Explanation:
multicellular organisms thus have the competitive advantages of an increase in size without it's limitations
As particles of matter have an increase i energy, the particles__.
As particles of matter have an increase in energy, the particles move more rapidly or vibrate more vigorously.
When particles of matter gain energy, such as through the addition of heat, their kinetic energy increases. This increase in energy causes the particles to exhibit more rapid motion or vibrate more vigorously depending on the state of matter. In the case of a solid, the particles are tightly packed and held in a fixed position by strong intermolecular forces. As the particles gain energy, they vibrate more vigorously within their fixed positions, but their overall arrangement remains relatively unchanged. In a liquid, the particles are less closely packed and have more freedom to move. With an increase in energy, the particles gain more kinetic energy, leading to greater random motion and increased speed of movement within the liquid.
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Cerebrospinal fluid (CSF) is formed by capillary knots called the ________________________, which hangs inside the ________________________ of the brain. Ordinarily, CSF flows from the lateral ventricles into the ____________ ventricle and then through the _______________ into the fourth ventricle. Some of the fluid continues down the ________________________ of the spinal cord, but most of it circulates into the ________________________ by passing through three tiny openings in the walls of the ________________________. As a rule, CSF is formed and drained back into the venous blood at the same rate. If its drainage is blocked, a condition called ________________________ occurs, which results in increased pressure on the brain.
Answer:
1. Choroid Plexuses
2. Ventricles
3. third
4. Cerebral Aqueduct
5. Central Canal
6. Subarachnoid space
7. Forth Ventricle
8. Hydrocephalus
Explanation:
Cerebrospinal fluid formed by capillary knots called Choroid Plexuses which is hanged inside ventricles. There are four ventricles in which CFS flows from lateral to third and from cerebral aqueduct to forth ventricle. The meninges covers spinal cord which extends more inferiority to form a sac from which cerebrospinal fluid can be withdrawn without damage to spinal chord.
What is an advantage of flowering plants.
Answer:
Flowering plants are very important for the ecosystem and the humans.
Explanation:
Flowering plants are plants that bear flowers and fruits. They are necessary in order for the plant to produce seeds and allow seeds to exist generation after generation. They also help different insects and plants for pollination.
On the periodic table, electronegativity increases as we move from the left column to the right. What information does this give us?
A) Nitrogen is more likely than oxygen to form a chemical bond
B) Hydrogen and helium are equally likely to form a chemical bond
C) Fluorine and neon are equally likely to form a chemical bond
D) Oxygen is more likely than nitrogen to form a chemical bond
Answer:
I think answer a hope it is helpful
during replication of dna, deoxy-nucleotide- phosphates are added as nucleotide unit to the growing dna chain and release what immediate product?
During DNA replication, it releases two immediate products: a pyrophosphate (PPi) molecule and a newly added nucleotide that becomes part of the DNA strand. Deoxy-nucleotide-phosphates (dNTPs) are added to the growing DNA chain by DNA polymerase. As each dNTP is added to the 3' end of the growing chain.
The release of pyrophosphate is an important step in DNA synthesis because it provides the energy needed to drive the polymerization reaction forward. The release of PPi leads to the hydrolysis of the pyrophosphate bond, which releases energy that is used to form a phosphodiester bond between the new nucleotide and the existing DNA strand.
Overall, the addition of dNTPs and the release of PPi are crucial steps in the replication of DNA, allowing for the accurate copying of genetic information from one generation to the next.
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Under a microscope, gram-positive bacteria (when dyed with the gram stain) appear _____.
Under a microscope, gram-positive bacteria (when dyed with the gram stain) appear in purple-colored structures due to the peptidoglycan cell wall.
What are gram-positive bacteria?Gram-positive bacteria are microorganisms (bacteria) that may be colored with crystal violet stain due to the presence of a peptidoglycan-based cell wall.
In conclusion, under a microscope, gram-positive bacteria (when dyed with the gram stain) appear purple-colored structures due to the peptidoglycan cell wall.
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what three types of ends can be generated through dna cleavage by restriction endonucleases?
The three types of ends that can be generated through DNA cleavage by restriction endonucleases are blunt ends, 5' overhangs (also known as sticky ends), and 3' overhangs (also known as cohesive ends).
Blunt ends are straight cuts that result in no overhangs, 5' overhangs result in a single-stranded extension at the 5' end of the cut, and 3' overhangs result in a single-stranded extension at the 3' end of the cut. These different types of ends can affect the way that the cut DNA fragments can be recombined or ligated together.
The three types of ends that can be generated through DNA cleavage by restriction endonucleases are:
1. Blunt ends: These are generated when the restriction endonuclease cuts the DNA strand at the same position on both strands, resulting in a clean, straight break. There are no overhangs or "sticky ends" in this case.
2. 5' overhangs (also called 5' sticky ends): These are generated when the restriction endonuclease cuts the DNA strand asymmetrically, leaving a single-stranded overhang on the 5' end of one DNA fragment. This overhang can be complementary to another 5' overhang produced by the same enzyme, allowing the fragments to anneal or "stick" together.
3. 3' overhangs (also called 3' sticky ends): These are generated when the restriction endonuclease cuts the DNA strand asymmetrically, leaving a single-stranded overhang on the 3' end of one DNA fragment. This overhang can be complementary to another 3' overhang produced by the same enzyme, allowing the fragments to anneal or "stick" together.
In summary, DNA cleavage by restriction endonucleases can generate blunt ends, 5' overhangs, or 3' overhangs, depending on the specific enzyme and its recognition site on the DNA molecule.
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how does the eukaryotic ribosomal small subunit recognize the start codon on the mrna?group of answer choicesit undergoes a conformational charge that recruits other proteins when it hydrogens bonds to the correct tri-nucleotide sequence.it binds an met-trna to the first aug codon after the kozak sequence.it wraps the mrna strand to bring initiation enhancer proteins into the vicinity of the start codon.it binds an met-trna to the first aug codon it encounters.it performs an atp hydrolysis within the small subunit once it encounters a met-trna already bound to the aug.
The statement "it binds an met-trna to the first AUG codon after the kozak sequence." is the correct answer to how eukaryotic ribosomal small subunit recognize the start codon on the mrna.
First option: This choice is incorrect since amino acids are connected to their associated tRNAs by activating ATP, a process known as aminoacylation of tRNA.
Option 2: This choice is appropriate. Once the tRNA is charged, mRNA attaches a met- tRNA to the first AUG codon following the kozak sequence.
Option three: This choice is incorrect. While recognizing the start codon on the mRNA, there is no conformational change in the tiny unit of the ribosome.
Option four: This choice is incorrect. The mRNA isn't wrapped by ribosomes. Instead, along the mRNA, ribosomes migrate from codon to codon.
Option 5: This choice is incorrect. The initial AUG codon, but before the kozak region, is where it binds a Met-tRNA.
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how to make snow cream with sweetened condensed milk
Snow cream can be made using sweetened condensed milk and the recipe is quite simple. Follow the steps below to make snow cream with sweetened condensed milk: Ingredients: 1 can sweetened condensed milk, 1 teaspoon vanilla extract, and 8 cups fresh, clean snow
Collect fresh snow. You'll need at least 8 cups of clean, fresh snow to make this recipe. You can collect snow from your yard, a local park, or any other nearby place. Step 2: Add the sweetened condensed milk. In a large bowl, combine the can of sweetened condensed milk and a teaspoon of vanilla extract. Stir until everything is well combined. Step 3: Mix the snow with the sweetened condensed milk. Pour the snow into the sweetened condensed milk mixture and stir everything together. Keep adding snow until you get the desired consistency of snow cream. Step 4: Serve. Chill the snow cream in the fridge for 30 minutes before serving. Scoop it into bowls or cones and enjoy!
Snow cream is a dessert that's commonly made during the winter months. It's essentially a cold, creamy dessert that's made from fresh, clean snow and other ingredients. In this recipe, sweetened condensed milk is used as a base to give the snow cream a sweet, creamy texture.
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what is released in the light depended step of photosynthesis?
Answer: Imma say In the light-dependent reactions, which take place at the thylakoid membrane, chlorophyll absorbs energy from sunlight and then converts it into chemical energy with the use of water. The light-dependent reactions release oxygen as a byproduct as water is broken apart.The light-dependent reactions use light energy to make two molecules needed for the next stage of photosynthesis: the energy storage molecule ATP and the reduced electron carrier NADPH. ... The photosystems and electron transport chain components are embedded in the thylakoid membrane.
Hope this helps have a awesome night/day❤️✨
Explanation:
Answer: The energy in the light helps create glucose with the help of Carbon Dioxide and Water
(Hope this helps)
if two children inherit different set of alleles from the same parents the children will have different ___
If two children inherit a different set of alleles from the same parents, the children will have different traits or characteristics.
The inheritance of alleles from parents is governed by the principles of Mendelian genetics. Each individual possesses two alleles for a specific trait, one inherited from each parent.
During the formation of gametes (sperm and eggs), these alleles segregate, resulting in each gamete carrying only one allele for each trait. When fertilization occurs, the offspring inherit one allele from each parent, leading to genetic variation.
Since the parents can possess different combinations of alleles for a particular trait, each child has a unique combination of alleles inherited from their parents. This variation in alleles results in different traits being expressed in each child.
For example, if the parents have different eye colors, one child may inherit the allele for blue eyes, while the other may inherit the allele for brown eyes. As a result, the children will have different eye colors despite having the same parents.
Therefore, the inheritance of different sets of alleles leads to genetic variation and accounts for the observable differences in traits among siblings.
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What is the general global pattern of species richness?
Multiple Choice
O Decreasing from temperate forests into tropical seas
O Decreasing from organic soils to clay soil types
O Decreasing from polar areas towards the tropics
O Decreasing from west to east across continental land masses
O Decreasing from the tropics towards polar areas
The general global pattern of species richness is O Decreasing from the tropics towards polar areas. This means that the species get more varied as you get closer to the equator.
The number of species decreases as you move away from the equator and towards the poles. This is because the tropics have better weather, like higher temperatures and more rain, which makes it possible for a wider range of species to thrive.
In contrast, the polar regions have harsher conditions, like colder temperatures and less rain, that make it hard for many species to live there. So, the number of species decreases as you move from the tropics to the poles. This is called the global pattern of species richness.
Therefore, the correct answer is the general global pattern of species richness is O Decreasing from the tropics towards polar areas.
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Column A
Column B
1.
a
А
a. Single
Benth
b. People
2. 3.
Carn
C. Before
4.
Dem
d. Idea
5.
Ecto
e. Meat
BG
Fore
f. Sex Cell
7
Gam
g. Deep
8
Haplo
h. Nucleus
9.
Ideo
Without
10.
Karyo
je Outside
Answer:
Explanation. colom a
Which energy transformation occurs when the archer releases the string?
OA. Elastic energy is transformed into electrical energy.
OB. Chemical energy is transformed into elastic energy.
OC. Elastic energy is transformed into kinetic energy.
D. Potential energy is transformed into elastic energy.
Answer:
OA. Elastic energy is transformed into electrical energy.
Explanation:
pls hart and mark brainiest
The lac operon in E.coli regulates genes that code for enzymes required for the breakdown of lactose. The lac operon is
operon that is activated in the presence of
The lac operon in E.coli regulates genes that code for enzymes required for the breakdown of lactose. The lac operon is an inducible operon that is activated in the presence of lactose.
It is a cluster of genes in bacteria that is responsible for the metabolism of lactose. The lactose operon consists of three structural genes, lac Z, lac Y, and lac A, that code for enzymes that break down lactose, and a regulatory region, which includes the promoter, operator, and lac I gene. It functions as a switch that turns genes on or off in response to environmental changes. The regulatory region of the lactose operon contains the operator and the promoter. The operator is a DNA sequence that regulates the expression of the genes by acting as a binding site for the regulatory protein.
The promoter is a DNA sequence that is recognized by RNA polymerase, which initiates the transcription of the genes. The lac I gene codes for a regulatory protein called the lac repressor. The lac repressor binds to the operator region of the lac operon and prevents RNA polymerase from transcribing the genes. In the absence of lactose, the lac repressor is active and the lac operon is turned off.
When lactose is present in the environment, it binds to the lac repressor and changes its conformation, preventing it from binding to the operator. This allows RNA polymerase to bind to the promoter and transcribe the genes necessary for lactose metabolism. Thus, the lactose operon is an inducible operon that is activated in the presence of lactose.
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consider the following planned experiment
Answer:
I would either say A or C
Explanation:
They are the ones to me who make the most sense.
Answer: B. Size of Pot.
Explanation: I took the quiz on Apex.
How do scientists beileve that chloroplast got into photosynthesis cells?
Scientists believe that chloroplasts got into photosynthesis cells by a process called endosymbiosis. Endosymbiosis is a theory that explains how eukaryotic cells evolved from the combination of different prokaryotic cells.
Chloroplasts are thought to have been free-living photosynthetic prokaryotes that were engulfed by non-photosynthetic eukaryotic cells through the process of endocytosis. Over time, the host cells and the engulfed photosynthetic cells developed a mutually beneficial relationship, with the photosynthetic cells producing energy for the host cells through photosynthesis and the host cells providing a stable environment for the photosynthetic cells to thrive. This process eventually led to the formation of modern-day eukaryotic cells, which contain organelles such as mitochondria and chloroplasts that were once free-living prokaryotes. Therefore, scientists believe that chloroplasts were once independent photosynthetic organisms that were incorporated into host cells through the process of endosymbiosis. Summary: Scientists believe that chloroplasts were free-living photosynthetic prokaryotes that were engulfed by non-photosynthetic eukaryotic cells through the process of endocytosis. This process is called endosymbiosis. Over time, the host cells and the engulfed photosynthetic cells developed a mutually beneficial relationship, which led to the formation of modern-day eukaryotic cells, which contain organelles such as mitochondria and chloroplasts that were once free-living prokaryotes.For more questions on Endosymbiosis
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Which New York State landscape region is composed of mostly horizontal sedimentary bedrock and has a high elevation?
1 Hudson Highlands
2.Manhattan Prong
3. the Catskills
4.Taconic Mountains
The Catskills is the New York State landscape region that is composed mostly of horizontal sedimentary bedrock and has a high elevation.
Explanation:The New York State landscape region that is composed of mostly horizontal sedimentary bedrock and has a high elevation is the Catskills.
The Catskills are located in southeastern New York and are known for their scenic beauty and outdoor recreational opportunities. The region is primarily made up of sedimentary rocks, such as sandstone and shale, which were deposited millions of years ago.
The Catskills have a high elevation, with the highest peak, Slide Mountain, reaching over 4,000 feet. This elevation contributes to the region's cooler temperatures and the formation of numerous waterfalls and deep valleys.
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Bacteria have____ cell(s) while humans and plants have ——— cell(s)
Answer: Bacteria has Animal cells while plants have plant cells :)
Explanation:
the visual examination of the urinary bladder with the use of a specialized type of endoscope known as a
The visual examination of the urinary bladder is performed using a specialized type of endoscope called a cystoscope. This procedure allows doctors to inspect the bladder for any abnormalities or issues.
The visual examination of the urinary bladder with the use of a specialized type of endoscope known as a cystoscope. This procedure allows doctors to directly view the inside of the bladder and detect any abnormalities or issues. It is typically performed under local anesthesia and involves inserting the cystoscope through the urethra and into the bladder. The cystoscope contains a light source and camera, which allows for a clear image of the bladder walls and urethral opening.
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An endoscope is a medical instrument used to visually examine hollow organs and body cavities. It is commonly used by doctors for diagnosing internal physical problems and performing surgical procedures.
Explanation:An endoscope is a specialized type of medical instrument used for visual examination of hollow organs and body cavities. It is commonly used by doctors to diagnose internal physical problems by sending light down a flexible fiber optic tube and transmitting images back to a doctor in charge. Endoscopes can also be equipped with additional channels to allow the use of small surgical instruments for procedures like collecting biopsies and removing growths.
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testosterone, a lipid-soluble signaling molecule, crosses the membranes of cells throughout the body but affects only target cells because __________.
Answer:
of intracellular receptors
Explanation:
this should be correct
Sara and Helen have blue eyes like their mother.
Describe how genetic information is passed on from a parent to a child.
GIVING THE BRAINLIEST
Answer:
good question
Explanation:
it will show that your parent were look like you and have a good life cus if anything will not have a genetic in a child from there parents it means he or she was adopt then they think to take a test of there bone marrow with her / him
What are the 4 main divisions of plants?
1.Nonvascular (aka, bryophytes) (example: ______________________)
2.Vascular Seedless (aka, pteridophytes) (example: ______________________)
3.__________________ (example: ______________________)
4.__________________ (example: ______________________)
Answer:
Points boiiiiiiisssssssssssss
Explanation:
use data to make cladogram chart
Answer: I have it attached
Explanation:
Explain the anatomical concepts associated with human development. Summarize this module’s key points in 5-6 sentences.
Explain the physiological concepts associated with human development. Summarize this module’s key points in 5-6 sentences.
Expert Answer
Anatomical concepts associated with human development include the stages of fetal development, the physical structures of the body, and the growth and maturation of the body.
Physiological concepts involve the changes in the body’s functions over time, such as the development of motor skills, the growth of the nervous system, and the maturation of the endocrine system.
Human development is a complex process that involves changes in both physical structure and body functions over time. During fetal development, the body grows and develops in a specific sequence, with certain body structures maturing at certain stages.
As the body matures, the nervous and endocrine systems develop, allowing the body to produce hormones, create and control movement, and respond to external stimuli.
Motor skills also develop over time, allowing for more complex movements and activities. By understanding the anatomical and physiological processes involved in human development, we can gain insight into the growth and maturation of the body over time.
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An ecosystem has experienced a flood. Which type of plants would you expect to see growing first after the flood? shrubs lichen small annual plants pine and oak trees
Answer:
Small annual plant
Explanation:
Just took the test
If an ecosystem just experienced a flood, the type of plants that would be expected to grow first after the flood are small annual plants.
WHAT ARE PIONEER SPECIES?Pioneer species in succession are those species that first colonize a habitat or area of land.
Pioneer species can first colonize a bare area of land as in primary succession or a previously disturbed land as in secondary succession.
Examples of pioneer species are annual plants (herbs), which will be the pioneer species if an ecosystem experiences flood.
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A kilometer is a longer distance than a meter
Answer:
That's true a kilometer is a longer distance than a meter (1,000 times longer)
Explanation:
Which of the following macromolecules are a prominent part of animal connective
tissue such as cartilage and keratin?
A.carbohydrates
B.lipids
C.proteins
D. Nucleic acids
The correct option is C: Proteins
Proteins are essential for all living organisms as it carried out important function.
Proteins help in repairing all living organisms organs and as well as the tissues and cells.
Proteins help to protect the body against bacteria and viruses which is why they are said to be important macromolecules that are part of animal connective tissue.
Example of macromolecules is proteins.
Inconclusion The correct option is C: Proteins
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If a couple has four daughters the % chance of their next child being a daughter is
Answer:
50% chance
Explanation:
Humans have two sex chromosomes, the X chromosome and the Y chromosome. Males inherit both X and a Y chromosome, while females inherit two X chromosomes. Thus, the sex of the child is determined by the sex chromosome carried by the male gamete (i.e., X or Y chromosome) which fuses with the egg cell (always containing an X chromosome). In consequence, the chance of having a sperm containing an X chromosome (i.e., the chance of having a girl) is an independent event of previous fertilization events (which led to the formation of 4 different female zygotes), thereby the probability will be 50%.
Scientists have recently modified the bacteria that cause tooth decay by inserting a fragment of DNA into the bacteria's DNA that prevents it from producing lactic acid. What is the new DNA called?
Answer:
DEFB1
Explanation:
It is called beta defensin (DEFB1) which increase the susceptibility caries.