonstrates that their origins are polyphyletic (derived from more than one common evolutionary ancestor or ancestral group).

4) In the taxonomy of the five kingdoms, viruses have no position.

5) Organisms that are similar to one another are kept apart. For instance, unicellular algae and multicellular algae.

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when hypofunction of an endocrine organ is suspected, which type of diagnostic test can be administered to measure and assess target gland response?

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When hypofunction of an endocrine organ is suspected, Stimulation tests can be administered to measure and assess target gland response.

A dynamic medical test called an ACTH stimulation test, also known as a cosyntropin stimulation test (CST), determines how well your adrenal glands react to adrenocorticotropic hormone (ACTH). The major medical test for diagnosing primary, secondary, or tertiary adrenal insufficiency is this one.

An ACTH stimulation test involves injecting synthetic ACTH (cosyntropin) into your muscle and taking repeated blood samples at various intervals to measure your cortisol levels and gauge how your adrenal glands react.

Your pituitary gland secretes a hormone called ACTH, or adrenocorticotropic hormone, which has a significant impact on how your body reacts to stress. Your adrenal glands start producing cortisol, sometimes known as the "stress hormone," when ACTH is released. Every organ and tissue in your body is impacted by cortisol, an important hormone.

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pioneer organisms modify their environment, establishing conditions under which more advanced organisms can live. is the meaning of ___

Answers

Answer:

succession

Explanation:

pioneer organisms modify their environment, establishing conditions under which more advanced organisms can live. is the meaning of succession.

(a) glysolysis (b) krebs cycle (citric acid cycle) (c) calvin cycle (light-independent reactions of photosynthesis) (d) light-dependent reactions of photosynthesis (e) chemiosmosis question process in which o2 is released as a by-product of oxidation-reduction reactions responses

Answers

Answer: A

Explanation: Glycolysis

what are the steps for dna replication?

Answers

Answer:

the opening of the double helix and separation of the DNA strands, the priming of the template strand, and the assembly of the new DNA segment. 

Answer:

Process below

Explanation:

DNA replication is the process by which a cell copies its DNA in order to produce new cells. The steps of DNA replication are as follows:

The DNA double helix unwinds and separates into two single strands.An enzyme called helicase unwinds the DNA at the replication fork, breaking the hydrogen bonds between the nitrogenous bases and separating the two strands.Another enzyme called primase adds short RNA primers to the single strands of DNA. These primers provide a starting point for the synthesis of new strands.An enzyme called DNA polymerase begins adding new nucleotides to the single strands of DNA, using the existing strands as a template. DNA polymerase adds nucleotides to the 3' end of each strand, moving in the direction of the 5' end.The newly synthesized strands are joined together by an enzyme called ligase, which seals any gaps between the nucleotides.Once replication is complete, the cell has two identical copies of the original DNA molecule. These copies are used to create new cells, ensuring that each cell has the same genetic information as the original cell.

FILL IN THE BLANK. a typical prokaryotic cell __________________ compared to a eukaryotic cell.

Answers

Answer: haploid

Explanation: a haploid cell only contains one set of chromosomes

Photophosphorylation during photosynthesis differs from oxidative phosphorylation during cellular respiration in thata. energy is stored in the form of a proton (H+) concentration difference.b. it involves an electron transport chain.c. the energy is provided by sunlight not by organic compounds.d. generation of ATP is driven by a flow of protons (H+) through ATP synthase.

Answers

C. the energy is provided by sunlight, not by organic compounds, is the correct option.

As the name suggests, through the activation of PSII (photosystem II), photophosphorylation uses solar energy to convert ADP to ATP. In this, a process known as photolysis splits the water molecule into oxygen and hydrogen protons (H+). An ongoing, unidirectional flow of electrons from water to PSI is then carried out.

The metabolic mechanism by which cells use enzymes to oxidize nutrients and release chemical energy to generate adenosine triphosphate is known as oxidative phosphorylation, electron transport-linked phosphorylation, or terminal oxidation.

The differences between both can be summarized as follows:

Oxidative phosphorylation:

It takes place in mitochondria.electrons donated by NADH and FADH2the final electron acceptor is O2ATP is created by converting chemical energy.

Photophosphorylation

This happens in chloroplasts.electrons donated by NADH onlythe final electron acceptor is NADHATP is created by converting solar energy.

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