what phrase best describes erosion

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Answer 1

Answer:

May be weathering process

Answer 2

Answer: Moving bits of rock and soil from one place to another

Explanation:


Related Questions

please help with this <3 it would be greatly appreciated

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Fungi are different from plants in that they decompose organic waste.

The correct option is B.

I have a cell wall made of chitin. I am heterotrophic and do not contain any chloroplasts. I am eukaryotic. I belong in the kingdom of Fungi. The correct option is D.

What are fungi?

Fungi are organisms that resemble a plant but lack chlorophyll. Examples include molds, yeasts, and mushrooms.

Any eukaryotic organism, such as the more well-known mushrooms and microbes like yeast and mold, is referred to as a fungus.

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Which type of animal stuffed over 700 pounds of acorns into the walls of a california home?

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The type of animal that stuffed over 700 pounds of acorns into the walls of a California home is the acorn woodpecker.

In general , Acorn woodpeckers are popular for their habit of collecting and storing acorns  from the granaries, that comprises of trees,  poles, and  buildings. They are capable of creating tiny holes or granary chambers in side these structures, and they fit all the acorns they collect.

As a result these granaries at the end will have thousands of acorns, that these woodpeckers will use as a food source in month of winter when they have scarcity of food . In regards to homes in California these woodpeckers have made so many granary chambers that caused huge damage to the walls.

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A rat is trained to press a lever for a small amount of food. While pressing the lever at a steady rate, the rat is presented with a tone that had been previously paired with foot-shock. When the tone is on, the rat decreases its rate of lever pressing. This decrease is an example of

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The decrease in the rate of pressing the lever after the tone has been paired with foot shock is an example of conditioned suppression.

The phenomenon in which the rate of responding is reduced during a stimulus that is paired with noncontingent shock is called conditioned suppression. During the process where the rat is pressing the lever for food, the rat is occasionally exposed to a series of brief electric shocks that are preceded by a tone which is a conditioned stimulus. So, the rat hears the tone so its rate of lever pressing is also reduced. Conditioned suppression is also used to study classical conditioning. A stimulus that elicits a response after repeatedly being paired with an unconditional stimulus.  This phenomenon occurs during an operant performance test where the response to a stimulus is reduced by another stimulus.

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if the allele frequency for the recessive single allele that causes a particular rare hair color is 0.02, how frequently would you expect the hair color to be present in humans?

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To know how frequently the normal and the rare hair color is present in humans, we can get allelic and genotypic frequencies. The frequency of the rare hair color is = 0.0004 (This is 0.02²). The frequency of the normal hair color is p² + 2pq ≅ 0.9996.

How to get allelic and genotypic frequencies?

To get allelic and genotypic frequencies, we can use the Hardy-Weinberg equilibrium equations. So, assuming diallelic genes,

Allelic frequencies,

Dominant allele frequency ⇒ f(X) = pRecessive allele frequency ⇒ f(x) = q

Equation ⇒ p + q = 1

Genotypic frequencies,

Homozygous dominant frequency ⇒ F(XX) = p²Heterozygous frequency ⇒ F(Xx) = 2pqHomozygous recessive frequency ⇒ F(xx) = q²

Equation ⇒ p² + 2pq + q² = 1

In the exposed example, we have the recessive allele frequency, q = 0.02.

By knowing this value, we can clear the equation p + q = 1, and get the dominant allele frequency.  

p + q = 1

p + 0.02 = 1

p = 1 - 0.02

p = 0.98

Now, we can get the genotypic and phenotypic frequencies

p² = 0.98² = 0.9604

q² = 0.02² = 0.0004

2pq = 2 x 0.98 x 0.02 = 0.0039

Recessive phenotypic frequency ⇒ 0.0004

Dominant phenotypic frequency ⇒ 0.96 + 0.004 = 0.964 ≅ 0.99

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an ecologist observes a population of beetles that has arrived on an island from a nearby continent. compared to the continental population the island population are all very similar looking. what is the name of the effect he/she observed?

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An ecologist observes a population of beetles that has arrived on an island from a nearby continent. compared to the continental population the island population are all very similar looking. The name of the effect he/she observed is Natural selection.

Natural selection is one process of evolution. More environment-adapted creatures have a higher chance of surviving and dispersing the genes that made them successful. As a result of this process, species evolve and diverge over time.

Natural selection is one theory for why there are so many species on Earth today.

With a co-publication on the theory in 1858, Charles Darwin (1809-1882) and Alfred Russel Wallace (1823-1913) are jointly credited with having developed it. Since the release of On the Origin of Species in 1859, Darwin has, however, generally eclipsed Wallace.

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proteins that are involved in passive transport of molecules through the cell membrane are called _______ proteins

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Proteins that are involved in passive transport of molecules through the cell membrane are called channel proteins or transporter proteins.

in multicellular eukaryotic organisms (for example, an oak tree), the production of new cells follows a highly regulated sequence of growth, dna replication, and division. this sequence is referred to as the

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The formation of new cells in multicellular eukaryotic creatures (for example, an oak tree) follows a carefully controlled process of growth, DNA replication, and division. The cell cycle is the name given to this sequence.

The cell cycle is the sequence of events that occur in a eukaryotic cell leading to its division and duplication (replication). The cell cycle consists of two main stages the interphase (G1, S, and G2 phases) and the mitotic phase (M phase).

During interphase, the cell grows and replicates its DNA in preparation for cell division. The S phase is dedicated to DNA replication, where the genetic material is duplicated to form two identical sets of chromosomes. During G1 and G2 phases, the cell continues to grow and carry out normal cellular functions.

In the M phase, the chromosomes are separated and the cell physically divides into two daughter cells. The regulation of the cell cycle is controlled by both internal and external signals, ensuring that the cell divides at the appropriate time and avoiding genomic instability.

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how can reproductive barriers form between sympatric populations while their members stay in contact with them?

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Reproductive barriers form between sympatric populations while their members stay in contact with them by gene pool changes establish reproductive barriers between two populations. Hence, Option B is the correct answer.

What do we mean by sympatric populations?

When two related species or populations coexist in the same area and frequently interact, they are said to be sympatric in biology. A sympatric speciation occurs when a population interbreeds and then divides into two or more distinct species that live in close proximity to one another.

Sympatry refers to populations, varieties, or species that occur in the same location at the same time. An example of sympatric speciation is the apple maggot, an insect that lays its eggs inside apple fruit and causes it to rot. As the apple falls from the tree, the maggots burrow into the ground and emerge as flies several months later.

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The complete question is: How can reproductive barriers form between sympatric populations while maintaining contact between their members?

What sentence best conveys the speaker’s message? a. nature is more powerful than humans. b. victory is unlikely when one is outnumbered. c. there is honor in dying courageously.d. nonviolence is the only way to prevent bloodshed.

Answers

Answer:c

Explanation:

put the following steps in the process of graded potential-induced secretion of insulin from a beta cell in the endocrine pancreas. true or false?

Answers

Answer:

the answer is true

Explanation:

the indicated pathways carry impulses of discriminative touch. 2. precise pressure. 3. conscious proprioception.

Answers

The indicated pathways carry impulses of discriminative touch, precise pressure, conscious proprioception.

What is the mechanism of conscious proprioception?

There are parallel pathways, some of which are used for conscious proprioception and others for subconscious proprioception. The dorsal column primarily transmits conscious proprioception, with some assistance from the spinocervical tract. The last organ of perception for position sense is the brain's sensory cortex. Proprioception, also known as kinesthesia, is the ability to recognise the position, motion, and function of different body parts. It includes a wide range of sensations, such as the perception of joint position and movement, muscle force, and effort. Fine touch, also known as discriminative touch, allows a subject to detect and localise touch. A crude touch is one that lacks localisation.

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The complete question is: Which pathways carry impulses of discriminative touch, precise pressure, and conscious proprioception?

Give two reasons why structure is a useful characteristic in classifying organisms.Give reasons why colour, size and habitat are not usually used to classify organisms at the major grouping levels.

Answers

Organism structure provides the evolutionary history of their ancestors and also provides which structure is homologous between them. Organism changes their habitat, color, and size according to environmental conditions and time.

Why organism classification is needed?

An organism's classification frequently offers helpful details about its evolutionary background and the other creatures to which it is linked.

It makes it easier to identify creatures. It discusses the interactions between various species. It facilitates understanding of organism evolution.

Therefore, organism structure is needed to study evolutionary history.

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certain groups of land plants (e.g. hornworts, cycads, and some ferns and angiosperms) maintain structures that house colonies of photosynthetic cyanobacteria. what benefit would be expected from this symbiotic, mutualistic interaction?

Answers

The cyanobacteria are a source of ammonia, nitrate and nitrite produced from nitrogen gas. The correct option is B.

What are cyanobacteria?

The phylum of gram-negative bacteria known as cyanobacteria, commonly referred to as cyanophyta, produces energy through photosynthesis.

Although they are typically not formally categorised as algae, the word "cyanobacteria" relates to their hue, which also serves as the basis for the colloquial moniker "blue-green algae."

Numerous cyanobacteria, oxygenic photosynthetic microorganisms that can fix atmospheric nitrogen, are found in freshwater, marine, and terrestrial habitats.

Thus, the correct option is B.

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Your question seems incomplete, the missing options are:

A The cyanobacteris are as soutce of chemicals that protect the plant from herbivores

b The cyanobacteria are a source of aminonia, nitrate and nirite produced from nitrogen gas

C. The cyanobicterta are a seurce of addational photosyrtheses to provide the plant with glucose

D. The cyanobactena are a source of nubients inclioding necossary minerals ke phosphorus; potassium, and magnesiam

Which shape of molecules do scientists think may be important for development of life

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Scientists believe that the shape of certain types of molecules, particularly those known as macromolecules, may have been crucial for the development of life.

What informs Macromolecules?

Macromolecules, such as proteins, carbohydrates, and nucleic acids, are made up of many smaller building blocks, called monomers, and are known for their complex, 3-dimensional shapes. These shapes allow the molecules to perform specific functions, such as catalyzing chemical reactions, storing and transmitting genetic information, and building cell structures.

In the context of the origin of life, scientists have proposed that these macromolecules may have formed spontaneously from simple precursor molecules under favorable conditions on the early Earth, and then evolved and interacted in ways that gave rise to living organisms.

The precise details of this process are still not well understood, but the idea that the shape of macromolecules played an important role in the emergence of life remains a widely accepted hypothesis in the scientific community.

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How proteins are targeted for the ER?

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Answer:

Secretory proteins are targeted to the ER by a signal sequence at their amino (N) terminus, which is removed during incorporation of the growing polypeptide chain into the ER.

a heterozygous tall pea plant is allowed to self-fertilize. from the f1 progeny, a phenotypically tall plant was randomly chosen and mated to a phenotypically dwarf pea plant. what is the probability of producing any phenotypically dwarf plants from this mating?

Answers

The probability of producing any phenotypically dwarf plants from this mating is 0%.

The probability of producing phenotypically dwarf plants from the cross between a heterozygous tall pea plant (Tt) and a dwarf pea plant (tt) can be calculated using a Punnett square. The Punnett square shows the possible offspring genotypes and their corresponding phenotypes that can result from a cross between two parents.

T t

T TT Tt

t Tt tt

The heterozygous tall pea plant (Tt) has a 50% chance of passing on either the dominant tall allele (T) or the recessive dwarf allele (t) to its offspring. The dwarf pea plant (tt) can only pass on the recessive dwarf allele (t) to its offspring.

When the tall parent (Tt) and the dwarf parent (tt) are crossed, the resulting offspring will all have the genotype Tt. Since the tall allele (T) is dominant, all of the offspring will have the tall phenotype, regardless of the presence of the dwarf allele (t).

Therefore, the probability of producing any phenotypically dwarf plants from this mating is 0%.

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the blood-brain barrier protects the central nervous system against anything perceived as an invader. this includes drugs that are not lipid soluble. most antibiotics fall in this class of drug. knowing this, for antibiotics to be used to treat an infection in the central nervous system, an infection must:

Answers

Antibiotics to be used to treat an infection in the central nervous system, an infection must be severe enough to alter the blood-brain barrier.

A dose refers to a specified amount of medication taken at one time. By contrast, the dosage is how to take the medication as prescribed: a specific amount, number, and frequency of doses over a specific period of time.

Drug dosages are expressed in metric mass units, according to the AMA (for example, milligrams or milligrams per kilogram). It is possible to construct combinations of some medications, including insulin and heparin. They are unable to be quantified in terms of mass units because they lack a defined molecular weight.

A few exceptions should be noted. Drops are occasionally used to measure liquid treatments for the ears and eyes. The dosage of several drugs is expressed in grains. Additionally, some medicines are given out under the apothecary system, which uses quantities like teaspoonfuls, ounces, and drams. They are uncommon.

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Select all the correct answers.
Strangler figs are plants that attach themselves to trees for their growth and support. They absorb nutrition from the host tree and cause it to struggle to obtain sunlight and nutrients. Orchids are also plants that attach themselves to tropical trees. However, orchids don’t harm the host. Orchids obtain sunlight and moisture from their surroundings. What can you conclude from this situation?
Orchids are parasitic in nature and harm the host trees.
Strangler figs are commensals, and the host trees benefit from the strangler figs.
Orchids are commensal in nature.
Strangler figs are parasitic in nature.
Strangler figs and orchids both have mutually beneficial relationships with their host trees.

Answers

In the given situation from the question, it states that orchids are commensalism in nature and strangler figs are parasitic in nature.

What is the different relationship between organisms?

The Strangler figs take nutrients from the host trees, depending on the situation, and they leave the host plants without sunlight and food. Here, the host trees are being taken advantage of while Strangler figs only benefit, making it a parasitic situation.

 

The orchids don't hurt the tropical trees because they get their light and moisture from the environment and instead show commensalism.

Therefore, it is an illustration of commensalism and parasitism.

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why do clouds usually form at the leading edge of a cold air mass?

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Clouds usually form at the leading edge of a cold air mass because of the process of frontogenesis.

Frontogenesis is the process of creating a front or boundary between two contrasting air masses. When a cold air mass moves into an area with warmer air, the warmer air rises over the colder air. This rising of the warmer air cools and condenses into clouds. The clouds are an indicator of the boundary or front between the two air masses.

The contrast in temperature between the two air masses causes the air to become unstable, which leads to rising air and cloud formation. The clouds form along the leading edge of the cold air mass because it is the area where the two air masses meet and the instability is greatest. This instability is what drives the cloud formation and provides the energy needed for the clouds to grow and develop.

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you are examining specimens of two different bacteria. bacteria reproduce asexually. you got one set of specimens from freshwater and one from brackish water (somewhat salty). which species concept(s) can you not use?

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Bacteria reproduce in general with the aid of using binary fission, an asexual system wherein a single cell divides into two.

Under perfect situations a few bacterial species can also additionally divide each 10–15 minutes—a doubling of the populace at those time intervals. Even though micro organism are single-celled prokaryotic creatures, they do now no longer have a male or girl counterpart. Bacteria reproduce asexually. They additionally display the alternate of DNA thru conjugation, transformation and transduction. Bacteria are unicellular, microscopic organisms, that have been grouped as prokaryotes, because of this that those organisms lack a real nucleus. These microscopic organisms reproduce with the aid of using asexual techniques only.

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what flies will you be scoring for sex and phenotype using the dissecting microscope in this week's lab?

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Typically, the flies that are scored in this way are fruit flies (Drosophila melanogaster), which are widely used as model organisms in genetic and developmental research.

What is phenotype?

The visible characteristics of an individual, such as height, eye color, and blood type, are referred to as phenotypes. Both a person's genetic composition (genotype) and environmental circumstances influence their phenotype. A genotype is a classification of the kind of variation found at a certain position (i.e., a locus) in the genome. Symbols can be used to symbolize it. For example, the letters BB, Bb, bb might be used to indicate a specific mutation of a gene.

Here,

To score phenotype, the researcher may examine the external characteristics of the flies, such as wing size, body shape, and eye color, which are often controlled by specific genes. By scoring the phenotype of large numbers of individuals, the researcher can determine the frequency of different traits and how they are passed from one generation to the next.

It's important to note that the specific flies and phenotypic traits being scored will depend on the goals of the experiment and the specific questions being studied.

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a. sodium and potassium are involved in co-transport. b. nucleotides enter the cell by facilitated diffusion. c. glucose enters the cell by simple diffusion.

Answers

The information supports the following: nucleotides enter the cell through facilitated diffusion and sodium and potassium are involved in co-transport.

How do nucleotides work?

A nucleotide is a name for the essential element of nucleic acids (RNA and DNA). A nucleotide is made up of a sugar molecule (either deoxyribose or ribose in the case of RNA), a phosphate group, and a base that includes nitrogen.

The nucleotides of DNA are adenine (A), cytosine (C), guanine (G), and thymine (T) (T). Uracil (U), a nucleotide, takes the role of thymine in RNA. The polymeric DNA and RNA molecules are constructed from long strands of nucleotides. Nucleotide. Chains of these nucleotides serve as the informational building blocks for RNA and DNA.

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Correct question:

Which of the following is supported by the information in the figure?

Choose one or more:

A. Sodium and potassium are involved in co-transport.

B. Nucleotides enter the cell by facilitated diffusion.

C. Glucose enters the cell by simple diffusion.

what are the three primary macronutrient elements that plants need?

Answers

Answer:

Nitrogen (N), Phosphorus (P), and Potassium (K).

the chemical equation summarizes what happens during cellular respiration.
c6H12O6(Sugar) + O2(Oxygen)> thermal energy +H2O (Water)+CO2 (carbon dioxide).
How does the equation BEST support the idea that, as matter flows between systems , elements are recombined in different ways?
A. It shows that sugar and oxygen contain the same type of atoms as water and carbon dioxide?
B. Each side of the arrow includes two different types of matter?
C.Thermal energy appears on the same side as sugar and oxygen?
D.The arrow appears between the oxygen and thermal energy?

Answers

Answer:
A

Explanation:

Cellular respiration is a metabolic process by which glucose (a type of sugar) is broken down to produced ATP (energy).  

We see that on the left side of the reaction, sugar contains carbon, hydrogen, and oxygen atoms. The oxygen gas obviously consists of oxygen atoms as well. On the right side of the reaction, water and carbon dioxide also consists of carbon, hydrogen, and oxygen atoms. This demonstrates that in things are broken down and take on news forms ("elements are recombined in different ways").

Answer B has no relevance as to how elements are recombined. Answer C only comments on the thermal energy being produced. Answer D again comments only on parts of the reaction (oxygen and thermal energy).

So the answer is A.

The equation shows that the same elements are present on both sides of the arrow, but they are recombined in different ways. Hence the correct option is A.

Sugar and oxygen are recombined to form water and carbon dioxide. This shows that matter flows between systems and is recombined in different ways.

The chemical equation for cellular respiration is:

C₆H₁₂O₆ + 6O₂ → 6CO₂ + 6H₂O + ATP

According to this equation, carbon dioxide (CO₂) and water are created when sugar (C₆H₁₂O₆) and oxygen (O₂) are united again (H₂O). The energy created during cellular respiration is represented by the term ATP in the equation.

The fact that the identical components are on both sides of the arrow is crucial to keep in mind. The arrow's left side shows carbon (C), hydrogen (H), and oxygen (O). Carbon, hydrogen, and oxygen are likewise shown on the right side of the arrow (O). On the two sides of the arrow, the components are mixed differently.

The carbon, hydrogen, and oxygen atoms come together to create a sugar molecule on the left side of the arrow. The carbon, hydrogen, and oxygen atoms combine to generate carbon dioxide and water molecules on the right side of the arrow.

This demonstrates how matter moves between systems and is put together in various ways. Energy is released during the breakdown of the sugar molecule into carbon dioxide and water molecules.

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Diffusion1.If you could add channels to the membrane that make it permeable to peptides and water, what do you think would happen to the peptide and water molecules in the cell?2. If, after adding those channels, you were to wait long enough for the system to equilibrate (i.e., reach a stable state in which the number and type of molecule in each compartment no longer changes much over time), about how many peptide molecules would you expect to find on the left side of the cell and how many on the right? How about the water molecules? currently there are 40 on the left and 80 peptide molecules on the right

Answers

Diffusion 1.Channels permeable to peptides and water can equalize the concentration of water and peptides in and out of cells.

Diffusion 2.In equilibrium, water molecules and peptides are equal on both sides.

The net movement of anything (such as atoms, ions, molecules, or energy) from a location of higher concentration to a region of lower concentration is known as diffusion. A gradient in the Gibbs free energy or chemical potential drives diffusion.

As with spinodal decomposition, it is conceivable for molecules to diffuse "uphill" from an area of lower concentration to one of greater concentration. Due to the spreading entity's intrinsic unpredictability, diffusion is a stochastic process that may be utilised to mimic a variety of stochastic situations that occur in real life.

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When dissolved in water, glucose (corn syrup) and fructose (fruit sugar) exist in equilibrium as follow: fructose ⇌ glucose A chemist prepared a 0. 244 M solution of fructose at 25°C. At equilibrium it was found that its concentration had decreased to 0. 163 M. Calculate the equilibrium constant for the reaction

Answers

The equilibrium constant for the reaction between glucose and fructose in water at 25°C is 0.0666

The reaction between glucose and fructose in water can be represented by the following equilibrium equation:

Fructose ⇌ Glucose

Let's call the equilibrium constant for this reaction Kc. The equation for Kc is given by:

Kc = [Glucose] / [Fructose]

At equilibrium, the concentration of fructose has decreased from 0.244 M to 0.163 M, so [Fructose] = 0.163 M. The concentration of glucose at equilibrium can be determined from the initial concentration of fructose and the equilibrium constant:

[Glucose] = Kc * [Fructose]

Plugging in the values, we have:

[Glucose] = Kc * 0.163 M

Kc = [Glucose] / 0.163 M

Kc = [Glucose] / [Fructose] = 0.163 M / 0.244 M = 0.0666...

So, the equilibrium constant for the reaction between glucose and fructose in water at 25°C is 0.0666

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what would be the expected orientation of an amphipathic alpha helix occurring in a globular protein in aqueous solution?

Answers

Because the surface of a soluble protein will contain a large number of hydrophilic amino acids, the helix will be configured so that the hydrophilic side faces the protein's exterior.

What do we mean by amphipathic alpha helix?

The amphipathic alpha helix is a common secondary structural motif in biologically active peptides and proteins. An amphipathic helix is an alpha helix with opposing polar and nonpolar faces oriented along the helix's long axis. Amphipathic -helices on the outside and hydrophobic helices on the inside of a water-soluble globular protein. Antibacterial peptides and membrane protein domains involved in membrane environment sensing use amphipathic helices as targets. Amphipathic molecules are those that contain both polar and non-polar components. Phospholipids, for example, contain polar phosphate ""heads" and non-polar fatty acid "tails". " The "polarity" of molecules is an important property that governs how they interact with other molecules.

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What are 3 components of the Central Dogma of Molecular Biology? Select all that
apply
Transcription
DNA Replication.
Protein Division
Gene Translation
Protein Translation
Cell Replication

Answers

Answer:

see below

Explanation:

Central dogma of molecular biology was given by Francis crick . According to which genetic information is transferred from DNA to mRNA by a process called transcription , and mRNA to proteins by a process called translation.

Required answer:-

TranscriptionDNA Replication. Gene Translation

the solubility of x, a complex lipid poorly soluble in tepid water, in water increases, with increasing temperature. can the hydrophobic effect (alone) explain the lack of solubility of x in tepid water?

Answers

Solubility increases with increasing temperature and decreases with lowering temperature. Thus, hydrophobic interaction cannot explain the decrease in solubility in tepid water.

Tepid water is made by mixing together two parts cold water and one part hot water. Water and other polar solvents are insoluble in lipids. Lowering the temperature induces lipid solidification, whereas raising the temperature promotes lipid liquifaction.

A rise in temperature stresses the equilibrium state, causing it to move to the right. Because the dissolving process absorbs some of the heat, the stress is reduced. When a result, as the temperature rises, so does the solubility (concentration). The strength of hydrophobic interactions rises with increasing temperature. Hydrophobic interactions, on the other hand, denature at high temperatures. The number of carbons on hydrophobes is: The strongest hydrophobic interactions will be found in molecules with the most carbons.

The solubility of tiny, nonpolar molecules in liquid water diminishes with rising temperature, which is a significant feature of the hydrophobic effect. We look at how the distinctive temperature dependency in liquid water continues or changes at the liquid-vapor barrier.

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why are cell walls necessary in plant cells but not in animal cells?

Answers

Plant cell needs cell wall,animal cell do not because the plants need rigid structure so that they can grow up and out . All cells have cell membranes, and the membranes are flexible. So animal cells can have various shapes, but plant cells only have the shapes of their cell walls.

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