Allosteric enzymes are different from non‑allosteric enzymes because allosteric enzymes.

Answers

Answer 1

Answer:

allosteric enzymes exhibit a threshold effect where the response to substrate concentration changes significantly have more than one subunit. have more than one substrate-binding site.

Explanation:

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Related Questions

What is the nature of reality? Is it objective or subjective?​

Answers

The nature of reality is objective.

The Punnett square shows the genotype for scale color in a species of lizard where color is inherited via incomplete dominance. Y
is the allele for yellow
scales, and is the allele for red scales. What percent of the offspring will have yellow scales?
R R
Y
?
?
R?
?
?
A 2/4 -50% will have yellow scales.
4/4 - 100% will have yellow scales.
1/4 - 25% will have yellow scales.
0 0/4 - 0% will have yellow scales.

Answers

Answer it is 25 percent

Explanation:

What is the cell Body​

Answers

Answer:

cell body is the feelings of our heart

Explanation:

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Answer: the nucleus-containing central part of a neuron exclusive of its axons and dendrites that is the major structural element of the gray matter of the brain and spinal cord, the ganglia, and the retina.

Stem discoveries often begin with a simple curiosity true or false

Answers

Answer:

True, stem discoveries often begin with a simple curiosity.

The city of Green Valley, Arizona, is trying to determine where to locate a new fire station. The fire station is expected to serve four neighborhoods.
Neighborhood X coordinate Y coordinate Number of homes
Birchwood 0.5 3.5 172
Cactus Circle 2 0.5 42
De La Urraca 3 1.5 223
Kingston 3 1 44
a The X* coordinate of the weighted center of gravity for the new fire station is _____. Enter your response to 2 decimal places.
b. The Y* coordinate of the weighted center of gravity for the new fire station is _____. Enter your response to 2 decimal places.
c. What other factors might come into play when making the final decision?
a. Zoning Considerations
b. Distance from other fire stations
c. Available space
d. All of the above.

Answers

(a) The X* coordinate of weighted center of gravity for new fire station is 1.82. (b) The Y* coordinate of weighted center of gravity for new fire station is 2.06. (c) The factors might come into play when making the final decision is Zoning Considerations, Distance from other fire stations, Available space. Option D is correct.

To determine the location for the new fire station in Green Valley, we need to calculate the weighted center of gravity based on the coordinates and the number of homes in each neighborhood.

The X* coordinate of the weighted center of gravity can be calculated using the formula;

X* = (X₁ × N₁ + X₂ × N₂ + X₃ × N₃ + X₄ × N₄) / (N₁ + N₂ + N + N₄)

where X₁, X₂, X₃, X₄ are the X coordinates of the neighborhoods, and N₁, N₂, N₃, N₄ are the number of homes in each neighborhood.

Using the given data:

X* = (0.5 × 172 + 2 × 42 + 3 × 223 + 3 × 44) / (172 + 42 + 223 + 44)

X* ≈ 1.82

Therefore, the X* coordinate of the weighted center of gravity for the new fire station is approximately 1.82.

The Y* coordinate of the weighted center of gravity can be calculated using the same formula, replacing the X coordinates with Y coordinates:

Y* = (Y₁ × N₁ + Y₂ × N₂ + Y₃ × N₃ + Y₄ × N₄) / (N₁ + N₂ + N₃ + N₄)

Using the given data:

Y* = (3.5 × 172 + 0.5 × 42 + 1.5 × 223 + 1 × 44) / (172 + 42 + 223 + 44)

Y* ≈ 2.06

Therefore, the Y* coordinate of the weighted center of gravity for the new fire station is approximately 2.06.

When making the final decision on the location of the fire station, several other factors might come into play;

Zoning Considerations: The city needs to consider any zoning regulations or restrictions that might limit the potential locations for the fire station.

Distance from other fire stations: The proximity to existing fire stations is an important factor to ensure efficient coverage and response times across the area.

Available space: The availability of suitable land or buildings that meet the requirements for a fire station, such as accessibility, size, and infrastructure, should be considered.

Ultimately, the decision should take into account a combination of factors, including zoning considerations, distance from other fire stations, and available space. This comprehensive approach ensures that the fire station is strategically located to serve the four neighborhoods effectively and efficiently.

Hence, D. is the correct option.

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describe a specific advantage to multicellularity that gave animals an advantage over their single-celled relatives.

Answers

multicellularity offers a specific advantage to animals by allowing for cellular specialization, enhanced efficiency, the development of complex Organ systems, and increased size and complexity.

Multicellularity provides animals with a significant advantage over their single-celled relatives by allowing for the development of specialized cells and tissues. This specialization enhances an organism's efficiency and adaptability, giving it an edge in various environments.

In multicellular organisms, cells can differentiate and take on specific roles, such as producing energy, transporting nutrients, or providing structural support. This allows for the division of labor, where different cells perform specific tasks, increasing the overall efficiency of the organism.


Multicellularity also enables animals to grow larger and more complex, which can provide benefits in terms of survival and reproduction. Larger animals can often access resources and habitats that are not available to smaller, single-celled organisms.

In summary, multicellularity offers a specific advantage to animals by allowing for cellular specialization, enhanced efficiency, the development of complex organ systems, and increased size and complexity. This gives multicellular animals an edge over their single-celled counterparts in terms of survival and adaptability in diverse environments.

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Procedure C: 1. The diagram below represents the pattern of normal and reversed magnetic polarity of the seafloor bedrock on the east side of a mid-ocean ridge center. The magnetic polarity of the bedrock on the west side of the ridge has been omitted. 2. Complete the diagram below by shading the pattern of normal polarity on the west side of the ridge center. Assume the rate of plate movement was constant on both sides of the ridge center. Your answer must show the correct width and placement of each normal polarity section. 3. Draw arrows on the profile on both sides of the mid-ocean ridge that indicate the direction of sea floor spreading that is occurring. 4. Label the location(s) of the youngest bedrock. 5. Label the location(s) of the oldest bedrock. 6. Label the location of the hottest crustal temperatures. 75- 50 Mid-ocean ridge center 25 25 50 75 Key Normal polarity Reversed polarity 75 50 25 0 25 50 75 Distance (km) West East​

Answers

Magnetic polarity refers to the direction of the Earth's magnetic field, which can be preserved in rocks as they form. Normal polarity is when the magnetic field is pointing north, while reversed polarity is when the magnetic field is pointing south.

Procedure C involves completing a diagram of the pattern of normal and reversed magnetic polarity of the seafloor bedrock on both the east and west sides of a mid-ocean ridge center.
To complete the diagram, we need to shade in the pattern of normal polarity on the west side of the ridge center. Since the rate of plate movement was assumed to be constant on both sides of the ridge center, the width and placement of each normal polarity section should be the same as on the east side.
Arrows should be drawn on the profile on both sides of the mid-ocean ridge to indicate the direction of sea floor spreading that is occurring. Sea floor spreading is the process by which new oceanic crust is formed at mid-ocean ridges and then moves away from the ridge crest. The arrows should point away from the ridge crest in both directions.
The location of the youngest bedrock should be labeled at the ridge crest, where new crust is forming. The location of the oldest bedrock should be labeled at the edges of the diagram, where the seafloor has moved away from the ridge crest and has had more time to cool and age. Finally, the location of the hottest crustal temperatures should be labeled at the ridge crest, where new crust is forming and is still hot from the mantle.

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explain the correlation between solar radiation and kelp biomass.

Answers

Given what we know, we can confirm that although sunlight is beneficial to plant growth, intense solar radiation has been proven to be detrimental to the survival of kelp, thus reducing its biomass.

How does solar radiation affect kelp?

Solar radiation is not harmful in very low amounts.

However, when exposed at long intervals or high intensity, it has been shown to cause tissue damage.

This tissue damage will inhibit the kelp's ability to undergo photosynthesis.

This means it will not be able to grow, and its biomass will be reduced.

Therefore, given the effect of solar radiation in damaging the kelp's ability to photosynthesize and thus reducing its growth, we can confirm that intense or prolonged exposure to solar radiation reduces kelp biomass.

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The daily temperature and precipitation in a region....
A.Weather
B.Climate
C.Latitude
D.Altitude

Answers

Answer:

1.1. Climate is the average, year-to-year conditions of weather in an area. It is also defined as the statistics of weather that is normally in a 3-year interval.2.2. Temperature and precipitation determines the climate of a region.3.3. Oceans currents, mountains, elevation, and latitude can have a significant effect on a region's climate.

Explanation:

Matt use a camera to take a picture of a rose on a piece of paper in the picture the rose appear to be bright red and the background appear to be white then Matt place a blue glass filter over the camera lens and took another picture in this picture of the Rose appear to be black in the background appear to be blue explain what happens to light waves to make the appearance of the rules in the appearance of the background different in the two pictures. ​

Answers

The blue glass filter absorbed most of the red light waves and allowed only the blue light waves to pass through, resulting in the appearance of the rose and the background being different in the two pictures.

What is Light?

Light is a form of electromagnetic radiation that is visible to the human eye. It is a type of energy that travels in straight lines and has both wave-like and particle-like properties. Light is a fundamental part of our world and plays a crucial role in our lives.

Light is produced by the motion of charged particles, such as electrons, and can be emitted by sources such as the sun, light bulbs, and fires. Light travels at a constant speed of approximately 299,792,458 meters per second in a vacuum, which is known as the speed of light.

When Matt took the first picture of the rose on a piece of paper without any filter, the camera captured the visible light waves that were reflected by the rose and the background. The rose appeared bright red because it reflects mostly red light waves and absorbs other colors, and the background appeared white because it reflects all the visible light waves equally.

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According to the graph, when does the bacteria population reach its peak?
A)
February
B)
March
C)
November
D)
September

Answers

Answer:

Explanation:

Based on the graph I have provided that is the graph in your question the answer is D. September.

On the graph, we can see that the X-axis represents the month and the Y-axis represents the population of the bacteria in millions. From all the months, the bacteria population peaked in September with the population reaching almost 4 million.

According to the graph, when does the bacteria population reach its peak?A)FebruaryB)MarchC)NovemberD)September

Professor Danielle conducts an experiment on chloroplasts by deactivating several enzymes used for the light-independent reaction. All components of the light-dependent reactions remain present.
Would the light-dependent reactions proceed normally?

Answers

No the reaction will not take place

Explanation:

Chloroplasts serves as a site for photosynthesis in plants. The process of photosynthesis which is essential for plants to make food occurs in two elaborate reactions namely:

1. Light-dependent Reaction: Where chlorophyll takes energy from the sunlight and preserves it as chemical energy

2. Light-independent Reaction: Which occurs after light-dependent where the energy is used from the light-dependent reaction to synthesize CO2 into carbohydrates.

The Light-independent reaction occurs in the stroma in the presence of CO2, Ribulose-1,5-biphosphate (RuBP) and an enzyme called (RuBisCO) Ribulose- 1,5-biphosphate carboxylase/oxygenase which catalyzes the process.

. If Professor Danielle deactivates RuBisCO then the process of Calvin Cycle results in the end product of glucose by the process of fixation, reduction, and regeneration. The process will immediately cease depriving the plant of all the essential macronutrients produced as the end result of the Calvin cycle i.e.. glucose, starch, amino acid, and fatty acid.

This deprivation of nutrients will eventually affect the synthesis of ATP and formation of NADPH as food deprivation would affect the normal functioning of cell organelles.

The speed of light is roughly 3.0×10^8 m/s if it takes light 8 minutes and 20 seconds to get from the sun to earth what is the distance between the sun and earth

Answers

First we will convert the time into seconds
1 min = 60 s
8 min = 60x8 = 480 s

480 + 20 = 500 s

Using formula d = rt
d = 3.0x10^8 x 500
d = 1.5x10^11 meters

Or 150 000 000 kilometers (150 million kilometers)

In 2002, Colorado was suffering from extreme drought. Which technology will help Colorado reduce the effects of future droughts?
A.
building sea walls
B.
building levees
C.
building dams
D.
building storm shelters

Answers

Answer:

c. building dams

Explanation:

Answer:

building sea walls building levees building dams building storm shelters

which region of the brain contains gyri and sulci?

Answers

Answer:

The cerebral cortex, or the outer layer of the cerebrum

Explanation:

Which is the most likely function of a group of cells that contains a high number of chloroplasts?
O respiration
O transpiration
O fermentation
o photosynthesis
i

Answers

Answer:

Photosynthesis

Chloroplast are only found in plant cell.

It is used in Photosynthesis

It is a type of plastid. It contain a green pigment called Chlorophyll which captured sunlight.

Why are scientific observations important?
1. Every experiment uses quantitative observations.
2. Every experiment begins with observations.
3. Every experiment ends with observations.
4. Every experiment uses qualitative observations.

Answers

Scientific observations are important as all scientific experiments begin with observations hence option 2 is the correct option.

Why are scientific observations important?

Scientific observations are used by scientists to collect and record data, which allows them to put forth and test certain hypotheses and theories.

Scientific observations are done in many ways – by human senses or with machines and tools like microscopes, digital scanners or amplifiers to enhance their vision or hearing.

Observations make what scientists call data and they inspire, support or deny a scientific theory or hypothesis.

Hence, Scientific observations are important as all scientific experiments begin with observations hence option 2 is the correct option.

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Answer:

every experiment begins with obeservation

Explanation:

What type of material did the water most likely encounter when it stopped?

Answers

Answer:

Rocks

Explanation:

Rocks normally stop streams

what would be the advantage of using a molecular model that shows the compounds involved during cellular respiration to compare the amounts of carbon released into the atmosphere?(1 point)

Answers

Molecular models assist us in seeing chemical compounds that we cannot see with our open eyes.

Molecular models are three-dimensional visual representations of molecules. Molecular models allow us to see exactly what a molecule looks like. We can have a better grasp of the various transitions in a molecule by using a molecular model.

The advantage of utilising a molecular model that depicts the components involved in cellular respiration to compare the quantity of carbon released into the atmosphere is that it provides a visual of the process that is not visible to the open eye.

It aids in understanding the foundations of physical and chemical interactions, which are difficult to compute using experimental approaches. It also aids in the development of new theories, models, procedures, and products.

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Using a molecular model that shows the composites involved during cellular respiration to compare the quantum of carbon cycle released into the atmosphere allows a visual of the process that isn't visible to the mortal eye.  

It helps understand the fundamentals of physical and chemical relations, which are delicate to calculate using experimental procedures. It also helps develop new propositions, models, processes, and products.  

Since the carbon cycle is a global miracle, it can not be viewed at once. Using a model helps scientists and scholars understand how carbon moves through and impacts the terrain.

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What are four functions of carbohydrates

Answers

Answer: In addition to providing energy, storing energy, creating macromolecules, and making fat and protein available for other purposes.

Explanation:

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Molecules that can be used in biotechnology include:.

Answers

Answer:

Hydrogen is used to construct the molecules water and organic compounds with carbon. Hydrogen is also used to construct ATP and GTP. Nitrogen is used to construct the basic building blocks of life, such as amino acids, nucleic acids, and proteins. It is also used to construct ATP and GTP.

Explanation:

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Multiple ChoiceWhich of the following receptors is considered a free dendritic ending?A. tactile (Merkel) discsB. tactile (Meissner's) corpusclesC. lamellated (Pacinian) corpusclesD. Golgi tendon organsE. bulbous corpuscles (Ruffini endings)

Answers

These receptors are found in the skin and respond to stretch and pressure. They are named after their discoverer, Angelo Ruffini.

The correct answer is A. Tactile (Merkel) discs. Tactile (Merkel) discs are considered free dendritic endings because they are specialized nerve endings that are not encapsulated by any connective tissue. They function as mechanoreceptors, responsible for detecting light touch and pressure sensations. Other receptors mentioned, such as Meissner's corpuscles, Pacinian corpuscles, Golgi tendon organs, and Ruffini endings, are encapsulated nerve endings that have specific functions in detecting various sensory stimuli.

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If the DNA strand has the sequence CGCCTAAA, what would the complementary RNA strand be?
a.GCGGUTTT
b.GCGGAUUU
c. CGCCAUUU
d.two of these correct

Answers

The complementary RNA strand to the DNA sequence CGCCTAAA would be GCGGAUUU.

Option (b) is correct.

To determine the complementary RNA strand, we need to follow the base-pairing rules between DNA and RNA. In RNA, adenine (A) pairs with uracil (U) instead of thymine (T) as in DNA. The base pairing rules are as follows:

Adenine (A) pairs with uracil (U)

Cytosine (C) pairs with guanine (G)

Guanine (G) pairs with cytosine (C)

Thymine (T) pairs with adenine (A) in DNA only

Given the DNA sequence CGCCTAAA, we can pair each nucleotide with its complementary base in RNA:

C pairs with G

G pairs with C

C pairs with G

T (replaced by U in RNA) pairs with A

A pairs with U

A pairs with U

A pairs with U

This gives us the complementary RNA sequence GCGGAUUU, which is option b.

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Neural signals from olfactory cilia are transmitted to the __________ and then transmitted to the __________ and other areas of the brain. a. thalamus . . . olfactory cortex b. olfactory bulb . . . olfactory cortex c. olfactory cortex . . . olfactory bulb d. olfactory bulb . . . thalamus please select the best answer from the choices provided a b c d

Answers

Olfactory Bulb…Olfactory Cortex

the accumulation of misfolded proteins in the er is a potentially lethal situation and thus causes the triggering of what process? group of answer choices a) the polysomal response b) the posttranscriptional response c) the unfolded protein response (upr) d) the proteasomal response

Answers

The accumulation of misfolded proteins in the endoplasmic reticulum (ER) triggers the unfolded protein response (UPR).

The UPR is a cellular stress response mechanism that is activated in response to the presence of misfolded or unfolded proteins in the ER. Its main purpose is to restore ER homeostasis and promote cell survival. When misfolded proteins accumulate, the UPR is initiated to alleviate the stress and restore proper protein folding and ER function. The UPR involves several signaling pathways that regulate gene expression, protein synthesis, and protein degradation. It aims to reduce the load of misfolded proteins, enhance ER protein-folding capacity, and promote the clearance of damaged proteins. The UPR also facilitates the degradation of misfolded proteins through the proteasomal response, in which the proteasome machinery helps eliminate aberrant proteins.

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The accumulation of misfolded proteins in the endoplasmic reticulum (ER) triggers the unfolded protein response (UPR). The correct answer is (C).

When misfolded or unfolded proteins are present in the ER, the UPR, a cellular stress response mechanism, is triggered. Its primary goals are to increase cell survival and recover ER equilibrium. The UPR is triggered when there is an accumulation of misfolded proteins in order to reduce stress, restore correct protein folding, and maintain ER function. Numerous signaling mechanisms that control protein synthesis, protein degradation, and gene expression are part of the UPR. Its objectives are to lessen the burden of improperly folded proteins, improve ER protein folding capability, and encourage the removal of harmed proteins. Through the proteasomal response, in which the proteasome machinery aids in the removal of abnormal proteins, the UPR also promotes the breakdown of misfolded proteins.

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Write a chemical equation for cellular respiration. Label the molecules involved.

Help!

Answers

Answer:

C6H12O6(glucose) + 6 O2(oxygen gas) ---> 6CO2(carbon dioxide gas) = 6 H2O (water) + ATP (energy)

A sequence of chemical processes known as cellular respiration convert glucose into ATP, which can then be used as energy for a variety of bodily functions.

What is cellular respiration?

Glycolysis, the citric acid cycle, and oxidative phosphorylation are the three basic processes that take place during cellular respiration. The citric acid cycle happens in the mitochondrial matrix, oxidative phosphorylation happens on the inner mitochondrial membrane, and glycolysis happens in the cytoplasm.

Glucose, ATP, and NAD+ are the initial reactants and ATP and H2O are the end products of cellular respiration. The enzymes phosphofructokinase-1, pyruvate dehydrogenase, and isocitrate dehydrogenase control the rate of cellular respiration.

Disorders that interfere with cellular respiration typically affect one or more of the enzymes necessary for it, such as succinyl-CoA synthase or pyruvate kinase.

Therefore, A sequence of chemical processes known as cellular respiration convert glucose into ATP, which can then be used as energy for a variety of bodily functions.

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A volcanic eruption changes the environment and separates a population of foxes. These two new populations are no longer able to get to each other to interbreed. What type of isolation has occurred?

A) Geographic
B) Behavioral
C) Hybrid Sterility
D) Temporal

Answers

Answer:

1d 2c 3a 4b

Explanation:

bc it goes in order

Answer:

A) Geographic

Explanation:

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Which two viral characteristics provide evidence to support the
argument that viruses are more similar to living components than to
nonliving components of an ecosystem?

Answers

Living Characteristics of Viruses Nonliving Characteristics of Viruses They reproduce at a fantastic rate but only in living host cells. They can mutate. They are acellular that is they contain no cytoplasm or cellular organelles. They carry out no metabolism on their own and must replicate using the host cell's metabolic machinery.

. In what ways do you think offspring born from one parent might differ from those born from two parents? Cite specific examples to support your ideas. __________________________________________________

Answers

Answer:Some different ways that an offspring born from one parent can differ from an offspring born from two parents is that the offspring that has only one parent has the exact same traits that its parent has.

Explanation:

Some different ways that an offspring born from one parent can differ from an offspring born from two parents is that the offspring that has only one parent has the exact same traits that its parent has.

What do you mean by offspring?

Offspring are the young creation of living organisms, produced either by a single organism or, in the case of sexual reproduction, two organisms. Collective offspring may be known as a brood or progeny in a more general way.

Moreover, human offspring (descendants) are referred to as children (without reference to age, thus one can refer to a parent's "minor children" or "adult children" or "infant children" or "teenage children" depending on their age); male children are sons and female children are daughters.

Hence, the product of the reproductive processes of a person, animal, or plant : young, progeny. The disease can be transmitted from parent to offspring. : the immediate descendant of a person or animal : an individual born of a parent.

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(Subject: Science) 1. Approximately how far away would the formation of Earth be if you used the scale from your timeline?

2. Which events helped life develop on Earth? Explain.

Answers

The formation of Earth took place roughly 4.54 billion years ago if we start with the universe's formation, which is thought to have happened around 13.8 billion years ago. Hence, based on this scenario, Earth's formation would have occurred roughly 4.54 billion years ago.

What process created the Earth?

Over 4.5 billion years ago, when the solar system was still in its current configuration, the third planet from the Sun—Earth—was created when gravity drew spinning gas and dust in. Earth has a solid crust, a rocky mantle, and a central core, just like its sibling terrestrial planets.

Which events helped life develop on Earth? Explain.

The emergence of life on Earth was influenced by a number of significant occurrences. Among the important occasions are: Oxygenation of the atmosphere, Origin of life, Formation of the oceans, Evolution of photosynthesis, and Mass extinctions.

What was the planet's first formation?

According to current scientific theory, the Earth's history began approximately 4.6 billion years ago in a disk-shaped cloud of gas and dust orbiting around the young sun, which was composed of material left over from the sun's birth.

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