A biosphere built by me will have the presence of plants, animals, microbes and other resources which are beneficial to the ecosystem.
What is a Biosphere?This is referred to as the portion of the earth which is characterized by the presence of different types of life forms.
A good biosphere must have a constant food supply which is ideal for the growth and survival of the organism. It is best to have plants as they are the primary producers and provide food to other animals. Microbes help in decomposition and other processes and will ensure they are present so as to reduce pollution.
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A
Which of the following is a reasonable claim the researchers can make based on the data in the graphs?
B
C
2
Crabs are more abundant in areas with high salinity than in areas with low salinity.
Crab populations are most limited where salinity range between 10 and 15 psu.
3
Salinity does not influence crab populations because the number of crabs fluctuates across the five sites.
D Crab populations are larger in areas with low salinity than in areas with high salinity.
5
The answer is A. Crabs are more abundant in areas with high salinity than in areas with low salinity is a reasonable claim the researchers can make based on the data in the graphs.
Explanation:
A) Crabs are more abundant in areas with high salinity than in areas with low salinity
This is a reasonable claim because the data in the graphs show that the average number of crabs per trap is higher in sites 1 and 2, which have the highest salinity levels, than in sites 3, 4, and 5, which have lower salinity levels. The claim is also supported by the error bars, which indicate the range of variation in the data. The error bars for sites 1 and 2 do not overlap with the error bars for sites 3, 4, and 5, suggesting that the difference in crab abundance between the high and low salinity sites is statistically significant.
B) Crab populations are most limited where salinity range between 10 and 15 psu.
This is not a reasonable claim because the data in the graphs do not show a clear relationship between salinity and crab abundance in this range. Site 3 has a salinity of about 10 psu and a low average number of crabs per trap, but site 4 has a similar salinity and a higher average number of crabs per trap. Site 5 has a salinity of about 15 psu and a low average number of crabs per trap, but site 2 has a higher salinity and a much higher average number of crabs per trap. The claim is also not supported by the error bars, which show a large overlap in the data for sites 3, 4, and 5, suggesting that the difference in crab abundance among these sites is not statistically significant.
C) Salinity does not influence crab populations because the number of crabs fluctuates across the five sites.
This is not a reasonable claim because the data in the graphs do show a general trend of higher crab abundance in higher salinity sites, as explained in claim A. The claim also ignores the possible effects of other factors that may influence crab populations, such as temperature, food availability, predation, and competition. The claim is too simplistic and does not account for the variability and complexity of the data.
D) Crab populations are larger in areas with low salinity than in areas with high salinity.
This is not a reasonable claim because the data in the graphs show the opposite trend, as explained in claim A. The claim is contradicted by the evidence and does not reflect the data.
1.What would happen to our growth and development if the pituitary gland is damaged or removed? Explain with example.
2.How do insulin and glucagon maintain blood glucose levels?
3.How is the development of secondary sexual characteristics , such as onset of meanstruation, growth of hair, and production of sperm and eggs related to gonads?
okk
If the pituitary gland is damaged or removed, our growth and development are adversely affected.
Insulin reduces blood sugar levels.
The development of secondary sexual characteristics is directly related to gonads.
What would happen if your pituitary gland can't work properly?The pituitary gland is known as the master gland of the endocrine system because it controls many hormone glands in our body. Without Pituitary glands, the body wouldn't reproduce and grow properly and many other functions are not working properly in our body.
Insulin reduces the blood sugar levels in our body and provides glucose to the cell for the production of energy. When blood sugar levels are too low, the pancreas releases glucagon in the blood with help of insulin. Glucagon is a type of hormone that pancreas help to regulate your blood glucose levels. The liver release stored glucose which causes the blood sugar levels in the body to rise.
The pubertal changes in secondary sex characteristics like breast development, fat deposition, development of genitalia, changes in the larynx, and hair growth lead to increasing levels of gonads.
So we can conclude that our growth and development are adversely affected if the pituitary gland is damaged or removed.
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How did DDT nearly drive the peregrine Falcon to extinction in the 1950s and 60’s?
It was frequently employed in the 1950s and 1960s to get rid of insects that ate crops.
Briefing:However, DDT was essentially outlawed in the United States in 1972 after researchers found that birds like the peregrine falcon and bald eagle were eating the pesticide and were unable to hatch offspring due to eggshell weakening.
Is peregrine falcon the fastest animal?The peregrine falcon, the fastest bird and fastest animal in the world, is best renowned for its diving speed when flying, which may reach more than 300 km/h (186 mph). The underparts are white to yellowish white, with black bands on the bluish gray upper parts of the bird.
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What do we call the specialized neurons in the occipital lobe’s visual cortex that respond to particular edges, lines, angles, and movements?.
We call specialized neurons in the occipital lobe’s visual cortex that respond to particular edges, lines, angles, and movements "feature detectors".
What are feature detectors?
Feature detectors are neurons present in the central nervous system, more specifically the brain. They efficiently receive visual information and respond to specific features, such as lines, edges, angles, movement, etc.
What makes these neurons special is the way they help the body respond to some type of visual stimulus that has unique characteristics.
In summary, feature detectors made it possible for humans to identify the shape of an object. A football goal keeper, for example, can easily identify a fast moving round ball and predict the angle to fly so as to complete a save. Identifying that round ball and the angle it is coming at is the function of feature detectors.
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HalpbutIDontActuallyNeedHalp;) *Provided in pictureee*
Brainliest if you my bestieeeeeeee
Answer:
Lysosome
Explanation:
Answer: Lysosome - Found only in animal
which of the following types of molecules are the major structural components of the cell membrane? phospholipids and cellulose proteins and cellulose phospholipids and proteins nucleic acids and proteins
Proteins and phospholipids make up the majority of the cell membrane's structural elements.
What is plasma membrane?
The majority of the plasma membrane is composed of proteins, carbs, and lipids (including phosphatidylcholine). The plasma membrane protects intracellular components from the extracellular environment. The plasma membrane, that also mediates cellular functions, regulates the substances that enter and leave the cell. The majority of the plasma membrane is composed of lipids (phospholipids as well as cholesterol), proteins, as well as carbohydrate groups linked to some of the lipids and proteins. Phospholipids are lipids made up of glycerol, two fatty acid tails, as well as a phosphate-linked head group.
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which of the following is a major difference between prokaryotic cells and eukaryotic cells? prokaryotes are not able to carry out aerobic respiration, relying instead on anaerobic metabolism. eukaryotic cells have more intracellular organelles than prokaryotes. prokaryotes have cells but eukaryotes do not. prokaryotes are generally larger than eukaryotes.
Major difference between prokaryotic cell and eukaryotic cell is that Eukaryotes have more organelles inside their cells than prokaryotes do.
Organelles with two membranes are absent from prokaryotes.
The membrane-bound nucleus, mitochondria, Golgi apparatus, endoplasmic reticulum, chloroplast, and other structures are absent from prokaryotes.
first statement is incorrect because prokaryotes can be strictly aerobic/anaerobic, microaerophilic, aerobic, or both.
second one is incorrect because eukaryotic cells are larger than prokaryotic cells because they contain more organelles.
fourth statement is true as prokaryotes are monocellular, whereas eukaryotes—like yeast—are both monocellular (like animals, plants, and filamentous and colonial algae) and multicellular
Which of the following is a major difference between prokaryotic cells and eukaryotic cells?
a. Prokaryotes are not able to carry out aerobic respiration, relying instead on anaerobic metabolism.
b. Prokaryotes are generally larger than eukaryotes.
c. Eukaryotic cells have more intracellular organelles than prokaryotes.
d. Prokaryotes have cells but eukaryotes do not.
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What is the term associated with the type of compound in a mineral?
Answer: Inorganic
Explanation:
think about the dna coding sequence of a gene. if an a were swapped for a t, what kind of mutation could it cause and why? think about the dna coding sequence of a gene. if an a were swapped for a t, what kind of mutation could it cause and why?
The DNA coding sequence of a gene. if an a were swapped for a t, what type of mutation may want: ought to purpose a silent, missense, or nonsense mutation because those are the kinds that may be a result of a nucleotide-pair substitution like this one.
Deoxyribonucleic acid is a polymer composed of polynucleotide chains that coil around every different to shape a double helix sporting genetic commands for the development, functioning, increase and reproduction of all known organisms and plenty of viruses. DNA and ribonucleic acid are nucleic acids.
DNA is the facts molecule. It stores commands for making different huge molecules, known as proteins. those commands are stored inside each of your cells, disbursed among forty-six lengthy systems referred to as chromosomes. those chromosomes are made from hundreds of shorter segments of DNA, known as genes.
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The DNA coding sequence of a gene. if an a were swapped for a t, option D. It could cause a silent, missense, or nonsense mutation because those are the types that can be caused by a nucleotide-pair substitution like this one.
Human genomes consist of both protein-coding DNA sequences and diverse styles of DNA that don't encode proteins. The latter is a diverse class that includes DNA coding for non-translated RNA, which include that for ribosomal RNA, transfer RNA, ribozymes, small nuclear RNAs, and numerous varieties of regulatory RNAs.
Non-coding DNA corresponds to the quantities of an organism's genome that do not code for amino acids, the building blocks of proteins. a few non-coding DNA sequences are acknowledged to serve useful roles, inclusive of inside the regulation of gene expression, whilst different regions of non-coding DNA don't have any regarded characteristic.
The principle distinction between coding and noncoding DNA is that coding DNA represents the protein-coding genes, which encode proteins, while noncoding DNA no longer encodes proteins.
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Disclaimer:- your question is incomplete, please see below for the complete question.
Think about the DNA coding sequence of a gene. if an a were swapped for a t, what kind of mutation could it cause and why?
a. It could cause a frameshift nonsense or frameshift missense mutation because it would change the reading frame of the codon triplet.
b. It could cause a nonsense mutation because the sequence would no longer be the same, so the protein would be shorter and non-functional.
c. It could cause a silent mutation because A and T are complementary to each other so it is not really a substitution mutation.
d. It could cause a silent, missense, or nonsense mutation because those are the types that can be caused by a nucleotide-pair substitution like this one.
which of the following statements about the cytoskeleton is true? the cytoskeleton is produced by transport vesicles of the endomembrane system. chemicals that block the assembly of the cytoskeleton would have little effect on a cell's response to external stimuli. although microtubules are common within a cell, actin filaments are rarely found outside of the nucleus. the cytoskeleton of eukaryotes is a static structure most resembling scaffolding used at construction sites. movement of cilia and flagella is the result of motor proteins causing microtubules to move relative to each other.
The answer is yes this is true, the dynamic aspect of cytoskeletal function is made possible by the assembly and disassembly of a large number of complex proteins into larger aggregates. There are three types of the cytoskeleton: actin filaments (microfilament), microtubules, and intermediate filaments.
What does cytoskeleton mean?All cells, including those of bacteria and archaea, have a complex, dynamic network of interconnecting protein filaments called the cytoskeleton. It stretches from the cell nucleus to the cell membrane in eukaryotes and is made up of identical proteins in different animals.The cytoplasmic protein filament and microtubule network that regulates cell shape, upholds intracellular structure, and participates in cell motility. Examples of Other Words from Cytoskeleton More information on the cytoskeleton.Contractile bundles (found in muscle cells), the MTOC, the nuclear lamina, and the intermediate filament-based 'cage' that forms around the nucleus from flexible cables at the cell surface to the core of the cell are a few examples of higher-order cytoskeleton structures.Hence, the above statement is true.
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Explain radiometric dating. Provide an example of how this process is used to determine absolute age.
Radiometric dating is a method of determining how old something (perhaps a wooden artifact, stone, or fossil) is based on the presence of radioactive isotopes.
The basic logic behind radiometric dating is to determine the age of the sample by comparing the presence of radioisotopes in the sample to their known abundances and known half-lives (decay rates) on Earth.
Radiometric dating helps determine the age of ancient objects because many radioactive materials decay slowly. Rock age is determined by radiometric dating, which examines the proportions of two different isotopes in the sample.
Because radioactive isotopes decay at predictable rates, geologists can use instruments like this thermal ionization mass spectrometer to date samples. The half-life of an element is the time it takes for exactly half the amount of that element to decay. The age of a sample can be determined from the ratio of parent and daughter isotopes in the sample.
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arthropod exoskeletons and mollusk shells both . help to retain moisture in terrestrial environments. completely replace the hydrostatic skeleton found in annelids. are secreted by the mantle. are comprised of the polysaccharide molecule chitin.
The correct option is a. help retain moisture in terrestrial environments.
Both arthropods and mollusks have robust chitinous exoskeletons. High levels of calcium carbonate minerals also contribute to the mollusc exoskeleton's rigidity. Arthropods' exoskeletons do not develop along with the rest of the animal, in contrast to mollusk shells.
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. which of the following correctly identify which organs develop from different embryonic tissue layers in a frog? liver develops from endoderm, nerves develops from mesoderm, muscles develop from ectoderm brain develops from endoderm, heart develops from mesoderm, epidermis develops from ectoderm liver develops from endoderm, heart develops from mesoderm, brain develops from ectoderm notochord develops from endoderm, liver develops from mesoderm, eye lens develops from ectoderm
The following correctly identifies which organs develop from different embryonic tissue layers in a frog is Gastrula.
The ectoderm gives rise to the nervous system and epidermal skin cells the mesoderm gives rise to the muscle cells and connective tissue in the body, and the endoderm gives rise to the digestive system and other internal organs. The fertilized egg becomes a hard ball of cells increase. It then becomes a hollow ball of cells called a blastocyst In the uterus the blastocyst nests in the uterine wall.
Attaches to the placenta and develops into an embryo surrounded by a fluid-filled membrane. Gastrulation is defined as an early developmental process in which the embryo transforms from a one-dimensional layer of epithelial cells and reorganizes into a multilayered and multidimensional structure called the gastrula. Cotyledons are the primary cell layer formed during embryonic development.
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What is the probability of the parents having a child who is homozygous dominant for this trait?
0%
25%
50%
75%
There is a 25% chance that the parents will have a child who is homozygous dominant for this feature.
One of the characters in the supplied question possesses both the Y dominant allele and the Y recessive allele. The trait encoded as Yy cross with Yy is heterozygous in both parents.
The intersection of Yy X Yy
One in four children will have a recessive trait if both parents only have one copy of the recessive gene.
Children are born: YY: 2Yy: yy
For dominant, homozygotes would be represented. - YY
Thus, one YY out of every four offspring.
(1/4)*100
= 25%
Therefore, 25% would be the probability.
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What did West Virginia change in its constitution compared to that of Virginia?
West Virginia compared to that of Virginia does not feature a process for initiated constitutional amendments in their constitution.
What is constitution?A constitution is described as the aggregate of fundamental principles or established precedents that constitute the legal basis of a polity, organization or other type of entity and commonly determine how that entity is to be governed.
The state of west Virginia has some differences in their constitutional amendment processes which is means that they do not feature the process for initiated constitution amendment.
Therefore in conclusion, amendments in West Virginia can only be put on the ballot done either through referral by the legislature or by a constitutional convention.
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Many plant seeds are able to survive the fires common to the chaparral biome. please select the best answer from the choices provided t f
Answer:
True
Explanation:
A chunk of the plants that are found in the chaparral biome are resistant to the common flames.
how is muscle contraction stimulated by calcium ions? i. calcium ions are released from the sarcoplasmic reticulum and bind to myosin, stimulating atpase activity. ii. calcium ions are released from the sarcoplasmic reticulum and bind to tropomyosin, stimulating its atpase activity. iii. calcium ions are released from the sarcoplasmic reticulum and bind to actin, promoting its binding to myosin. iv. calcium ions are released from the sarcoplasmic reticulum and bind to troponin c, promoting the binding of myosin to actin. v. none of the other options.
Further explanation:
Muscle contraction is a state which the muscle fiber becomes tense and may shorten.Calcium, which is stored at extremely low amounts in the sarcoplasm, is required for contraction. Calcium ions bind to troponin when they are present, creating conformational changes in troponin that allow tropomyosin to migrate away from the myosin binding sites on actin.to know more about muscle, go to:
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which of the following are methods used by biologists to distinguish different species? multiple select question. observing the outward appearance of individuals assessing whether the organisms occupy the same space determining evolutionary relationships and lineages determining if individuals physically interact with one another assessing the ability of individuals of different groups to successfully interbreed analyzing dna or other molecular sequences
The methods used by biologists to distinguish different species are: analyzing DNA or other molecular sequence
observing the outward appearance of individuals
assessing the ability of individuals of different groups to successfully interbreed
determinating evolutionary relationships and lineages
determining the organisms' ecological niches
Scientists use many ways to distinguish different species. Scientists use the DNA of organisms to look for similarities and differences in them. Based on these similarities and differences, they are able to distinguish species.
Assessing the physical traits of an organism also helps in differentiating it from other species.
Evolution is also a big key to determining the relationship and differences among species.
The place where an organism lives and its ecological nice also help in determining the differences and similarities in species.
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what is an r factor? a. it's a jumping dna that can cut itself out from one region of the chromosome, then insert itself in another location of the same or different chromosome. b. it's a plasmid that carries a number of resistant genes. c. it's a section of the phage dna that can be transferred among different bacterial hosts. d. it's a bacterial toxin many pathogens can produce.
An r factor is It's a section of the phage dna that can be transferred among different bacterial hosts.
The correct option is C.
Where are chromosomes found?Each cell's cell nucleus chromosomes, which are structures that resemble threads and carry the DNA molecule. Each chromosomes is constructed from DNA that has been tightly wound around proteins known as histones numerous times to maintain its structure.
What is the main function of a chromosome?DNA may be accurately duplicated during these cell divisions thanks to chromosomes. So, once again. Our cells' nuclei include chromosomes, which enable precise DNA replication during cell division. It guarantees that our internal processes go properly and easily.
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how does the structure of the plasma membrane determine the permeability of various types of molecules? give examples of molecules which can and can not freely diffuse through the membrane.
The plasma membrane's capacity to let some chemicals through while preventing others is known as selective permeability.
What causes permeability in cells?A phospholipid is a type of lipid composed of glycerol, two fatty acid chains, and a group that contains phosphate. The hydrophilic (water-loving) head is made up of the phosphate group, and the hydrophobic (water-fearing) tails are made up of the fatty acid chains.
Function of PhospholipidsA stable partition containing phospholipids separates two water-based compartments. The inside of the membrane is formed by the hydrophobic tails attached to it. The hydrophilic heads on the opposite end, which face outward, are exposed to aqueous fluids both within and outside of the cell.
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A petri dish contains one yeast cell whose nucleus contains 24 chromosomes. After the cell undergoes one round of its cell cycle, it will contain __ cells, each with ___ chromosomes.
A petri dish contains one yeast cell whose nucleus contains 24 chromosomes. After the cell undergoes one round of its cell cycle, it will contain 48 cells, each with 24 chromosomes.
What is the Cell cycle?The cell cycle may be defined as the entire sequence of events happening from the termination of one nuclear division to the initiation of the next in a series of steps.
It is known that a yeast cell undergoes mitotic cell division. In mitosis, each parental cell produces two daughter cells with identical genetic material in each of them. So, the amount of chromosomes remains the same, i.e. 24 but the cell number increase twice.
Therefore, after the cell undergoes one round of its cell cycle, it will contain 48 cells, each with 24 chromosomes.
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Which of the following could lead to the formation of a jet stream?
Winds fall from the high atmosphere
A decrease in radiation from the sun
Large warm and cold air masses meeting
Slowing conduction from the ground
Answer:
Large warm and cold air masses meeting
Explanation:
Jet streams are formed by warm and cold air masses meeting in the atmosphere.
in this experiment you observed the effect of stimulating the isolated skeletal muscle multiple times in a short period with complete relaxation between the stimuli. describe the force of contraction with each subsequent stimulus. are these results called treppe or wave summation?
The isolated skeletal muscle was stimulated multiple times in a short period of time while completely relaxed, resulting in an increase in contraction force. This is known as treppe.
Explain force of contraction?The term contraction is used to describe the generation of muscle force in general, and it emphasizes the fact that muscles can only produce tensile force (or contractile force). When a single action potential is delivered to a muscle, it produces a brief burst of force known as an isometric twitch.The force generated by a muscle is proportional to its length and shortening velocity. Many key biomechanical properties, such as running speed, strength, and jumping distance, are limited by these two fundamental properties.Isometric: A muscular contraction in which the muscle length does not change. Isotonic: A muscular contraction in which the muscle length changes. An eccentric contraction is an isotonic contraction in which the muscle lengthens. A concentric contraction is an isotonic contraction in which the muscle shortens.To learn more about force of contraction refer to :
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oxygen enters seawater: group of answer choices through the respiration of animals. through the oxidation of metal ions in seawater. as a result of decomposition of plant and animal remains. as a byproduct of photosynthesis and diffusion from the surface
oxygen enters seawater as a byproduct of photosynthesis and diffusion from the atmosphere.
The conversion of sunlight, carbon dioxide (CO2), and water into food (sugars) and oxygen is known as photosynthesis. Algae, certain bacteria, and plants all use this process. To assist in the creation of clean fuels and renewable energy sources, this article will examine the basic concepts of photosynthesis and related studies. The two forms of photosynthetic processes are anoxygenic and oxygenic, respectively. Despite the fact that they both operate on very similar principles, oxygenic photosynthesis, which is found in plants, algae, and cyanobacteria, is the more prevalent process.
Light energy converts CO2 into carbohydrates by transferring electrons from the water (H2O) absorbed by plant roots during oxygenic photosynthesis. The CO2 is "reduced," or gains electrons, while the water is "oxidised," or loses electrons, during this transfer. Carbohydrates and oxygen are both created.
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Which of the following is always represented by a chemical formula?
elements ions compounds mixture
the lysis buffer used in this lab exercise is a generic bacterial lysis buffer. that means it does a decent job lysing common bacteria, such as gram positive and gram negative bacteria. lysozyme is included in this buffer to degrade peptidoglycan. thick layers of petidoglycan prevent the other components of the lysis buffer from being able to access and destabilize the cell membrane and, therefore, reduce lysis efficiency. if the lysozyme were to have been left out of the buffer when it was prepared, how would that influence the extractions that you performed?
(D) "There would be a minimal reduction in efficiency since both isolates were Gram negative." is how would that influence the extractions that you performed.
For the purpose of dissecting cells for use in molecular biology investigations that examine the labile macromolecules of the cells, lysis buffers are buffer solutions (e.g. western blot for protein, or for DNA extraction). To control the pH and osmolarity of the lysate, most lysis buffers include buffering salts like Tris-HCl and ionic salts like NaCl.
In healthcare settings, gram-negative bacteria can cause diseases such pneumonia, bloodstream infections, wound or surgical site infections, and meningitis. Gram-negative bacteria are becoming more and more resistant to the majority of existing antibiotics, as well as to a number of other medications.
Since both isolates were Gram negative, there would be a little drop in efficiency.
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Question correction:
The lysis buffer used in this lab exercise is a generic bacterial lysis buffer. That means it does a decent job lysing common bacteria, such as Gram positive and Gram negative bacteria. Lysozyme is included in this buffer to degrade peptidoglycan. Thick layers of petidoglycan prevent the other components of the lysis buffer from being able to access and destabilize the cell membrane and, therefore, reduce lysis efficiency. If the lysozyme were to have been left out of the buffer when it was prepared, how would that influence the extractions that you performed?
A. There would be a marked reduction in efficiency since both isolated were Gram positive. Incorrect The extraction would fail as lysozyme is absolutely required.
B. Salmonella isoaltes would have minimally reduced efficiency while non-Salmonella isolates would have markedly reduced efficiency.
C. Salmonella isoaltes would have markedly reduced efficiency while non-Salmonella isolates would have minimally reduced efficiency.
D. There would be a minimal reduction in efficiency since both isolates were Gram negative.
Paleontologists find a fossil ape with long arms. What type of environment can they infer it inhabited?.
Woodland is the type of environment can they infer it inhabited for the fossil
How can I train to be a paleontologist?
a degree from an accredited university in geology, earth sciences, paleontology, or a similar field. understanding of conducting field surveys in a variety of, occasionally difficult, meteorological and environmental situations. Ability to create and analyze stratified cut samples from the Earth utilizing large machinery.
Paleontologists are scientists who use fossilized organisms to reconstruct the past of life on Earth. Fossils are traces of previous life on Earth and might be casts or remains of animal bodies (body fossils). Another sort of fossil are traces.
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pollen tubes multiple choice transport pollen to the stigma. allow sperm to fertilize the egg. are present during spermatogenesis. package sperm into pollen granules. facilitate the growth of pollen.
Pollen tubes allow sperm to fertilize the egg.
A pollen tube is generated from the pollen that extends down its style into the ovule during pollination process of higher plants. Pollen nuclei move down the pollen tube and fertilize the ovule after the pollen germinates upon that stigmatic surface.
Sperm- An ovum (egg cell), which would be produced by the a biologically female body, is the target of a sperm cell, which is intended to be discharged during sexual activity. Once they are joined, the sperm will enter the egg and fertilize it to produce new genetic material. A pollen grain is a microscopic male gametophyte or male plant (gamete-forming plant).
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How is the taiga important to birds from other biomes? why can’t the summer birds live in the taiga year round? (site 1)
Taiga is important as it provides a pleasant climate.
The taiga is crucial for the summer birds as a biome because it gives them a more comfortable environment and enough food during the summer when in the southern biomes it is considerably hotter and there is much less food and water available. However, the taiga only offers these favorable circumstances in the summer.
Due to the taiga's extremely cold climate, where the majority of the years see temperatures as low as -40 and -50 degrees regularly, the ground is frozen as are the tree branches, and there is a severe lack of food, summer birds are unable to live there year round and must migrate south as the summer in taiga comes to an end.
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which events are potential effects of a point mutation within a protein coding gene? an extra sequence of amino acids is inserted in a protein, but the protein still functions. a nucleotide is replaced with another nucleotide, but the amino acid sequence remains the same. a segment containing many nucleotides is added, and the amino acid sequence changes. an incorrect amino acid is placed in a protein, and it affects how the protein functions. a nucleotide is used in place of another, and the change results in a stop codon.
An event which is a potential effects of a point mutation within a protein coding gene is: B. a nucleotide is replaced with another nucleotide, but the amino acid sequence remains the same.
What is a nucleotide?A nucleotide can be defined as the subunit of deoxyribonucleic acid (DNA) or ribonucleic acid (RNA) which typically comprises a nitrogenous base. Additionally, some portion of the nucleotide include the following:
A nitrogenous base.A phosphate group.Deoxyribose sugar (5-carbon sugar).What is point mutation?Point mutation can be defined as a type of genetic mutation that occurs in a genome, which typically changes a deoxyribonucleic acid (DNA) or ribonucleic acid (RNA) when a single base pair is deleted, added, modified or changed (altered).
In Genomics, it has been proven by scientific research that when a point mutation occurs within the protein coding gene, it typically causes a nucleotide to be replaced by another nucleotide, while the amino acid sequence of the nucleotide would remain the same.
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