Active transport could result in the net movement of a substance into a cell, if the substance is more concentrated in the cell than in the surroundings
What is active transport ?By using cellular energy, active transport involves transporting molecules across a cell membrane.
Active transport is the movement of molecules through the cell membrane with the aid of an energy-storing substance called ATP (adenosine triphosphate). ATP is a chemical that stores energy.
High concentrations of substances the cell needs, like ions, glucose, and amino acids, are typically accumulated during active transport. Active transport examples include the uptake of glucose in human intestines and the uptake of mineral ions into plant root hair cells.
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Mineralocorticoid is to aldosterone as glucocorticoid is to ________. A) testosterone. B) estrogen. C) cortisol. D) epinephrine
Option C is Correct. As glucocorticoids are to cortisol, mineralocorticoids are to aldosterone. Salt and water balances are regulated by a group of steroid hormones known as mineralocorticoids.
The most important mineralocorticoid is aldosterone. Aldosterone, the body's main mineralocorticoid hormone, is essential for maintaining the proper balance of fluid and electrolytes in the kidney, salivary glands, sweat glands, and colon.
The cortex secretes steroids, which are often divided into glucocorticoids (like cortisol) and mineralocorticoids (e.g., aldosterone, which causes sodium retention and potassium excretion by the kidney). Amines like epinephrine and norepinephrine are among the chemicals coming from the medulla. The only naturally occurring mineralocorticoid in humans that functions normally is aldosterone (27.2.1). Cholesterol is used to make aldosterone.
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An allele W, for white wool, is dominant over allele w, for black wool. In a sample of 900 sheep, 891 are white and 9 are black. Calculate the allelic frequencies within this population, assuming that the population is in H-W equilibrium. In a population that is in Hardy-Weinberg equilibrium, the frequency of the recessive homozygote genotype of a certain trait is 0.09. Calculate the percentage of individuals homozygous for the dominant allele. 9. In a population that is in Hardy-Weinberg equilibrium, 38 % of the individuals are recessive homozygotes for a certain trait. In a population of 14,500, calculate the percentage of homozygous dominant individuals and heterozygous individuals. 10.
In a population of 14,500 people, there would be roughly 2,090 homozygous dominant people (14,500 x 0.1444) and 6,857 heterozygous people (14,500 x 0.4724).
The probability of the recessive homozygote genotype in a Hardy-Weinberg equilibrium population is q2, where q is the frequency of the recessive allele. We can find q by taking the square root of 0.09, which is 0.3. The dominant gene (p) has a frequency of 1-q, which equals 0.7.
We use the equation p2 = p2 to determine the percentage of people who are homozygous for the dominant allele (p2), which is (0.7)2 = 0.49. As a result, 49% of people are homozygous for the dominant gene.
The probability of the recessive homozygote genotype in a Hardy-Weinberg equilibrium population is q2, which is 0.38. We can find q by taking the square root of 0.38, which is 0.62. The dominant gene (p) has a frequency of 1-q, which equals 0.38.
We use the equation p2 = p2 to determine the percentage of homozygous dominant individuals (p2), which is (0.38)2 = 0.1444, or 14.44%.
The percentage of heterozygous people (2pq) is calculated using the equation 2pq = 2(0.38) (0.62) = 0.4724, or 47.24%.
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This artery of the foot is often palpated to assess the circulatory efficiency of the limb as a whole.
-brachial artery
-popliteal artery
-dorsalis pedis artery
-femoral artery
The artery of the foot that is often palpated to assess the circulatory efficiency of the limb is the dorsalis pedis artery. This artery is located on the top of the foot, and its pulse can be felt by pressing on the area just lateral to the extensor hallucis longus tendon.
Assessing the circulation of the foot is an important part of physical examination in healthcare. One way to assess circulation is to palpate the dorsalis pedis artery, which is a major artery located on the top of the foot. The pulse of this artery can be felt by pressing gently on the area just lateral to the extensor hallucis longus tendon.
The presence and strength of the dorsalis pedis pulse can provide valuable information about the blood flow to the lower leg and foot. A strong pulse is a good indication of normal arterial blood flow, while a weak or absent pulse may suggest arterial occlusion or other circulatory problems. Palpation of the dorsalis pedis artery is a quick, simple, and non-invasive way to assess circulation in the foot, making it a useful diagnostic tool in both primary care and emergency medicine.
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Which image would have the fastest rate of diffusion?
The image that would have the fastest rate of diffusion would be image 4.
Rate of diffusionDiffusion is the movement of molecules from the region of higher concentration to the region of lower concentration of the same molecules.
This means that molecules diffuse down their concentration gradients and the rate of diffusion of molecules will depend on the concentration of the molecules at the lower gradient.
From the images, image 1 has a somewhat equal concentration of the molecule across the two sides. Images 2 to 4 have lower concentrations of molecules on a particular side but the image with the lowest concentration on a particular side is image 4.
Thus, image 4 will have the molecule diffusing faster than the rest of the images.
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Someone please help asap!
What is the structure of the following statement? "Our city is plagued with polluted water, and until we pass stricter laws about dumping into the river, it is going to continue.
A. Cause and effect
B. Problem and solution
C. Description
D. Sequence
How are electrochemical gradients significant in how the heart works?
The electrochemical gradients are significant in the working of the heart by transportation of the sodium and potassium ions across the heart muscles.
What is electrochemical gradients?The driving force that propels a molecule through a membrane is being measured using the electrochemical gradient, also known as the electrochemical potential difference.
They provide differences for the movement of sodium and calcium ions ions across the cardiac muscles for the working of the heart. Therefore, it helps the heart muscles to beat.
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when adh is released by the pituitary, absorption of water from the collecting ducts of nephrons , resulting in decreased blood osmolarity.
when adh is released by the pituitary, absorption of water from the collecting ducts of nephrons , resulting in increased blood osmolarity.
The pituitary gland releases ADH (antidiuretic hormone), which raises the permeability of the collecting ducts and distal convoluted tubules in the kidneys and promotes higher water absorption back into the bloodstream. This causes a concentration of urine and a reduction in urine flow, which can aid in the body's ability to retain water. Blood osmolarity is thereby increased rather than decreased.
By adjusting the amount of sodium and water ejected, the kidneys, in coordination with neurological and endocrine input, control the volume and osmolality of the extracellular fluid. This is generally done through modifying salt and water reabsorption, the methods of which vary depending on the segment of the nephron.
When blood osmolality rises, the body secretes antidiuretic hormone (ADH). The kidneys reabsorb water due to this hormone. Urine becomes more concentrated as a result. The blood is thinned by the reabsorbed water.
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A eukaryotic transcription unit that is 8,000 nucleotides long may use 1,200 nucleotides to make a protein consisting of approximately 400 amino acids. This is best explained by the fact that
A. there are termination exons near the beginning of mRNA.
B. many noncoding stretches of nucleotides are present in eukaryotic DNA.
C. there is redundancy in the genetic code.
D. many nucleotides are needed to code for each amino acid.
Eukaryotic transcription unit that is 8,000 nucleotides long may use 1,200 nucleotides to make protein consisting of approximately 400 amino acids, this is best explained by fact that :A)many noncoding stretches of nucleotides are present in mRNA.
What is meant by transcription?The process of copying segment of DNA into RNA is known as transcription.
Transcription unit in eukaryotes includes the region that code for mRNA extending from 5' cap site to the 3' poly-A site. It also include controlling regions. mRNA formed by transcription also has some non-coding intervening sequences and these are called introns. Introns are removed from primary transcripts by process of splicing that occurs after transcription.
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Athletes eat large meals containing carbohydrates and fat when they are in training but their body weight (mass) remains nearly constant. Which of the following statements correctly describes what happens to most of the mass consumed? A) It is converted into adenosine triphosphate (ATP). B) It is released as carbon dioxide and water. C) It is converted to energy.
Option B is Correct. When they are training, athletes consume a lot of food, primarily carbohydrates and fat, but their mass (body weight) stays pretty much the same.
This happens to the majority of the mass consumed is accurately described by the following statements: it is released as carbon dioxide and water.
Due to the more glycogen (a type of stored carbohydrate) in the muscles and liver, a diet heavy in carbohydrates improves both endurance and intermittent high-intensity performance. It's advised that athletes putting in more than 180 minutes of daily moderate- to high-intensity endurance activity take 8 to 12 grams of carbohydrates per kilogram of body weight (Burke et al., 2011; with Thomas at et al., 2016).
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give reason scientific studies is important.
Which of the following describes a spontaneous movement of phospholipids in the plasma membrane? Select all that apply.- Moving past other phospholipids in the extracellular leaflet- Moving past other phospholipids in the cytosolic leaflet- Moving from the extracellular leaflet tom the cytosolic leaflet- Moving from the cytosolic leaflet to the extracellular leaflet
The correct option is ;A Moving past other phospholipids in the extracellular leaflet.
Phospholipids in the lipid bilayer can migrate rotationally, laterally inside one bilayer, or transversely between bilayers. The fluid structure of the membrane is provided by lateral movement.
When phospholipids are exposed to watery conditions, they spontaneously form bilayers. The hydrophobic effect drives their assembly, so the lipids spontaneously organize themselves in a way that minimizes the hydrophobic surface area exposed to water.
Phospholipids are important membrane lipids that are made up of lipid bilayers. This fundamental cellular structure serves as a barrier to protect the cell from numerous external stresses while also allowing multiple cellular functions to occur in subcellular compartments.
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which of the following forms of stress management originated as a form of self-defense? group of answer choices krav maga yoga tai chi taekwondo
Tai chi is the forms of stress management originated as a form of self-defense.
In general , Tai Chi is considered as the one of the best known martial arts of the Internal systems that is developed in ancient China. This is usually originated from the system of Qigong and martial art techniques developed gradually from thousands of years ago, Chen Wangting was the one who developed Chen Style Tai Chi around 1670.
Hence , tai chi is not only high form of Chinese martial art, but it is also beginning of the popularity of the Chinese Taoist culture and Buddhism culture.
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describe how you can use pcr to make point rotations in gene fragments
PCR involves using short synthetic DNA fragments called primers segment of the genome to be amplified.
How do PCR gene fragments?To increase a segment of DNA using PCR, the sample is first heated so the DNA cheapens, or the gene separates into two pieces of single-stranded DNA. Next, an enzyme called "Taq polymerase" arrange.- builds - two new strands of DNA, using the primary strand fragments as templates.
PCR gene fragments gel electrophoresis is a technique in which fragments of DNA are haul through a gel matrix by an electric current, and it breaks up DNA fragments according to size.
So we can conclude that Rather, PCR involves the union of multiple copies of certain DNA fragments utilizing an enzyme known as DNA polymerase.
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need help with this one
These are the arrangement of the labels with their related features:
proteins that act as linkers: integralproteins that modify cell shape during division: peripheralrecognition molecules: ligandsfatty acids with double bond: fluidityselective transporters: ion channelsWhat is the function of a ligand protein?A ligand is a molecule that binds specifically to a protein, typically a receptor protein, to form a complex. The function of a ligand protein is to serve as a signaling molecule or a recognition molecule, transmitting signals into or out of a cell.
Ligands can activate or inhibit the activity of a receptor protein, depending on the nature of the interaction between the ligand and the receptor. For example, hormones, neurotransmitters, and cytokines are examples of ligands that bind to specific receptors and activate signal transduction pathways within cells.
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albinism in humans is controlled by a recessive gene (c). from marriages between two normally pigmented carriers (cc), what is the probability of having a normal child
The probability of having a normal child if a recessive gene (c) from marriages between two normally pigmented carriers (Cc) is 75%.
Аlbinism is а condition in which there is lаck of pigmentаtion in eyes, skin аnd hаir. This is аn inherited condition. The combinаtion of recessive аlleles аre pаssed from both the pаrents. In this condition pаrent 1 will hаve Аа аnd the pаrent 2 will аlso hаve Аа genotype. If the genotype аre crossed the offspring produced will be АА, Аа, аа, Аа.
So in this condition, they have the chance of 25% of offspring with аlbino аnd 75% of pаtients with normаl condition.
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where do the light independent reactions of photosynthesis take placehow does the electron transport train of photosystem 2 get en energized electron
The light independent reactions of photosynthesis take place in the thylakoid membrane
The electron transport train of photosystem 2 get en energized electron is from light at a wavelength of 680 nm.
Photosynthesis is a process of chemical reactions carried out by plants to produce food. The main raw materials for plants to carry out photosynthesis are carbon dioxide, water, and chlorophyll with the help of sunlight.
Photosynthesis consists of two stages, namely the light reactions that occur in the thylakoid inner membrane and the light and dark reactions. The light reaction is the first reaction in photosynthesis, and in this reaction light energy is converted into ATP and NADPH. Organic molecules in the form of photosystem II on the thylakoid inner membrane get energy from light at a wavelength of 680 nm which is captured by chlorophyll a. The light-sensitive chlorophyll a at P680 absorbs light, high energy electrons are then released and captured by photosystem 2.
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Which organisms are the main primary producers in soft-bottom
subtidal communities?
Answer: infaunal (burrowing) invertebrates such as polychaete worms.
Explanation: Most soft-bottom subtidal communities are dominated by infaunal (burrowing) invertebrates such as polychaete worms. However, other organisms such as crustaceans, echinoderms, and mollusks may be locally abundant.
i need help plis can someone help me
The fill-in-the-blanks with appropriate words are as follows:
Most plants are Dicots. Usually, woody plants are Perennials.Most herbaceous plants are Monocots. The reason angiosperms are so successful is that they are adaptable. The period before germination is called seed dormancy. A grape is an example of fleshy fruit. What is seed dormancy?Seed dormancy may be characterized as a type of condition in which seeds are generally prevented from an event of germination even under favorable environmental conditions may occur. These favorable conditions may significantly include temperature, other mechanical restrictions, water, light, gas, and seed coats.
According to the context of this question, herbaceous plants do not have a woody stem above the ground, instead, they have a soft, green flexible stem. These types of plants are mostly biennials and annuals and perennials as well. In unfavorable seasons, the top growth dies down to the ground.
Therefore, the fill-in-the-blanks with appropriate words are well described above.
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which of the following is true about top predators? which of the following is true about top predators? they are often keystone species. they are likely to be producers. they are likely to be herbivores. they include bacteria and fungi. their removal increases biodiversity.
The following statement is true about top predators: They are often keystone species.
Top predators are those animals that are at the top of the food chain and have no natural predators of their own. As a result, their populations are often smaller than those of their prey, but they play a crucial role in regulating the populations of other species in the ecosystem. They are often considered keystone species, which means that their removal can have significant impacts on the structure and function of the entire ecosystem. For example, the removal of a top predator can lead to a population explosion of their prey, which can then have negative effects on other species and ultimately decrease biodiversity.
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brenda and her brother, brook, developed from separate fertilized eggs. they are twins. please choose the correct answer from the following choices, and then select the submit answer button. answer choices same-sex fraternal opposite-sex identical same-sex identical opposite-sex fraternal
The correct option is b) opposite sex fraternal twins. When two eggs and two sperm are fertilized at the same time, they can grow into siblings called fraternal twins. As a result, they are formed at the same time, grow at the same time, and deliver around the same time.
The ability to distinguish between hereditary and environmental influences in genome-wide association studies has improved thanks to a simulation study, but there is still work to be done before this issue can be considered "solved." Twin studies make it possible to separate the shared genetic and environmental variables that contribute to the desired trait. Researchers can calculate the percentage of a trait's variance that can be attributed to genetic variation versus the percentage that can be attributed to common or unshared environments.
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Full Question ;
Brenda and Brock developed from separate fertilized eggs. They are: a) opposite sex identical twins. b) opposite sex fraternal twins. c) same sex identical twins. d) same sex fraternal twins
Practice identifying each region of the bacterial cell. Match each label to the correct cell wall component
Page 136 Figure 5.10
A differential stain called as the Gram stain can be used in the lab to differentiate between the two specific cell wall types. It was created in 1884 and has been use ever since.
How many walls do bacteria's cell walls have?Peptidoglycan makes up the clearly defined cell wall of bacteria. It shields the germs from the environment outside and has the potential to make them pathogenic. In the cell walls of gram-negative bacteria, there are two layers: an inner peptidoglycan layer and an outside lipopolysaccharide layer.
What is an example of a cell wall?Plants, fungi, protists—particularly moulds and algae—and the majority of bacteria—with the exception of mycoplasma and L-form bacteria—are examples of creatures with cell walls. Cell walls are absent in both heterotrophic protists and animals.
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The correct question is
Practice identifying each region of the bacterial cell. Match each label to the correct cell wall component
what is a homogeneous mixture that is formed by dissolving a substance in solvent
A solution is a homogeneous mixture consisting of a solute dissolved into a solvent. The solute is the substance that is being dissolved, while the solvent is the dissolving medium.
Solutions can be formed with many different types and forms of solutes and solvents.
what are the types of homogenous mixture or solution?
Homogeneous mixtures can be solid, liquid, or gas. They have the same appearance and chemical composition throughout. Examples of Homogeneous Mixtures include Water, Air, Steel, Detergent, Saltwater mixture, etc. Alloys are formed when two or more metals are mixed together in some specific ratio.
Homogeneous mixtures are also called solutions.
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Using the Punnett square diagrams, which phenotype is controlled
by a dominant allele?
Two Generations of Pea Plant Crossings
A- Y = yellow
B- y = green
C- Y = Yellow
Answer:
The phenotype controlled by a dominant allele in this case is yellow, which is represented by the capital letter Y.
Explanation:
Extinction is a naturally occurring process where organisms that can no longer compete die off. An extinction can have different impacts depending on the organism and the health of that ecosystem
Which of the following explains how extinction and biodiversity are related?
Extinction and biodiversity are related in that extinction reduce biodiversity.
How are extinction and biodiversity related?Biodiversity refers to the variety of living organisms within an ecosystem or on Earth as a whole.
When a species goes extinct, its unique genetic information and ecological role are lost. This loss of genetic and ecological diversity can have ripple effects throughout the ecosystem, as other species may depend on the extinct species for food or other resources, or may compete with it for resources. Over time, repeated extinctions can lead to a decline in overall biodiversity and a less resilient ecosystem. Therefore, preserving biodiversity is important in order to maintain healthy and sustainable ecosystems.
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6. show the undergraduate researcher what a transcript from both strands would look like. (assume that all regulatory information is upstream and downstream of the known dna. assume the transcription start site is the first dna base that you know.) make sure you show all important chemical components that describe rna orientation.
For the sense strand the RNA transcript would be-
5'GGCGAAUCAUGCGCUGCCTUGUUUCCAUCAGUAGACGCGGGACUUGGUUUCAUACAUGCACGCGU-3'
RNA: what is it?Ribonucleic acid, sometimes known as 'RNA', is a nucleic acid that is present in all living cells and has characteristics similar to those of DNA. But RNA typically only contains one strand, unlike DNA.. The basis of a RNA molecule consists of alternating phosphate groups and the sugar ribose rather than the deoxyribose found in DNA.
Where can you find RNA?The most prevalent type of RNA in cells is ribosomal RNA (rRNA), which accounts for around 50% of the ribosomes' structure. Before migrating into cytoplasm to join with proteins and create a ribosome, it is generated in the nucleus. Transfer RNA (tRNA), with a twisted shape, is found in the cytoplasm.
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Which of the following structure(s) is/are associated with the sympathetic nervous system? Check all that apply Check All That Apply - The adrenal cortex - The adrenal medulla - The thoracolumbar spinal cord - The pineal gland - The vagus nerve
The adrenal medulla and the thoracolumbar spinal cord are basically associated with sympathetic nervous system.
The sympathetic nervous system is basically the part of the autonomic nervous system. It can also be called our automatic nervous system because it is responsible for a lot of functions for which we don’t have to think about in order to control. This includes the control of your heart rate, digestion, urination, blood pressure, and sweating, among a lot of other functions.
The sympathetic nervous system is basically known for its role in producing response to dangerous or to stressful situations. The adrenal medulla and the thoracolumbar spinal cord are basically associated with sympathetic nervous system.
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If its nucleus and DNA were missing, a plant cell would be unable to do which of the following? Select all that apply. Check All That Apply - Differentiate into a specialized cell - Divide into two daughter cells - Pass on hereditary information - Synthesize new proteins
DNA deficiency and lack of nucleation prevent DNA-free cells from dividing into two daughter cells. as a result of the nuclear matter being divided into two daughter cells and being doubled during cell division.
Since DNA is the only component of heridity that they lack, they are unable to pass on hereditary information.
They are unable to produce protein because DNA converts to RNA, which is then translated into protein during protein synthesis. Protein synthesis cannot occur in a cell that lacks DNA.
The aforementioned choices are all valid.
A cell can only transmit genetic information with the aid of DNA.Without the nucleus, cell division would not be possible.DNA assists in the creation of new proteins.Through gene expression, which is only made possible with the aid of DNA, cells differentiate.Learn more about ‘ nucleus and DNA ’ visit here;
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Active transport is the process of
A. moving water through aquaporins
B. Moving substances down the concentration gradient
C. Assisting substances across the cell membrane with pores
D. Moving substances against the concentration gradient
Please help
Active transport is the process of moving substances against the concentration gradient. Therefore, the correct option is D.
What is active transport?Active transport is the movement of ions or molecules across a cell membrane from a region of lower concentration to a region of higher concentration, against the concentration gradient.
This process requires the input of energy, usually in the form of ATP (adenosine triphosphate), and is often carried out by specialized proteins embedded in the cell membrane called pumps.Therefore, the correct option is D.
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What might be a reason why India and China are so much more heavily populated than other countries with similar or larger geographic sizes such as the United States and Russia?
restrictive religious beliefs in Russia and the United States
forced sterilization procedures in China and India
less nutritious food in China and India
smaller base population
India and China are much more heavily populated than other countries with similar or larger geographic sizes, such as the United States and Russia, because of their smaller base population.
Why India and China are heavily populated?The reason why India and China are more heavily populated is due to their larger base population. India and China have significantly larger people than the United States and Russia, primarily due to a combination of historical, cultural, and economic factors.
Can history be a factor in a growing population in any country?Historical cultural and religious practices can influence population growth by affecting fertility rates. For example, cultural attitudes toward family planning, the role of women in society, and religious beliefs about birth control can influence fertility rates and contribute to population growth.
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In two or more complete sentences explain how geologists use relative dating, absolute dating, fossil data, and rock strata sequences to determine ages of rocks.
Answer: Relative dating is used to determine a fossil's approximate age by comparing it to similar rocks and fossils of known ages. Absolute dating is used to determine a precise age of a fossil by using radiometric dating to measure the decay of isotopes, either within the fossil or more often the rocks associated with it.
Explanation:
Carbon dating is used by geologists to identify the age of the fossil. It gives the estimation of the age.
What is carbon dating?
Carbon dating is a method of age determination. Radioactive isotopes such as carbon-14 are used for age determination which decays over a period of time by atmospheric nitrogen.
Atmospheric radioactive carbon(C-14) and carbon -12 are passed to green plants by the carbon cycle. Plants pass to animals by the food chain, hence it is an integral part of the chain. After the death of an organism, absorption of the C-14 stops. The half-life of C-14 is 5,730 years after which it starts decaying.
As the C-14 decays at a constant rate, it becomes easy for scientists to determine when the organism died by measuring the radioactive C-14 residues.
Therefore, Carbon dating helps in the determination of the age of organisms or rocks by residual analysis of carbon-14.
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