It has 3 phosphate groups, a ribose molecule, and an adenine molecule of ATP. An amino acid is an organic monomer that is used to construct proteins.
Adenosine triphosphate (ATP), a substance made up of adenosine and three phosphate groups, is hydrolyzed by enzymes to provide energy for numerous biochemical cellular activities. Chemical energy is the type of energy found in ATP. Chemical energy is a kind of potential energy that is kept in chemical bonds as stored energy. Adenine nucleotides are joined to three phosphate groups to form the molecule known as ATP, or adenosine triphosphate. The energy in ATP is stored in the bonds between the phosphate groups. An organic substance known as a nucleotide is composed of three different subunits: a nucleobase, a sugar with five carbons, and a phosphate group.
The complete question is:
Which of these is ATP?
The structure of a molecule has 3 phosphate groups, a deoxyribose molecule, and a guanine molecule.
It has 3 phosphate groups, a deoxyribose molecule, and an adenine molecule.
It has 2 phosphate groups, a ribose molecule, and an adenine molecule.
It has 3 phosphate groups, a ribose molecule, and a thymine molecule.
It has 3 phosphate groups, a ribose molecule, and an adenine molecule.
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can someone please help me with this! asap
Answer:
the ultimate source of energy is our sun
Explanation:
the plant absorbs the sun rays and turns it into its own food
I don't know what the second one is, sorry
Answer:
Question 1 is the sun. dk about 2 though
PLEASE ANSWER!!!
How does the wavelength of infrared electromagnetic waves compare with the wavelengths of electromagnetic waves in the visible spectrum?
Question 3 options:
The wavelength of infrared is longer than the wavelengths in the visible spectrum.
The wavelength of infrared is the same as the wavelengths in the visible spectrum.
The wavelength of infrared is shorter than the wavelengths in the visible spectrum.
the wavelength of infrared is larger than the ultraviolet and all frequency is smaller.
Answer:
The wavelength of infrared is longer than the wavelengths in the visable spectrum
Explanation:
I need help with this practice problem The subject is the invasive species Kudzu Take your time to review the pic After, answer the “•”s
Question:
Solution:
First, remember that a food web describes which organisms eat and are eaten by other organisms in a given region. It can be thought of as showing every organism that occupies each trophic level.
Now, Kudzu is a fast-growing invasive plant that can hinder the growth of native grasses to fully mature trees. This is because the Kudzu protects them from the sunlight they need to carry out photosynthesis. This loss of native plants affects an entire ecosystem, like other plants and also insects and animals that adapted along with them (food chain), creating cascading effects throughout the ecosystem. In fact, Kudzu disrupts the food chain by threatening the vegetation that native animals use for food and shelter. Additionally, kudzu root systems affect the amount of water in the soil and native plants die as a result. Then, the environmental and ecological damage of Kudzu results from its competition with other plant species. In particular, kudzu competes with native flora for light and acts to block their access to this vital resource by growing over them and shading them with its leaves.
What factors influence the survival of the animal species in its natural habitat?
PLEASE HELP :)
Answer:
element of ecosystem
Explanation:
This are climate ,natural vegetation
The graph the speed of Sam,s car over time.
What does this sprout need to grow into a healthy plant?
Answer:
Seeds wait to germinate until three needs are met: water, correct temperature (warmth), and a good location (such as in soil). ... Plants need water, warmth, nutrients from the soil, and light to continue to grow.When a dry seed comes into contact with moist soil or growing media, the seed begins to take up water through the seed coat. As it takes up more water, the seed expands and the seed coat cracks open. The embryo inside the seed is made up of a small shoot and a small root. The root is the first to emerge from the seed.
Explanation:
Gabe has taken a summer job with his father's logging company. Their first job will be cutting down trees in 15 acres
of state forest at the edge of town. After they are finished logging the area, volunteers with the forest service will be
planting new trees to replace the ones that are cut down. What process will Gabe be taking part in with his father's
logging company?
O
silviculture
secondary succession
O
manipulative management
O
custodial management
Secondary succession process will Gabe be taking part in with his father's logging company.
When a place is disturbed but not severely enough to completely clear it of all plant and soil, secondary succession happens. Secondary succession can be started by a variety of disturbances, including fire, floods, windstorms, and human activity (such as cutting of forests). The circumstances that surround primary succession are very different from those faced by secondary succession pioneers. Secondary successions frequently begin in resource-rich environments marked by abundant light and little competition for nutrients and moisture. Disturbances may also be transient; for instance, gaps in forest canopies may close as the crowns of nearby trees enlarge and as understory seedlings and saplings respond to increased light by growing upward.
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Answer: The correct answer is silviculture
Explanation: Silviculture is the management of trees by controlling forest growth, health, and composition. This includes the replanting of trees after logging has cut down trees within a given area.
from the optic chiasm, visual information travels first to the: olfactory bulb. thalamus. primary visual cortex. hypothalamus.
From the optic chiasm, visual information travels first to the: hypothalamus.
Optic chiasm is the region of the human brain where the optic nerves cross with each other. Optic nerves are the nerves that transmit electrical impulses from retina to the brain. It is located in the forebrain region, right in front of the hypothalamus.
Hypothalamus is the control and coordination center of the brain which regulates all the body functions and keeps the body in a homeostatic condition. The hypothalamus is composed of several small nuclei performing various functions. The hypothalamus is located in between the two cerebral hemispheres.
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Write the net equation for the biosynthesis of palmitate in the liver, starting from mitochondrial acetyl-CoA and cytosolic NADPH, ATP, and CO2.
The overall net equation can be summarized as follows:
\(8\ acetyl-CoA + 14 NADPH + 7 ATP + 6 H^+ + 6HCO_3^-\) → palmitate + 14 \(NADP^+\) + 8 CoA + 7 ADP + 7 Pi
How to derive the net equation for biosynthesis of palmitate in the liver?The biosynthesis of palmitate in the liver involves several steps, but the overall net equation can be summarized as follows:
\(8\ acetyl-CoA + 14 NADPH + 7 ATP + 6 H^+ + 6HCO_3^-\) → palmitate + 14 \(NADP^+\) + 8 CoA + 7 ADP + 7 Pi
In this equation, acetyl-CoA and NADPH are the starting materials, while ATP and CO2 are also required as energy sources and a carbon source, respectively.
The process involves the action of various enzymes, including acetyl-CoA carboxylase, fatty acid synthase, and others, to convert acetyl-CoA into palmitate, a 16-carbon saturated fatty acid.
The production of palmitate is important for various metabolic processes, including energy storage and membrane structure
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language processing engages brain networks, rather one specific brain region. (True or False)
The statement "Language processing engages brain networks, rather than one specific brain region" is true.
What is language processing?Language processing is the way that people understand, produce, and use language. It includes tasks such as reading, writing, speaking, and listening to spoken words and sentences, as well as higher-level processing tasks, such as comprehension, reasoning, and problem-solving.
Language processing engages brain networks, rather than one specific brain region. Language is not processed in a specific area of the brain. Instead, various brain regions work together to process and comprehend language, and different language-related tasks appear to activate different areas of the brain.
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Why do you think the eukaryotic DNA requires multiple origins of replication?
A.
Multiple origins help make more copies of the same DNA simultaneously.
B.
Eukaryotic organisms have unique DNA strands for each specialized cell.
C.
Eukaryotes do not have topoisomerase, so multiple origins are created due to tension from unwinding of DNA strands.
D.
Eukaryotic DNA is much larger and replication at multiple origins helps reduce the time required for whole genomes to replicate.
E.
Multiple origins of replication ensure that there are no lagging strands and replication takes place at the same pace.
.
Answer:
D.
Explanation:
Prokaryotic DNA exhibit single origin of replication while eukaryotic DNA has multiple origins of replication because eukaryotic DNA is much larger and multiple origin of replicate helps them to replicate the whole genome in short time duration.
Large DNA of eukaryotes contain high amount of material to be replicated and multiple origin sites helps them to replicate in short time. DNA replication initiate at each origin site independentaly and terminate at corresponding termination sites.
Hence, the correct answer is D.
Answer:
D
Explanation:
i took the test
Arrange these energy sources from highest to lowest percentage of worldwide use. 1, Nuclear 1. Coal * Hydroelectric
Explanation:
hydro coal nuclear i think it would like thst
The arrangement of the energy according to the highest to the lowest percentage of worldwide use is coal, hydroelectric and nuclear. The arrangement is 2, 3, and 1.
What is energy?Energy is a quantitative property that is used in doing any work. The energy is always transferred from one form to another form. It is present in the conserved form.
The energy which is used majorly is coal, then hydroelectricity, which is made by water then the nuclear power plant.
Thus, the arrangement is 2. Coal, 3, hydroelectric, 1. Nuclear energy.
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A researcher is examining a sample of smooth muscle tissue under a microscope. Which of the following would correctly describe what he sees? (2 points)
Short cells with no striations and one nucleus per cell
Long cells with no striations and one nucleus per cell
Long cells with striations and no nuclei
Short cells with striations and no nuclei
Which of these describe biodiversity?
Answer:
variation in species living in an ecosystem.
____________________________ is one of the greater and more
remarkable uses of magnets to look at organs and structures
inside your body.
Answerers : ECG, MRI, X-ray
Answer:
I think it's MRI
Explanation:
hope this helps!
atp is produced in all stages of cellular respiration. which two statements describe the process of atp synthesis in the electron transport chain?
Since there are so many hydrogen ions there, they can permeate across the membrane and into the matrix.
What two main activities take place in the mitochondria as part of cellular respiration as a whole?The citric acid cycle, oxidative phosphorylation, and glycolysis are the three primary phases of cellular respiration. The cytosol is where glycolysis occurs, the mitochondrial matrix is where the citric acid cycle happens, and the inner mitochondrial membrane is where oxidative phosphorylation happens.
What exactly are the two stages of cellular respiration?The three steps of cellular respiration are glycolysis (stage 1), the Krebs cycle (also known as the citric acid cycle), and electron transport (stage 3).
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how do radiation, conduction, and convection affect the atmosphere?
Answer:
Conduction, radiation and convection all play a role in moving heat between Earth's surface and the atmosphere. Since air is a poor conductor, most energy transfer by conduction occurs right near Earth's surface. Conduction directly affects air temperature only a few centimeters into the atmosphere.
Explanation:
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Match the sentences in the following chart
A- Recombinant bacterial plasmid is used to produce genetically modified plants.
B- Recombinant bacterial plasmid is used to produce human insulin.
C- Recombinant viral DNA is used to treat some diseases like cystic fibrosis.
D- Random DNA sequences that are different from
one person to another.
1-DNA fingerprint
2-GMO
3-Human proteins production
4-Gene therapy
Matching the sentences in the chart:
A - 2-GMO (Recombinant bacterial plasmid is used to produce genetically modified plants)
B - 3-Human proteins production (Recombinant bacterial plasmid is used to produce human insulin)
C - 4-Gene therapy (Recombinant viral DNA is used to treat some diseases like cystic fibrosis)
D - 1-DNA fingerprint (Random DNA sequences that are different from one person to another)
what are PH, Pollutants, and factory usage, and what is their purpose??
In industrial settings, pH measurements and control are essential for multiple purposes. Manufacturing facilities may employ pH monitoring and adjustment systems to ensure optimal conditions for chemical reactions, enzymatic processes, and product quality.
In the context of factories, the handling and management of pollutants are of utmost importance. Industrial facilities aim to mitigate and control the release of harmful substances into the environment.
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now that you have identified the number of genotypes predicted for a gene that has three alleles, can you calculate phenotype frequencies when just allele frequencies are known? for the abo blood group in humans, there are three alleles (ia , ib , and i), six possible genotypes (iaia , ibib , iai , iai, iai, and ii), and four possible phenotypes (a, b, ab, and o). recall that ia is dominant to i, ib is dominant to i, and ia and ib are codominant. in a given population, the allele frequencies are as follows: ia
So, in this population, the expected frequencies of the A, B, AB, and O phenotypes would be 0.64, 0.57, 0.48, and 0.09, respectively.
Yes, it is possible to calculate the phenotype frequencies when just the allele frequencies are known, given that we have information about the dominance and codominance relationships between the alleles.
To calculate the phenotype frequencies for the ABO blood group in humans, we can use the Hardy-Weinberg equation, which states that the frequencies of genotypes in a population are determined by the frequencies of alleles and the rules of Mendelian inheritance.
For this example, let's assume the following allele frequencies: ia = 0.4, ib = 0.3, and i = 0.3. Using these frequencies, we can calculate the expected genotype frequencies as follows:
- iaia = (0.4)^2 = 0.16
- ibib = (0.3)^2 = 0.09
- iai = 2(0.4)(0.3) = 0.24
- ibi = 2(0.3)(0.4) = 0.24
- ii = (0.3)^2 = 0.09
To calculate the phenotype frequencies, we need to consider the expression of the alleles in the presence of one another. In this case, the A and B alleles are codominant, meaning that both are expressed equally in the AB genotype. Therefore, we can calculate the phenotype frequencies as follows:
- A phenotype: iaia + iai + ibi = 0.16 + 0.24 + 0.24 = 0.64
- B phenotype: ibib + ibi + iai = 0.09 + 0.24 + 0.24 = 0.57
- AB phenotype: iai + ibi = 0.24 + 0.24 = 0.48
- O phenotype: ii = 0.09
So, in this population, the expected frequencies of the A, B, AB, and O phenotypes would be 0.64, 0.57, 0.48, and 0.09, respectively.
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The anterior muscle that inserts widely on the periosteum of the mandible and the skin of the cheek is the masseter. medial pterygoid. temporalis. platysma. lateral pterygoid. Multiple sclerosis is a progressive, debilitating, demyelinating disease Multiple sclerosis (MS) is a progressive, debilitating autoimmune disease in which the body's immune system attacks myelinated portions of the central nervous system, leading to demyelination of affected axons. The disease is so named because scleroses- also known as scars, plaques, or lesions-form in many places within myelinated regions (white matter). The age at onset is most commonly between 20 and 40 years. The cause of the disease is unknown but may involve some combination of environmental agents, genetic factors, and viral infections. Common signs and symptoms include partial loss of vision and problems with speech, balance, and general motor coordination, including loss of bowel and urinary bladder control. The incidence among women is about twice that of men. Individuals with MS experience unpredictable, recurrent cycles of deterioration, remission, and relapse. There is no cure for MS, although drugs that alter the sensitivity or responses of the immune system can slow the progression of the disease. Define demyelination. Why would individuals with MS experience generalized motor coordination dysfunction? 3 Which glial cells are affected in MS?
Demyelination refers to the process of damage or loss of the protective myelin sheath that surrounds nerve fibers in the central nervous system (CNS).
Myelin is produced by specialized cells called oligodendrocytes in the CNS. When demyelination occurs in multiple areas of the CNS, as seen in multiple sclerosis (MS), it disrupts the normal conduction of electrical signals along the affected nerve fibers.
Individuals with MS may experience generalized motor coordination dysfunction due to the widespread demyelination in their CNS.
The disruption of the myelin sheath impairs the ability of nerve fibers to efficiently transmit signals between the brain and the muscles.
This can lead to muscle weakness, loss of balance, difficulties with coordination, and problems with fine motor control.
In MS, the glial cells primarily affected are the oligodendrocytes. These cells are responsible for producing and maintaining the myelin sheath in the CNS.
The immune system mistakenly targets and damages the oligodendrocytes, resulting in demyelination and the formation of scar tissue or plaques in the affected areas of the CNS.
The loss of myelin and damage to oligodendrocytes disrupts normal neuronal communication, contributing to the neurological symptoms observed in individuals with MS.
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Echinoderms display___ symmetry
Answer:
pentaradial I hope this helps u!!
True/False: Chromosomes contain genes that are
made of DNA and the order of nitrogen bases control
how the traits will be expressed (show up).
True
False
Answer:
True
Explanation:
Chromosomes do contain genes, and genes are in the cell nucleus. :)
Which theory of plate movement relies on the weight of the subducting crust?
A. Slab-push
B. Slab-pull
C. Mantle convection
D. Hot plumes
Answer:
The answer is slab-pullExplanation:
Got it right on the quiz :))
Antibodies that bind with high affinity to some viral surface proteins require heavy chain CDR3 loops of unusual length. Whereas the average human heavy chain CDR3 length is ~15 amino acids, antibodies with VH CDR3 loops of >30 amino acids are readily detected in the repertoire. Which enzyme is responsible for these unusually long CDR3 loops
Activation-induced cytidine deaminase (AID) is responsible for the unusually long CDR3 loops.
Activation-induced cytidine deaminase (AID) is an enzyme that is responsible for the unusually long CDR3 loops. The antibody variable domain (V domain) comprises three CDRs (Complementary-determining regions): CDR1, CDR2, and CDR3.
The third CDR, CDR3, is one of the most diverse regions of the variable domain, and it plays a critical role in determining antigen specificity.
AID is responsible for introducing somatic hypermutations (SHM) in the CDRs of immunoglobulins during an immune response.
It is responsible for introducing nucleotide substitutions and indels (insertions/deletions) into the V(D)J recombination loci, which results in CDR3 variations.
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The smaller spheres inside of the colonial protists Volvox sp. and Pandorina sp. are known as_________________________. They are products of asexual reproduction.
-cousin colonies
-daughter colonies
-sister wives
-sister spores
The smaller spheres inside of the colonial protists Volvox sp. and Pandorina sp. are known as daughter colonies. They are products of asexual reproduction.
The smaller spheres inside of the colonial protists Volvox sp. and Pandorina sp. are known as daughter colonies. They are the products of asexual reproduction. What are colonial protists? Colonial protists are organisms that reproduce asexually to form colonies or small groups of cells. Their cells may be similar to each other, or they may specialize to form groups or filaments. Members of the colonial protists group include the algae genera Volvox, Pandorina, and others. They exhibit the following characteristics: Their cells are bound together by a mucilaginous covering. They reproduce by forming small colonies or groups of cells. There is no specialization in these organisms.The smaller spheres inside of the colonial protists Volvox sp. and Pandorina sp. are known as daughter colonies. Daughter colonies are a result of asexual reproduction in colonial protists. Asexual reproduction is a process where an organism creates genetically identical copies of itself without the participation of gametes or fertilization. This process occurs in daughter colonies that are genetically identical to the parent colony.
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middle which diagram shows the changes in appearance of a plant cell when a remains in a concentrated sugar solution for thirty minutes? what is th answer
The osmosis diagram is the one that most accurately represents how a plant cell might change in appearance after spending thirty minutes in a concentrated sugar solution.
Osmosis is the process by which water molecules move from an area with a lower concentration of solutes to an area with a higher concentration of solutes across a semi-permeable membrane.
If a concentrated sugar solution were present, the solute concentration outside the plant cell would be higher than that inside.
Water from inside the plant cell would naturally try to exit the cell as it is submerged in the concentrated sugar solution in an effort to balance the solute concentration on either side of the cell membrane.
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What is the name of the structure labeled A in the diagram below?
A
F
B
D
O A. Cytoplasm
OB. Nucleus
ООО
C. Mitochondrion
O D. Ribosome
Answer:
I believe its C
Explanation:
The structure labeled A in the diagram is of mitochondria.
What is mitochondria?It is a double membranous organelle.The space between its two membranes is called intermembrane space.It is also known as powerhouse of cell as it generates ATP.Cristae is present in it.
Hence, option C. mitochondria is correct.
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7. What is a benefit of selective breeding in agriculture?
A. Selective breeding can create new types of plants that are more desirable for food.
B. Selective breeding can alter plants on which other animals depend for food.
C. Selective breeding reduces the variety of plants available for food.
D. Selective breeding removes all forms of disease from plants used for food.
Answer:
im my opinion... the answer is A
To which skeletal system do the carpals belong?
spongy skeleton
compact skeleton
axial skeleton
appendicular skeleton
Answer:
Appendicular skeleton
Explanation:
The carpals are bones that make up part of the hand, so the Appendicular system would be an appropriate answer. The Appendicular system got its name because it is the appendages of the axial skeleton. Your hand (as well as your arms , legs, pelvic girdle, feet,etc.) is considered your appendage so it would make sense for the bones that allow your wrist to move and rotate are considered it as well.
Answer:
appendicular skeleton
Explanation:
The carpals are bones that make up part of the hand.The appendicular skeleton is the portion of the skeleton of vertebrates consisting of the bones that support the appendages. The appendicular skeleton includes the skeletal elements within the limbs, as well as supporting shoulder girdle pectoral and pelvic girdle.
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