What are the structural properties of bone?

Answers

Answer 1

The structural properties of bone include crystals of apatite and collagen fibrils.

In-ground vertebrates, one of the primary purposes of bone is to provide the animal with support and also to act as a framework to which the animal's muscles can be linked. Musculature can then be joined to the framework. Because of this, the mechanical characteristics of bone are an essential property of this material.

Crystals of apatite and collagen fibrils make up the majority of bone's architecture. Bone is a composite material that is created biologically and is made up of two key structural components. In order to do a computational analysis of the mechanical characteristics of bone, certain assumptions regarding the geometric and topological interactions between its components are required.

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Related Questions

what body system provides active defense against pathogens

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The immune system protects your kid's frame from outdoor invaders. These encompass germs which include bacteria, viruses, and fungi, and toxins (chemical substances made through microbes).

The immune system is made up of various organs, cells, and proteins that paintings together. The immune gadget has a essential role: It protects your frame from dangerous substances, germs and cell modifications that would make you ill. It is made from numerous organs, cells and proteins. The immune system may be activated through plenty of various things that the body doesn’t understand as its own. These are referred to as antigens. Examples of antigens encompass the proteins at the surfaces of bacteria, fungi and viruses.

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non-coding
regulatory region
Which three questions should the scientists investigate in order to better understand the reason that some stickleback fish have pelvic spines and some do not?
O
How does the non-coding regulatory region affect Pib1?
Are there differences between the Pitx1 gene in fish with and without pelvic spines?
How did the scientists figure out that Pitx1 is related to the development of pelvic spines in stickleback fish?
Are there differences between the non-coding regulatory region in fish with and without pelvic spines?

Answers

Pelvic spines provide stickleback fish with a defense against such predators

Why do some sticklebacks lack pelvic spines?Some stickleback populations lack pelvic spines as a protective adaptation. There are some predators that can grab sticklebacks by their pelvic spines. Not having a pelvic spine makes it more difficult for predators to grad and eat sticklebacks."But other predators like dragonfly larvae can grab sticklebacks by the spines, reel them in and eat them. They wait for sticklebacks to swim by and grab them." So some lake stickleback populations evolved without pelvises and pelvic spines because those without pelvic spines were more likely to surviveSince the first generation of stickleback fish must have a heterozygous genotype (Ff) [bred between pure-breeding pelvic spine fish and pure- breeding no pelvic spine fish], this indicates that the “grow-a-pelvic-spine-allele” is dominant.

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A student has obtained a sample of pond water for study. Using the high-power lens, he observes several cells with nuclei. He can conclude that the cells are NOT bacteria.

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True, Using the high-power lens,  observes several cells with nuclei and can conclude that the cells are not bacteria.

Prokaryotic creatures include bacteria. Because they are prokaryotes, bacteria lack nuclei in their cells. The cytoplasm itself contains their genetic material, or DNA. Therefore, if the observed cells include a nucleus and other membrane-bound organelles, this indicates that those cells were not the bacterial cells. Additionally, bacterial cells lack additional membrane-bound organelles like mitochondria and endoplasmic reticulum.

The cell structure of bacteria is more straightforward than that of many other microorganisms. A single loop of DNA serves as their command center and houses all of their genetic information. Instead of a nucleus, some bacteria have a plasmid—an additional circular structure containing genetic material. Genes that offer the bacterium an edge over rival germs are frequently found in plasmids. By way of illustration, it might have a gene that renders the bacterium resistant to a specific drug.

Cocci, rod-shaped bacilli, spiral-shaped spirilla, comma-shaped vibrios, and corkscrew-shaped bacteria are divided into five groups based on their basic forms (spirochaetes). They can exist individually, in pairs, chains, or clusters.

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patterns of inheritance problems monohybrid crosses

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In a monohybrid cross, an organism is crossed for a single trait that is controlled by one gene. The genes for this trait can exist in different variations, known as alleles.

For example, in a monohybrid cross involving the gene for seed color in pea plants, the dominant allele (T) codes for tall plants, and the recessive allele (t) codes for short plants. A monohybrid cross between a tall plant (TT) and a short plant (tt) would result in all tall plants (Tt) in the first generation (F1). this is an illustration of Mendel's Law Of Dominance. Monohybrid crosses can also be used to understand Mendel's Law of Segregation, which states that the two alleles for a trait segregate (separate) during the formation of gametes and randomly come together during fertilization.

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What structural features differentiate polysaccharides from polypeptides and nucleic acids?

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Polysaccharides are molecules formed of sugar monomers such as glucose, galactose, fructose, and so on, whereas polypeptides are molecules built of amino acids, and these amino acids are of 20 various sorts.

Nucleic acids are biopolymers, or macromolecules, that are necessary for all known forms of life.  Nucleotides are monomers made up of three components: a 5-carbon sugar, a phosphate group, and a nitrogenous base. Deoxyribonucleic acid (DNA) and ribonucleic acid (RNA) are the two primary types of nucleic acids (RNA). The polymer is RNA if the sugar is ribose; DNA if the sugar is the ribose derivative deoxyribose.

Nucleic acids are naturally occurring chemical substances that function as the principal information-carrying molecules in organisms and comprise the genetic material.

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Explain : The chloroplast in corn plant appears under the light microscope as a convex lens

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Under a light microscope, corn plant chloroplasts can be seen as convex lenses. This is due to their double membrane surrounding a stroma, which contains various organelles including thylakoids, granum, and more.

The curved, dome-like shape of the chloroplasts is created by the thylakoids, which are arranged in a way that allows the plant to absorb light in order to photosynthesize.

The pigments within the chloroplasts give them their green color, which can be seen under a microscope. The convex lens-like shape of the chloroplasts is essential for the plant to convert light energy into chemical energy and carry out photosynthesis.

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how long does it take for an unburied body to decompose to a skeleton

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In a temperate environment, it typically takes three weeks to several years for a corpse to disintegrate into a skeleton, depending on circumstances such as temperature, humidity, the presence of insects, and submersion in a substrate like as water.

Skeletonization refers to the condition of a deceased organism following decomposition. Skeletonization is the last stage of decomposition in which the soft tissues of a corpse or carcass have deteriorated or dried to the point that the skeleton can be seen. All soft tissue will have been removed by the conclusion of the skeletonization process, leaving just disarticulated bones.

In a temperate environment, it typically takes three weeks to several years for a corpse to disintegrate fully into a skeleton, depending on circumstances such as temperature, humidity, the presence of insects, and submersion in a substrate like as water.

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portion of the autonomic nervous system that arises from the brain and spinal cord, it is called ____

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Portion of the autonomic nervous system that arises from the brain and spinal cord, it is called peripheral nervous system

The nerves that branch out from the brain and spinal cord comprise the peripheral nervous system. These nerves serve as a link between the CNS and the rest of the body. The somatic nervous system and the autonomic nervous system are subsets of the peripheral nervous system.

What are the three main components of the peripheral nervous system?

Parts of the nervous system outside of the brain and spinal cord are referred to as the peripheral nervous system. The cranial nerves, spinal nerves and their roots and branches, peripheral nerves, and neuromuscular junctions are all included.

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what can a dna microarray teach us about oncogenes and tumor suppressor genes?

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DNA microarray technology is a powerful tool that can be used to study the genetic changes that occur in cancer cells.

It allows for the simultaneous analysis of the expression levels of thousands of genes in a single sample.

With respect to oncogenes and tumor suppressor genes, DNA microarrays can provide information about which of these genes are overexpressed or underexpressed in cancer cells compared to normal cells.

Oncogenes are genes that have the potential to cause cancer when they are activated (turned on) inappropriately. DNA microarray analysis can identify which oncogenes are overexpressed in particular cancer and this information can be used to develop targeted therapies that block the activity of these oncogenes.

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When you lift an object, you're using ____ energy that was stored in your body. A Mechanical B Chemical C Thermal D Electrical

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Chemical Energy, Option B You use chemical energy that was stored in your body when you raise an object. Your muscles flex as you lift something, using molecules stored energy.

When bonds between atoms and molecules are broken, chemical energy that has been stored in those bonds is released. To fuel movement, adenosine triphosphate (ATP) is used. Lifting the thing requires the conversion of chemical energy held in the ATP molecules into mechanical energy. When bonds between atoms and molecules are broken, chemical energy that has been stored in those bonds is released. To raise an item, chemical energy that has been stored in the form of ATP must be converted into mechanical energy.

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tubes that extend from each epididymis to the urethra, called?

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Vas deferens is the tubes that extend from each epididymis to the urethra.

Vas deferens is a tube that stores sperm and transports it out of the scrotal sac. The vas deferens runs between the epididymis and the urethra, connecting them.

A ductus deferens is also known as a sperm duct. The ejaculatory duct is a long muscular tube that runs from the epididymis into the pelvic cavity behind your bladder and connects to your urethra.

The vas deferens is a muscular tube that extends from the epididymis into the pelvic cavity and ends just behind the bladder. The vas deferens transports mature sperm to the urethra before ejaculation.

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what does transcription allow a cell to do and why is this important?

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Transcription factors enable cells to conduct logic operations and incorporate information from multiple sources to "decide" whether to express a gene.

Introduction to transcriptionBecause a single mRNA molecule can produce several proteins, RNA transcription is an effective control point. Transcript processing provides an additional degree of control for eukaryotes, which is enabled by the presence of a nucleus.The process by which a cell creates an RNA copy of a portion of DNA in biology. This RNA copy, known as messenger RNA (mRNA), conveys the genetic information required for a cell to produce proteins. It transports information from the nucleus of the cell's DNA to the cytoplasm, where proteins are produced.

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what strructures can be seen during the interphase

Answers

Answer:

The nuclear envelope surrounds the nucleus.

Explanation:

The stuff around the nucleoil contained within the envelope is DNA. I see that u are new. Welcome to brainly.

do you think this type of genetic testing should be available? what are the advantages and disadvantages of knowing what is in your genes?

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Genetic testing can be a valuable tool for understanding a person's risk for certain diseases and can help people make informed decisions about their health.

Genetic testing can be beneficial for early detection and prevention of inherited diseases, for identifying genetic conditions that may affect a pregnancy and for guiding treatment options for certain diseases. Genetic testing can be difficult to interpret, and they can raise ethical, legal, and social issues. Genetic testing can also have emotional and psychological effects, such as anxiety, depression, or guilt. Genetic testing can be a useful tool, but it is important to consider the potential risks , diseases and benefits before making a decision to undergo testing.

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which is one of the primary goals of the human genome project

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The human genome project's major objective is to discover the 20,000 to 25,000 genes that form the human genome.

What is THE HUMAN GENOME PROJECT?

HGP is a scientific research project that successfully sequenced the whole human genome of 3.3 billion base pairs in 2003.

The following are the particular aims of the human genome project:

Analysis of data optimization.The complete genome is being sequenced.The full human genome has been identified.To hold the data, genomic sequence databases are being created.Taking care of any legal, ethical, or societal difficulties that may arise as a result of the project

As a result, the human genome project's major objective is to discover the 20,000 to 25,000 genes that form the human genome.

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studocu which unknown(s) contained a lipid? which unknown(s) contained starch? draw the chemical structure of a carbohydrate and a lipid of your choice. name the structures you draw. why was water used as a negative control in the experiments in this lab?

Answers

1. Arachidonic acid, Oleic acid, Linoleic acid, and Palmitoleic acid are a few of the molecules that contain a lipid.

2. Rice, wheat, and maize are examples of substances that contain starch.

3. Cellulose makes up a carbohydrate.

For the majority of bodily metabolic functions, glucose, a type of carbohydrate, serves as the primary energy source. Lipids are a key source of energy and offer critical fatty acids for brain development. The non-nitrogen energy in parenteral nutrition is provided by lipids and carbohydrates together (PN).

Carbs and lipids vary primarily in that lipids are not water soluble while carbohydrates are. Both lipids and carbohydrates have the capacity to store energy, but only carbohydrates have the ability to form polymers due to their greater water solubility.

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During which stage of Prophase I, does the crossing over takes place ?
A. Homologous chromosomes
B. Sister chromatids
C. Cross overs
D. Parental chromosomes

Answers

During Homologous chromosomes stage of Prophase I, does the crossing over takes place.  In essence, prophase 1 is the recombination and crossing over of genetic material between non-sister chromatids.

The same genes are present along the chromosomal arms of homologous chromosomes in the same order. A homologous chromosome's length of chromosomal arms and centromere location are its two primary characteristics. In order to align properly, the actual arm length must match the positions of the genes. Four major configurations—metacentric, submetacentric, acrocentric, or telocentric—can be used to describe centromere positioning on a chromosome. The main causes of structural homology between chromosomes are both of these characteristics, i.e., the distance between centromeres and the length of chromosomal arms. Consequently, when two chromosomes with a similar structural make-up exist.

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what type of fit happens when the su bstrate binds to the enzume and ethe active site undergoes a change in shape

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An induced fit is occured when the substrate binds to the enzyme and the active site undergoes a change in shape.

Matching an enzyme's active site to its substrate is not like two puzzle pieces that fit together (as scientists once thought in an old model called the "lock and key" model). Instead, the enzyme changes shape slightly when it binds to its substrate, resulting in an even tighter fit.

The current theory, known as the induced fit model, states that when an enzyme binds to a substrate molecule, it undergoes a conformational change such that only after substrate binding does the active site conform to a shape complementary to that of the substrate, as has been shown for hexokinase. is shown to have

Induced adaptation refers to the shape and conformation of enzymes changing over time in response to substrate binding. This allows the enzyme to catalyze, lower the activation energy barrier, and increase the rate of completion of the reaction.

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convert food into energy. they are found in plant and animal cells

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Mitochondria convert food into energy through the process of cellular respiration.

In both plant and animal cells, the energy produced by the mitochondria is used to power various cellular processes such as protein synthesis, transport, and movement. Mitochondria are commonly known as the "powerhouses" of the cell, as they are responsible for generating the majority of the cell's ATP, which is the primary energy currency of cells.

By using the energy created during the oxidation of the food we eat, oxidative phosphorylation—the traditional function of mitochondria—generates ATP. Most biochemical and physiological processes, including growth, mobility, and equilibrium, all require ATP as their principal energy source.

The blank is the mitochondria.

The complete question is:-

The *blank* converts food into energy. It is found in both plant cells and animal cells.

what is the *blank*?

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compare and contrast spontaneous generation and biogenesis

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According to the notion of spontaneous generation, life can emerge from inanimate objects, as evidenced by the existence of creatures in seemingly sterile conditions. The idea of biogenesis holds that all live things evolved from other living things.

Spontaneous Generatiion The existence of animals in seemingly sterile environments is evidence that life can develop spontaneously from inanimate substances, according to the theory of spontaneous generation. According to the biogenesis theory, all living things descended from earlier living things. This is different from abiogenesis and spontaneous generation.Supporters of spontaneous generation included Francesco Redi, Harold Urey, Stanley Miller, and Alexander Oparin. Spontaneous generation is also known as Aristotelian abiogenesis because of the ancient Greek proponent. The idea of spontaneous generation was influenced by the stealth and invisibility of some species, including rats, bees, and bacteria.According to the theory of spontaneous genesis, non-living molecules were the source of life on Earth.Science has not established spontaneous generation.Observations and logical thinking serve as the foundation for spontaneous generation.BiogenesisThe idea of biogenesis holds that all live things evolved from other living things. This differs between spontaneous generation and abiogenesis.Supporters of biogenesis included William Harvey, Theodore Schwann, Lazzaro Spallanzani, John Needham, and Louis Pasteur. Lazzaro Spallanzani was the first to dispute spontaneous generation. In 1767, he provided evidence that boiling can kill bacteria. He cooked the beef in a tightly closed jar, and the broth afterwards revealed no evidence of bacterial growth. Louis Pasteur refuted spontaneous generation in 1864 with a series of tests that were similar to Spallanzani's.Biogenesis holds that life on Earth evolved from earlier living organisms.Science has demonstrated biogenesis.The foundation of Biogenesis is actual research and empirical data.

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nutrients absorbed into tiny capillaries and lymph vessels in walls.

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Digestive nutrients are taken up by the lymphatic and tiny capillary walls.

In the heart of each villus are lacteals, specialized lymph capillaries that are blood capillaries. The majority of nutrients are absorbed via blood capillaries, while lacteals are responsible for absorbing lipids and fat-soluble vitamins. Because it contains a lot of fat, the lymph in lacteals is called chyle and has a milky appearance.

The fat-soluble vitamins A, D, E, and K are among them. These vitamins do not dissolve in water. After being absorbed, these vitamins are transported into circulation by the lymphatic capillaries themselves.

They also have lacteals, which are lymph capillaries, and blood capillaries. Fatty acids and glycerol are absorbed into lacteal lymph whereas glucose, fructose, galactose, and amino acids are taken into the blood.

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A scientist is developing a computer model to determine the maximum population size, or
Choose...
, of eagles and other birds of prey in a forest ecosystem. The model should represent all of the
Choose...
that affect the populations.

Answers

To determine the maximum population size or choice of eagles and other birds of prey in a forest ecosystem, the model should represent carrying capacity, and limiting factors.

How do limiting factors affect carrying capacity?

Every ecosystem has limiting elements that prevent populations from growing out of control, such as the availability of food or the effects of illness and predation.

The carrying capacity of an ecosystem, or the largest population that an ecosystem can sustain given all of its resources, is determined by several limiting constraints.  

Therefore, the model represents carrying capacity.

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Which example is an abiotic factor of a desert environment?​

Answers

Answer:

Lots Of Sunlight

Explanation:

Sunlight is the biggest source of energy on our planet which makes it a very important abiotic factor. Sunlight is needed for photosynthesis where a plant would make food by converting carbon dioxide and water to oxygen

Answer:

Temperature

Explanation:

Abiotic factors are non-living components of an ecosystem that shape the living organisms and their interactions within the environment. They include things like temperature, light, water, soil, and air. In a desert environment, temperature is one of the key abiotic factors. Deserts are known for their extreme temperatures, with hot days and cold nights. This high temperature can be a limiting factor for the survival of the organisms that live in these regions.

In humans, hemophilia is a sex linked trait. Females can be normal, carriers, or have the disease. Males will either have the disease or not (but they won't ever be carriers) H X X H xixi = female, normal = female, carrier = female, hemophiliac XHY Xh Y = male, normal O 100% of their children will have the disease = male, hemophiliac If a woman who is a carrier has children with a man who does not have the disease, which of the following demostrates the correct probabilities of the children being carriers or having the condition? O 0% of the males will have the disease, 50% of the females will have the disease O 100% of the males will have the disease, 100% of the females will be carriers O 50% of the males will have the disease, 50% of the females will be carriers​

Answers

Hope it helps.

If you have any query, feel free to ask.

Answer all for crown
The ability to taste PTC is due to a single dominant allele "T". You sampled 215 individuals in a biology class, and determined that f150 could detect the bitter taste of PTC and 65 could not.
What is the predicted frequency of the recessive allele (t)?
What is the predicted frequency of dominant allele (T)?
In a population of 10,000 people, how many would be heterozygous (assuming Hardy-Weinberg equilibrium)? Homozygous dominant? Homozygous recessive? Calculate all of the potential frequencies.

Answers

The genotypic and allelic frequencies of population in Hardy-Weinberg equilibrium remain the same through generations. f(T) = 0.453. f(t) = 0.547. Homozygous dominant individuals = 2050. Heterozygous individuals = 4950. Homozygous recessive individuals = 3000.

What is Hardy-Weinberg Equilibrium?

The Hardy-Weinberg equilibrium is a theory that states that a population in equilibium is not evolving (no evolutive forces are acting on it) and its allelic and genotypic frequencies remain the same generation after generation.

Assuming a diallelic gene,

⇒ The allelic frequencies in a locus are represented as p and q.

The frequency of the dominant allele p(X) is pThe frequency of the recessive allele p(x) is q

⇒ The genotypic frequencies after one generation are

p² (Homozygous dominant genotypic frequency),2pq (Heterozygous genotypic frequency),q² (Homozygous recessive genotypic frequency).

To calculate these frequencies, we can use the following formulas,

The addition of the allelic frequencies equals 1

p + q = 1.

The sum of genotypic frequencies equals 1

p² + 2pq + q² = 1

In the exposed example,

  N = 215 individuals

 150 Individuals could taste PTC ⇒ TT and Tt

 65 individuals could not ⇒ tt

To get the frequencies, we will divide the number of individuals expressing each phenotype by the total number of individuals.

Phenotypic frequencies

Capability to taste PTC ⇒ 150/215 = 0.697 ≅ 0.7No capability to taste PTC ⇒ 65/215 = 0.302 ≅ 0.3

The phenotypic frequency of individuals who can not taste PTC (non-taster) is equal to the genotypic frequency -F(tt)-. We can use this value to get the allelic frequency -f(t)- by taking the square root.

F(tt) = q² = 0.3

f(t) = q = √0.3 = 0.547

Now we can get the dominant allele frequency -f(T)- by clearing the equation p + q = 1.

p + q = 1

p + 0.547 = 1

p = 1 - 0.547

p = 0.453

f(t) = 0.547f(T) = 0.453

Now, by using these allelic frequencies, we can calculate the genotypic frequencies F(TT), F(Tt), and F(tt).

F(TT) = p² = 0.453² = 0.205F(Tt) = 2pq = 2 x 0.453 x 0.547 = 0.495F(tt) = q²= 0.547²= 0.3

In a population of 10,000 people there will be,

Homozygous dominant individuals = 0.205 x 10,000 = 2050Heterozygous individuals = 0.495 x 10,000 = 4950Homozygous recessive individuals = 0.3 x 10,000 = 3000

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Explain one way how the excretory system works together with the respiratory system to maintain homeostasis when your muscles are experiencing fatigue/tiredness? Explain.
DO NOT JUST DESCRIBE THEIR INDIVIDUAL JOBS.

Answers

By controlling blood volume and composition, the urinary system supports homeostasis.

What systems work with the excretory system to maintain homeostasis?To support the endocrine system in sustaining homeostasis, the excretory system collaborates with it. In accordance with the amounts of salt and water in the body, hormones act as chemical messengers to tell the kidneys whether to filter more or less of the two substances. The water content of your blood, for instance, may decrease when you perspire a lot.Other organs participate in the excretory function even though the urinary system plays a significant role. Some waste materials, including carbon dioxide and water, are expelled from the respiratory system by the lungs. In addition to the kidneys, the skin also functions as an excretory organ by removing wastes from the body through sweat.Gas exchange and blood pH control are two ways that the respiratory system keeps homeostasis in check.

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the portions of the nervous system outside the central nervous system is called

Answers

The portions of the nervous system outside the central nervous system is called peripheral nervous system

The peripheral nervous system (PNS) is one of two components of bilateral animals' nervous systems, the other being the central nervous system (CNS). The PNS is made up of nerves and ganglia that are located outside of the brain and spinal cord.  The PNS's primary role is to connect the CNS to the limbs and organs, acting as a relay between the brain and spinal cord and the rest of the body.

The PNS, unlike the CNS, is neither protected by the spinal column and skull, nor by the blood-brain barrier, leaving it vulnerable to toxins.

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In cattle, if a red animal is crossed with a white one, a mixture of red and white color, called roan, is produced in the F1 generation. Crosses between animals in the F1 generation produce white, roan, and red cattle. Describe the pattern of inheritance in these types of cattle

Answers

The pattern of inheritance in these types of cattle is codominance. So, in cattle, if a red animal is crossed with a white one, a mixture of red and white color, called roan, is produced in the F1 generation. Crosses which are in between animals in the F1 generation will produce white, roan, and red cattle.

Codominance, in which allelic products co-exist in the phenotypic, contrasts with incomplete dominance, in which the quantitative interaction of allele products results in an intermediate phenotype. For instance, the offspring of a red homozygous flower and a white homozygous flower will include co-dominant red and white dots. When plants from the F1 generation are self-pollinated, the phenotypic and genotypic ratio of the F2 generation will be 1:2:1. (Red:Spotted:White). The ratios are the same when partial domination is present. Once again, this idiom is untrue; in fact, such circumstances shouldn't even be seen as exhibiting dominance.

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What are the 3 types of variation that take place during meiosis?

Answers

Each cell division cycle results in the production of four daughter cells. The daughter cells are identical in shape and size to the mother cell but differ in chromosomal number. The daughter cells are haploid in nature.

Meiosis involves recombination and segregation. Meiosis also causes genetic variation through the recombination process. This variety is boosted further when two gametes combine during fertilization, resulting in offspring with unique DNA combinations.

We are left with four haploid cells; each one genetically different from each other and the parent cell.

Variation in Genetics

Passing through (in prophase I)A haphazard collection of chromosomes (in metaphase I)Fusion of gametes from various parents at random.

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The contraction of the heart follows which sequence? The right atrium, right ventricle, left atrium, then left ventricle The left atrium, left ventricle, right atrium, then right ventricle Both atria contract together, then both ventricles contract together All four chambers contract at the same time.

Answers

The cardiac cycle begins with atrial systole and continues through ventricular systole, atrial diastole, and ventricular diastole before restarting.

The SA node starts the process, which causes the atrial muscles to contract. Doctors occasionally refer to it as the anatomical pacemaker because of this. Before the signal causes the ventricles to contract, it first travels through the Purkinje fibres, the bundle of HIS, the bundle branches, and the AV node. Analysis shows that the right and left ventricles move immediately, followed by the septum and apex of the heart being mechanically moved. These findings open the door for more extensive research and are in line with the concept that the helical myocardium is activated.

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What do Birdcage tattoos represent? how long does azithromycin take to work for upper respiratory infection Mr. Phuong stayed in a hotel room for 2 nights that cost $210. The hotel room tax rate in the city is 12%. What is the total cost for the hotel room?. what is the important documents of the latin american revolution which activities can registered nurses (rns) engage in to develop delegation and supervisory strategies to adapt to their changing roles? select all that apply. one, some, or | all responses may be correct. an experience such as a vacation can be defined as a market offering. group of answer choices true false Where are non-renewable resources located? What state power was challenged by the supreme courts decision A title search in the public records may be conducted byAnyoneWhich statement BEST explains why instruments affecting real estate are recorded?Recording gives constructive notice to the world of the rights and interests claimed in the identified parcel of real estateA purchaser went to the county building to check the recorder's records, which showed that the seller was the grantee in the last recorded deed and that no mortgage was on record against the property. The purchaser may assume which of the following?The seller did not mortgage the propertyThe date and time a document was recorded help establish which of the following?PriorityA buyer bought a house, received a deed, and moved into the residence but neglected to record the document. One week later, the seller sided and the heirs in another city, unaware that the property had been sold, conveyed title to a relative, who recorded the deed. Who owns the property?The buyerA property with encumbrances that will outlast the closingCan be sold if a buyer agrees to take it subject to the encumbrancesWhich of the following would NOT be acceptable of ownership?Deed to the current owner signed by the last sellerChain of title MOST accurately defined asA history of all documents and legal proceedings affecting a specific parcel of land.A seller delivered title to a buyer at closing. A title search had disclosed no serious defects, and the title did not appear to be based on doubtful questions of law or fact or to expose the buyer to possible litigation. The sellers title did not appear to present a threat to the buyers quiet enjoyment, and the title insurance policy provided was sufficient to convince a reasonably well-informed person that the property could be resold. The title conveyed would commonly be referred to as a(n)Marketable titleThe person who prepares an abstract of title for a parcel of real estateSearches the public records and then summarizes the events and proceedings that affect titleHomeowners are frantic because they want to sell their property and the deed is missing. Which of the following is TRUE?They do not need the original deed if it has been recorded.Mortgagee title policies protect which parties against loss?LendersWhich of the following are traditionally covered by a standard title insurance policy?Improperly delivered deedsA written summary of the history of all conveyances and legal proceedings affecting a specific parcel of real estate is called a(n)AbstractWhich of the following is NOT covered by a standard title insurance policy?Unrecorded rights of parties in possessionDocuments referred to as title evidence includePolicies of title insuranceAll of the following are true regarding public records EXCEPTThey guarantee marketable titleA sells a portion of property to B. B promptly records the deed in the appropriate county office. If A tries to sell the same portion of property to C, which of the following statements is TRUE?C has been given constructive notice of the prior sale because B promptly recorded the deed.The BEST reason for a buyer to obtain title insurance isTo ensure that the seller can deliver marketable titleA mortgagee received a title insurance policy in the property a buyer is pledging as security for the mortgage loan. Which of the following is TRUE?The amount of coverage is commensurate with the loan amount. we have three voters and four alternatives. the individual preference lists are as follows: voter 1: d c a b voter 2: b d a c voter 3: c a b d suppose that the social choice procedure being used is sequential pairwise voting with a fixed agenda, and that you have agenda-setting power (that is, you get to choose the order). what order should you choose if you want alternative c to be the social choice? 3) What is the DIFFERENCE in rates between the 2 people below: John: Y= 5x Sally X 2 4 6 8 10 12 Y 14 28 42 56 70 84 Define the terms culture and media, and explainhow each influences health. How are photosynthesis and cellular respiration similar?A. Both assist autotrophic organisms in converting light energy into necessary chemical energy.B. Both extract carbon from materials and rearrange it into carbon dioxide, which is released into the air or water.C. Both processes involve carbon compounds either taken in from the environment or produced by the organisms themselves.D. Both support the carbon cycle by influencing the way living things break down sugars to produce energy. What did progressive try to change molecules with many polar covalent bonds are ______ and can interact with water. the endocrine system incorporates feedback mechanisms that maintain homeostasis. Which of the following demonstrates negative feedback by the endocrine system? Given the following list of numbers: [21, 1, 26, 45, 29, 28, 2, 9, 16, 49, 39, 27, 43, 34, 46, 40] which answer illustrates the first two lists to be merged? A manager has collected data on sales, the economy, and taxes over a number of years, and statistically estimates an equation that describes how each of these predictors has affected staffing levels in the past. This equation is used to predict future staffing levels. This is an example of ______________ A dilation is a nonrigid transformation that can produce enlarge or reduce images from a given pre-image. How do you know that a dilation will produce similar figures? Explain. Can you please help with this