By using electrophoresis, duplex nucleic acid molecules can be divided into different sizes. It is impossible to extend a DNA strand whose 3' end ends in a dideoxynucleotide. A duplex molecule can be created when two sequences of single-stranded nucleic acids come together.
On several kinds of filter paper, single-stranded nucleic acid molecules can become immobilized. The Sanger Chain technique of sequencing is accomplished by adding new nucleotides only to the 3' end of a developing DNA strand.
Frederick Sanger created a technique for DNA sequencing in 1977 known as Sanger sequencing, often referred to as chain-termination sequencing. This technique relies on DNA polymerase amplifying the DNA fragment that will be sequenced and adding modified nucleotides, specifically dideoxynucleotides (ddNTPs).
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the goal of blood doping is to multiple choice alleviate hemochromatosis. enhance aerobic capacity. prevent blood clots. enhance immune function.
The goal of blood doping is to enhance aerobic capacity and is denoted as option B.
What is Blood?
This is referred to as the fluid in the circulatory system which is responsible for the distribution of oxygen via the heart and other vital nutrients to various parts of the body for their optimal functioning.
Blood doping on the other hand is the referred to as the process in which certain drugs or chemicals are taken in other to increase the red blood cells present in the body which increases oxygen intake by the body thereby leading to enhanced aerobic capacity.
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the checkpoint proteins prevent the division of a cell that has dna or abnormalities in the chromosome .
The checkpoint proteins prevent the division of a cell that has DNA or abnormalities in the chromosome .The process of mitotic cell division encompasses mitosis, where the nucleus divides into two nuclei, and , where the mother cell divides into two daughter cells.
Chromosomes are structures determined inside the middle (nucleus) of cells that convey lengthy pieces of DNA. DNA is the fabric that holds genes. it is the constructing block of the human body. Chromosomes also comprise proteins that help DNA exist in the proper shape.
Chromosomes are the highest degree of company of DNA and proteins. the principle feature of chromosomes is to hold the DNA and switch the genetic records from mother and father to offspring. Chromosomes play an critical role for the duration of cell division. They guard the DNA from getting tangled and damaged.
And there are boys and men who have XX chromosomes. this can show up, for instance, when a gene on the Y chromosome ends up on an X chromosome, inflicting that X chromosome to function extra like a Y. There are genes on chromosomes aside from the X or Y that still contribute to sex improvement.
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A nurse is admitting a child who has leukemia and a critically low platelet count. Which of the following precautions should the nurse initiate?
A. Neutropenic
B. Bleeding
C. Contact
D. Droplet Rationale
Answer: bleeding
Explanation: because low platelets means the pt will have slow or no clotting factors which will cause them to continue bleeding when they have a cut.
A nurse is admitting a infant who has leukemia and a severely low platelet count then bleeding is the precautions the nurse ought to initiate. accurate alternative is B. Bleeding.
There are 3 foremost styles of bleeding: arterial, venous, and capillary bleeding. Arterial bleeding happens withinside the arteries, which delivery blood from the coronary heart to the body. Venous bleeding takes place withinside the veins, which convey blood lower back to the heart. Capillary bleeding takes area withinside the capillaries, which are tiny blood vessels that join the arteries to the veins.
Bleeding from the arteries and veins may be severe. When this happens, it is important for someone to acquire instantaneously scientific interest. However, capillary bleeding is the maximum not unusualplace form of bleeding, and it's far typically easy Trusted Source to govern via the utility of strain. Applying strain also can assist with arterial and venous bleeding, at least initially. However, human beings want instantaneously scientific interest in those cases.
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A mutation in a gene leads to a protein that is less sensitive to ubiquitin. Compared with the normal version of this gene, we should expect to see _______ of the _______ of the mutant in the proteasome.
A mutation in a gene ends in a protein this is less touchy to ubiquitin. as compared with the regular model of this gene, we have to expect to see less of the protein of the mutant in the proteasome.
And through the years, a lack of protein can make us lose muscle mass, which in flip cuts our energy, makes it tougher to hold our stability, and slows our metabolism. it is able to additionally cause anemia when our cells don't get enough oxygen, which makes us tired.
Proteasome (26S) is a multimeric complicated whose function is protein degradation through its endoprotease activity. Proteasome acts usually on quick-lived proteins with regulatory functions and on misfolded proteins. Protein degradation is in a specific and green manner, which depends on ATP.
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which of the following are true of alleles? select all that apply.
A. Alleles exist on homologous chromosomes.
B. Alleles occupy corresponding loci on homologous chromosomes.
C. Alleles are different forms of a gene.
The statements that are true regarding alleles are as follows;
Alleles exist on homologous chromosomes (option A)Alleles are different forms of a gene (option C)What are alleles?Alleles are one of a number of alternative forms of the same gene occupying a given position, or locus, on a chromosome.
On the other hand, homologous chromosomes are similar but non-identical chromosomes from each parent of an offspring.
The alleles for a trait occupy the same locus or position on homologous chromosomes and thus govern the same trait. However, because they are different, their action may result in different expressions of that trait.
Therefore, options A and C are the true statements regarding alleles.
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histones are proteins that can interact with some sequences of dna to help it coil into a more manageable arrangement within the nucleus. if the dna-histone interaction is mediated primarily by intermolecular bonds, which of the following is likely true of histones?
There are four styles of histones, named: H2A, H2B, H3, and H4. Customers of each kind of histone form nucleosomes. those nucleosomes are wrapped together in a spiral structure referred to as a solenoid. extra H1 proteins are related to every nucleosome as hyperlinks to maintain the general chromatin structure.
Each histone octamer consists of two copies of every of the histone proteins H2A, H2B, H3, and H4. The chain of nucleosomes is then wrapped into a 30 nm spiral known as a solenoid, wherein additional H1 histone proteins are associated with each nucleosome to maintain the chromosome structure.
The new histones are made inside the cytoplasm for the duration of the S section and are transported into the nucleus. The old histones are disassembled from DNA, probably shielded and chaperoned until they may be reassembled into nucleosomes.
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bacteria may be involved in both the production or food and in its decay. multiple choice 1 false true 2. the presence of microbes in food can be . multiple choice 2 beneficial, harmful, or neutral harmful beneficial or harmful but not neutral beneficial neutral 3. a single species of bacteria grows best at multiple choice 3 a broad range of temperatures ranging from freezing to boiling. a modest range around a minimum temperature. a modest range around an optimum temperature. different temperatures, based on the availability of oxygen. different temperatures, based on nutrient availability. 4. the type of food-borne infection known as an intoxication is caused by multiple choice 4 toxins produced by microbes as they grow in the food. growth of the microbe in the intestinal tract and intestinal lining. toxins produced by the microbe in the intestinal tract. the buildup of oxidative byproducts such as o- in the food. the buildup of microbial waste products such as lactic acid.
True. Both the synthesis of food and its breakdown may involve bacteria. several options.
How is the usage of microorganisms in the food industry?Since ancient times, people have employed yeasts, molds, and bacteria to create foods like bread, beer, wine, vinegar, yoghurt, and cheese, as well as fermented fish, meat, and vegetables. In nature, microorganisms carry out the fermentation processes.
How does our food quizlet relate to microbes?Food containing microbes needs their metabolic byproducts for taste. One illustration is the flavoring of cheese using molds. Some bacteria cause food to decay, whereas others are employed in the production of food products or to enhance flavor.
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sign the components on the following apoptotic pathway, which operates in human immune cells. a death signal is received when a molecule called fas binds its cell-surface receptor. the binding of many fas molecules to receptors causes receptor clustering. the intracellular regions of the receptors, when together, bind proteins called adaptor proteins. these in turn bind to inactive molecules of caspase-8, which become activated and then activate caspase-3. once activated, caspase-3 initiates apoptosis.
The apoptotic pathway in human immune cells is signed:
the binding of many Fas molecules to receptors causes receptor clustering. → the intracellular regions of the receptors, when together, bind proteins called adaptor proteins → a death signal is received when a molecule called Fas binds its cell-surface receptor → these in turn bind to inactive molecules of caspase-8, which become activated and then activate caspase-3. → once activated, caspase-3 initiates apoptosis.How does the apoptotic pathway work?There are two main pathways to apoptosis which are extrinsic and intrinsic. It is mediated by proteolytic enzymes known as capsules that trigger the death of cells by splitting proteins specific to the cytoplasm and the nucleus.
The Fas binds to Fas receptors located in cell surfaces and recruits an adaptor protein, FADD that contains a death domain. The death effector from the domain recruits inactive caspase 8 that splits to generate an active caspase 8 that triggers inactive caspase 3 and activates it to split substrates within the cell and initiate apoptosis.
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If laci were mutated such that the lac repressor could no longer bind dna, what effect would this have on the regulation of the lac operon?.
The repressor protein would not function properly, and the lac operon would be over expressed
What is Lac operon ?An operon, or collection of genes, with a single promoter, is the lac operon. The genes in the operon produce proteins that enable lactose utilisation by the bacteria.
Constitutive expression results from mutations in the repressor that prevent it from binding to the operator. A non-inducible phenotype results from mutations that block the inducer's ability to bind without affecting the operator's ability to bind.The function of LacI is to prevent the lac operon's protein mRNA from being produced. LacZYA mRNA is only very minimally transcribed, but transcription is not entirely eliminated.Learn more about Lac operon here:
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What does natural selection mean and how and can you correlate it to our bacteria.
A scientist looks into a microscope and sees that replicating chromosome pairs are lined up in the center of a cell. The scientist then sees the mitotic spindle from each side of the cell attach to a chromosome. Which mitotic phase is the scientist likely witnessing?.
The mitotic phase which the scientist is likely witnessing when the mitotic spindle from each side of the cell attach to a chromosome is referred to as the metaphase.
What is Mitosis?This is referred to as the type of cell division which involves a single cell dividing into two identical daughter cells and is a common process during the growth of cells in the body.
Mitosis has different phases such as metaphase which is characterized by the replicating chromosome pairs being lined up in the center of a cell and the mitotic spindle from each side of the cell attach to a chromosome.
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which of the following is true of both dna replication and transcription? select all that apply. group of answer choices the new polymer grows from 5' to 3'. the bonds connecting the monomers are phosphodiester bonds. energy is not required to connect the monomers. the template is dna. the monomers are nucleotides.
All the statements are true for both transcription and DNA replication except option C: energy is not required to connect the monomers.
The given statements are all true for both transcription and DNA replication as the new polymer chain grows from 5' to 3'. These chains are made up of monomers called nucleotides. The chain that results after the joining of nucleotides is called a polynucleotide. Energy is obviously needed in every task to perform by the cell, which is generally used in the form of ATP. Thus, only option C in not true.
Due to the fact that when two DNA or RNA sequences are aligned anti-parallel to one another, the nucleotides bases at each position in the sequences will be complementary or like mirror images, the principle of complementarity controls both transcription and DNA replication.
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The product of this reaction, 1,4-diphenyl-1,3-butadiene, is a diene that can exist as 3 possible geometric isomers. Which of these isomers is the main product of the reaction?.
The major outcome of the interaction O A. cis, trans B. Cis C. cis, cis D. trans, trans is these isomers.
Why do you use the term isomers?A nuclide that is isomeric with one or even more others is one of two or more molecules, radicals, or ions that have the same atomic mass of same components but differ in their structural arrangement and characteristics.
What are an isotope and an isomer?Isomers are substances with identical molecular structures but distinct chemical properties. Isotopes are substances that share the same atomic number but have differing atomic masses. Isotones are elements that have a different amount of protons but the same number of neutrons.
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Neural tissue begins as a thickening of a portion of the ectoderm that overlies the ______.
Beginning with the thickening of a section of the ectoderm that lies above the notochord, neural tissue develops.
What are notochords and what do they do?The notochord seems to be the distinguishing feature of the chordates and plays crucial roles in the development of vertebrates. It acts as a major skeletal component of the growing embryo as well as a source in midline signals that design neighboring tissues.
What materials make up a notochord?The notochord is indeed a long, rod-shaped structure that forms dorsally and ventrally of the neural tube. The glycoproteins that make up the majority of the notochord's structure are enclosed in a collagen fiber sheath that is wound into two conflicting helices. The glycoproteins are kept in turgid, vacuolated cells.
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Which of the following characteristics are true about sharks? (Mark all that apply.)
a. Receptors along the shark's sides are sensitive to touch, vibration, currents, sound, and pressure.
b. Sharkskin is extremely abrasive, like sandpaper.
c. Sharks have an acute sense of smell.
Following characteristics are true about sharks:
a. Receptors along the shark's sides are sensitive to touch, vibration, currents, sound, and pressure.
b. Sharkskin is extremely abrasive, like sandpaper.
c. Sharks have an acute sense of smell.
Although there are more than 400 different species of shark in the ocean, they all have a similar fundamental structure. Sharks are distinguished from other species of aquatic life, such as whales and dolphins, by their astounding anatomy, which was expertly constructed by evolution.
You may get a peek of the evolutionary adaptations that have made sharks the perfect predators they are today by understanding the shark anatomy.
Despite the fact that there are hundreds of shark species, there are several universal traits that set them apart from their nearest cousins, rays and chimeras.
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Gene A and Gene B are neccessary for normal hearing. A deaf man married with a deaf women. all childrens have normal hearing. What is the - Geno type of their Parents?
AAbb x aaBB is the Genotype of their Parents.
Normal hearing depends on genes A and B. The marriage of a deaf man and a deaf lady. They give birth to kids with normal hearing abilities. All of the children must have inherited one dominant A or B gene from each parent in order to hear normally. The mother and father's genotypes will therefore be AAbb x aaBB.
An organism's genotype is made up of all of its genetic components. The alleles or variations that an individual carries in a specific gene or genetic region are also referred to as the genotype.
There are three genotype types: homozygous dominant (PP), homozygous recessive (PP), and heterozygous (Pp). The traits are the same in homozygous dominant and heterozygous genotypes.
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Humans are the only host of guinea worms. Successful eradication programs will mean the
extinction of the guinea worm. What is your opinion about humans causing the deliberate
extinction of a living organism?
One of the defining aspects of human existence is our encounters with wildlife. Both good and negative interactions may occur. In addition to eradicating harmful species, coopting and domesticating useful species, and using a variety of social, behavioural, and technical measures to limit unpleasant interactions with wildlife, people compete with wildlife for food and resources.
Numerous species have been reduced or eliminated as a result of this battle, along with the untold number of human casualties and financial losses. There have been an increasing number of successful conservation and coexistence outcomes as a result of recent developments in our understanding of conflict. I list and analyse the causes of conflict, strategies for resolving disputes peacefully, and the most recent trends and discussions.
What is living organism?
Any object that exhibits all the traits of life, including growth, reproduction, and nutrition, is said to be living. A live object is defined as an organism.
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which of the statements can be concluded from gregor mendel's experiments with pea plants?
a. Offspring inherit two alleles per gene from each parent.
b. The inheritance of alleles of one gene does not affect the inheritance of alleles of another gene.
c. For a given trait, two heterozygous parents produce offspring with three possible phenotypes.
d. Only one allele determines the phenotype in heterozygous individuals.
Answer: b. The inheritance of alleles of one gene does not affect the inheritance of alleles of another gene.
Explanation:
Genes that influence weight Match each of the following genes to show their association with weight. Answer choices may be used more than once or not at all 0.5 points Associated mostly with those of European populations Associated with lower rates of heart disease despite obesity ssociated with|May result in obesity obesity at a youngwith high-fat diets eBook May impact body mass index age FTO SH2B1 LCTrs4988235
Genes that influence weight there are:
FTO gene (alpha-ketoglutarate dependent dioxygenase).SH2B1 gene (protein coding)LCT rs4988235 gene (Association of Lactase Persistence Genotypes)What genes that influence weight to the body?The LCT gene performs a normal function. The LCT gene encodes instructions for the production of a lactase enzyme. This enzyme aids in the breakdown of lactose, a sugar found in milk and other dairy products. Lactase is produced by cells that line the small intestine's walls.The SH2B1 gene encodes a member of the SH2-domain containing mediators family. The encoded protein mediates kinase activation and may be involved in cytokine and growth factor receptor signaling as well as cellular transformation.Protein associated with fat mass and obesity, also known as alpha-ketoglutarate-dependent dioxygenase (FTO) which is an enzyme that is encoded by the FTO gene in humans. Variations in the FTO gene are also linked to an increase in body fat composition, metabolite parameters, and metabolic abnormalities associated with obesity, such as type 2 diabetes mellitus. Other genes are involved in the process of regulating food intake and energy expenditure, which underpins the increase in body fat.Learn more about genes that influence weight here: brainly.com/question/17608974
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a gardener is concerned that her greenhouse is getting too hot from too much light and seeks to shade her plants with colored translucent plastic sheets, the color of which allows passage of only that wavelength. what color should she use to reduce overall light energy but still maximize plant growth? a gardener is concerned that her greenhouse is getting too hot from too much light and seeks to shade her plants with colored translucent plastic sheets, the color of which allows passage of only that wavelength. what color should she use to reduce overall light energy but still maximize plant growth? orange blue green any color will work equally well. request answer
If she wants to minimize overall light energy while maximizing plant development, she should utilize blue.
How do you refer to light energy?
When an object is heated, electromagnetic radiation is produced, which is a type of kinetic energy connected to electromagnetic radiation. This electromagnetic radiation is known as light energy. both natural sources, such as the sun, and man-made objects, like as lasers and lightbulbs, can be used as the source.
Light system: what is it?
An intelligent promote efficient of devices for controlling lights is referred to as a lighting control system. relays, monitoring devices, photocells, light switch or touchscreen controls, and signals from many other building systems are some examples of these gadgets.
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How is the movement of paramecium and volvox similar? Both -
move toward light.
O use cytoplasmic streaming.
O use cilia to move.
O move away from light.
Paramecium and Volvox are similar as Both use cilia to move.
Eukaryotes include Volvox, Paramecium, and Euglena. They are single-celled organisms of the Protista Kingdom. They are all made up of nuclei. They have both food and contractile vacuoles.
Volvox rousseletii is a multicellular spheroidal green alga with 5,000 cells that each have two flagella (cilia). Volvox, a spherical alga, swims using flagella on thousands of surface somatic cells.
Volvox are algae cell colonies that propel themselves similarly to ciliated microorganisms, but with synchronized flagella of many inward facing individuals rather than beating cilia.
Paramecium is a genus of eukaryotic, unicellular ciliates that is commonly studied as a ciliate representative. Paramecia are found in a variety of freshwater, brackish, and marine environments, and they are particularly abundant in stagnant basins and ponds.
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What is the difference between Cell Differentiation and Mitosis?
you are walking in the shallows along the beach and accidentally step on a sea urchin. after you take the spines out of your foot, you look up the classification of the animals. it is listed in the phylum . answer mollusca arthropoda echinodermata nematoda chordata
Sea urchin belongs to phylum Echinodermata.
Any member of the phylum Echinodermata is considered an echinoderm. Adults with radial symmetry include starfish, brittle stars, sea urchins, sand dollars, and sea cucumbers, as well as sea lilies or "stone lilies."
Adult echinoderms can be found on the sea floor at any depth, from the intertidal zone to the abyssal zone. The phylum contains approximately 7,000 living species, making it the second-largest deuterostome grouping after chordates. Echinoderms are the largest phylum that is entirely marine. Near the beginning of the Cambrian period, the first definitive echinoderms appeared.
Sea urchins are spiny, globular echinoderms of the Echinoidea class. There are approximately 950 species of sea urchins that live on the seafloor of every ocean and inhabit every depth zone from the intertidal seashore to 5,000 meters.
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impervious surfaces do not absorb water very well. Which of these would be considered an impervious surface? A. parking lot B. sandy beach C. grassy hills
Sandy beaches do not effectively absorb water.
What about impervious surfaces?Impervious surfaces are those that permit little or no infiltration of rainwater into the earth. Impervious surfaces are entirely man-made and, except from exposed natural rock cropping, constitute an artificial component of most ecosystems. Basically, water cannot soak naturally into the ground in constructed regions with large amounts of impermeable surfaces; instead, it rushes over the landscape, bringing pollution and biological contaminants into our rivers, harming fish, wildlife, and people. All hard surfaces, including paved roads, parking lots, roofs, and even densely compacted soils like sports fields, are referred to as "impervious surfaces." Residential roofs, public buildings, parking lots, commercial buildings, and bedrock near the soil's surface are a few examples of impermeable surfaces. Impervious surfaces are generally understood to include heavily compacted soils, concrete, asphalt, roofs, and other construction materials. Impervious surfaces include places like concrete patios, paved roads, driveways, sidewalks, and roofs because they are unable to absorb water. Perviousness is the capacity of a surface to let water pass through a substance. Pavement is impermeable but sand is not. Water will flow off an impervious surface until it encounters a previous surface because water cannot penetrate an impervious surface (such as a lawn).Learn more about impervious surface here:
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Answer: Parking lot
Explanation:
Which would be considered a somatic cell?
Restriction enzymes cleave double-stranded dna at the sites that show a particular type of symmetry; these sequences read the same on both strands and are called palindromes. Which of the sequences is not a palindrome?.
Option C) 5′-CCTCAGG-3′ is not a palindrome as it does not read the same on both the sides.
Endonucleases known as restriction enzymes sever phosphodiester bonds between adjacent nucleotides within or close to particular DNA sequences known as recognition sites. The locations on a polynucleotide strand that are recognized by a restriction enzyme for cleavage are often palindromic in nature. Option C is not a plaindrome because it's complementary strand of DNA would be 3'-GGAGTCC-5' which does not read the same.
When the polarity is maintained in both strands, DNA sequences called palindromic sequences are read in the same direction whether they are read forward or backward. Given in the picture is an example of the restriction enzyme EcoR I's recognition site which is a palindrome.
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Complete question is:
Restriction enzymes cleave double-stranded DNA at the sites that show a particular type of symmetry: These sequences read the same on both strands and are called palindromes. Which of the following sequences is NOT a palindrome?
A)5′-AGATCT-3′
B)5′-CCTGCAGG-3′
C)5′-CCTCAGG-3′
D)5′-CGGCCG-3′
E)5′-GGTACC-3′
What defines a substantial increase in a jellyfish population within a short time?.
A jellies bloom is described as a significant rise in jellyfish numbers over a brief period of time as a function of a higher reproductive rate.
Are jellyfish toxic to humans?On the tendrils of stonefish, which earn their moniker from their shape, are the bio known as fungus spores, which are minuscule darts packed with poison. Within just a few seconds of being stung, those unhappy enough to be sprayed with this toxin may endure cardiac arrest, paralysis, and even death.
What makes jellyfish hurt people?Jellyfish utilize their sting to both catch animals and defend themselves. Their tentacles extend out and fire out spear gun contributed to the rise a neurotoxic venom when they come into contact with humans or other types of prey.
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How is it exactly that plants grow. Please Explain. Brainliest
Answer:
When plants have the right balance of water, air, sunlight and nutrients, their cells grow and divide, and the whole plant gets bigger and bigger. And that's how plants grow.
Explanation:
Answer:
Air/water/sunlight
Plants use a process called photosynthesis to turn sunlight into food in their leaves.
This is how plants grow and survive.
Explanation:
A biologist is studying two organisms, X and Y. She knows that at least one of them is an animal. Organism X only reproduces sexually. Organism Y reproduces both sexually and asexually.
Which conclusion is best supported by the information?
Organism X is an animal, and organism Y is not.
Organism Y has the benefit of not having to find a mate.
Organism X has offspring that are not genetically diverse.
Organism Y is a heterotroph, and organism X is not.
Organism X has offspring that are not genetically diverse.
Genetic diversity is characterised by genetic diversity within a species. Recombination of genetic material during the inheritance process results in genetic diversity. It alters as space and time pass. Because it produces distinct offspring by fusing the DNA of the parents, sexual reproduction is crucial for sustaining genetic diversity.It happens as a result of gene recombination during the inheritance process.The genetic diversity varies over time and space.One of the most important components of genetic diversity is sexual reproduction, which uses a combination of parental genes to create unique children.Genetic variety is also a result of gene mutation, genetic drift, and gene flow.Individuals of the species can adapt to challenging environmental conditions thanks to genetic variety.The ability to adapt to unfavorable environmental conditions, illness resistance, and other physical qualities are given to the individuals.To know more about Genetic check the below link:
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Answer:B
Explanation:
Which body system is formed by all the structures that move blood through the body?.
Answer:
The vascular system, also called the circulatory system
Explanation: