Why would a change in the numbers of producers (for example phytoplankton ) cause a large change to the rest of an ecosystem

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Answer 1

Answer:

Explanation:

A large change in the number of producers(for example phytoplankton) would have a huge effect on the rest of the ecosystem because there would be so much phytoplankton that fish would feed so much and keep increasing their population and sharks would eat so much of the fish that the sharks would be increasing their population rapidly. If the change in producers increases, then the rest of the population on the planet increases.


Related Questions

which of the following inhibits glycolysis and glucose uptake by muscle cells, and causes a rise in blood glucose concentration?

Answers

Answer:

You didn't include the answer choices, but "glucagon" would be the answer.

Explanation:

Glucagon is a hormone created by the pancreas that regulates sugar/glucose levels. It prevents blood sugar from lowering to an unhealthy level, which means that it increases the blood sugar level.

It's basically the opposite of insulin, another hormone, which lowers blood sugar levels.

refer to the graph and select the most appropriate statement: group of answer choices body mass is the dependent variable, and taxa (birds, mammals, reptiles) is the independent variable field metabolic rate is the dependent variable, and taxa (birds, mammals, reptiles) is the independent variable body mass is the independent lic rate is the dependent variable body mass is the dependent variable and field metabolic rate is the independent variable i do not know

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Body mass is the dependent variable, and field metabolic rate is the independent variable.

The graph displays a relationship between two variables, body mass and field metabolic rate, across three taxa: birds, mammals, and reptiles. Based on this information, the most appropriate statement is that body mass is the dependent variable and field metabolic rate is the independent variable. This means that the value of body mass changes in response to changes in the value of field metabolic rate, and the graph shows the effect of variations in field metabolic rate on body mass across the three taxa.

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The complete Question is:

Which variable is dependent and which is independent variable in the graph of body mass and field metabolic rate for taxa (birds, mammals, reptiles)?

which of the following are appropriate hypotheses that the farmer could test? select all that apply.

Answers

The appropriate hypotheses that the farmer could test are options(a),(b), and(c)i.e, When fertilizer is added to the soil once every three months, almond trees live longer and produce larger almonds. Almond trees also produce more almonds when they are watered once daily and fertilized.

Fertilizers supply plants accompanying the items that grant permission to be absent or infrequent in a form that may be secondhand apiece plants for faster development. Most fertilizers supply nitrogen, planet seen at dawn, and potassium. Without fertilizers, the type struggles to fill the fibers in the soil. When crops are gathered, the main minerals are distant from the soil, cause they attend the crop and wind up at the furniture upon which to work.

If the soil is not stocked with accompanying minerals through fertilizing, crop yields will decay over occasion. Grow your almond wood in star, shaded from cold northward or concerning the direction to the east winds. The ideal soil for almonds is rich and well-exhausted, accompanying much of the natural resources to maintain liquid.

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The complete question is:

Which of the following are appropriate hypotheses that the farmer could test? Select all that apply.

a) Almond trees produce more almonds if they are watered once a day

b) Almond trees live longer if fertilizer is mixed into the soil once every three months

c) Almond trees produce larger almonds if they are watered daily and fertilizer is used.

hich of the following phrases incorrectly finishes this statement? a genetic disease that causes death in infancy and has an autosomal recessive inheritance pattern can persist in a population because

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The phrase which incorrectly finishes this statement is that if both parents are carriers, they have a 50% chance of having normal children.

What is an Autosomal recessive disorder?

This is the type of disorder which involves two copies of the mutation being sufficient enough to cause the disease.If both parents are carriers, then the chance of having normal children is zero and not 50 percent.

What is a typical 7-year-old?

Today's kids can dress themselves, tie their shoes, and grasp a ball using their hands more easily.The need for independence from of the family has increased.Because of events like starting school, children at this age engage in a lot of outside interaction.

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A coral species that currently inhabits a single reef off the coast of Indonesia would be considered... 1. vestigial. 2. a transitional form. 3. endemic. 4. exotiv

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Endemic coral species are those that can only be found on a single reef off of the coast of Indonesia.

What is it called when evolutionary unrelated groups resemble one another because they have adapted to the same environments?

Convergent evolution, as used in evolutionary biology, is the process through which dissimilarly related animals independently develop comparable features to meet comparable needs.

What factors likely to make populations more genetically diverse?

By implementing new alleles into populations, gene flow encourages genetic diversity, and it also tends to converge the allele frequencies of nearby populations.

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There are several ways to model a compound. One
type of model is shown.
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НОНН
Н-С-С-С-С-О-Н
НННН
Mark this and return
What is the chemical formula for the molecule
represented by the model?
O CHO
O C4H₂O₂
о с н о
C3H8O₂
O
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Submit

Answers

The chemical formula for the molecule represented by the model C3H8O2.

What are ways to model a compound?

There are several ways to model a compound, including:

Chemical formula: This represents the number and type of atoms present in a molecule using symbols and subscripts.

Ball and stick model: This model represents the atoms as spheres and the bonds between them as sticks.

Space-filling model: This model represents the atoms as spheres and shows the relative sizes of the atoms and the space occupied by the molecule.

Molecular orbitals model: This model represents the distribution of electrons in a molecule and can provide information about chemical reactivity and stability.

Two-dimensional structural formula: This model represents the connectivity and arrangement of atoms in a molecule using symbols and lines to represent bonds.

Three-dimensional molecular model: This model represents the shape and orientation of a molecule in space.

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The color of sunflower pollen can be orange, yellow, or white-cream. Crosses review thats true-breeding orange is dominant to both yellow and white-cream. However, a cross between true-breeding white-cream and yellow plants produced F1 plants with orange pollen. The F2 populations of this cross resulted in a ratio of 9 Orange; 3 yellow, 4 white-cream. What type of inheritance do these results suggest? A-codominance B- incomplete dominance C- recessive epistasis D-complimentary Gene interaction E- dominant epistasis

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The F2 populations of this given cross resulted in a ratio of 9 Orange; 3 yellow, 4 white-cream. These results suggest recessive epistasis. So, option C is correct.

Recessive epistasis occurs when one gene's recessive allele obscures the effects of another gene's other allele. Recessive epistasis has a 9:3:4 phenotypic ratio. The resulting offspring exhibits insufficient dominance. Recessive epistasis is illustrated by the dihybrid cross between the mouse genes A (agouti) and C (color), which results in a phenotypic ratio for the mouse coat colors black, albino, and agouti. Two genes important in determining coat color are in recessive epistasis.

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In humans, aniridia (a type of blindness) is due to an autosomal dominant allele, and optic atrophy (another type of blindness) is due to a recessive X-linked allele. A man blind from optic atrophy marries a woman blind from aniridia. Assuming that the woman is homozygous for both genes, would any of their children be expected to be blind? If so, what type of blindness would they have?

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The offspring of the man and woman blind from optic atrophy and aniridia homozygous would not be blind. Their children would be carriers of both the dominant and recessive X-linked allele .

The man blind from optic atrophy is homozygous for the recessive X-linked allele. The woman blind from aniridia is homozygous for the autosomal dominant allele. Their children will receive an X chromosome from the father and an X chromosome from the mother. Since the father is homozygous for the recessive X-linked allele and the mother is homozygous for the dominant allele, it is likely that the children will receive the dominant allele from the mother, resulting in aniridia. However, it is also possible that the children will inherit the recessive X-linked allele from the father, resulting in optic atrophy.

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Match each situation with the correct type of energy transfer. Each column contains exactly two correct answers.

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Energy cannot be created or destroyed, but it can be transferred and transformed.

What is Energy?

There are a number of different ways energy can be changed, such as when potential energy becomes kinetic energy or when one object moves another object.

The total amount of energy in the universe has never changed and will never change because it cannot be created or destroyed. This does not imply that energy cannot change forms or even move between objects though.

Kinetic energy, or the energy attributed to motion, can be transferred from a moving item to a stationary object by means of effort, which is a frequent example of energy transfer that we experience in everyday life.

Therefore, Energy cannot be created or destroyed, but it can be transferred and transformed.

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Which of the following conditions would LEAST likely present with an acute onset of respiratory distress?
A) Pneumonia
B) Anaphylaxis
C) Pneumothorax
D) Pulmonary embolism

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Anaphylaxis would LEAST likely present with an acute onset of respiratory distress

Anaphylaxis is a severe allergic reaction that typically causes symptoms such as skin rash, hives, swelling, difficulty breathing, and low blood pressure. While anaphylaxis can cause respiratory distress, the onset of symptoms is usually more rapid and less gradual compared to other respiratory conditions such as pneumonia, pneumothorax, or pulmonary embolism. These other conditions often present with an acute onset of respiratory distress and may also cause chest pain, coughing, and shortness of breath. In contrast, anaphylaxis is characterized by a rapid and widespread allergic reaction, which can quickly progress to severe respiratory distress. However, it is worth noting that anaphylaxis can be life-threatening and requires prompt medical attention.

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Edward Jenner noticed that the milkmaids who milked cows by hand often were infected with cowpox and that their infections were mild. He also noticed that these same milkmaids did not contract smallpox, which was a much more serious disease. He presumed that the cowpox infections prevented the milkmaids from contracting the much more serious disease of smallpox. Subsequently he began vaccinating people with the pus-like material from cowpox lesions to determine if his thinking was correct. In the story above, the underlined portion is a(n)

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In this case, the milk maids were vaccinated in the process of contracting the cowpox.

What is vaccination?

Vaccination is the process of administering a vaccine to an individual to help the body develop immunity to a specific disease. This helps protect against future infections by the disease-causing agent.

Vaccines work by introducing a weakened or dead form of the pathogen, or a piece of it, into the body, which triggers an immune response. This response helps the body recognize and fight the pathogen if it infects the body again in the future.

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Which of the following questions would be most useful to researchers trying to determine the role of meiosis in the F2 phenotypic frequencies ?
A) What is the molecular mechanism underlying the dominance of erect petals and long pollen?
B) Which phenotypes give pea plants the highest level of fitness: erect or hooded petals and long or round pollen?
C) How do the phases of meiosis differ between sweet pea plants and other organisms?
D) What is the recombination frequency between the genes for petal shape and pollen shape?

Answers

The correct option : (D) What is the recombination frequency between the genes for petal shape and pollen shape?

Meiosis  (lessening,' as it is a reductional division) is a form of germ cell division in sexually reproducing animals that generates gametes such as sperm or egg cells. It consists of two rounds of division that result in four cells with just one copy of each chromosome (haploid).

Prior to division, genetic material from the paternal and maternal copies of each chromosome is crossed across, resulting in novel code combinations on each chromosome. Later, during fertilization, the haploid cells produced by meiosis from a male and female will unite to form a zygote, which has two copies of each chromosome.

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What is one effect of Earth's rotation?

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One effect of Earth's rotation is the creation of the Coriolis effect, which causes moving objects (such as wind, ocean currents, and the trajectories of projectiles) to be deflected to one side as they travel along the planet's surface. This results in the formation of rotating weather systems and ocean currents, as well as the characteristic eastward flow of the jet stream. The Coriolis effect is stronger at the poles and weaker at the equator, and it affects the direction of movement of many large-scale natural systems on Earth.

human growth hormone (hgh) causes target cells to release insulin-like growth factors (igfs), which are hormones that promote

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Human growth hormone (hGH) causes target cells to release insulin-like growth factors (IGFs), which are hormones that promote growth cell growth and division, glucose release, and protein synthesis.

IGFs mediate the effects of growth hormone (GH) and play an important role in the regulation of somatic growth and organ development including brain development.

IGFs (Insulin-like Growth Factors) has an important role in growth and development by regulating and controlling mitosis and cell anabolism. IGFs promote long bone growth by stimulating chondrocyte proliferation and maturation. This hormone also plays a key role in the growth and development of skeletal muscles.

So, the GH hormone will stimulate IGF to regulate somatic growth and organ development like glucose release, and protein synthesis.

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a genetic disease is caused by an insertion in part of a gene. the insertion results in one copy of the gene being longer whereas the other copy is normal length. in the gel below, the dna sequences of this gene from four individuals have been amplified using pcr (the gel is loaded at the top of the tray). lane 1 of the gel shows an individual who does not have the disease. select the band(s) that represent(s) the insertion allele.

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The genetic disease band(s) that are longer than the normal allele in lane 1 represent the insertion allele.

In the case of a genetic disease caused by an insertion in a gene, the insertion results in one copy of the gene being longer than the normal length. When the DNA from an individual is amplified using PCR, the insertion allele will appear as a band that is longer than the normal allele. In the gel,  the insertion allele. The size difference between the normal allele and the insertion allele can be used to identify individuals who carry the disease-causing insertion and to diagnose the disease. It is important to note that the presence of the insertion allele does not necessarily mean an individual has the disease, as the expression of the genetic disease may be influenced by other factors such as environmental and epigenetic influences.

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The complete Question is:

Which band(s) on the PCR gel represent the insertion allele in individuals with the genetic disease caused by an insertion in a gene?

which of the following is not an example of an elastic moduli? which of the following is not an example of an elastic moduli? young's modulus impression modulus bulk modulus shear modulus

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Option B: impression modulus is not an example of an elastic moduli.

The elastic limit on the stress-strain is significant to the structural and manufacturing industries because it indicates the greatest stress a certain material can withstand before permanently deforming. The ratio of stress to strain is known as the modulus of elasticity. Young's modulus, shear modulus, and bulk modulus are the three forms of elastic moduli that can exist. Thus, impression modulus is not an example.

Numerous studies demonstrate that for a given material, the amount of strain produced is the same whether the stress is compressive or tensile. The ratio of the longitudinal strain (ε) to the tensile/compressive stress (σ) is known as the Young's modulus (Y).

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9. why are population growth and land use important in understanding consequences of natural hazards? (1 pt)

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Changes in land use have made it more difficult to provide billions of people with high-quality environments, while population growth has increased the damage caused by hazardous events.

Nearly all dangers are exacerbated by rising populations at the local, regional, and international levels (floods, landslides, volcanos, EQ). A potential threat to human life and property is a natural process or event known as a "natural hazard." A natural disaster is defined as a dangerous event that occurs over a brief period of time in a specific area, affects at least 100 people, results in the declaration of a state of emergency, and results in the request for international assistance. A catastrophe is a severe disaster that necessitates a significant financial outlay and a protracted period of time for recovery to occur.

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You would like to determine the functional relationship between nuclear lamina disassembly and chromosome condensation, which both happen at the beginning of mitosis. Which of the following experiments would most help with your study? a) tag lamin A with GFP and monitor by live imaging b) mark the DNA fluorescently and monitor by live imaging (this can be done by expressing a fluorescent histone) c) prevent the disassembly of the nuclear lamina and monitor chromosome condensation d) perform immunofluorescence analysis with antibodies that detect the nuclear lamina and chromosomes e) prevent the assembly of the nuclear lamina and examine nuclear organization

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To determine how nuclear lamina breakdown and chromosomal condensation, which start mitosis, are linked. "Prevent the disassembly of the nuclear lamina and monitor chromosome condensation" would most help the study. Option C is correct.

By preventing the disassembly of the nuclear lamina, researchers can examine whether this disassembly is required for chromosome condensation to occur. If chromosome condensation still occurs despite the lamina not disassembling, this would suggest that lamina disassembly is not necessary for chromosome condensation to take place.

If, on the other hand, chromosome condensation does not occur without lamina disassembly, this would suggest that the two processes are functionally connected. This experiment would therefore help to determine the functional relationship between the two events.

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based on this diagram, which two systems interact to maintain homeostasis? responses the immune and circulatory systems work together to circulate blood through the pancreas. the immune and circulatory systems work together to circulate blood through the pancreas. the circulatory and endocrine systems work together to keep blood sugar levels constant. the circulatory and endocrine systems work together to keep blood sugar levels constant. the nervous and reproductive systems work together to stimulate the production of insulin. the nervous and reproductive systems work together to stimulate the production of insulin. the excretory and nervous systems work together to convert glycogen int

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The two systems that interact to maintain homeostasis are the circulatory and endocrine systems, which collaborate to keep blood sugar levels constantly. The correct answer is option(b).

Homeostasis is the state of constant internal, tangible, and synthetic environments upheld by living systems. This is the condition of optimum functioning for the creature and contains many variables, to a degree crowd temperature and fluid balance, being preserved inside sure pre-set limits.

Homeostasis upholds optimal environments for catalyst operation during the whole of the crowd, as well as all cell functions. It supports neverending surroundings despite changes in within and extrinsic environments. In the human body, these include the control of blood glucose aggregation.

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The complete question is:

based on this diagram, which two systems interact to maintain homeostasis?

The immune and circulatory systems work together to circulate blood through the pancreas.The circulatory and endocrine systems work together to keep blood sugar levels constant. The nervous and reproductive systems work together to stimulate the production of insulin.The excretory and nervous systems work together to convert glycogen int.

What is splenomegaly test?

Answers

Answer:  Blood tests, such as a complete blood count to check the number of red blood cells, white blood cells and platelets in your system and liver function.

Explanation:

The Chromosome 18 Inversion
Not all structural rearrangements of chromosomes produce nonviable, impaired, or infertile individuals. In rare instances, such a change can result in the evolution of a new species. In fact, a pericentric inversion in chromosome 18 appears to have contributed to the evolution of humans. This inversion is not present in our closest genetic relatives, the chimpanzees. Humans and chimpanzees differ cytogenetically by pericentric inversions on several chromosomes and by the fusion of two separate chromosomes in chimpanzees that correspond to chromosome two in humans.
The pericentric chromosome 18 inversion is believed to have occurred in early humans following their divergence from a common ancestor with chimpanzees approximately five million years ago. Researchers characterizing this inversion have suggested that approximately 19,000 nucleotide bases were duplicated on 18p, and the duplicated region inverted and reinserted on chromosome 18 of an ancestral human.
A comparison of human and chimpanzee genes in the region of this inversion indicates that two genes—ROCK1 and USP14—that are adjacent on chimpanzee chromosome 17 (which corresponds to human chromosome 18) are more distantly positioned on human chromosome 18. This suggests that one of the inversion breakpoints occurred between these two genes. Interestingly, humans and chimpanzees express USP14 at distinct levels in specific cell types, including cortical cells and fibroblasts. Perhaps the chromosome 18 inversion in an ancestral human repositioned specific genes and reset their expression levels in a useful way. Because both ROCK1 and USP14 encode cellular enzymes, a change in their expression could alter cellular function. It is not known how this inversion contributed to hominid evolution, but it appears to be a significant factor in the divergence of humans from other primates.
According to the passage, which of the following events are believed to have occurred after humans diverged from their common ancestor with chimpanzees?
a. Paracentric inversions occurred at several chromosomes, including human chromosome 18.
b. Two separate chromosomes underwent a pericentric inversion, then fused to form chromosome 2 in humans.
c. 19, 000 nucleotide bases were duplicated, inverted, and reinserted at human chromosome 18.
d. The ROCK1 and USP14 genes were duplicated in early humans, which increased expression of these genes.

Answers

The appropriate response is Early humans duplicated the ROCK1 and USP14 genes, which boosted their expression.

Pericentric inversion refers to the alteration of the normal gene sequence that happens on both sides of the centromere. Each arm of the chromosome has a break point as a result of this inversion. Breakage might happen at two different places.

Human evolution began following chromosomal pericentric inversion. Because of this inversion, humans and chimpanzees no longer share a common ancestor. On the human ancestor's chromosomal number 18, about 19000 nucleotide bases were duplicated, inverted, and then reinserted.

Therefore, alternative is the right response. Early humans duplicated the ROCK1 and USP14 genes, which boosted their expression.

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The feet of modern horses have a ___________ toe(s) in contrast, early horses had __________ toe(s) on their front feet and ______ toe(s) on their hind feet.

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The feet of modern horses have a single toe in contrast, early horses had four toes on their front feet and three toes on their hind feet.

Hyracotherium, a little woodland creature from the early Eocene, was the first horse. It was between 10 and 20" tall and did not resemble a horse at all. With an arched back, a short neck, a short snout, short legs, and a long tail, it resembled a dog.

Three or four of the horse's original toes were functioning. However, many horses lost their side toes and evolved a single hoof throughout the course of millions of years of development. Only horses with single-toed hooves still exist today, but the bones above their hooves still bear signs of small vestigial toes.

However today, grassland with plants, resembling steppes or grasslands, replaced the forest. The horses that were alive at the time altered in response to and adaptation to their surroundings. They expanded in size (Mesohippus was roughly the size of a goat), and their legs lengthened so they could sprint more quickly.

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each of the following statements concerning the gram-positive cell wall is true except question 14 options: it protects the cell in a hypertonic environment. it contains teichoic acids. it is sensitive to lysozyme. it is sensitive to penicillin. it maintains the shape of the cell.

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Each of the following statements concerning the gram-positive cell wall is true except option A: it protects the cell in a hypertonic environment.

In either of the hypertonic or hypotonic settings, the cell wall plays no protective role for the cell. The concentration gradient that forms in a hypertonic environment causes water to flow out of the cell, and no matter what type of cell wall is there, it cannot block this process. Thus, option A is not involved.

The form of the cell is preserved by the gram-positive cell wall. The gram-positive cell wall has been shown in studies to be susceptible to lysozyme. The cell walls of gram-positive bacteria contain techoic acids that are active. Additionally, numerous studies have demonstrated that the antibiotic penicillin is susceptible to gram-positive cell walls. As a result, the statement "it protects the cell in a hypertonic environment" is untrue.

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which of the following base locations in dna specifies the first base in the rna transcript designated, and what numerical value is it assigned?

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The first base in RNA transcript is specified by the 5' end of DNA and assigned the numerical value 1.

In the process of transcription, RNA polymerase reads the DNA sequence and uses it as a template to synthesize a complementary RNA molecule. The 5' end of the DNA strand, which is designated by the letter "5'" and the number 1, specifies the starting point of transcription and the first base in the RNA transcript. The RNA transcript is synthesized in the 5' to 3' direction, meaning that the first base in the RNA transcript is located at the 5' end of the DNA strand. The 3' end of DNA, which is designated by the letter "3'" and a negative number, specifies the end of transcription and the final base in the RNA transcript.

Which of the following base locations in DNA specifies the first base in the RNA transcript and what numerical value is it assigned?

A) 5' end, 1

B) 3' end, 1

C) 5' end, -1

D) 3' end, -1

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during the plateau phase of the action potentials of myocardial contractile cells, which ions are crossing the membrane

Answers

Both Ca2+ (calcium) and K+ (potassium) ions cross the membrane during the myocardial contractile cells' action potential plateau phase.

The cardiac action potential causes the membrane potential (voltage) of heart cell membranes to shift from one side to the other. Ions traveling between cells through ion channels cause this change in potential. The sinoatrial (S-A) node, a specialized group of cells that can produce an automatic action potential, is the source of cardiac potential. Through gap junctions, this action potential is transmitted to the other cells. The action potential of myocardial contractile cells has five phases. The membrane begins to repolarize during phase 2, also known as the plateau phase when its potential stays almost constant. The balance of charged ions entering and leaving the cell is reached. Calcium ions enter the cell through L-type channels, whereas potassium ions leave the cell through a delayed rectifier potassium ion channel.

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A developing human that is traveling from a fallopian tube to the uterus would most accurately be described as a(n)
a. fetus.
b. embryo.
c. zygote.
d. amnion.

Answers

A developing human that is traveling from a fallopian tube to the uterus would most accurately be described as a (c) zygote.

zygote, the fertilized egg cell produced when a female gamete (egg, or ovum) and a male gamete combine (sperm). The zygote stage is brief and is followed by cleavage, when the single cell divides into smaller cells, in the embryonic development of humans and other animals.

A zygote is created when the sperm and egg are together. The zygote develops into an embryo and fetus during human gestation. The most accurate term for a developing person that is moving from a fallopian tube to the uterus is a zygote.

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l nerd help pleaseee​

Answers

Answer:

     SR      Sr       sR        sr

SR  SSRR  SSRr  SsRR   SsRr

Sr  SSRr    SSrr   Ss Rr  Ssrr

sR  SsRR  SsRr   ssRR   ssRs

sr SsRr    Ssrr    ssRr   ssrr

list 3 pieces of background information relevant to the biological effects of high fructose corn syrup (hfcs).

Answers

High fructose corn syrup (HFCS) is a sweetener that is derived from corn and is commonly used in processed foods and drinks. HFCS is a mixture of glucose and fructose and is generally cheaper and sweeter than sugar.

Metabolism: Unlike glucose, which is metabolized by all cells in the body, fructose is metabolized primarily in the liver. This means that large amounts of fructose can put a significant load on the liver, leading to fat storage and other negative metabolic effects.

Fructose vs. Glucose: Unlike glucose, which is the main source of energy for the body, fructose has limited metabolic uses. This means that the body is more likely to store excess fructose as fat, which can contribute to weight gain and obesity.

Studies have shown that fructose is less effective at stimulating insulin secretion and suppressing hunger, compared to glucose. These differences in metabolism and insulin regulation can have important implications for the health effects of HFCS.

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the banded linsang is not a member of the felidae. its inclusion in this evolutionary analysis is to

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The banded linsang is not a felidae (a family of cats). To identify the outgroup in which variations in DNA sequences originally emerged, its inclusion in this evolutionary analysis is required.

Linsang, either of three long-tailed, feline-like species of mammals from the civet family (Viverridae). Linsangs come in a variety of colors, but all three—the African linsang (Poiana richardsoni), the banded linsang (Prionodon linsang), and the spotted linsang (Prionodon pardicolor—resemble long cats. With the exception of a banded tail that is nearly as long, they reach a maximum length of 33-43 cm (13-17 inches). They have slender bodies, relatively narrow heads, elongated muzzles, retractile claws, and dense, close-lying fur.

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which of these is an abiotic element of a desert ecosystem
sand cactus lizard scorpion

Answers

Explanation:

A desert ecosystem is composed of both biotic and abiotic elements. Biotic elements refer to living components of an ecosystem, such as plants, animals, and fungi, while abiotic elements are non-living components, such as temperature, sunlight, and water.

The abiotic elements of a desert ecosystem are:

1. Temperature: Deserts are usually characterized by extreme temperatures, ranging from very hot to very cold. During the day, temperatures can soar to over 100 degrees Fahrenheit, while at night they can drop to freezing or below.

2. Sunlight: The desert's climate is largely determined by the amount of sunlight it receives. Deserts generally receive a lot of sunlight, which can be both beneficial and detrimental to the ecosystem.

3. Water: Water is the most critical abiotic element in a desert ecosystem, as it is the primary source of moisture for all living things. In some deserts, water is so scarce that it is only available through underground aquifers.

4. Soil: The type of soil found in a desert is usually very dry and nutrient-poor. This soil is not conducive to the growth of most plants, which is why deserts tend to be sparsely populated with plants.

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