1. How many peptide bonds would exist in this polypeptide?
A polypeptide is made up of multiple amino acids that are linked together by peptide bonds. The number of peptide bonds in a polypeptide is one less than the number of amino acids present. So in a polypeptide made from 75 amino acids, there would be 74 peptide bonds.
2. How many water molecules were formed in this process?
The process of linking amino acids together to form a polypeptide is called a condensation reaction. In this process, one water molecule is produced for every peptide bond formed. In this case, since there are 74 peptide bonds in the polypeptide, 74 water molecules were formed.
3. What type of reaction is involved in making a polypeptide?
The process of linking amino acids together to form a polypeptide is a condensation reaction. This type of reaction involves the formation of a peptide bond between two amino acids, which is accompanied by the loss of a water molecule.
1. Take a moment to think about how complex living things are. Everything is made of
something. Make a prediction as to what the foundational building blocks of life are in the
space below.
Answer:
Well this would/could be a longing answer,
Explanation:Till traumas and certain troubles are exchanged or heard as it ranges in everyone’s lives completely different but the building blocks to life is to focus on the things that bring your heart happiness as while you take your life seriously and try not to be suede by any tempting energies beyond our vision then you’ll have a certain model towards adulthood which I’m not longer holding fear thinking towards this as some of us in the world won’t get chances to have children, that or either they choose not to leave someone here after our time here is done, but that’s how life is, as the causes are one’s own idea but yeah I wish I could spend more time on the little things as in certain areas influences and even the mental illness part but I have to keep on my work before this semester is up.
WILL GIVE BRAINLIEST
Explain how ecosystems could be impacted from each indicator of climate change:
D.) shifting temperatures and weather patterns have forced some species to move to new locations or to new ecosystems entirely. The migration patterns of some species have also been altered because species must move to comfortable climatic conditions for their survival
Answer:
There are two main impacts on marine ecosystems from climate change: (a) rise of sea surface temperature; and (b) ocean acidification (due to CO2). Both (a) and (b) will impact on marine life. For example, increased in sea surface temperature caused a shift in distribution of fishes toward poles. Warming will likely affect the successful recruitment of marine organisms. In addition, warming may cause more toxic algal blooms (dinoflagellates and diatoms). Dinoflagellates and diatoms produce toxins which can then be accumulated in seafood organisms via the food chain pathways. Calcifying organisms (e.g. pteropods, corals, and molluscs) would be more vulnerable to changes in ocean acidification.
Explanation:
What is a problem that a cell needs to overcome if its volume is very large relative to its surface area?.
A cell will divide or die if there is inadequate surface area to maintain its rising volume.
Cells must continually interact with their surroundings in order to live. Gases and food molecules that the cell requires are dissolved in water and must be absorbed, as are waste products of cellular metabolism. All materials enter and exit the cell via the plasma membrane. The interior volume of a cell rises as the cell membrane expands. Because volume rises faster than membrane surface area, the relative quantity of surface area accessible to transmit materials to the a unit volume of a cell continuously declines.
As a result, if the cell develops beyond a certain point, not enough material would be capable of crossing the membrane quickly enough to meet the increased metabolism that occurs as the cellular volume rises. As a result, the cell must either split into smaller cells with favorable surface area/volume ratios or stop functioning.
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A diatom meaure 50 µM in diameter. The diatom i _____ long along it diameter. A. 0. 5 mm
B. 0. 05 cm
C. 500 nM
D. 0. 05 mm
E. 150 nm
The diatom is 0.05 mm long along its diameter.
What is meant by diatom?Diatoms are single-celled microscopic organisms that are found in many different aquatic environments.
They are part of a larger group of algae known as the phytoplankton and are responsible for approximately 20 percent of the photosynthesis on earth.
Diatoms are unicellular, meaning they are comprised of a single cell, and are encased in a silica shell that is composed of two interlocking halves.
This shell is called a frustule and is unique to diatoms. Diatoms are incredibly diverse, with over 20,000 species known to exist.
Diatoms are incredibly important to the environment, as they are responsible for the production of oxygen, the sequestration of carbon dioxide, and the cycling of nutrients.
They also provide food for organisms in the ocean, such as small fish, crustaceans, and other plankton.
Diatoms are also used in research, for example to examine the effects of pollutants in the environment.
Diatoms are also used in a variety of commercial applications, such as filtration and as abrasives in cleaning products.
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which type of structure is similar across multiple species and shows an evolutionary relationship?
Homologous structures is similar across multiple species and shows an evolutionary relationship.
What is an evolutionary relationship?
Although it is not as recent, gorillas and humans and chimpanzees all have a common ancestry. Chimpanzees and gorillas are connected to each other just as much as humans are. Orangutans are the species closest to humans among those displayed.
Organs or skeletal components of animals and organisms that are homologous reveal a relationship to a common ancestor because of their similarities. The appearance and purpose of these structures need not be identical.
A group of organisms' evolutionary relationships and histories are known as its phylogeny in science. A phylogeny describes an organism's relationships, including where it is assumed to have descended from other organisms.
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Do clams have eyes?.
A bacteria culture begins with 11 bacteria that triple in amount at the end of every hour. how many bacteria are grown during the 7th hour?
Answer:
(d) 24057
Explanation:
You want to know how many bacteria are grown during the 7th hour in a culture that starts with 11 bacteria and triples in amount at the end of every hour.
GrowthIf the starting number is 11 at hour 0, then there will be triple that number, 11×3 = 33 at the end of the 1st hour. At the end of the 2nd hour, the number will be triple that, or 33×3 = 99.
The number of bacteria at the end of h hours can be modeled by ...
b = 11×3^h
Using this formula, we find the number at the end off the 7th hour to be ...
b = 11×3^7 = 24057
24057 bacteria are grown during the 7th hour.
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the central nervous system consist of the brain and spinal cord. at which level of organization is the brain an example of?
The central nervous system's organs are the brain and spinal cord. The brain and spinal cord, which are positioned in the dorsal body cavity, are encased in bone for protection because they are so crucially important.
The spinal cord lies in the vertebral canal of the vertebral column, while the brain is in the cranial vault. The brain and spinal cord comprise one continuous structure at the foramen magnum, despite being thought of as two different organs.
The nerves and ganglia make up the peripheral nervous system's organs. Similar to how muscles are made up of bundles of muscle fibers, so are nerves. Peripheral organs including muscles and glands are connected to the CNS by spinal and cranial nerves.
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Cancerous cells sometimes have odd numbers of chromosomes. What checkpoint did those cells bypass/ignore?
a. None of the above
b. The G1 Checkpoint
c. The G2 Checkpoint
d. The M Checkpoint
Answer:
d
Explanation:
which type of macromolecule has members that are primarily hydrophobic?
Lipids are the type of macromolecule that has members that are primarily hydrophobic.
Lipids are a type of macromolecule characterized by molecules that are primarily hydrophobic.
These molecules include fats, oils, waxes, and sterols, and they are essential components of cell membranes and biological processes.
Lipids are also important sources of energy and help to insulate and protect the body. Lipids are made up of two main components: a glycerol backbone and fatty acids, which are organic molecules composed of carbon and hydrogen.
Lipids are typically not soluble in water, but can be broken down by certain enzymes and digested by the body.
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А
contains polar and nonpolar ends, forming the plasma membrane.
transport protein
cytoskeleton
microtubule
phospholipid bilayer
The fundamental structural element of the membrane is the phospholipid bilayer, which forms an impermanent barrier between two aqueous compartments.
Our cells' lipid bilayer is made up of hydrophilic head groups and hydrophobic tail groups. The chemical structure displays the hydrophilic head and hydrophobic tails. Lipid molecules can be classified into various groups. They are unable to identify the owner of hydrofluoric acid that contains a phosphate group, two tails made of fat, and an alcohol molecule. In this instance, we can observe that the oil and the liquid are both present in the water. This indicates that they have both hydro and hydrophobic regions. As a result, the bilinear shape behaves as a bilayer and is focused on the water-loving head rather than the tail.
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the work of john tyndall and ferdinand cohn ______.
The work of John Tyndall and Ferdinand Cohn explained why some spontaneous generation investigators got different results from those of Pasteur.
Who was John Tyndall and Ferdinand Cohn?In order to create a method of discontinuous heating that effectively destroyed bacteria and their spores, Tyndall used Cohn's discoveries as inspiration.
In microbiology labs today, this procedure is still utilised and is known as "Tyndallization."
John Tyndall and several other British scientists discovered that Pénicillium sp. suppressed bacterial development in the 1870s.
Tyndall came to the conclusion that by excluding oxygen, fungi that were growing in various meat and vegetable infusions killed bacteria.
Thus, the research of John Tyndall and Ferdinand Cohn clarified why certain researchers studying spontaneous generation obtained conclusions that were different from those of Pasteur.
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Which sequence of events describes the path of groundwater to the ocean?
OA. Infiltration → aeration → saturation → entering ocean
OB. Runoff→ saturation → aeration entering ocean
OC. Precipitation
C. Precipitation
→ infiltration → saturation → entering ocean
→ infiltration → underground flow → entering ocean
OD. Precipitation
D. Precipitation
→ infiltration → underground flow → entering ocean. Option C describes the path of groundwater to the ocean:
Precipitation: Water falls from the sky as rain or snow and lands on the surface of the Earth.
Infiltration: Some of the precipitation seeps into the ground, becoming groundwater.Underground flow: The groundwater flows through the soil and rock underground, following the path of least resistance.
Entering the ocean: As the groundwater reaches the coastal area, it emerges from the ground and enters the ocean, either through a spring or by seeping into the ocean.
Groundwater is water that is found underground in the spaces between soil particles and rocks. It is a vital source of fresh water for many people and ecosystems worldwide. Groundwater is replenished by precipitation that seeps into the ground and is stored in underground rock formations called aquifers
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A tudent made the following obervation about atronomical bodie. Obervation 1: Mar revere it direction of motion in the night' ky. Obervation 2: The tar move acro the ky. Which obervation() can be explained uing the heliocentric model but not the geocentric model?
Only obervation 1
Only obervation 2
Both obervation 1 and obervation 2
Neither obervation 1 nor obervation 2
The heliocentric model, but not the geocentric mode, can explain both observations 1 and 2.
What observations are compatible with the geocentric model?
Two observations proved that Earth is at the center of the universe: First of all, from every point on the planet, the Sun appears to revolve once a day around Earth. The Moon and the planets both appear to make one daily orbit around Earth, despite the fact that they move in different ways.
What does it mean to view the universe from a geocentric perspective?
The geocentrism theory. According to the geocentric hypothesis of the cosmos, the Earth is the center of the universe and around which everything else is said to revolve. This system was widely regarded as true in ancient Greece.
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Predict one way the removal of a reef might impact erosion or deposition along a shore.
One of the many processes that affect a river system's health is erosion.
Rock, soil, and sediment are moved downstream during the erosion process by the force of a river. Increased erosion depletes our land's vital topsoil and pollutes our rivers, oceans, and lakes, lowering the quality of the water.
Coral reefs are to the shorelines and trees are to the ground. Without coral reefs beneath them, beaches and shorelines are easily eroded by ocean currents.
To protect the shoreline, the water is accelerated and slowed down as waves strike the reefs. Without reefs, the currents may change their course permanently, causing climate change since warm and cold water mix differently in different parts of the world.
Poor water quality has an adverse effect on the overall ecosystem when it flows from the land to the Great Barrier Reef. Excessive sedimentation on reefs accelerates the growth of algae, which suffocates coral and impairs its ability to reproduce and expand.
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What is gene mutation and its types?.
An alteration in one or more genes is known as a gene mutation. Certain mutations can result in genetic diseases or disorders.
Gametes experience germline mutations. Other bodily cells can develop somatic mutations. Mutations that change the chromosome's physical makeup are referred to as chromosomal modifications. A single nucleotide is altered by point mutations.
Examples of several gene mutations are: A gene change that takes place in a parent's egg or sperm and has an impact on the child's genetic makeup is known as a "germline mutation" (hereditary). Somatic mutation: A change in a gene that takes place in the developing embryo that may develop into a child after conception.
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True or False: The right hypochondriac region contains the majority of the stomach.
Answer:False
Explanation:
This is a false statement because the stomach is found it in the left hypochondriac region of the stomach.
What is the right hypochondriac region?In the anatomy, the hypochondriac regions state a region are the two superolateral regions of the abdomen that lie on either side of the epigastric region.
It includes the liver (right lobe), gallbladder, hepatic duct, and right colic angle that are found in the right hypochondriac region.
In the left hypochondriac region, the majority of the components of the stomach are found, and the top of the left lobe of the liver, parts of the small intestine, and components of the transverse and descending colon, the left kidney, the spleen and the tail of the pancreas.
Therefore, the right hypochondriac region containing the majority of the stomach is a false statement.
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T/F The same agricultural practices are used in every country of the world.
False. Every country in the globe uses the same agricultural methods.
Because diverse geographic conditions support various types of crops, different crops are grown in various places. Any area's agriculture is influenced by soil, climate, topography, and rainfall, and because these elements vary according to region, so do the crops produced. These tasks include planting, enhancing the soil's fertility, eliminating weeds, moving crops as they expand, and harvesting. Intensive subsistence agriculture, that heavily relies on animal power and is most prevalent in the humid, tropical areas of the planet, is the form of agriculture that is practised worldwide.
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separation of homologous chromosomes occurs during____
separation of homologous chromosomes occurs During meiosis.
Which stage does the separation of homologous chromosomes occur?Anaphase I: The spindle fibers have fully attached by anaphase I.Pulling apart, the homologous chromosomes travel to the opposing ends of the cell.
In anaphase 1 or 2, do homologous chromosomes separate?In anaphase I, spindle fibers connected to the centrioles pull the sister chromatids pairs apart and to the cell's two opposite poles.Telophase I marks the conclusion of this initial cell division process.
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T or F Most cool-season grasses have biennial life cycles.
Most cool-season grasses have biennial life cycles is false.
What is a cool season grass?The grass species known as "cool-season grasses" flourish in regions with chilly winters and sweltering summers. In regions of the nation that undergo extreme temperature swings—cold, icy winters and scorching, dry summers—cool-season grasses have evolved to thrive.Turfgrass is a monocotyledon plant, which means it contains just one cotyledon, or embryonic leaf. The term monocot, which is short for monocotyledon plants, refers to all grasses.Bermudagrass, St. Augustinegrass, Centipedegrass, Zoysiagrass, Bahiagrass, and Carpetgrass are examples of warm-season grasses.Cool-season grass grows more slowly when the summer heat and humidity increase. If a lawn is not watered during a prolonged dry spell, the grass will turn brown and enter a dormant state.To learn more about cool-season grasses refer to:
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bats and hummingbirds both have wings and can fly. this is due to__________.
What are the names of the bones at A, in order from left to right? malleus, incus, stapes malleus, stapes, incus stapes, malleus, incus incus, stapes, malleus
The bones at A are named malleus, incus, and stapes, from left to right.
The middle ear is made up of the tympanic membrane and the bony ossicles known as the malleus, incus, and stapes. The tympanic membrane is connected to the inner ear by these three ossicles, which allow sound waves to pass through.
The malleus, incus, and stapes are three ossicles in the middle ear canal that run from lateral to medial.
Three small ossicles found in the middle ear are the hammer (or malleus), anvil (or incus), and stirrup (or stapes).
The malleus, incus, and stapes are three tiny bones found in the middle ear known as ear ossicles. The ossicles' names were given to them because of their distinct shapes.
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The ability of a living system to survive moderate disturbances.Ecosystems with a high species richness usually have more inertia, and are resistant to major changes.
Inertia is the ability of a living system to survive moderate disturbances.
Living systems have the power of inertia, which allows them to withstand and recover from moderate disturbances or changes in their environment. Inertia is the capacity of a living system to maintain its equilibrium and keep functioning despite fluctuations and disruptions.
This ability of a living system to stay in balance and continue on its path of growth and development is an essential quality that helps it survive even in the face of potentially dangerous changes.
Inertia is the key to resilience in living systems, allowing them to remain resilient in the face of adversity.
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Why was Wegener's theory of continental drift almost completely discarded?1)It didn't explain how mountains formed.2)It didn't explain how continents fit together.3)It didn't have a mechanism for how drift occurred.4)It wasn't supported by fossil evidence
Wegener's theory of continental drift was almost completely discarded because it didn't have a mechanism for how drift occurred (Option 3).
The theory of continental drift was proposed by Alfred Wegener to explain the current position of the continents. According to this theory (continental drift), continents once formed a super landmass called Pangea. In conclusion, Wegener's theory of continental drift was almost completely discarded because it didn't have a mechanism for how drift occurred (Option 3).
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What is the age difference between Jamie and Claire in the books?.
Jamie's activities were legal; therefore, a judge would reject this argument. The judge will not pursue the matter further since he has the right to free expression.
According to this concept, speech can be used to express feelings or sentiments. Additionally, they convey a message to the other party that they want them to comprehend. Speeches are commonly used to sway the attitudes of an individual or a group of individuals. Jamie has been granted a right, so this. The judge will not pursue the matter further since he has the right to free expression, which does not imply that he can say whatever he wants. After the judge has reviewed all the evidence and ensured that all sides have been heard, a decision will be made. Jamie's activities were legal; therefore, a judge would reject this argument.
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What is the probability that the offspring will have purple flowers?.
There is a 50% chance that the offspring will have purple blooms. Let's suppose for the moment that: The flower hue is matched to allele A.
As a result, A would represent the dominant purple colour and substitute for the alternate white hue. In accordance with the aforementioned assumptions, a heterozygous purple blossom would have the genotype Aa, whereas a white flower would have the genotype aa.
Let's join the two blossoms now:
Aa x aa
A A A an an a
Based on the results of the cross, the genotypes, phenotypes, and chances of the children would be as follows:
Color purple, Aa; half
Aa, 1/2, white flower colour
To put it another way, there is a 50% chance that the cross will produce children who are flower-related.
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What is the color of light that chlorophyll absorb that has the highest energy?.
The color of light that chlorophyll absorbs that has the highest energy is red and blue.
Most leаves come in vаrious shаdes of green. This is due to pigments cаlled chlorophyll. The nаme comes from the Greek words chloros (green) аnd phyllon (leаf). There аre six types of chlorophyll in nаture. The two mаin types in plаnts аre chlorophyll а аnd chlorophyll b.
In the true color of chlorophyll а the mаximаl аbsorption in the red region is аt 642 nm аnd in the blue region аt 372 nm; for chlorophyll b the vаlues аre 626 nm аnd 392 nm, respectively. This meаns thаt the environment red-shifts the аbsorption spectrа of chlorophyll in plаnt cells or, in other words, chlorophyll pigments аre bluer thаn we think.
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Consider the following observation:
Joe noticed that when the farm uphill from his house began using chemical-based fertilizer, the number of frogs in his pond in the spring time decreased. Joe believes the new fertilizer is unhealthy for amphibians in nearby water systems.
Design an experiment to test Joe's theory. You should include the following details in your experimental design: a hypothesis statement, a dependent variable, an independent variable, a brief procedure of what your experiment will look like and some anticipated results. All in all, expect to write about 7-10 sentences for this quiz.
How do I set up the answer for this question??
Hypothesis: The use of chemical-based fertilizer on the farm uphill from Joe's house is causing a decrease in the number of frogs in his pond.
What are the steps to test this hypothesis?Dependent Variable: The number of frogs in the pond in the spring time.
Independent Variable: The use of chemical-based fertilizer on the farm uphill from Joe's house.
Procedure:
Establish a control group by counting the number of frogs in the pond before the farm starts using chemical-based fertilizer.Monitor the number of frogs in the pond for one year while the farm uses chemical-based fertilizer.Compare the number of frogs in the pond before and after the use of chemical-based fertilizer.Repeat the experiment by using an alternative fertilizer or no fertilizer and observe the frog population in the pond.Anticipated Results: The number of frogs in the pond will be lower after the farm begins using chemical-based fertilizer compared to before and compared to the control group (no fertilizer or alternative fertilizer).
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cellular structures and molecules vary greatly in size, number, and distribution.
1.Ribosome
2.ATP synthase
3.Rubisco
4.Phosphofructokinase
5.tRNA
is figure to rank the following structures and molecules from largest to smallest.
What is cellular structure?
The body contains a wide variety of cell kinds, sizes, and forms. The idea of a "generalised cell" is introduced for descriptive reasons. All cell types' features are present. The cell membrane, the nucleus, and the cytoplasm are the three components that make up a cell. Intricate arrangements of microscopic fibres and hundreds or even thousands of tiny, unique structures known as organelles can be found in the cytoplasm.
Four elements are present in all cells: 1) a plasma membrane, an outer covering that separates the interior of the cell from its surroundings; 2) cytoplasm, a jelly-like area inside the cell where other cellular components are found; 3) DNA, the cell's genetic material; and 4) ribosomes, small proteins that are found in the interior of the cell.
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What happens to undigested unabsorbed food in left in small intestine?.
The undigested food stuff enters the colon, where the majority of the water is reabsorbed, after passing through the small intestine.
The stomach and small intestine are where the majority of food is digested, but the large intestine receives the leftover food that hasn't been fully broken down. The water in the large intestine is absorbed, and the food that is still undigested is kept in its lower portion, or rectum. It subsequently transforms its undigested food into the semi-solid substance that is kept in the rectum.
The food is subsequently moved from the rectum to the urine bladder, the urethra, and ultimately the anus region, where it is then expelled from the body.
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The unabsorbed food in small intestine will be pushed to large intestine due to contractions. If it contains any nutrients, water or minerals are absorbed from food. The leftover is considered as waste which leads into bowel.
As we know the function of small intestine is that the intestinal juices secreted by the wall of small intestine breaks down starch and carbohydrates into simple sugars.
If food does not contains any complex carbohydrates or starch then it will be pushed to large intestine.
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