which plane velocity was greatest? Yeagers Bell x-1, The Concorde, SR71 blackbird, none they all traveled at the same speed.

Answers

Answer 1

Answer:

The SR-71 Blackbird.

Explanation:

The Lockheed SR-71 "Blackbird" was an American strategic reconnaissance aircraft that traveled at over mach 3, or 3 times the speed of sound. The Concorde was a French passenger jet with a top speed of just over mach 2. The Bell X-1 was the first supersonic test plane and had to be dropped from a larger plane to reach altitude.

Answer 2

The plane velocity of SR71 blackbird was the greatest. The correct option is C.

What is velocity?

The directional speed of an item in motion, as measured by a specific unit of time and observed from a certain point of reference, is what is referred to as velocity.

Velocity is the pace and direction of an object's movement, whereas speed is the time rate at which an object is travelling along a path. In other words, velocity is a vector, whereas speed is a scalar value.

The SR 71 Blackbird is the fastest piloted aircraft. (Some unmanned vehicles have moved more quickly.) It has moved at a 936 m/s speed. This is Mach 3, or roughly three times the speed of sound.

Thus, the correct option is C.

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Related Questions

Which of the statements regarding DNA replication are true? Replication takes place in the 5 ′ 5′ to 3 ′ 3′ direction on the leading strand and in the 3 ′ 3′ to 5 ′ 5′ direction on the lagging strand. Replication usually takes place in the 5 ′ 5′ to 3 ′ 3′ direction. Eukaryotic chromosomes have more than one origin of replication. Leading strand fragments (Okazaki fragments) are synthesized semi‑discontinuously and must be joined by DNA ligase. New nucleotides add to the 5 ′ 5′ phosphate of the growing DNA molecule.

Answers

Answer:

replication takes place from 5' to 3'

Explanation:

Final answer:

DNA replication goes from 5' to 3' for both the leading and lagging strands. However, lagging strand replication is semi-discontinuous, occurring via Okazaki fragments which are then linked by DNA ligase. Eukaryotic chromosomes do indeed have several replication origins.

Explanation:

You're right that DNA replication typically takes place from the 5' to 3' direction, and this pattern holds true for both the leading and lagging strands. During replication, DNA polymerase adds new nucleotides to the 3' end of the growing strand, resulting in a 5' to 3' directionality. However, the replication method differs between the leading and lagging strand. For the leading strand, DNA replication is continuous. For the lagging strand, DNA replication takes place in chunks known as Okazaki fragments, which are later joined together by DNA ligase - hence, it is described as being synthesized semi-discontinuously. Additionally, it's accurate that eukaryotic chromosomes have multiple origins of replication to speed up the process.

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Cell mediated immunity uses what type of WBC to attack and kill the infected cell? _________________ _____________________ are released that cuase the cell to lyse or __________.

Answers

Answer:

Cell mediated immunity uses what type of WBC to attack and kill the infected cell? T-cells Helper T or Killer T cells are released that cause the cell to lyse or undergo apoptosis.

Explanation:

White blood cells or leukocytes are integral to cell-mediated immune function in the human body.  T cells are produced in bone marrow, and mature in the thymus. They recognize antigens on virus-infected cells and target them for attack; antigens and receptors fit together to allow for identification.

Helper T cells aid in activating other immune cells, along with eliminating cells infected by pathogens; they release cytokinesKiller T cells produce special toxins (perforins and then cytotoxins) that lead to cell lysis and programmed cell death or apoptosis.

Final answer:

Cell-mediated immunity primarily uses Cytotoxic T cells to attack and destroy infected cells. They do this by releasing substances like Perforin and Granzymes which cause the infected cell to lyse or burst open.

Explanation:

In cell-mediated immunity, the type of white blood cells (WBCs) that attack and destroy infected cells are primarily the Cytotoxic T cells. When an infection or disease is recognized, Cytotoxic T cells release specific substances like Perforin and Granzymes. These substances cause the infected cell to undergo a process called lysis - essentially bursting open and killing the cell to prevent the spread of the infection.

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Challenges faced by parasites in their quest to inhabit a biotic environment

Answers

Answer:

Parasitists have to the body's immune system to establish parasitism, in addition to having to deal with the damage it does to the host organism.

Explanation:

Parasites are organisms that associate with living beings in an unequal relationship, where the parasite uses the vital resources of living beings for their survival, generating problems for the host organism.

As biotic environments where parasites can grow, we can mention plants and animals. For parasitism to be established, the parasite must face the immune defense system of these organisms, in addition to having to face the evils that are caused by parasitism, since the parasite needs the host to be alive for it to survive.

Answer:

Parasites must overcome host immune system.

Temperature.

Stable transmission.

Ability to attache to a host or find a suitable host.

Explanation:

Parasites are organisms that live Andy survive in a host. They feed on the host resources and in turn causing infection, harm, destruction or death of hosts.

Parasites faced challenges in their quest to inhabit biotic environment.

One of is the host immune system. Some host have strong immune system and can resist parasites invasion.

Temperature. The body temperature of some hosts is not suitable for the living conditions of the parasites.

Some parasites have face difficult challenges in have a stable transmission of disease.

Finding suitable host to survive is another challenges faced by parasites. Some parasites find it difficult to find suitable host.

The function of the umbilical cord is to carry blood and nutrients to the fetus and wastes back to the mother's blood stream.
True
False

Answers

Answer:

The answer is true

Explanation:

Answer:

true

Explanation:

Through the blood vessels in the umbilical cord, the fetus receives all the necessary nutrition, oxygen, and life support from the mother through the placenta. Waste products and carbon dioxide from the fetus are sent back through the umbilical cord and placenta to the mother's circulation to be eliminated.

Which property of argon makes it useful for potassium-argon dating?

Answers

Answer:

C. It remains trapped in rock.

Explanation:

It is an unstable element. It remains trapped in rock.

Trekian Fur is a dominant trait. Trekkies (on the planet Gomaz) from a pure-breeding population with the Trekian Fur gene are scored for their phenotypes. The two alleles at the Trekian Fur gene are T (dominant) and t (recessive).


80% of the Trekkies from this colony (genotype TT) have Trekian Fur; 20% of the Trekkies look wild-type.


Also, the penetrance of the Trekian Fur phenotype is 65% in the heterozygous Trekkies.


Pure breeding wild-type Trekkies (tt) show the Trekian Fur phenotype 10% of the time. Thus, the penetrance of Trekian Fur is 10% in homozygous wild-type Trekkies.


Problem: If two heterozygotes for the Trekian Fur gene (Tt x Tt) are crossed, what proportion of the offspring are expected to show the Trekian Fur phenotype?


A. 80%.

B. 55%.

C. 45%.

D. 50%.

E. 20%.

Answers

Answer:

B. 55%.

Explanation:

TT = 80percent progeny that exhibit Trekian fur phenotype

Tt = 65% progeny exhibit Trekian fur phenotype

tt = 10% progrny exhibit Trekian fur phenotye

parent cross ; TT x Tt

progeny ; TT Tt tt

TT = 25% ; percentage of progeny that exhibit Trekian fur phenotype = 25 x 0.8 = 20%

Tt = 50% ; percentage of progeny that exhibit Trekian fur phenotype = 50 x 0.65 = 32.5%

tt = 25% ; percentage of progeny that exhibit Trekian fur phenotype = 25 x 0.1 = 2.5%

Total = 20 + 32.5+ 2.5 = 55%

Even before the structure of DNA was elucidated, experimental evidence indicated that the hereditary material had to have three key properties. Choose a correct combination of the options : a. must allow faithful replication. b. must have informational content. c. must be able to change on rare occasions. d. must be in the nucleus. e. must be degenerate

Answers

Answer:

The correct combination for the 3 key properties is:

a. must allow faithful replication.

b. must have informational content.

c. must be able to change on rare occasions.

Explanation:

Since every cell in one particular body essentially contains the same DNA, it has to be copied accurately every time a cell divides. The information that the DNA codes for is the proteins that get translated and accounts for every feature that organism will have. These rare changes are known as mutations and they are critical to introducing variation in the species and allowing them to evolve in response to environmental stimulation.

Hope that answers the question, have a great day!

Which of the following landforms is much lower than the surrounding land?
A
plateau

B
hill

C
canyon

D
butte

Answers

The correct answer is C: Canyon

Answer:

C. Canyon

Explanation:

Canyons are valleys made by rivers eroding away land around them, creating large cracks in the ground.

what food chain and web component is a worm in

Answers

Decomposer. They would eat the remains of the chain/web. Hope this helps!

Largest planet in our Solar system with faint rings.
A.Saturn
B.Jupiter
C.Venus
D.Neptune

Answers

Answer: Jupiter

Explanation: No explanation.

Answer:

Jupiter

explanation:

Jupiter is the 5th planet in our Solar system and is the largest planet in the Solar System. Jupiter has a narrow and faint ring. Jupiter's rings are dark and are made up of dust and tiny pieces of rock. So The largest planet with faint rings in our Solar System is the planet Jupiter.

Provide a genetic explanation for the origin of achromatopsia on Pingelap, and explain the most likely evolutionary model for the high frequency there of achromatopsia. Fill in the blanks with appropriate words given below to complete the sentences. Not all words will be used. 1. genetic drift 2. founder effect 3. genetic bottleneck4. inbreeding depression 5. 1/10 6. 1/20 7. 1/40 8. homozygote 9. heterozygote 10. predominant 11. eliminated The relatively high frequency of the mutant achromatopsia allele in the island population is due to ________ created by the typhoon. After the typhoon, the allele frequency was at least ________, corresponding to one male ________ among the 20 individuals surviving the storm. The mutant achromatopsia alleles of the male, along with those of the other reproducing survivors, become ________ in the expanding population.

Answers

Answer:

A

The high frequency of achromatopsia in the Pingelap is attributed to the bottleneck and founder effects. Both of these are forms of genetic drift.

B

Blanks:

The relatively high frequency of the mutant achromatopsia allele in the island population is due to 3. genetic bottleneck created by the typhoon.

After the typhoon, the allele frequency was at least 7. 1/40, corresponding to one male 9. heterozygote among the 20 individuals surviving the storm.

The mutant achromatopsia alleles of the male, along with those of the other reproducing survivors, become 10. predominant in the expanding population.

Explanation:

A

Achromatopsia is a rare, autosomal recessive form of complete colour blindness. Usually, only 1 in 20,000 people are affected with achromatopsia. However, Pingelap, a cluster of islands in the Federated States of Micronesia, possesses disease rates as high as 10% of 3000 people. 30% of the 3000 are reported to be carriers of the achromatopsia allele. This unnaturally high allele frequency is linked to a genetic drift event that occurred after a typhoon killed majority of the population, leaving just 20 survivors. In terms of evolution, this is known as the bottleneck effect i.e. a severe reduction in a population due to natural disasters or sudden drastic environmental change. The bottleneck effect yields only a few viable individuals in the population.

Out of the 20 survivors, one is believed to be a carrier (heterozygous) for the achromatopsia allele. All of the achromatopsia affected Pingelapese trace their ancestry to one carrier. This is known as the founder affect where one or only a few individuals form or continue the population.  This results in narrowing of the gene pool and drastic loss of genetic variations.

B

Blanks:

All the blanks have been explained above. Allele frequencies are calculated as follows:

Every gene has 2 alleles, therefore, every person possesses alleles. Since, there were 20 individuals left, the total number of alleles in the population will be 40.Out of the 40, only one is recessive i.e. achromatopsia allele. Therefore, the allele frequency of the population left after the typhoon will be 1/40.

T.W. Engelmann did an experiment where he separated the wavelengths (colors) of light using a prism, and illuminated a chain of algae cells so that each cell received 1 color of light. He then added oxygen-loving bacteria to the mixture and saw that they preferentially went to the algae using red and blue light. He concluded (correctly) that red and blue light were the most efficiently used in photosynthesis (producing the most oxygen for the bacteria). Suppose that you did the same experiment, but did not use a prism to separate the wavelengths of light. Where will the bacteria go?

Answers

Answer:

The bacteria will be evenly distributed on the chain of algae

Explanation:

If the component of white light is not separated by a prism, all the components will be evenly distributed in space and as such, equal amount of each component will go to the chain of algae.

The equal amount of each light component that goes to the chain of algae will ensure that there is equal rate of photosynthesis, and hence, oxygen production in each algae. Consequently, the oxygen-requiring bacteria will spread out evenly on the chain of algae without concentrating particularly on any algae.

Which conditions must be regulated for the body to be stable and function properly? Check all that apply.

body mass
body temperature
amount of exercise
amount of water in the body
amount of sugar in the body

Answers

Answer:

Temperature

water

glucose or sugar

Explanation:

Temperature is required as without it metabolic reactions in the body would be impossible.

Water is a medium for most metabolic reactions. This is why cytoplasm is 70% water.

Glucose levels need to be maintained as the glucose present is to be used as energy by being broken down.

amount of sugar in the body, amount of water in the body, body temperature

Regulation of BodyThe ability of an organism to maintain a steady internal environment is referred to as regulation. Homeostasis is an essential feature of all living organisms. Maintaining a steady internal environment necessitates regular modifications as conditions within and outside the cell change. Homeostatic regulation refers to the process of regulating processes within a cell.The conditions which must be regulated for the body to be stable and function properly are amount of sugar in the body, amount of water in the body, body temperature.

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What is the most common way of introducing recombinant DNA into bacterial cells?

Answers

Answer:

Transformation

Explanation:

Answer:

In humans, "unattached" earlobes are dominant over "attached" earlobes. Widow's-peak hairline is dominant over non-widow's-peak hairline. Use E and e for the earlobe phenotype alleles and W and w for the hairline phenotype alleles.

Explanation:

What is the value of biodiversity?

Answers

Answer:

Biodiversity boosts ecosystem productivity where each species, no matter how small, all have an important role to play. For example, A larger number of plant species means a greater variety of crops. Greater species diversity ensures natural sustainability for all life forms.

Biodiversity is valuable as it provides essential ecosystem services, supports human livelihoods and well-being, and adds to the richness and beauty of life on Earth.

What is biodiversity?

Biodiversity is the variety of life on Earth, encompassing the diversity of species, ecosystems, and the genetic variation within species. Biodiversity is essential to the functioning of ecosystems and to the provision of a wide range of goods and services, including food, fuel, fiber, and medicine, as well as the regulation of the Earth's climate and the maintenance of soil fertility.

Biodiversity is also important for its own sake, as it provides a rich tapestry of life that has evolved over billions of years and is an essential part of our heritage and the heritage of future generations. The loss of biodiversity, through processes such as habitat destruction, overexploitation, and climate change, is a major environmental challenge that is undermining the capacity of the planet to support human well-being and the survival of other species.

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If skeletal muscles work to the point of fatigue, the muscle cells may not have sufficient oxygen to carry out aerobic respiration. What processes do muscle cells use if oxygen is not available for aerobic respiration? electron transport chain ethanol fermentation lactic acid fermentation glycolysis

Answers

Answer:

Lactic acid fermentation

Explanation:

Lactic acid fermentation is the process that is utilized by the cell to produce energy in the form of ATP. it is the process by which glucose and other six-carbon sugars and also some disaccharides are converted into energy and the metabolite lactate, which is lactic acid in solution.

Due to the absence of oxygen, this process converts 3-carbon pyruvate to the 3-carbon lactic acid in the cytoplasm producing NAD+, allowing glycolysis to continue to produce ATP in low-oxygen conditions. although accumulation of lactic acid can lead to cramps.

Answer:

Lactic acid fermentation

7. The increased levels of telomerase associated with many tumor cells likely promote cancer by: A) enhancing levels of DNA repair so that cells remain normal and have stable genomes and thus would be able to replicate their DNA and divide more often. B) promoting the efficiency of the spindle-assembly checkpoint. C) reducing the expression of several oncogenes. D) decreasing the number of epigenetic changes that would promote cancer. E) allowing cells to continue to divide when nor

Answers

Answer:

The increased levels of telomerase associated with many tumor cells likely promote cancer by E) allowing cells to continue to divide when normally chromosomes should shorten beyond a point where division would be no longer possible

Explanation:

Telomerase is an enzyme that enables cells to stay its genome and be healthy. Increased levels of telomerase allow cells to have more divisions and more mutations, having as a result incomplete information for cells, becoming them cancer cells. When it is possible to inhibit this enzyme, telomers get shorter and cancer cells might die.

Completed option E

allowing cells to continue to divide when normally chromosomes should shorten beyond a point where division would be no longer possible

Answer:

E

Explanation:

Telemerase  is a reverse transcriptase enzymes that maintains the length of telemoeres. The later is a repetitive nucleotide sequence of a chromosomes that  stabilizes  the end of the chromosomes from deteriorating and possible fusion with adjacent chromosomes.  its length decreases with each cell division, but replenished by enzymes telemerase.

Telomeres undergo  division to protect the removal  of the  gene portion  located ahead of them on the chromosomes.They are protected by protein Shelterin,

In  Cancer cells, telemere length is increased thus cells undergo prolong cell division which leads to multiple cells production.  Therefore if  telomerase concentration is increased, the telomeres will be replenished after each cell division, by this enzyme. its length will increase, and consequently more tumor cells will be produced.

5. Which is the first step of the scientific method?

Answers

Answer:

The first step in the Scientific Method is to make objective observations. These observations are based on specific events that have already happened and can be verified by others as true or false. Step 2. Form a hypothesis.

Explanation:

Answer: the first step is to make observations

Daphnia longicephala is a freshwater crustacean that can detect chemical cues produced by the predator Notonecta glauca. Researchers raised Daphnia clones and observed that those exposed to Notonecta chemical cues during their development produced larger protective crests, as described in Figures 1 and 2. Crest height and width are measured as ratios to body length. The increase in the size of the crest width and height is not associated with a corresponding change to the Daphnia’s genome. Researchers hypothesize that growing a crest is energetically costly, so Daphnia do not develop the large crests in the absence of Notonecta.

QUESTION: As a follow‑up experiment, researchers placed the Daphnia that were exposed to the Notonecta chemical cues into a tank without chemical cues. The Daphnia reproduced asexually, and the offspring developed in the tank without chemical cues. Predict the relative size of the crest height and width of offspring raised in the tank without chemical cues as compared to the parent Daphnia and justify.

Answers

Answer:

Check the explanation

Explanation:

⇒Whenever there’s a presence of Notonecta chemical cues there will be a change of epigenetic in the Daphnia genome due to which we are expected to observe differential gene expression in Daphnia in the presence of Notonecta chemical cues. This particular differential gene expression will overtime result to the development of higher and wider/larger crests.

⇒The comparative volume of the crest height and offspring width that was raised in tank without chemical cues is expected to be smaller as compared to the parent Daphnia.

⇒ A wider and higher crests are the outcome of the changes in epigenetic which are triggered by the presence of chemical cues. Since there will be no presence of these cues in the tank, these epigenetic changes will not be seen in offsprings as a result of the fact that there will be normal gene expression producing normal crest height and width.

A strand of mRNA has the bases guanine-cytosine-uracil. Which amino acid
corresponds to these bases?
​a. Crys
b. Arg
c. Alan
d. Ser

Answers

Answer:

See answer below

Explanation:

Hi there,

c. Ala (Alanine)

To get started, use the codon chart. Notice, the mRNA strand has a specific order in which bases are added. In this case, Guanine-Ctyosine-Uracil corresponds with G-C-U.

To read the codon chart, start off in the first position, which is G (blue row in picture). Next, to locate a specific box, look at the second position, which is C (orange column), and the specific box is located. At this point, a phenomena known as "wobbling" can happen. Wobbling is when there is redundancy in codon sequences where the same amino acid can still be produced, regardless of the third base.

The last nucleotide is U, which locates G-C-U, or Alanine.

thanks,

A strand of mRNA has the bases guanine-cytosine-uracil Aspartate or aspartic acid is an amino acid that corresponds to these bases.

how?

The amino acid that corresponds to each mRNA codon can be found in a table.Steps to determining the correct amino acid:Search the rows on the left side of the table for the first letter in the codon (here: G).Find the second letter (A in this case) in the columns. This limits the search to one cell in the table.To find the codon, look for the third letter (here: U) on the right side of the table (here: GAU). The amino acid abbreviation appears next to this codon (here: Asp).In this case, your mRNA codon is GAU (guanine-adenine-uracil), which corresponds to the Asp amino acid. This is aspartic acid.

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What can you conclude about an ecosystem with many trophic levels?
A. It is an unhealthy ecosystem.
B. It is a stable ecosystem
C. It has very few producers.
D. It has no tertiary consumers.

Answers

Answer:

B. It is a stable ecosystem

Explanation:

B. It is a stable ecosystem.

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In the cell, newly made proteins move directly from the ribosomes into the rough where they are chemically modified.

Answers

Answer:

Rough Endoplasmic Reticulum

The journey of newly synthesized proteins involves their movement from ribosomes to the rough endoplasmic reticulum, where they undergo initial chemical modifications such as glycosylation and folding. Subsequently, the Golgi apparatus further refines and sorts these proteins before packaging them for transport to their final cellular locations.  

The intracellular journey of newly synthesized proteins involves a well-coordinated process within the cell. After being produced by ribosomes, proteins move into the endoplasmic reticulum (ER) for further processing. The endoplasmic reticulum comes in two forms: rough endoplasmic reticulum (RER) and smooth endoplasmic reticulum (SER). In this context, the rough endoplasmic reticulum plays a crucial role in the initial stages of protein synthesis.

As proteins emerge from the ribosomes, they enter the lumen of the rough endoplasmic reticulum. The ribosomes associated with the rough endoplasmic reticulum impart a studded appearance, indicative of their involvement in protein synthesis. Within the rough endoplasmic reticulum, these newly synthesized proteins undergo crucial post-translational modifications, including glycosylation and folding.

Glycosylation involves the addition of sugar molecules to the protein, contributing to its stability and functionality. Proper folding is essential for the protein to attain its functional three-dimensional structure. The modified and folded proteins are then transported to the Golgi apparatus for further processing and sorting. The Golgi apparatus is responsible for additional chemical modifications, sorting, and packaging proteins into vesicles for transport to their final cellular destinations.

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The question probable may be:

How is the intracellular journey of newly synthesized proteins facilitated, and where do they undergo chemical modifications after being produced by ribosomes?

The process of Transcription occurs in the ___ and involves the copying of _____. This copied information will then be _____ in the cytoplasm to create a _____, which is composed of smaller building blocks called _____. During translation, individual ____are attached to one another via _____. As the protein strand gets larger and leaves the ribosome, it begins to fold into the first phase of its 3-dimensional structure (secondary structure). _____ give rise to the protein's secondary structure. In the tertiary/quaternary structure of a protein, _____ amino acids are typically found towards the center of the structure, while ____are found towards the outside of the protein, facing the watery environment of the cell.

Word bank:

protein, covalent bond, hydrophobic, translated, amino acids, a portion of genome, hydrogen bonds, cytoplasm, the entire genome, transcribed again, hydrophilic, half the genome, mRNA strand, nucleus, replicated, nucleotides

Answers

Answer:

The process of Transcription occurs in the nucleus and involves the copying of a portion of the genome. This copied information will then be translated in the cytoplasm to create a protein, which is composed of smaller building blocks called amino acids. During translation, individual amino acids are attached to one another via covalent bond. As the protein strand gets larger and leaves the ribosome, it begins to fold into the first phase of its 3-dimensional structure (secondary structure). Hydrogen bonds give rise to the protein's secondary structure. In the tertiary/quaternary structure of a protein, hydrophobic amino acids are typically found towards the center of the structure, while hydrophilic are found towards the outside of the protein, facing the watery environment of the cell.

Explanation:

Transcription is a process that happens in the nucleus in order to create an mRNA strand from a specific gene, which will then be translated into a protein. For transcription to happen, a protein called RNA Polymerase will take the DNA molecule and use one of its strands to synthesize its complementary strand. This newly synthesized RNA strand will suffer some modifications to become a mature mRNA strand.

The mature mRNA strand will leave the nucleus and be taken by a ribosome in the cytoplasm to start Translation - the process in which proteins are synthesized. During translation, each codon (composed by a sequence of 3 nucleotides) in the mRNA will code for one of the 20 possible amino acids. These amino acids are carried to the ribosome by the tRNA, and are linked with one another by peptide bonds, which is a type of covalent bond. The peptide bonds give rise to the primary structure of a protein. The secondary structure happens thanks to the hydrogen bonds. In the third and quaternary structure of a protein, which turns them into a three-dimensional macromolecule, the hydrophobic amino acids will locate in the center of the structure so they don't have to be in contact with water, while the hydrophilic amino acids remain on the peripheric sides of the protein.

The process of transcription occurs in the nucleus and involves the copying of a portion of the genome. This copied information will then be translated into the cytoplasm to create a protein, which is composed of smaller building blocks called amino acids. During translation, individual amino acids are attached to one another via a covalent bond. As the protein strand gets larger and leaves the ribosome, it begins to fold into the first phase of its 3-dimensional structure (secondary structure). Hydrogen bonds give rise to the protein's secondary structure. In the tertiary/quaternary structure of a protein, hydrophobic amino acids are typically found towards the center of the structure, while hydrophilic are found towards the outside of the protein, facing the watery environment of the cell.

It should be noted that transcription occurs in the nucleus to create an mRNA strand from a specific gene, which will then be translated into a protein.

For transcription to take place, a protein called RNA Polymerase will take the DNA molecule to synthesize its complementary strand.

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Two true-breeding stocks of pea plants are crossed. One parent has red, axial flowers and the other has white, terminal flowers; all F1 individuals have red, axial flowers. If 1,000 F2 offspring resulted from the cross, approximately how many of them would you expect to have red, terminal flowers? (Assume independent assortment.)

A) 190
B) 250
C) 65
D) 750
E) 565

Answers

Answer:

Approximately, 190.

Explanation:

cross between true breeding stock. let R represent the colour and Y represent the position of flower.

parents     RRYY    x      rryy

F1 gen.                RrYy

              RrYy    x     RrYy

F2 gen       RY         Ry        rY       ry

      RY     RYRY    RYRy    RYrY   RYry

      Ry     RYRy     RyRy    RyrY    Ryry

      rY     RYrY      RyrY     rYrY    rYry

      ry      RYry      Ryry      ryrY    ryry

number of red and axial flowers (RY__)  - 9

number of red and terminal flowers (Ry_y)  -  3

number of white and axial flowers (rYr_) -   3

number of white and terminal flowers (ryry) - 1

We are expected to find the number of red and terminal flowers out of 1,000 F2 offspring. Thus, we have 3/16 x 1000 = approximately 190

Final answer:

When two true-breeding pea plants with different flower colors and positions are crossed, the F1 generation will have a specific combination of traits. The F2 generation will display a combination of traits due to independent assortment. Approximately 190 F2 offspring can be expected to have red, terminal flowers.

Explanation:

When two true-breeding pea plants with different flower colors and positions are crossed, the resulting F1 generation will have a specific combination of traits. In this case, the F1 generation has red axial flowers. The question asks about the F2 generation, which will display a combination of traits due to independent assortment.

Independent assortment means that the alleles for flower color and position segregate randomly during gamete formation. This results in different combinations of alleles in the F2 generation. Since the traits of flower color and position are independent of each other, we can calculate the expected ratio. The F2 generation is expected to have a ratio of 9:3:3:1 for red axial, red terminal, white axial, and white terminal flowers respectively.

Given that there are 1,000 F2 offspring, we can use this ratio to calculate the approximate number of F2 offspring expected to have red terminal flowers.

Red terminal flowers are represented by the 3 in the ratio, so the expected number of F2 offspring with red terminal flowers would be approximately 3/16 of the total number of offspring. Therefore, the answer would be approximately 187.5. Since we cannot have a fraction of an individual, we can round it up to the closest whole number, which is 190.

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Kyle wanted to make some extra money over the summer. He decided that, to make the most money possible, he needed to gather scientific evidence about which tasks would pay the most. To obtain the evidence he needed, Kyle polled his neighbors about how much they were willing to pay him for the different tasks. Then he made the graph shown. Which task will earn Kyle the most money per hour? A. walking dogs B. washing cars C. mowing lawns D. painting fences

Answers

Answer:

Its D

Explanation:

Answer:

Painting Fences

Explanation:

What increases the rate of soil formation?

Answers

As materials are carried away, new surfaces are exposed, which also increases the rate of weathering. Increased temperature increases the rate of chemical reactions, which also increases soil formation. In warmer regions, plants and bacteria grow faster, which helps to weather material and produce soils.
As materials are carried away, new surfaces are exposed, which also increases the rate of weathering. Increased temperature increases the rate of chemical reactions, which also increases soil formation. In warmer regions, plants and bacteria grow faster, which helps to weather material and produce soils.

The gene for petal color in a flower has incomplete dominance, so that individuals with two A1 alleles (A1A1) are black, individuals with two A2 alleles (A2A2) are white, and individuals with one of each allele (A1A2) are mottled. In a cross between two black flowers, what is the probability of getting a mottled offspring? (2

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Answer:

The probability of getting a mottled offspring is 0%. There is no A2 allele involved in the cross.

Explanation:

Available data:

The gene for petal color in a flower has incomplete dominance Two A1 alleles (A1A1) express black colorTwo A2 alleles (A2A2) express white color One of each allele (A1A2) express mottled color

In a cross between two black flowers, there is no allele A2, there are just two alleles A1. So, the cross is:

Parental)    A1A1    x    A1A1

Gametes)  A1   A1       A1   A1

Punnet Square)     A1         A1

                   A1    A1A1     A1A1

                   A1     A1A1     A1A1

F1 Phenotypes: 100% black flowers

F1 Genotype: 100% A1A1

There are 0% of probabilities of getting a mottled offspring.

Answer:

The probability is 0%.

Explanation:

We know that an individual with two A1 alleles (A1A1) are black, so if two black flowers are crossed that means two flowers with A1 (black)alleles, as these flowers do not have any A2 allele to give a mottled flower, the only type of flower that will come out from this cross is a black one.

We can see this with a Punnett square.

   ║A1        ║     A1    

A1║  A1A1  ║    A1A1    

A1║ A1A1   ║   A1A1      

Why did the paramecium die of dehydration when the water solute was raised all the way up AND lowered all the way down?Why did the paramecium die of dehydration when the water solute was raised all the way up AND lowered all the way down?

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Answer:

There is a certain water potential maintained in the body of the paramecium, which can change in response to changes in its environment. When the water solute level is increased all the way up, the water potential in the surrounding is a lot lower than the water potential inside the paramecium. Due to this steep water potential gradient, water will leave the paramecium's cell into the surrounding via osmosis. Water being transported out of the paramecium will cause it to dehydrate and die.

In the opposite case where the solute level is lowered all the way down, no water will enter the paramecium cell because its water potential is lower than the surroundings. The difference in water potentials is so great that the water entering the paramecium's cell will cause to burst and die.

Note: remember that diffusion and osmosis takes place down the concentration gradient. The concentration of one environment is determined in reference to another.

Hope that answers the question, have a great day!

As Jim lifts a weight heavier than he has ever lifted before, he suddenly drops the weight with a stunned look on his face. With a nervous laugh, he winks at the girl again, but she turns and walks away. Which of the following most likely happened to Jim

a)The stimulation of the Golgi tendon organ increased action potentials in the sensory neuron, which increased action potentials in an inhibitory alpha motor neuron.

b)The increased action potentials from the Golgi tendon organ caused increased firing of the gamma motor neuron innervating the biceps.

c)The increased contractions of the biceps brachii increased the firing of the neuron innervating the muscle spindle, which caused the muscle to relax.

d)The stimulation of the Golgi tendon organ increased action potentials in an inhibitory interneuron in the ventral horn of the spinal cord.

Answers

Answer:

a

Explanation:

RNA polymerase from E. coli does not function at 0ºC, whereas in vitro experiments determined that RNA polymerase from Pseudomonas syringae strain Lz4W functions at about 10%–15% of its optimum, which is 37ºC. Which of the following best explains the difference?

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Answer:

Since there is no distinction in the measure of the RNA polymerases yet rather their movement, the distinction lies in their structure and not their grouping. Adjustments are made to widen the states of endurance. Thus E. coli would not constrain it's endurance by restricting its development to hotter temperatures. Thus the appropriate response is "the RNA polymerase sub-units of the P. syringe strain most likely have additional adaptability with the goal that they can move all the more openly in colder temperatures".

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