Large molecules made from smaller organic molecules are called macromolecules.
Macromolecules are known as the polymers, that have long chains of subunits known as the monomers. Biological macromolecules are considered as the large molecules, which is necessary for life, and these are made up of smaller organic molecules. Four major classes of biological macromolecules are known as carbohydrates, lipids, proteins, and nucleic acids) they all are essential cell component that performs a wide array of functions.
Majority of macromolecules are also the polymers, they mostly consist of a single unit termed as monomer repeated many times.
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during fertilization which two cells come together
Secondary sperm and secondary oocyte are the two cells that combine during fertilization.
What transpires during fertilization between two haploid cells?The genetic material is integrated in the ensuing zygote cell after a sperm fertilizes an egg. In other words, two independent haploid cells that each contained one pair of chromosomes combine to form a single diploid cell that contained two sets of chromosomes. A new human eventually develops from that zygote cell.
The two cells required for reproduction are what?The two different sex cells, or gametes, are involved in human reproductive process. Female reproductive system is meeting place for the male gamete, or sperm, and the female gamete, or ovum. A fertilized egg is referred to as a zygote when sperm fertilizes it.
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Select all of the characteristics exhibited by BOTH bacterial and eukaryotic cytoplasmic membranes.Check All That ApplyPhospholipid bilayerEmbedded proteinsSterolsSelectively permeable barrierTransport systems
Both bacterial and eukaryotic cytoplasmic membranes share the same properties: phospholipid bilayer, embedded proteins, selectively permeable barrier, and transport mechanisms.
What distinguishes eukaryotic cytoplasmic membranes from those of bacteria?Although most bacteria lack a membrane-bounded nucleus, there is one bacterium with the amazing name Gemmate obscuriglobus that is said to have a double membrane enclosing the DNA in a nucleus-like structure. This is the most notable difference between eukaryotes and bacteria.
What characteristics are shared by bacterial and eukaryotic cells?Structures are shared by bacterial and eukaryotic cells. All cells have DNA, cytoplasm, ribosomes, and plasma membrane. The phospholipid layer enclosing the cell is known as the plasma membrane or cell membrane.
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What is the difference between an aldose sugar and a ketose sugar?
Ketose and aldose are monosaccharides that can be distinguished by the group in which they are found.
An aldose is a monosaccharide with an aldehyde group in its carbon backbone. They're mostly found in plants. Ketose is a monosaccharide with a ketone group on its carbon backbone.
You'll recall that the presence of a hydrogen atom connected to the carbon-oxygen double bond in the aldehyde distinguishes it from a ketone. Ketones lack this hydrogen. Because of the existence of that hydrogen atom, aldehydes are highly quick to oxidize (i.e., they are strong reducing agents).
Aldoses are monosaccharides with a carbon backbone that contains an aldehyde group. These are found predominantly in plants.
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Which of the following is the
stigma,
where pollen lands on
the flower?
A. D
B. C
C. B
D. A
Answer: D
Explanation: The stigma is the part of the pistil where pollen lands and germinates.
Answer: The answer is D
Explanation:
what is the recommended amount of time to leave the catheter clamped when obtaining a urine specimen from an indwelling catheter?
When collecting a urine sample from an indwelling catheter, 30 minutes should be allowed for the catheter to remain clamped.
This gives pee enough time to gather and prevents bladder constriction. In order to prevent contamination, the cap's sterile interior should be facing up.
Clamp the tube below the port for ten to fifteen minutes, or until more urine comes, if more is required. An alcohol swab should be used to clean the catheter's sample port. Most indwelling catheters are not designed to be used for longer than three months, therefore they must be replaced often.
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In which phase of cell cycle, the cell spends the least amount of time? A. G1 phaseB. G2 phaseC. M phaseD. S phase
The cell spends the least amount of time during the M phase. Therefore, the correct answer is option C.
In general, during the human cell cycle or cell-division cycle, cells spend the most time in interphase as it undergoes preparations in order to divide themselves. Around 95% of the cell cycle is spent in interphase.
There are three stages in interphase: G1, S phase, and G2. During these stages, the DNA is replicated. Since all three of them belong to the interphase, that means they take a long time. The M phase (mitosis) is the time when cell division occurs. This phase happens relatively fast compared to the interphase.
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silverswords had no tree and shrub competitors prior to recent human ecological disturbance to the hawaiian islands. descended from a tarweed ancestor that evolved in an environment with many tree and shrub species, its arrival on the islands represented an evolutionary radiation because of a ?
Before recent human ecological disruption to the Hawaiian Islands, Silverswords had no rival trees and shrubs species.
Its arrival just on islands represented an evolutionary radiation because of a variety of open ecological niches because it descended from the a tarweed ancestor which evolved in a habitat with many tree and shrub species.
The Asteraceae family's Hawaiian silversword alliance is a well-known adaptive radiation. The clade hasn't been assigned any fossils, like so many island plant lineages. As a result, it is challenging to check biogeographic hypotheses about radiation because the clade's age and rate of diversification are not precisely known. The term "silversword alliance," also referred to as "tarweeds," describes an adaptive radiation of about 30 species in the Asteraceae, also known as the composite as well as sunflower family.
(Silverswords had no tree and shrub competitors prior to recent human ecological disturbance to the Hawaiian Islands. Descended from a tarweed ancestor that evolved in an environment with many tree and shrub species, its arrival on the islands represented a(n) __because of a(n)__.)
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Select all the statements that correctly describe the cooperative binding of oxygen to hemoglobin.
a. Hemoglobin consists of four heme-bound subunits.
b. Hemoglobin acts as an oxygen store under anaerobic conditions
c. The hemoglobin-oxygen binding curve is sigmoidal.
d. Hemoglobin always binds oxygen tightly
e. Salt bridges between hemoglogbin subunits allow oxygen to bind tightly
a. Hemoglobin consists of four heme-bound subunits. c. The hemoglobin-oxygen binding curve is sigmoidal. The interaction between the four hemoglobin subunits that increases or decreases.
the affinity of each subunit for oxygen is referred to as cooperative binding of oxygen to hemoglobin. This interaction produces a sigmoidal hemoglobin-oxygen binding curve, in which hemoglobin's affinity for oxygen rises as more oxygen molecules attach to the subunits. Hemoglobin consists of four heme-bound subunits. The hemoglobin-oxygen binding curve is sigmoidal. The interaction between the four hemoglobin subunits that increases or decreases. The cooperative binding of oxygen to hemoglobin provides for effective oxygen transport and release in response to changing oxygen levels in the body.
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which type of protein will be translated by a ribosome bound to the rer?
Ribosomes bound to the RER translate secretory and membrane-bound proteins.
Ribosomes bound to the rough endoplasmic reticulum (RER) translate secretory and membrane-bound proteins. These proteins are destined for export out of the cell or for insertion into the plasma membrane, and therefore require proper folding and modification to ensure their proper function. The RER provides a large surface area for ribosomes these processes to occur and also has attached molecular machines, called chaperones, which assist in the folding and modification of newly synthesized proteins. The ribosomes on the RER produce a continuous stream of newly synthesized proteins which enter the lumen of the RER and are transported to their final destination.
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What are three ways athletes can maximize replenishment of their muscle glycogen stores after intense training sessions or a competitive ev a. addition of protein, addition of fiber, and timing b. addition of protein, amount of carbohdyrate, and timing c. addition of fiber, meal size, and timing d. addition
Athletes may increase the replenishment for their muscle glycogen stores in three different ways: by consuming more protein, more carbohydrates, and by timing their meals.
The correct answer is B
How does a protein affect the body?Amino acids are the chemical "building blocks" that are required to create proteins. Amino acids are used by your body to create hormones, enzymes, and to build or repair your muscles and your bones. These could also be used as a source of energy.
What happens if your body doesn't have enough protein?In addition, a protein deficiency may cause gradual loss of muscle mass, which will reduce overall strength, make it more difficult for you to maintain balance, plus slow your metabolism. If your cells aren't getting enough oxygen, you could feel exhausted, which could lead to anemia.
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leaves with large surface areas contain more chloroplasts and can conduct more photosynthesis how is this an adaptation for plants with large leaves?
The large surface area of leaves allows absorption of a large amount of light. In addition, palisade cells present on the upper surface of the leaf, where the light falls, are adapted for light absorption.
What are the functions of palisade cells?Palisade cells are plant cells located on the leaves, right below the epidermis and cuticle that is the outermost layer of the leaf. In simpler terms, they are known as leaf cells.
The palisade mesophyll layer is where most of the photosynthesis occurs in the leaf. The palisade cells contain a lot of chloroplasts to help them perform this photosynthesis. The palisade cells are closely packed together to maximize light absorption.
The palisade parenchyma tissue usually is located on the upper side of the leaf, and the spongy parenchyma on the lower side. There may be only a single layer of palisade cells perpendicularly arranged below the upper epidermis, or there may be as many as three layers.
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which enzyme joins fragments of dna into a continuous strand?
The enzyme that joins fragments of DNA into a continuous strand is called ligase.
Ligase is an enzyme that plays a crucial role in DNA replication, repair, and recombination. It works by catalyzing the formation of covalent bonds between adjacent nucleotides in broken or fragmented DNA strands. This process is called ligation and results in the joining of two DNA fragments into a continuous strand.
Ligases are essential for ensuring the integrity of the genetic material and preventing errors that could lead to genetic disorders or other health problems. There are different types of ligases in cells, including DNA ligases, RNA ligases, and phosphodiester ligases, each with specific functions and target substrates. Overall, ligases play a key role in maintaining the stability and continuity of DNA, ensuring the accurate transmission of genetic information from one generation to the next.
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which of the following forces of evolution increases (on average) genetic diversity within one population? select all that are correct group of answer choices genetic drift natural selection (for an allele conferring fitness benefit) migration to population mutation
Mutation, gene flow, genetic drift, and natural selection are the forces that drives genetic diversity within the population.
What is Evolution?
Evolution is an ongoing process that occurs in all living organisms. It is a process of change over time, and it results in the adaptation of organisms to their environment. There are several forces that drive evolution, some of which increase genetic diversity within a population. These include mutation, gene flow, genetic drift, and natural selection. Each force has its own set of advantages and disadvantages that can affect the genetic diversity of a population.
Genetic diversity is an essential factor in maintaining the health of any population. It is important because it provides a wide range of genetic options that can help a species adapt to changing environments, resist disease, and recover from natural disasters.
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if a genetic study began with your grandparents, which generation would represent you and your siblings? multiple choice question.
If a particular genetic study began with our grandparents, we and our siblings would represent the F2 generation.
Hence, option c is the correct option.
When we are assessing a genetic study, we can observe that there are different generations through which the patterns of inheritance are studied. Parental generation can be defined as the first generation which involves that there are two individuals which are mated to foresee or analyze the genotypes that their offspring will have.
The first generation also known as the F1 generation basically includes the offspring of the parental generation. If our grandparents are the parental generation, the our parent will represent the F1 generation and we along with our siblings would be the F2 generation.
--The given question is incomplete, the complete question is
"If a genetic study began with your grandparents, which generation would represent you and your siblings? a. P b. F1 c. F2 d.F3"--
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which choice represented the main source of food, shelter, and clothing for the plains peoples? A: Wildlife of the Rio GrandeB: BuffaloC: Fields of wheatD: Forest
The right answer is B. The buffalo are said to be the main source of clothing, shelter, and source of food for the people of the plains.
Native Americans who lived on the plains relied heavily on the buffalo. The buffaloes were also referred to as "bison." Buffaloes were used not only for food, but also for housing and the production of clothing.
The women of the plains used the horns of the bison in addition to their skin to create the source for clothing. The dried-out buffalo dunks were used as firewood. Buffalo bones have been carved, used as knives, and when cooked, even used to make glue. They used pemmican, a dried form of buffalo meat.
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what is electromagnetic radiation?
A. the more wavelengths in a light wave in a given period of time, the higher the energy level.
B. all types of electromagnetic radiation arranged by wavelength.
C. light waves, which are waves of energy
D. as waves that vary in wavelength
Answer:
In physics, electromagnetic radiation (EMR) consists of waves of the electromagnetic (EM) field, which propagate through space and carry momentum and electromagnetic radiant energy. It includes radio waves, microwaves, infrared, (visible) light, ultraviolet, X-rays, and gamma rays. All of these waves form part of the electromagnetic spectrum.
Explanation:
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Besides the proteins being processed for distribution, what other components could be expected to be found inside the Golgi apparatus?
a) Ribosomes
b) Enzymes
c) DNA
d) Cytoskeleton
Besides the proteins being processed for distribution, the other components that could be expected to be found inside the Golgi apparatus are option b) Enzymes.
The Golgi apparatus is titled after Camillo Golgi, who discovered a reticular formation in the cytoplasm of numerous cell types using silver chromate staining and originally described it in 1888. Proteins obtained from the ER were thus processed and sorted in the Golgi apparatus, or Golgi complex, where they are eventually transported to lysosomes, the plasma membrane, or secretion.
Proteins called enzymes assist our bodies' chemical reactions move forward more quickly. For several processes, including digestion and liver function, enzymes are crucial. Health issues might result from having too much or too little of a specific enzyme. Substrates are the molecules that enzymes may work upon, and the enzyme changes the substrates into other molecules known as products.
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Unpasteurized fruit juice can be contaminated if there are pathogens in or on the fruit used to make it.a. Trueb. False
Unpasteurized fruit juice can be contaminated if there are pathogens in or on the fruit used to make it. True.
Pasteurization, also known as pasteurisation, is a method of food preservation in which foods, both packaged and unpackaged (such as milk and fruit juices), are subjected to a mild heat treatment, typically at a temperature of less than 100 °C (212 °F), in order to destroy pathogens and increase shelf life. Although most bacterial spores survive the procedure, it is designed to kill or inactivate microorganisms and enzymes, including vegetative bacteria, that contribute to food spoiling or disease risk. The procedure bears the name of Louis Pasteur, a French scientist who discovered via his study in the 1860s that heating wine would destroy undesirable germs.
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the main function of cristae is to group of answer choices facilitate diffusion of substances into the mitochondria. increase chemical transport in mitochondria. decrease the surface area for chemical reactions. increase the surface area for chemical reactions. supply enzymes for reactions.
enlarge the area available for chemical reactions. The mitochondria's inner membrane folds several times.
Cristae is the term for these folds. Function: The cristae increase the surface area that is accessible to boost cellular respiration efficiency. The folds in the inner mitochondrial membrane are known as mitochondrial cristae. Chemical processes, such redox reactions, can occur on a larger surface area thanks to these folds. Give chemical reactions a lot of surface area. Because they significantly enhance the surface area of the mitochondria's inner membrane, the cristae are significant. The crista lumen, the third mitochondrial compartment, is defined by the cristae.
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The main function of cristae is to
increase chemical transport in mitochondria.
facilitate diffusion of substances into the mitochondria.
decrease the surface area for chemical reactions.
supply enzymes for reactions.
increase the surface area for chemical reactions.
the rotator cuff muscles include all except the ______________.
The biceps brachii are not included in the rotator cuff muscles, which are made up of the supraspinatus, infraspinatus, teres minor, and subscapularis.
What are rotator cuff muscles?The four tiny muscles that make up the rotator cuff in the shoulder offer stability to the joint and a wide range of motion.
The supraspinatus, infraspinatus, teres minor, and subscapularis are the muscles that make up the rotator cuff. These muscles are in charge of providing a large range of motion and stabilising the shoulder joint. Above the scapula, the supraspinatus muscle aids in raising the arm away from the body.
On the rear of the scapula, the infraspinatus muscle aids in rotating the arm outward. The teres minor muscle, which is situated on the bottom and back of the scapula, aids in rotating the arm outward as well. On the front of the scapula, the subscapularis muscle aids in turning the arm inward.
The biceps brachii are not a part of the rotator cuff muscles. The biceps brachii muscle, which is found in the upper arm, is in charge of forearm supination and elbow flexion.
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birds and crocodiles share a more recent common ancestor than either group shares with lizards or mammals. lizards and crocodiles have a common ancestor also shared by birds. which statement about the relationships among these organisms is false?
Birds as well crocodiles happen to share a common ancestor which the either group shares with a lizard or a mammal.. Birds and crocodiles are monophyletic but lizards and crocodiles are not but all three of them together form a monophyletic group.
A phylogenetic tree can be basically defined as a diagram which shows related organisms, shared traits as well as common ancestors within a particular monophyletic group. In a phylogenetic tree, there always will be a common ancestor shown.
Birds as well the crocodiles happen to share one common ancestor which the either group happens to share with a lizard or a mammal. Birds and crocodiles belong to a monophyletic group but lizards and crocodiles are not but all three of them together form a monophyletic group.
--The given question is incomplete, the complete question is
"Birds and crocodiles share a more recent common ancestor than either group shares with lizards or mammals. Lizards and crocodiles have a common ancestor also shared by birds. Which of the following statements about the relationships among these organisms is most accurate?
a. Birds and crocodiles are a monophyletic group.
b. Lizards and crocodiles do NOT compose a monophyletic group.
c. Birds, crocodiles, and lizards taken together compose a monophyletic group.
d. Birds, crocodiles, lizards, and mammals taken together also compose a monophyletic group.
e. All of the above."--
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Understand SI If a pollen spore is unable to carry S proteins in its pollen coat, can plants still prevent the germination of this pollen if it is too genetically similar? Multiple Choice a)Yes, in all cases, b)No. c)Yes, but only through sporophytic SI. d)Yes, but only by gametophytic SI.
Yes, plants can still survive only through sporophytic SI, if unable to carry S protiens.
What is Sporophytic SI in plants?Sporophytic SI (self-incompatibility) is a form of reproductive isolation in plants that prevents self-fertilization. It is caused by a genetic locus which codes for S proteins. These proteins identify pollen spores as either self or non-self and prevent the germination of self-pollen. If a pollen spore is unable to carry S proteins in its pollen coat, then it will not be recognized as self and the plant can still prevent its germination by using sporophytic SI.
It is an important mechanism of reproductive isolation in plants and is used by many species to prevent inbreeding. By preventing self-fertilization, it ensures that the genetic diversity of a species is maintained and that the evolutionary potential of the species is maximized.
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an abnormal increase in the forward curvature of the lumbar spine
Lordosis or sway back means an abnormal increase in the forward curvature of the lumbar spine.
What signs and symptoms indicate Lordosis or swayback?
Pain from lordosis can occasionally make it difficult to move. It typically occurs in the lower back, where the inward curve might give the appearance that the buttocks are larger.
A person with a significant amount of lordosis will have space between their lower back and the surface when lying on their back on a hard surface. There is little cause for medical worry if the curvature is flexible (or when it reverses when the person bends forward). The lordosis is fixed if it does not change as the person bends forward, and therapy may be required.
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What happens to the cells pneumonia infects? NEED ASAP !
Answer:
Explanation:
Most pneumonia occurs when a breakdown in your body's natural defenses allows germs to invade and multiply within your lungs. To destroy the attacking organisms, white blood cells rapidly accumulate. Along with bacteria and fungi, they fill the air sacs within your lungs (alveoli). Breathing may be labored.
fill in the blank question. based on cell structure, all life forms can be placed into two categories called and .
Macrophages sometimes produce a chemical called TNF (Tumor Necrosis Factor) in order to alert other cells of the immune system. TNF would be an example of a cytokine.
Cytokines are a broad and loose category of small proteins that are made by certain immune and non-immune cells and have an effect on the immune system. Cytokines are peptides and these cannot cross the lipid bilayer of cells to enter the cytoplasm. Cytokines help on inflammatory reactions as they signal via type1 cytokine receptors(CCR1) which is structurally divergent from other cytokine receptors types. They help in coordinating cell mediated immune response and also modulates the immune response.
Cytokines help in tissue damage repair in the development and progression of cancer. Different types of cytokines are chemokines, interferons, interleukins, lymphokines, and tumor necrosis factor (TNF)[1,2,3,4].
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what advantages do solid media offer for the culture of microorganisms compared to liquid media?
Solid media has the following benefits: (a) Bacteria may be identified by examining the characteristics of the colony; (b) Mixed bacteria can be separated. For isolation of bacteria as cultures, solid media is utilized.
What distinguishes solid culture from liquid culture?Microorganisms are grown on solid media, a form of culture medium. Microorganisms can be grown on liquid media, a form of culture medium. The solid mediums include agar.
What benefit does utilizing solid agar for bacterial growth provide?It is preferred to utilize agar, a polysaccharide made from red seaweed (Rhodophyceae), because it is a non-nutritive, inactive material. The agar gives the bacteria a stable growth surface on which to multiply until the recognizable clusters of cells that we refer to as colonies take shape.
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which appendage provides the ability to attach to surfaces and other cells?
Appendages known as pili (or fimbriae) allow for the ability to adhere to surfaces and other cells. The Latin word pili (or fimbriae) signifies "fringe."
Some bacteria have tiny, hair-like protrusions that stick out from their surface. They are made of polypeptides and aid in the adhesion of the bacteria to surfaces and to one another. They are crucial for the way that bacteria absorb nutrients. Appendages are body appendages, such as arms, legs, wings, fins, antennae, or other specialized organs, that extend from the main body and are utilized for movement or sensing. the bacterium is anchored to a surface. genetic material transfer. serving as a glue. Pili have the role of facilitating toxin entry.
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which molecule is believed to have been the most important to the early protobionts?
a.DNA
b. RNA
c. Protein
Because it is simpler to synthesise than other macromolecules, RNA is thought to have been the first workable macromolecule in protobionts. b. is able to replicate itself, store information, and carry out catalytic activity.
the idea that RNA evolved earlier than DNA and proteins. Pre-RNA molecules would have combined genetic, structural, as well as catalytic functions in the earliest cells, and RNA would have gradually replaced these functions. A group of organic molecules gathered together by abiotic processes and encircled by a non-uniform membrane is referred to as a protobiont. Protobiotics include, for instance, coacervates, which are large, spherical colloidal accumulations of macromolecules. According to many scientists who support this theory, RNA, not DNA, was probably the first genetic material. The RNA global hypothesis refers to this.
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true or false: physiology focuses on the molecular or cellular level to gain an understanding of how organ systems work.
The given statement that, "physiology focuses at the cellular or molecular level to gain an understanding of how the organ systems work" is true because its focuses on body's working mechanisms that can be studies at the molecular/ cellular level
Physiology is the branch of biological science that deals with the functioning and mechanisms of the living body. These functions can be of a single cell, a tissue, an organ or the whole organ system. The various branches of physiology include: plant physiology, animal physiology, cell physiology, medical physiology, etc.
Organ system is the part of the living body that constitutes of various organs working together to accomplish a function inside the body. The organ system can be found in large multicellular organisms. The examples include digestive system, respiratory system, etc.
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in a population of finches, trait t is for talus (leg) color. the allele t codes for black, and t for grey. in tis population, we have an allele frequency of 0.45 t and 0.55 t. what is the expected proportion of offspring who will have the genotype tt?
The expected proportion of offspring who will have the genotype tt is 0.2475, which is calculated by multiplying the allele frequencies together (0.45 * 0.55 = 0.2475).
The Hardy-Weinberg equilibrium principle states that allele frequencies in a population won't vary in the absence of evolutionary factors. Allele frequencies are altered in all populations, though, by mutation, natural selection, genetic drift, and migration. A few years ago, the number of house finches abruptly started to fall. A strain of avian conjunctivitis was the root cause. By dividing the total number of copies of all the alleles at that specific genetic locus in the population by the number of times the allele of interest is observed in a population, an allele frequency can be computed.
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