DNA codes for _?_, which account for the heritable characteristics of an organism.
a monosaccharides
b fatty acids
c fats
d proteins

Answers

Answer 1

DNA codes for proteins. Therefore option (D) is correct.

What does DNA code for?

Deoxyribonucleic acid (DNA) is the genetic material that codes for the heritable characteristics of an organism. DNA stores information in the form of a code made up of four nucleotide bases (adenine, guanine, cytosine, and thymine) arranged in a specific sequence.

This sequence provides the instructions for the synthesis of proteins, which carry out the majority of cellular functions and determine an organism's physical traits. Thus, DNA acts as the blueprint for the development and functioning of all living things, from bacteria to humans.

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Related Questions

1. emb agar uses lactose and two dyes that allow it to be blank between the blue-black colonies of e. coli and the pinkish colonies of all other enteric bacteria.target 1 of 8 2. an agar that allows for the distinction of bacteria based on metabolism would be considered blank.target 2 of 8 3. an agar that uses the dye in crystal violet agar suppresses the growth of gram-positive bacteria. this agar would be considered blank.target 3 of 8 4. an agar that uses a high salt concentration to limit the growth of one type of bacteria over another would be considered blank.target 4 of 8 5. a blood agar plate contains sheep red blood cells and allows for the determination of hemolytic capabilities for all bacteria that grow on the agar. this would make this type of agar blank.target 5 of 8 6. the blank aspect of macconkey agar allows for the determination of which bacteria are lactose fermenters and which are not.target 6 of 8 7. bile salts in macconkey agar allow for the agar to be blank for the growth of enteric gram-negative bacteria over gram-positive bacteria.target 7 of 8 8. if an agar contains a dye or ph indicator in the presence of a sugar, it is generally considered blank for those bacteria that may ferment the sugar over those that cannot.

Answers

On differential and selective agars:

differentialdifferentialselectiveselectivedifferentialdifferentialselectivedifferential

What is differential and selective agar?

Differential and selective agar are types of agar used in microbiology to distinguish between different types of bacteria based on their characteristics, such as metabolism, growth rate, and ability to ferment specific sugars.

Differential agar contains specific ingredients that highlight the differences between bacteria and allow for the differentiation of colonies based on color, size, and other morphological features. Selective agar, on the other hand, contains ingredients that restrict the growth of certain bacteria while allowing the growth of others, depending on the target bacteria that needs to be studied.

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in humans long eyelashes is dominant (e ) to short eyelashes (ee), having dimples (d ) is dominant to not having dimples (dd) and free ear lobes (f ) are dominant to attached earlobes (ff). what is the likelihood of producing a child with long eyelashes, dimples and attached earlobes from the following cross? eeddff x eeddff

Answers

The likelihood of producing a human with these traits from the cross Eeddff x Eeddff is 1 out of 4, or 25%.

A Punnett square is a grid that displays the potential progeny of a cross between two people. The children can be read from the other axis of the grid, and each box in the grid represents a potential gamete (sperm or egg) that can be generated by one of the parents.

The parent Eeddff can produce either E or e for the first attribute (eyelashes), and the parent Eeddff can create either E or e as well. The Punnett square for the eyelash characteristic is as follows: According to the last Punnett square, only one probable human, DdFE, possesses long eyelashes (E), dimples (D), and attached earlobes (f).

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g the jevons paradox is the principle that as technological progress increases the efficiency of resource utilization, consumption of that resource will increase.

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Yes, it is true that "The Jevons paradox is the principle that as technological progress increases the efficiency of resource utilization, consumption of that resource will increase."

The Jevons Paradox basically states that, in long term, an increase in the efficiency in resource use will also generate an increase in the resource consumption rather than causing a decrease.

Or in other words we can say that it is basically when technological progress increases the efficiency with which a particular resource is being used, thus reducing the amount which is necessary for any one use, but the rate of consumption of that particular resource will rise because of the increasing demand.

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

"Is it true that the Jevons paradox is the principle that as technological progress increases the efficiency of resource utilization, consumption of that resource will increase."

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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.

Answers

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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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

Answers

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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Which of the following is responsible for selectively transporting substances into the ventricles of the brain from the bloodstream?

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Option A, The Blood-Brain Barrier is responsible for selectively transporting substances into the ventricles of the brain from the bloodstream.

The blood-brain barrier (BBB) is a selectively permeable barrier that separates the circulating blood from the brain and spinal cord. It is composed of tightly packed ventricles cells and specialized capillaries that control the movement of substances from the bloodstream into the central nervous system. This barrier plays a critical role in protecting the delicate brain and spinal cord bloodstream tissue from harmful substances, ventricles while still allowing the passage of essential nutrients and other substances necessary for normal brain function. The  Blood-Brain Barrier is an important component in maintaining the health of the central nervous system and preventing damage to the brain and spinal cord.

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The complete Question is:

What selectively transports substances into the ventricles of the brain from the bloodstream?

Blood-Brain Barrier

Blood vessels

Neural pathways

Cerebrospinal fluid.

which statement best describes an operon? view available hint(s)for part a which statement best describes an operon? several genes, next to each other in eukaryotic dna, that are transcribed as a single piece of mrna a single gene in prokaryotic dna that is transcribed as a single piece of mrna several genes, at different locations in prokaryotic dna, which are transcribed as a single piece of mrna several genes, next to each other in prokaryotic dna, that are transcribed as a single piece of mrna

Answers

Operon is several genes, next to each other in prokaryotic DNA, that are transcribed as a single piece of mRNA.

An operon is a unit of DNA control found in prokaryotic organisms, such as bacteria. It consists of several genes that are located next to each other on the DNA strand and are transcribed as a single piece of mRNA. This means that all of the genes within the operon are transcribed into a single messenger RNA molecule, which can then be translated into proteins. The operon is controlled by a promoter, which is a specific DNA sequence that signals the start of transcription, and a regulator gene, which controls the expression of the operon. The operon system allows for the coordinated regulation of multiple genes, which can be particularly useful in response to changing environmental conditions, such as the presence of a specific nutrient.

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select the answer choice with the correct order in which these structures evolved in plant cells: group of answer choices cell walls, mitochondria, chloroplasts mitochondria, chloroplasts, cell walls chloroplasts, mitochondria, cell walls chloroplasts, cell walls, mitochondria mitochondria, cell walls, chloroplasts

Answers

The correct order in which these structures evolved in plant cells is mitochondria, chloroplasts, cell walls. So, option 2 is correct.

Numerous crucial functions are carried out by mitochondria in plants. Their main function is to produce ATP by linking a membrane potential to the passage of electrons from NADH to O2 via the electron transport chain. The tricarboxylic acid cycle is used to produce NADH by oxidizing organic acids.

The organelle of photosynthesis is called a chloroplast. In order to create nourishment (sugar) for the plant, they harness light energy from the sun and combine it with water and carbon dioxide. Two phospholipid membranes, one inside the other, envelop the chloroplast.

Outside of the cell membrane, a cell is surrounded by a hard layer known as a cell wall. Other polysaccharides, in addition to cellulose and protein, can also be found in the cell wall. The cell wall offers defense and support to the structure. The cell wall contains pores that allow nutrients and water to enter and exit the cell. Additionally, the cell wall stops the plant cell from bursting if water gets inside.

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The actual form of the question is:

Select the answer choice with the correct order in which these structures evolved in plant cells:

1) cell walls, mitochondria, chloroplasts

2) mitochondria, chloroplasts, cell walls

3) chloroplasts, mitochondria, cell walls

4) chloroplasts, cell walls, mitochondria

5) mitochondria, cell walls, chloroplasts

Genes are often described according to the way they affect the characteristics of an organism, which are called ___.

Answers

it is not called anything

complete the following paragraph to describe chemical cycling and energy flow in an ecosystem. some words may be used more than once.

Answers

An ecosystem is a system in which matter cycles and energy flows. Let's take a closer look at how various living activities influence the movement of energy and matter in ecosystems to better understand why this is the case.

When producers engage in photosynthesis, they draw energy from the sun and store it as chemical potential energy, which is how energy enters an ecosystem. In this process, materials from the environment is ingested and rearranged into organic molecules as CO₂ and H₂O. (sugars). These organic molecules can either be stored as biomass or used to power the producers' biological functions through cellular respiration, which generates heat and CO₂.

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7. Describe FOUR features of bacteria that enable them to survive in a wide variety of habitats. (8marks)​

Answers

FOUR features of bacteria that enable them to survive in a wide variety of habitats are given below:

The Features of Bacteria that aids its adaptability

Flexibility in Nutrient Sources: Bacteria can use a wide range of organic and inorganic compounds as food sources, allowing them to survive in many different habitats.

Adaptability to Changing Environments: Bacteria can adjust their metabolic processes to survive in environments with fluctuating conditions, such as pH and temperature.

Genetic Diversity: Bacteria can exchange genetic material, which allows for rapid adaptation to new environments and the acquisition of new traits.

Ability to Form Biofilms: Bacteria can form complex communities called biofilms that provide protection from environmental stress and antimicrobial agents.

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What characteristic do you have that you hope to pass on to your progeny? Why?

Answers

Characteristics found in germ lines are generally passed down to the next generation of offspring through sexual reproduction, whereas traits found in somatic cells are not.

What is the significance of the passing of traits?

Traits, also known as characteristics, are generally passed on to the next generation as they are present on germ line cells, such that in the case of the male, they produce sperm so, the active genes on the sperm will express in the offspring, and in the case of the female, the active gene on the ovum will express in child.

Hence, characteristics found in germ lines are generally passed down to the next generation of offspring through sexual reproduction, whereas traits found in somatic cells are not.

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Which of the following muscles is named for its location? Multiple Choice O Rhomboideus major O Teres major O Trapezius O Deltoid O Quadriceps femoris'

Answers

The correct option is D; Quadriceps femoris' . Some muscles, such as the gluteal muscles of the buttocks, are named from their size and placement. Other muscle names, such as the tibialis anterior, can refer to the muscle's position in the body or the bones with which it is linked.

Skeletal muscle is situated between bones and connects the epimysium to the periosteum, or outer layer of bone, via tendons.

Each type of muscle tissue in the human body has a distinct structure and function. Skeletal muscle is responsible for the movement of bones and other structures. To pump blood, cardiac muscle contracts. To facilitate bodily processes, the smooth muscle tissue that forms organs such as the stomach and bladder changes shape.

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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

lac I codes for the repressor protein. Describe the effect on a cell's regulation of B galactosidase if lac I did not exist in that cell or became mutated and could not make a functional repressor

Answers

If lac I did not exist in a cell or became mutated and could not make a functional repressor, the regulation of B galactosidase would be affected, leading to an increase in its expression.

Lac I is the functional repressor protein that regulates the expression of the B galactosidase gene in E. coli. It does this by binding to the operator site on the DNA near the gene and preventing RNA polymerase from transcribing the gene into messenger RNA. In the absence of lac I or if lac I is mutated and cannot make a functional repressor, the B galactosidase gene would not be regulated, leading to an increase in its expression. This increase in expression would result in an increase in the production of B galactosidase, an enzyme that breaks down lactose. As a result, the cell would be able to use lactose as a source of energy more efficiently, which could be beneficial in certain conditions. However, it is important to note that in normal conditions, proper regulation of B galactosidase expression is necessary to maintain optimal cellular metabolism.

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The Complete Question is:

lac I codes for the repressor protein. Describe the effect on a cell's regulation of B galactosidase if lac I did not exist in that cell or became mutated and could not make a functional repressor

why does out body function the way that it does?​

Answers

Hormones are chemicals that coordinate different functions in your body by carrying messages through your blood to your organs and other tissues.

How does the body know its function?

Every body part has a function each part of the body has a certain function. Scientists divide the human body into structures to better understand how its parts link with each other and to function as a whole. A body system is a group of body parts that work jointly to perform a certain job.

Body functions are the physiological or psychological functions of body systems. The body's functions are eventually its cells' functions. A function body is an amalgam statement containing statements that specify what the function does. The range of a function involves its domain. A vertical line is an example of a functional relationship.

So we can conclude that The human function body is the structure of a human being.

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which of the following best describes the likely evolutionary steps that led to a complex eye like we see in humans?

Answers

The likely evolutionary steps that led to a complex eye like we see in humans likely involved . The earliest form of eye may have been a simple light-sensitive cells in a cup, which allowed organisms to detect changes in light intensity.

Over time, these light-sensitive spots evolved into a cup-like structure, which provided a greater ability to detect the direction of incoming light. This was followed by the development of a pinhole lens, which allowed for more precise detection of light direction. Finally, the evolution of a complex lens, cornea, and retina with photoreceptor cells provided the ability to form an image and process visual information with high resolution.These gradual improvements in eye structure and function likely arose through natural selection, as organisms with better vision had a survival advantage over those with less developed eyes. The evolution of a complex eye like we see in humans likely took millions of years and involved many small changes, each of which provided a small advantage to the organisms that possessed them. This gradual process of improvement likely allowed organisms to better navigate their environments, detect and avoid predators, locate food, and perform other important tasks that required good vision.

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The full question was here:

which of the following best describes the likely evolutionary steps that led to a complex eye like we see in humans?

a flat sheet of light-sensitive cells;

light sensitive cells in a cup;

a pinhole camera without a lens;

a pinhole camera with a lens

Within a developed multicellular organism, all cells possess the ability to divide and do so regularly.
Choose one:
A. It is false, because some cells lose the ability to replicate their DNA and divide.
B. It is false, because most multicellular organisms cannot reproduce at all.
C. It is true, because all cells can always replicate their DNA in the same manner.
D. It is true, because all cells can always split into two cells in the same manner.

Answers

Answer:

A - false,

Explanation:

because some cells lose the ability to replicate their DNA and divide.

true/false. the structure of dna that crick and watson proposed has (number) strands of dna that are wrapped around each other to form a double helix. the dna bases of each strand of dna point towards the central axis of the molecule and are held together by bonds.

Answers

The structure of DNA that crick and Watson proposed has two (number) strands of DNA that are wrapped around each other to form a double helix. The DNA bases of each strand of DNA point towards the central axis of the molecule and are held together by hydrogen bonds.

In the early 1950s, only Watson and Crick were researching the structure of DNA. They discovered that the structure of DNA is a polymeric double helix or spiral of two DNA strands. Both contain long chains of nucleotide monomers, which are twisted together.

DNA is not a single molecule, but a pair of molecules held together by hydrogen bonds: DNA is arranged as complementary strands with hydrogen bonds between them. Each DNA strand is a chain of chemical building blocks, namely nucleotides, which are of four types: Adenine (A), Cytosine (C), Guanine (G), and Thymine (T).

This question is a type of fill-in-the-blank:

The structure of DNA that crick and Watson proposed has____________(number) strands of DNA that are wrapped around each other to form a double helix. The DNA bases of each strand of DNA point towards the central axis of the molecule and are held together by_______bonds.

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TRUE OR FALSE An individual is heterozygous for two linked genes, but whether its genotype is AB/ab or Ab/aB is not known. The individual is crossed with an ab/ab individual, and among the progeny are: 16 AB/ab; 54 Ab/ab; 46 aB/ab; 24 ab/ab.
These results imply that the genotype of the doubly heterozygous parent was AB/ab.
true or false and explain your answer

Answers

The statement about an individual being crossed with an ab/ab individual, and among the progeny has results that the genotype of the doubly heterozygous parent was AB/ab is false because the crossing with recessive аllele (аb/аb) gives the percentаge proportion of heterozygous dominаnt аllele аs 62% АB аnd 51% аb.

Thus, the correct answer is false.

This is test crossing. It is used to determine the genotype of heterozygote dominаnt аlleles, where the phenotype cаnnot be used to identify the genotypic proportion. The recessive аllele (аb/аb) аbove аre used to determine the  proportion of inheritаnce of zygosity of the heterozygote аllele  

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besides the method used by v. cholerae, other types of gene transfer exist. one important type is transduction, which can be generalized or specialized. choose whether the following examples illustrate generalized transduction, specialized transduction, or neither.

Answers

Bacteriophages, viruses that infect bacteria, are one type of organism that may transfer genetic material from one bacterium to another. particular transduction

One example of: Plasmid transfer from one bacterium to another by conjugation (direct cell-to-cell contact) universal transduction

It is an example of: Neither when genetic material is transferred across fungi via the development of hyphae (filamentous structures). This is not precisely transduction, but rather a case of horizontal gene transfer in fungus.

A bacteriophage, sometimes referred to as a phage colloquially, is a duplodnaviria virus that attacks and replicates inside of bacteria and archaea. The word was formed from the Greek word for "to devour" and the word "bacteria."

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The tobacco mosaic virus (TMV) is a plant virus that infects a wide range of plants, including tobacco. In order to enter and travel through the cells of a plant, TMV produces a movement protein. This protein helps the virus travel directly between the cytoplasms of interconnected plant cells.Which of the following best predicts how the movement protein modifies plant cells in order to help TMV travel from cell-to-cell?
- The movement protein modifies the plasmodesmata between plant cells.
- The movement protein increases the formation of transport vesicles within plant cells.
- The movement protein modifies the vacuoles within plant cells.
- The movement protein increases the formation of cell walls between plant cells.

Answers

The tobacco mosaic virus (TMV) is a plant virus that infects a wide range of plants, including tobacco. In order to enter and travel through the cells of a plant, TMV produces a movement protein. This protein helps the virus travel directly between the cytoplasms of interconnected plant cells.The movement protein modifies the plasmodesmata between plant cells.

The Tobacco Mosaic Virus (TMV) is a positive-sense single-stranded RNA virus species of the genus Tobamovirus that affects a variety of plants, but is particularly harmful to tobacco and other Solanaceae-family plants. The infection results in distinctive leaf mottling and discoloration, similar to "mosaic," as well as other patterns (hence the name). First to be identified was the TMV virus. The destructive effects of a non-bacterial infectious illness on tobacco crops were known as early as the late 19th century, but it wasn't until 1930 that the infectious agent's nature—a virus—was discovered. The pathogen's identity as a virus has just been discovered. W.M. Stanley created a crystal of the virus. The largest synthetic molecule, PG5, which is comparable in size to it, is also synthetic.

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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

Answers

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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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.

Answers

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 measurements is correctly matched with microorganisms of that size? view available hint(s)for part a which of the following measurements is correctly matched with microorganisms of that size? yeast; 1 centimeter bacteria; 2 micrometers viruses; 10 micrometers bacteria; 10 nanometers

Answers

Bacteria at a 2 micrometre distance is the proper match. Typically, yeast is categorised as being significantly larger than bacteria and viruses when it comes to microorganism size. Here option B is the correct answer.

Bacteria are usually in the range of 1-10 micrometers in size, while viruses are much smaller, usually in the range of 10-300 nanometers. So, the statement that bacteria are 10 nanometers in size is incorrect, while the statement that they are 2 micrometers in size is correct.

The size of microorganisms can vary greatly, ranging from single-celled organisms such as bacteria and yeast, to much smaller viruses. In general, bacteria are larger than viruses, with sizes typically ranging from a few micrometers to several hundred micrometers.

On the other hand, viruses are much smaller, usually measuring in the range of tens of nanometers to a few hundred nanometers.

Complete question:

which of the following measurements is correctly matched with microorganisms of that size? view available hint(s)for part a which of the following measurements is correctly matched with microorganisms of that size?

A - yeast; 1 centimeter bacteria;

B - 2 micrometers viruses;

C - 10 micrometers bacteria;

D - 10 nanometers

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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

Answers

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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which of the following is a similarity between cilia and flagella? which of the following is a similarity between cilia and flagella? both are on the surface of human sperm cells. both are long. both are on the surface of respiratory epithelium. both are involved in human reproduction.

Answers

Both cilia and flagella are long and involved in movement.

Cilia and flagella are structures that extend from the surface of cells and are used to move liquids and particles over the surface of cells or to move the cells themselves. Cilia and flagella share a similar structure, with a microtubule core surrounded by an axoneme and covered by a plasma membrane.

Both cilia and flagella are used for similar functions, such as the movement of mucus in the respiratory system and the movement of sperm in human reproduction. In particular, both cilia and flagella are present on the surface of human sperm cells and are involved in human reproduction.

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What does a botanist study? WHAT is it!!??!??!

HELLPPP MEEE PLSSSS

Answers

Answer:

Botanists study plants to try to understand how these processes work.

Explanation:

Hope this helps!

A little fun fact for you, their research is involved in enhancing crops, developing medicines, cleaning up contaminated sites, and even powering our cars!

Read this sentence from paragraph 3.
I wondered if I would always be just a shadow in Natalie's life until the day
I caught her sobbing in the hallway.
The author uses figurative language to reveal



A.the narrator wonders if Natalie is annoyed by her
B.the narrator feels greatly disliked by Natalie
C.the narrator follows her sister around
D the narrator feels unnoticed by Natalie

Answers

The author of the story below uses figurative language to reveal that the narrator feels unnoticed by Natalie (option D)

Figurative language deviates from the usual word order and meaning in order to convey a complex meaning, vivid writing, clarity, or an emotive comparison. By using a regular sentence, it refers to something without actually declaring it.

Figurative language, which is frequently used in both literature and everyday speech, is present in many phrases. Figurative language asks the reader or listener to consider the meaning of something (a "vehicle") in the context of other ideas, actions, or visuals (a "tenor").

Understanding figurative language is necessary to read the Management Discussion and Analysis (MD&A), where management may use a metaphor to clarify complex ideas or the direction the organization is taking.

The question is incomplete, it should be:

My sister Natalie wanted to grow up in seconds and not in years. I was left behind to catch up in real time. Only two years apart, I also felt decades away from her. Natalie wanted privacy, personal room, and mother’s pretty possessions at ten. I longed for her cuddles, which she only dispensed when she had upset me and was sorry. I loved my big sister with every ounce of my being though she felt weighed down by my displays of affection.

“When I was your age, your aunt Jen and I weren’t close,” our mother confessed. “Now, we can’t get enough of each other. Your grandparents are really old, and we share our worries and responsibilities, you know.”

I wasn’t ready to think about that—my beautiful mother being frail or my towering father using a cane. I suspected Natalie would be ahead in the care arrangements and that I would try to play catch-up. I wondered if I would always be just a shadow in Natalie’s life until the day I caught her sobbing in the hallway.

“You didn’t see anything,” Natalie said between sobs and rushed to her room, which she didn’t seal with a locked door.

Entering her neat room, which was a furniture catalog, was a privilege. The veneer of the green curtains added a layer of beauty to the windows. Except for crumbled tissues in the trashcan, nothing seemed unkempt. What had been bothering my perfect sister?

“What’s wrong?” I asked and sat on the edge of the bed to take up the smallest possible space. Then, I spotted a broken friendship bracelet by the night lamp. How could I have not noticed before? Carly hadn’t come over in months. Natalie wasn’t on the phone every free minute of Saturday and Sunday. I had been buried in books and band practice and failed to see my big sister’s loneliness. “Do you want to watch Zombie Cheer together? We don’t have to talk. We can just be…together.”

Natalie lunged at me to hold me tight and wailed until my hair was damp. I let her. Then, she dried her face with tissues and took me by the hand to the living room. Mother had already set up two big bowls of popcorn, which looked like heaps of comfort. Mother always knew everything.

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FILL IN THE BLANK. the scapula is blank to the breastbone. (click to select) the nose is blank to the eyes

Answers

With the aid of the clavicle, the scapula is attached to the sternum or breast bone. The word that can fill the blank is connected. Hence, the scapula is connected to the breastbone.

With the aid of the clavicle, the scapula is attached to the sternum or breast bone. The shoulder girdle sometimes referred to as the collarbone, is made up of the clavicle and scapula. It is a component of the central and axial skeleton. At the middle of the anterior thorax, the sternum, often known as the breast bone, is made up of the manubrium, body, and xiphoid process.

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