Acid deposition would almost certainly result in the release of aluminum ions from soil (option A)
Acid rain, also known as acid deposition, refers to any type of precipitation with acidic components, such as sulfuric or nitric acid, that falls to the ground from the atmosphere in wet or dry forms.
Acid deposition causes soil leaching, which results in the release of aluminum ions from the soil. Excess aluminum in the soil can be harmful to organisms, plant biomass, and the forest ecosystem. The pH of the soil decreases as acid deposition increases. The concentration of aluminum ions rises as a result. The increase in acidity in the soil mobilizes the aluminum ions, which are present in the insoluble nontoxic form.
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Some fish survive this event known as a kill fish what might be different about the fish that survived
The term fish kill, known also as fish die-off, refers to a localized die-off of fish populations which may also be associated with more generalized mortality.
Why is it called fish kill?The name Fishkill evolved from two Dutch words, “vis” (fish) and “kil” (stream or creek). Dutch immigrants, in the year 1714, searching for an acceptable location to settle and prosper, chose the area in and around the modern Village of Fishkill.
Most fish kills occur as a result of fluctuations in the natural environment with the most common cause being algal blooms and resulting water quality issues such as low oxygen or production of toxins.
An event where large numbers of fish die, indicating a problem in the body of water. Fish kills can be caused by a variety of factors including dissolved oxygen depletion, extreme water temperatures, fish diseases or introduction of pollutants. Most fish kills are natural events.
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1. Which theory did Darwin use to explain evolution?
the theory of acquired characteristics
the theory of adaptive evolution
the theory of natural selection
the theory of mutated genes
Assign each figure to one of these laws, then explain the difference between the figures
In order for a figure to have reflectional symmetry, there needs to be at least one axis such that when the the figure "folds" over that axis it maps into itself.
What is reflectional figure?In order for it to have reflectional figure, the figure, after a rotation of less than 360°, must map into itself. In this case, we'll focus on the rotational symmetry, since it's not difficult to find an axis over which each figure has reflective symmetry.
The only way the first and third figures will map into themselves is after a full 360° spin, so they do not have rotational symmetry. The fourth figure is an isoceles triangle.
Therefore, In order for a figure to have reflectional symmetry, there needs to be at least one axis such that when the the figure "folds" over that axis it maps into itself.
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Which environment will most likely result in the formation of marble?
O a bog in which dead plants and animals have collected over a very long period of time
O a shallow cavity formed by the evaporation of a lake leaving behind multicolored deposits
O a valley carved by a glacier which left behind rock fragments of various sizes and types
O an area deep underground where limestone has been exposed to intense pressure
Marble can be found from one side of the planet to the other, however, the four nations where it is most chiefs are Italy, Spain, India, and China.
The answer is an option(A)-O a bog in which dead plants and animals have collected over a very long period of time
Marbles frequently happen interbedded with such transformative rocks as mica schists, phyllites, gneisses, and granulites and are most normal in the more established layers of Earth's covering that have been profoundly covered in districts of outrageous collapsing and volcanic interruption.
Marble is a stone coming about because of the transformation of sedimentary carbonate rocks, most regularly limestone or dolomite (rock). The transformation causes variable recrystallization of the first carbonate mineral grains. The subsequent marble rock is ordinarily made out of an interlocking mosaic of carbonate precious stones.
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jordan is a scientist who wants to determine the genes involved in bipolar disorder. how can jordan use information from the human genome project to assist in this goal?
Jordan can utilize the HGP report to pinpoint the genes that have been discovered in family members of people who have bipolar disorder.
The term "behavioral genetics" refers to a multitude of study methods that are used by scientists to discover how genetic and environmental factors affect human behavior. The findings of family studies, twin studies, and adoptive studies are the foundation of behavioral genetics.
Paul Broca's discovery that injury to a particular region of the brain—the left frontal lobe—was connected with speech difficulty in the 1860s gave theories of localization their first shred of scientific support. The study of the molecular underpinnings of behavior in both humans and animals falls under the umbrella of behavioral neuroscience.
This field typically looks at the neurotransmissions in the brain and the psychological occurrences connected to biological activity.
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all parts of the sensory system use ____
A) cone cells
B) hair
C) receptors
D) chemoreceptors
Neurons that are part of the sensory system gather sensory data from their surroundings and transmit it to the brain as electrical signals for processing. Neurons called sensory receptors are involved in the transmission of messages from the body to the brain.
What do all parts of the sensory system use?The sensory system is a collection of related systems that help you notice and comprehend your environment. We just briefly covered the auditory and the visual systems, but there are other other senses like smell, taste, balance, proprioception (or your body's location), and at least half a dozen different kinds of touch sensations.The sensory systems have already been presented to you as separate, functional units—the eyes do this; the ears do that—as I was writing this. That kind of information has probably already been presented to you. A comprehensive analysis of the similarities between these systems has not been provided to you. Let's examine the systems as a whole and perhaps make some changes.To Learn more About sensory system Refer To:
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17. Create a Punnett square to solve the following codominance problem: In camellia flowers, petal color is controlled
by codominance. When a red (RR) is crossed with a white flower (WW), all the offspring are covered in both red and
white petals. If you cross a red flower with a red-and-white flower what is the probability of getting the following:
Represent answers as a fraction.
Red flowers:
White flowers:
Red-and-White flowers:
Answer:
A Punnett square is a grid used to predict the possible outcomes of a genetic cross. To create a Punnett square for the problem you described, we can use the following format:
R R
W RW RW
W RW RW
The letters in each box represent the genotype (the genetic makeup) of the offspring. In this case, the parents are a red flower (RR) and a red-and-white flower (RW).
The probability of getting a red flower: 1/2 or 0.5
The probability of getting a white flower: 0
The probability of getting a red-and-white flower: 1/2 or 0.5
It's important to keep in mind that this is a theoretical probability, as with any natural reproduction, there could be variations in the final outcome.
which of the following does not characterize proteins? which of the following does not characterize proteins? they appear to be the molecular carriers of coded hereditary information. they have both functional and structural roles in the body. they may be denatured or coagulated by heat or acidity. their function depends on their three-dimensional shape.
Answer:
DNA
Explanation:
The statement that does not characterize proteins is: they appear to be the molecular carriers of coded hereditary information. Therefore option A is correct.
While proteins play various essential roles in the body, including structural and functional roles, they are not the primary carriers of coded hereditary information.
Instead, DNA (deoxyribonucleic acid) and RNA (ribonucleic acid) are the molecules responsible for carrying and transmitting genetic information.
Proteins are involved in the expression and execution of genetic information, but they do not serve as carriers of the genetic code.
Proteins are highly diverse molecules made up of amino acids, and their function depends on their specific three-dimensional shape, which can be influenced by factors such as heat or acidity, leading to denaturation or coagulation.
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what's a colour for clear water?
Delect the correct answer from each drop-down menu.
What kind of species can harm an ecosystem or human health when introduced into the new environment?
Aspecies whose introduction does or is likely to cause economic or environmental harm or harm to human health is afn)
to the new environment.
An invasive species is any living item that harms an ecosystem and is not a part of it naturally. This includes bacteria, fungi, fish, plants, insects, amphibians, seeds, and even the young of an organism.
Which definition of environment is the most accurate?The effects of all creatures, living and inanimate, that have an impact on human life can be summed up as the environment. Water, land, sunshine, rocks, and other abiotic (non-living) components are examples.
Is the environment comprised of nature?The natural environment, also known as the natural world, is composed of all living and non-living things that emerge spontaneously, or in this case, without the aid of artificial means. Most often, Earth or particular areas of it are mentioned while using the phrase.
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the autonomic and somatic nervous systems are two separate systems that work totally independent of each other and lack any functional overlap. the autonomic and somatic nervous systems are two separate systems that work totally independent of each other and lack any functional overlap. true false
The autonomic and somatic nervous systems are two separate systems that work totally independent of each other and lack any functional overlap. False. Both are included in the peripheral nervous system.
The peripheral nervous system is all the nerves that are outside the brain and spinal cord. The function of the peripheral nerves is to connect the responses of the central nervous system to your organs and other parts of your body. The peripheral nervous system consists of the autonomic nervous system and the somatic nervous system.
The autonomic nervous system is the part of the peripheral nervous system that regulates the visceral functions of the body without us being aware of it. For example blood flow, heart rate, digestive process, and breathing process. While the somatic nervous system is part of the peripheral nerves that function to carry information on the sensory and motor nerves, to and from the central nervous system. Th3 functions to control all the things that you are aware of and consciously influence the body's response, such as moving the arms, legs, and other body parts. Thus, the autonomic and somatic nervous systems constitute the peripheral nervous system
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The statement that says "The autonomic and somatic nervous systems are two separate systems that work totally independent of each other and lack any functional overlap" is a FALSE statement since both of these systems do have functional overlap.
Both autonomic and somatic nervous systems make the peripheral nervous system. They are all the nerves that are outside the brain and spinal cord, with the primary function of connecting the responses of the central nervous system to the parts of the body.
Since both of these systems work together for that function, it can be said that they have a functional overlap. Therefore, the statement in the question above is a FALSE statement.
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When scientists develop models, there are always limitations or ways in which their models differ from the real world. Which of the following statements describe why climate models may have limitations or be different from what we see in the real world?
Climate models may have limitations or may differ from the real world due to several reasons, including: Complexity, incomplete understanding, uncertainty, limited data and model resolution.
What do you mean by climate model?A climate model is a computer-based representation of the Earth's climate system. It is designed to simulate the interactions between various components of the climate system, such as the atmosphere, oceans, land surface, and ice.
What is the importance of climate model?They incorporate data from historical observations and experiments to validate their predictions and to improve their accuracy. They are widely used in climate research and are an important tool for understanding and predicting future changes in the Earth's climate.
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4. Which scientist came up with the most accurate theory of evolution?
Charles Darwin
Jean-Baptiste Lamarck
Alexander Graham Bell
Alfred Russel Wallace
Answer:
. Which scientist came up with the most accurate theory of evolution? your answer....(Charles Darwin)
what variable would be most useful in making long-term road and infrastructure plans?
Population growth rate and projections would be most useful in making long-term road and infrastructure plans.
What is population growth?When making long-term road and infrastructure plans, a crucial variable to consider is population growth and demographics. Understanding how the population is growing and changing over time can provide insight into future demands for transportation and other infrastructure. For example, if a region is experiencing rapid population growth, it is likely that there will be increased demand for new roads, bridges, and public transportation systems.
Understanding the age structure of the population is also important, as this can influence the type of infrastructure that is needed. For example, an aging population may require more accessible transportation options, such as public transportation and pedestrian walkways. Other important variables to consider when making road and infrastructure plans include economic development, land use patterns, and environmental sustainability.
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a monohybrid cross is select one: a. a breeding experiment in which the parental varieties have only one prominent trait. b. a breeding experiment in which the parental varieties have only one trait in common. c. a breeding experiment in which the parental varieties differ in only one character. d. the second generation of a self-fertilized plant.
c. a breeding experiment in which the parental varieties differ in only one character. A monohybrid cross is a cross between two P generation (parental generation) organisms that are different in only one specific characteristic.
Organisms from the P generation have the specified characteristic in homozygous form. But for that specific feature, each parent has a unique allele. Geneticists utilise monohybrid crosses to study how homozygous individuals express the heterozygous genes that they inherited from their parents. The dominant genotype is typically determined by this mixture. In a monohybrid cross, both parents have heterozygosity (or are hybrids) for the same (mono) trait. Pea plants' petals may have the characteristic.
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How is the way gel electrophoresis separates dye pigments similar to how electrophoresis separates DNA fragments?
Gel electrophoresis separates dye pigments and DNA fragments in the same way – based on their size and charge. Smaller molecules move quicker and farther than larger ones through the gel matrix when an electric field is applied.
Explanation:Gel electrophoresis is a powerful technique used in laboratories to separate DNA, RNA, or proteins based on their size and charge. The principle behind the separation of dye pigments and DNA fragments using gel electrophoresis is the same – it separates particles based on the size and charge. Molecules in a gel electrophoresis setup move through the gel matrix due to an applied electrical field; smaller molecules move quicker and farther than larger ones. Similarly, in the context of a DNA, shorter DNA fragments will move through the gel matrix more quickly than larger fragments. This is because the larger molecules have more difficulty moving through the gel’s pores than smaller molecules.
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12. how does a eukaryotic cell distinguish the end of a broken chromosome from the end of an intact linear chromosome?
A eukaryotic cell is able to distinguish between the end of an intact linear chromosome and the end of a broken chromosome due to the presence of specific proteins.
Telomerase is able to recognize the telomeres at the ends of the intact chromosome, while ligation enzymes are able to recognize the sticky ends of a broken chromosome. The ability of the cell to distinguish between the two types of chromosome ends is essential for the maintenance of genomic stability and the prevention of genetic disorders.
Eukaryotic cells, as opposed to prokaryotic cells, are characterized by the presence of a membrane-bound nucleus and other organelles within the cell. This cellular structure is associated with a complex genome, which is composed of multiple linear chromosomes. In order for a eukaryotic cell to function properly, it must be able to distinguish between the ends of the chromosomes which are still intact from the ends of the broken chromosomes. The ability to identify these two types of chromosome ends is important for the maintenance of genomic stability and the prevention of genetic disorders.
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explain why a teenage brain may contribute to poor decision-making or judgment
Teenagers' brain cells have been found to quickly create new connections with other neurons, allowing information to move fast and learning to accrue, according to this research.
All areas of the teen brain do not have this high level of connectedness, which may help to explain why adolescents act impulsively and make bad decisions.
Some attribute teenagers' poor decision-making to the frontal lobes being the last part of the brain to grow fully.
The final part of the brain to finish developing is the frontal lobes. Up to the age of 25, this area of the brain must fully grow. Teenagers' poor judgement and decision-making are frequently attributed to underdeveloped frontal lobes. Because judgement, decision-making, impulse control, reduced irrationality, and reduced emotional reactivity are all functions of the frontal lobes, they are to blame for this.
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bronfenbrenner emphasized on: an ecological-systems approach. qualitative analysis. dynamic-systems theory. the use of cross-sectional data.
Bronfenbrenner emphasized: an ecological systems approach.In this case, option A is correct
According to the ecological systems theory of Bronfenbrenner, a child's development is viewed as a complex system of relationships that are influenced by a variety of levels of the environment, ranging from the immediate settings of family and school to more general cultural values, laws, and customs.
Therefore, in order to study a child's development, it is important to consider not only the child and her immediate environment but also how they or interact with the larger environment.
Five different systems—the microsystem, the mesosystem, the exosystem, the macrosystem, and the chronosystem—were used by Bronfenbrenner to categorize an individual's environment.
The ecological systems theory's microsystem level has the most bearing. This includes the child's family and school, which are his or her closest environmental surroundings.
The ecological systems theory of Bronfenbrenner has effects on instructional strategies.
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Which body changes occur during adolescence?
Adolescence typically starts at 10-11 years for girls and 11-12 years for boys. It can be earlier or later. In puberty, children get taller, heavier and stronger.
What happens in adolescence stage?During adolescence the body usually experiences a growth spurt, which is a time of very rapid growth in height and weight. Puberty, which also happens during adolescence, is the time period of maturation where sexual organs mature.
Adolescence, the transition between childhood and adulthood, is a stressful period of life characterised by discernible physical, mental, emotional, social and behavioural changes. Rapid and dramatic physical development.
These include voice changes, body shape, pubic hair distribution, and facial hair. Here's a quick look at the changes that happen: Boys. In boys, the first puberty change is the enlargement of the scrotum and testes.
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the types of interactions that are critical for building complicated cell structures and facilitating cellular processes are - interactions.
The cytoskeleton is a framework that aids in maintaining the internal order and shape of cells. It also offers mechanical support, allowing cells to perform critical processes like division and mobility.
The cytoskeleton is a crucial, intricate, and dynamic component of the cell. It aids during endocytosis (the uptake of foreign materials by a cell) and moves portions of the cell during processes of development and motility. It also anchors organelles in place.
Cytoskeleton. The framework of the cell is made up of a network of lengthy fibers known as the cytoskeleton. The cytoskeleton performs a number of vital tasks, including regulating cellular shape, taking part in cell division, and enabling cell movement.
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how is it that gfp, a gene from jellyfish, can be correctly read to produce the gfp protein in bacterial cells, despite the fact that jellyfish are a multicellular eukaryotic organism while bacteria are unicellular and prokaryotic?
The GFP gene from jellyfish can be expressed in bacteria due to the similarities in the genetic code used by all organisms.
GFP represents green fluorescent protein and is a quality from jellyfish. It's fascinating in light of the fact that it tends to be communicated in microbes, despite the fact that jellyfish are mind boggling, multicellular animals and microorganisms are straightforward, single-celled creatures. Yet, this is conceivable in light of the fact that all living things share a comparative hereditary code. The GFP quality can be embedded into a microscopic organisms' DNA utilizing a plasmid and afterward the microorganisms can peruse the quality and make the right protein. This is on the grounds that the course of quality articulation is comparable across all species, so qualities can be communicated in various life forms.
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In the nucleus, dna is complexed with proteins to form a fine filamentous material called?
In the nucleus, dna is complexed with proteins to form a fine filamentous material called chromatin
DNA is a polynucleotide compound that carries the hereditary characteristics that are unique to the chromosomes. The DNA molecule contains all the genetic instructions needed by all organisms throughout their life cycle. DNA found in the nucleus (nucleoplasm), also present in mitochondria and chloroplasts.
Chromatin is a fine thread found in the cell nucleus consisting of complexes of histone and non-histone chromosomal proteins with eukaryotic cell DNA. Chromatin functions to carry and store parental genes that will be passed on to offspring. Besides that chromatiin also functions to regulate cell metabolism, protein synthesis, and strengthen DNA for mitosis and meiosis.
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Definition of storage in biology
Storage in biology refers to the act of gathering and preserving chemicals or energy for eventual use. This can involve nutrition, energy, and information storage. Storage can also refer to the actual locations of these chemicals or energy, such as cells, organs, or tissues.
What is biology?The scientific study of life and living creatures, including their structure, function, growth, origin, evolution, distribution, and classification, is known as biology. It encompasses physiology, anatomy, genetics, ecology, and biochemistry, among other things. Biology is a vast science that studies how living creatures interact with one another, with their surroundings, and with the physical and chemical universe. It investigates the structure, function, development, and evolution of living creatures, as well as their behaviour, relationships, and environmental functions. It is an interdisciplinary study that integrates information from a variety of disciplines, including mathematics, physics, chemistry, geology, and engineering. Biology is an important component of contemporary life because it helps us comprehend the world around us and how it operates.
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beadle and tatum’s best contribution to how gene expression is understood can be summarized as what
Beadle and tatum’s best contribution to how gene expression is understood can be summarized as one-gene one-enzyme hypothesis.
This thesis states that a single gene carries instructions to produce a specific enzyme, and that each enzyme catalyzes a single step in a metabolic pathway. This thesis handed a foundation for the development of ultramodern genetics and has been the base for all important of our current understanding of gene expression.
Beadle and Tatum's thesis also laid the root for the study of gene regulation, which is the process through which cells control the expression of certain genes. By understanding gene regulation, scientists have been suitable to gain sapience into how cells respond to environmental changes.
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alisha learned from their science teacher that their height resulted from about 700 genes, each contributing a tiny amount of genetic information. this means that their height is due to:
Alisha's height is due to the combined effect of multiple genes (approximately 700) each contributing a small amount of genetic information which are called additive genes.
Additive genes are genes that contribute to a trait by adding their individual effect to the total phenotype. The term "additive" refers to the fact that the effect of each gene is added together to determine the final phenotype.
In an additive model of gene action, the phenotype is the result of the sum of the effects of multiple genes, each with a small effect, and each gene has a similar effect regardless of the presence or absence of other genes. This model contrasts with dominant and recessive models of gene action, where a single gene can have a dominant effect on the phenotype or can be masked by the presence of another gene.
In the case of additive genes, the phenotype is the result of a continuous distribution of many genes, each with a small effect, rather than the presence or absence of a single gene.
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why it is necessary to perform an inoculation procedure in the isolation of microorganisms from a culture sample?
Inoculation is required to isolate microorganisms since this procedure produces isolated colonies of an organism on an agar plate, which aids in the study of that organism's colony morphology.
Inoculation is the act of introducing a disease, bacterium, or virus into a human or other creature. In addition, the word "inoculation" is used more broadly to refer to the purposeful depositing of germs into any growth media, such as a Petri dish used to culture the microbe, or into food components used to make cultured foods such as yoghurt and fermented drinks such as beer and wine.
Inoculation has been used to eliminate smallpox and significantly lower the prevalence of other infectious illnesses such as polio. Inoculation is the act of implanting a pathogen or microbe into a human or other recipient; vaccination is the act of implanting or administering a vaccine; and immunization is the development of disease resistance as a result of the immune system's reaction to a vaccine or natural infection.
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How was disproving spontaneous generation associated with developing principles important to microbiology? Pasteur's experiments with swan-necked flasks supported the concept that microbes in the air were responsible for contaminating nonliving matter. Needham disproved spontaneous generation through his experiments, in which boiled flasks of broth, when covered, became cloudy, teeming with microorganisms after a few days. Spallanzani disproved spontaneous generation through his experiment, in which flasks of meat broth were boiled and then melted shut, preventing the passage of air altogether. Proving spontaneous generation confirmed the existence of microbes.
Pasteur's experiments with swan-necked flasks supported the concept that all the microbes in the air were responsible for the contaminating non-living matter is disproving spontaneous generation so the correct option is A.
This exploration was important to microbiology because it helped to establish the principle of biogenesis, which states that all living effects come from other living effects. This principle is the base for the ultramodern understanding of microbial growth and development.
These findings also handed a base for the study of contagious conditions and the development of treatments and forestallment styles. Incipiently, disconfirming robotic generation was important to microbiology because it helped to establish the origin proposition of complaint, which states that certain conditions are caused by the presence of specific microorganisms.
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glucose transportation into the cells through cell membranes takes place in which order? 1. 2. 3. 4. attachment of insulin to cell receptors
Glucose transportation generates the fuel which is required for energy metabolism in the cell. Its transport into the cell membrane is a step wise procedure.
The active transport of glucose across cell membranes can be carried out by a particular carrier or by a concentration gradient-dependent facilitated transport.
The steps involved are:
Secretion of pro insulin by beta cellsStorage of pro insulin in pancreasTransformation of proinsulin to active formAttachment of insulin to receptorsInsulin release is done in response to elevated calcium concentration in beta cells.
So the answer/sequence is 2→3→4→1.
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The correct question is:
Glucose transportation into the cells through cell membrane takes place in which order?
1. Attachment of insulin to receptors
2. Secretion of proinsulin by beta cells
3. Storage of proinsulin in the pancreas
4. transformation of proinsulin into active insulin
which are examples of source and sink cells in a plant? source: mature leaf; sink: fruit source: flower; sink: fruit source: immature leaf; sink: root source: flower; sink: mature leaf
An example of source cells in a plant is a mature leaf, while an example of sink cells in a plant is fruit.
In general, in plants, there are two types of cells: source cells and sink cells. They both play important roles in the solution transport in the phloem of the plant.
Source cells produce sugars using the photosynthesis system (which happens in the mature leaves or in the green stems) or using hydrolysis of starch (which usually happens in germinating seeds or roots). The product, mainly sugar, is then delivered via the phloem to the sink cells, which are roots, buds, stems, seeds, and fruits.
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