What are Mendel's 4 hypotheses and what does each mean?

Answers

Answer 1

(1) Principle of Paired Factors is the first of Mendel's four postulates and principles of heredity. (2) The Law of Segregation or Law of the Purity of Gametes (Mendel's First Law of Inheritance), (3) The Dominance Principle, and (4) The Law of Independent Assortment

In his law of segregation, he put forth the concept of paired components being separated during the creation of gametes. According to Mendelian law, every pair of unit components would separately assort into brand-new gametes.

Only one version of a trait will emerge in the offspring of two parents who have different, opposing characteristics, according to Mendel's law of dominance. The dominant trait will be the only phenotypic trait that the hybrid offspring exhibits. The dominance law is the fundamental rule of inheritance.

Because a gamete only contains one of the two alleles dominant or recessive and not both, the law of segregation is also known as the law of pure gametes.

The development of reproductive cells causes various genes to separately separate from one another, according to the Principle of Independent Assortment. During his research on the genetics of pea plants in 1865, Gregor Mendel made the first observation of an independent assortment of genes and their related phenotypes.

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Related Questions

What methods do cells use to increase the surface area to volume ratio?

Answers

Prokaryotic cells have inner folds of the cell membrane that are responsible for specific functions such as respiration. These creases increase the surface area.

As the cell radius increases, the surface area increases as the radius squared, but the volume increases as the radius cubed (much faster).

As the cell advance, its internal volume increases and the cell membrane expands. Unfortunately, volume increases faster than surface area, so the relative amount of surface area available to direct material to a unit volume of cells steadily decreases. The important point is that the surface area-to-volume ratio decreases as the cells get larger.

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Categorize all the components involved in photosynthesis as either matter or energy!

Answers

In photosynthesis, matter components are chlorophyll, water, carbon dioxide and glucose. Energy components are light energy, chemical energy, thermal energy.

Matter:

Chlorophyll: a pigment found in the chloroplasts that absorbs light energy

Water: a molecule that is oxidized during the light-dependent reactions

Carbon dioxide: a molecule that is used as a source of carbon for the synthesis of organic compounds

Glucose: a simple sugar produced as a result of the light-independent reactions.

Energy:

Light energy: energy from the sun that is absorbed by the chlorophyll to drive the reactions of photosynthesis

Chemical energy: energy stored in the bonds of glucose and other organic compounds produced during photosynthesis

Thermal energy: energy in the form of heat that is released as a byproduct of the reactions of photosynthesis.

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More people get injured from skateboarding than any other sport

Answers

Whys that??? I wonder why

The following passage (paragraph 5) mainly shows that fill in the blank_______. By the time Dale leaves college in 1908, his parents are still poor, but corporate America is booming. Henry Ford is selling Model Ts like griddle cakes, using the slogan “for business and for pleasure.” J.C. Penney, Woolworth, and Sears Roebuck have become household names. Electricity lights up the homes of the middle class; indoor plumbing spares them midnight trips to the outhouse.

Answers

Based on the short passage above. The passage mainly shows that corporate America is booming.

What is the passage about?

The passage describes the state of the economy and society in the United States around the time when Dale leaves college in 1908. It mentions specific examples of companies and products that have become successful and well-known, such as Henry Ford's Model T cars, J.C. Penney, Woolworth, and Sears Roebuck retail stores.

The passage also notes that electricity and indoor plumbing have become more common in middle-class homes. All of these details demonstrate that the American economy is experiencing a period of growth and prosperity, as businesses are expanding and new products and technologies are becoming widely available.

Therefore, the passage implies that the prosperity of corporate America contrasts with the poverty of Dale's parents, suggesting that not everyone is benefiting equally from the economic boom

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The efficiency of glycolysis is approximately

A) 0.2%
B) 2%
C) 20%
D)200%

Answers

Answer:

The correct answer is B.

Explanation:

who is the ultimate authority on ethical issues?

Answers

Answer: There is no single ultimate authority on ethical issues, and different individuals and groups may have different approaches and sources of guidance for resolving them. The resolution may depend on the context, values, and beliefs of those involved.

Explanation:
(⌐■_■)

fresh shell eggs must be refrigerated upon receipt, at an ambient temperature of ____

Answers

In order to receive raw eggs, refrigeration equipment that keeps the surrounding air at or below 7°C (45°F) is required.

How should shell eggs be kept at room temperature?

45 degrees Fahrenheit According to regulations published in 9 CFR 590.50 by the Food Safety and Inspection Service of the United States Department of Agriculture, shell eggs intended for human consumption must be transported and stored in refrigeration at a temperature of 45 degrees Fahrenheit (7.2 degrees).

Which temperature is the warmest for shell eggs to be received?

These amendments require that shell eggs packed for consumption be transported and stored at a temperature of 45°F (7.2°C) or less under refrigeration.

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A cement factory emits 900 kilograms of CO2 to produce 1,000 kilograms of cement. A fully grown tree removes six kilograms of CO2 per day from the air. One acre of land can support 200 mature trees.
A company builds a factory that will produce 100,000 kilograms of cement. To make the factory carbon neutral, the owners need to grow
15000
trees over an area of land measuring
acres.

Answers

The land area in acres that can support 15000 trees is 75 acres.

What area of land can support 15000 trees?

The land area in acres that can support 15000 trees is calculated as follows:

mass of CO₂ emitted by a cement factory emits to produce 1,000 kilograms of cement = 900 kilograms of CO₂

A fully grown tree removes six kilograms of CO2 per day from the air.

One acre of land can support 200 mature trees.

Since the owners need to grow 15000 trees, the area of land required will be:

The area of land required = 15000 trees * 1 acre / 200 trees

The area of land required = 75 acres

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Which adaptations allow thermophiles, a type of bacteria, to live within the hot springs of Yellowstone National Park

Answers

The ability to live in a highly acidic environment and the ability to withstand very hot temperatures are the adaptations that allow thermophiles, a type of bacteria, to live within the hot springs of Yellowstone National Park.

what is Adaptation?

Adaptation is the physical or behavioural characteristic of an organism that helps an organism to survive better in the surrounding environment.

The main feature of Yellowstone National Park is the presence of very hot and acidic water. Starting as rain on the surface, water from hot springs seeps through the bedrock beneath Yellowstone and is superheated by Yellowstone's magma system.

Thermophilic proteins have several adaptations that give them the ability to maintain structure and function at extreme temperatures. Thermophiles, for example, have specialized enzymes that use additional hydrogen bonds, salt bridges, and disulfide bonds to resist denaturation at very high temperatures, strengthening proteins to resist unfolding increase.

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Which of the following results best refutes the alternative hypothesis that selective permeability is a consequence of the cell wall

Answers

The results which best refutes the alternative hypothesis that selective permeability is a consequence of the cell wall is: when beetroot cells are placed in a solution with cellulase, the solution remains clear.

A cell wall are those parts of a cell that holds the cell together and it has a definite structure.

Furthermore, a cell membrane is not affected by the process of cellulose digestion, but this process hurts the cell wall structure and damages it.

As a result of this, when a beetroot cell is put in a solution that contains cellulase, the solution does not remain clear because selective permeability is a consequence of the cell wall.

The cell membrane's selective permeability is its capacity to distinguish between various types of molecules, permitting some to pass while preventing others. This selective quality is somewhat influenced by the inherent membrane diffusion rates of certain compounds.

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What is the genetic inheritance pattern of a calico cat?

Answers

Because the genetic determination of coat color in calico cats is linked to the X chromosome, calico cats are almost always female, with one color associated with the maternal X chromosome and the other. is associated with the paternal X chromosome.

The calico cat displays a mixed color of red and black, depending on which of her two X chromosomes is inactivated. The allele that codes for orange hair color is dominant, while the black color allele is recessive. Out of 3,000 calico cats born, only one is male. If the male cat is a calico cat (calico), it means she has two X chromosomes and she has one Y chromosome. This is a chromosomal mutation recognized as XX male syndrome.

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Where is most ATP produced in mitochondria?

Answers

Most ATP is produced in the mitochondrial matrix, which is the fluid-filled space inside the inner membrane of the mitochondria.

The process of ATP production in the mitochondria is called cellular respiration. It starts with the breakdown of glucose and other molecules in the cytoplasm by the process of glycolysis, which generates a small amount of ATP. The majority of the ATP is generated in the Mitochondria during the process of oxidative phosphorylation, where the electrons from the breakdown of glucose are passed through a series of protein complexes in the inner mitochondrial membrane, which generates a proton gradient that drives the production of ATP via ATP synthase.

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When you don't consume enough protein, your body will start using your muscles and organs as a source of protein. T/F

Answers

It is true when you don't consume enough protein, your body will start using your muscles and organs as a source of protein.

A structure composed of amino acids. The body need proteins to function properly. They serve as the building blocks for several bodily components, including the skin, hair, and enzymes, cytokines, and antibodies.

A severe protein deficiency can hinder children's growth, contribute to fatty liver and skin, induce edema, and worsen infections. True deficiency is uncommon in affluent nations, although a low intake can lead to muscular atrophy and an increased risk of fractures.

Additionally, a lack of protein over time might cause you to lose muscle mass, which will reduce your strength, make it more difficult for you to maintain your balance, and slow down your metabolism.

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How is local humidity influenced by a flow of energy and the movement of matter in the form of water?

Answers

Answer: Evaporation!

Explanation:

One way in which energy can influence local humidity is through the process of evaporation. When energy is added to water, it can cause the molecules to vibrate more rapidly, which can eventually cause them to break free from the surface and turn into a gas. This process, called evaporation, can increase the amount of water vapor in the air, leading to higher humidity.

Answer:

The local humidity is influenced by the flow of energy and the movement of water in the air because these factors determine the amount of water vapor that the air can hold. The amount of water vapor that air can hold is directly related to its temperature - as the air temperature increases, the air can hold more water vapor. When the air is already saturated with water vapor, any additional moisture will condense into visible droplets, such as dew or fog. This process is known as condensation.

The movement of water in the air can also affect local humidity. If moist air moves into an area, it can increase the humidity in that area. Conversely, if dry air moves into an area, it can decrease the humidity. The movement of water in the air can be caused by a variety of factors, including differences in temperature and pressure, the presence of physical barriers, and the force of the wind.

Explanation:

Neurons have two ends. Nerve impulses travel from the end of one neuron to the beginning of another. What terms are used for these ends?

Answers

The place where the one ending of the neuron that is the axon of one neuron meets the dendrite of another neuron is called a synapse. Synapses are also found between the neurons and other types of cells, such as muscle cells in the body.  

What is Synapse?

Neurons are the fundamental units of the brain and nervous system in the higher vertebrates, the cells which are responsible for receiving sensory input from the external world, for sending motor commands to the muscles, and for transforming and relaying the electrical signals at every step.

The synapse is the small pocket of space between two nerve cells, where they can pass messages or signals to communicate. A single neuron may contain thousands of synapses within it. In fact, one type of neuron called the Purkinje cell, found in the brain's cerebellum, may have as many as about one hundred thousand synapses.

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Unikonta is a supergroup that includes all of the following except _____.
A) fungi
B) protists
C) animals
D) plants

Answers

Numerous protists are included in the supergroup unikonta together with mammals and fungi. Amoebas make up a large portion of Unikont protists.

Which of the following categories of eukaryotes is not one of the four?

Organisms called eukaryotes have nuclei and cell organelles that are both membrane-bound. Eukaryotes make up every kingdom except from Kingdom Monera.

What are the four protist supergroups?

The largest eukaryotic subcategories, known as eukaryotic supergroups, have been identified. The eukaryotes can be split into four groups since there are currently four of them. The archaeplastida, SAR, excavata, and unikonts, also known as Amorphea, are described here.

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Which of the following may be located tens of kilobases away from the transcriptional start site?
A. The proximal promoter elements
B. The core promoter
C. An enhancer sequence
D. A TATA box

Answers

Proximal promoters may be located tens of kilobases away from the transcriptional start site.

The correct answer is A.

While enhancers are frequently located many kilobases (kbp) upstream or downstream of the transcription start site, proximal promoters are typically situated within a few hundred base pairs (bp) away from the start site. Core promoters define both the transcription start site and the region where the fundamental transcriptional machinery will initiate transcription. The control of gene expression at the transcriptional level is crucial for many biological processes. In eukaryotes, there are tens of thousands of protein-coding genes, and each one has an own transcriptional pathway. Trans-acting DNA sequences called transcriptional enhancers, proximal promoters, and core promoters are responsible for encoding these transcriptional programmes.

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Many scientists claim that the synthesis of the first organic molecules from inorganic precursors was possible because of the highly reducing atmosphere found on primitive Earth.
Which of the following is an appropriate null hypothesis that could be used when investigating the claim?
answer choices
The synthesis of organic molecules from inorganic molecules is possible under current atmospheric oxygen levels as well as those found on primitive Earth.
Organic molecules were transported to primitive Earth by a meteorite or other celestial event.
The absence of a significant quantity of atmospheric oxygen is required for the synthesis of organic molecules from inorganic precursors.
The level of atmospheric oxygen on modern Earth is significantly higher than on primitive Earth.

Answers

The synthesis of organic molecules from inorganic molecules is possible under current atmospheric oxygen levels as well as those found on primitive Earth is an appropriate null hypothesis that could be used when investigating the claim.

The hypothesis that organic molecules can be synthesized from inorganic molecules under current atmospheric oxygen levels, as well as those found on primitive Earth, is an important one to consider when researching the claim that life could have originated on the planet.

This null hypothesis provides evidence that organic molecules can form without the presence of life, allowing us to explore the possibility of life's origin on Earth in a more comprehensive manner.

By studying the various chemical reactions and processes involved in the synthesis of organic molecules, we can gain a better understanding of the conditions that were necessary for the emergence of life.

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What are cilia and where are they located?

Answers

Cilia are microscopic, hair-like projections found on the outside of eukaryotic cells or internal organs, and protozoans.

Several internal organs, including the lungs, trachea, and digestive system contain epithelial cells with motile cilia. They are also present on protozoans, such as paramecium, and aid in motility. In the dendritic knob of the olfactory neuron are the non-motile cilia. Cilia are structures on the surface of cells whose function it is to propel water in a specific direction relative to the cell. Like many single-celled organisms, this process can either cause the cell to move through the water or cause the water and its contents to move across the cell's surface.

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Identify the type of symbiosis described. the saguaro cactus provides food for the white-winged dove through its large fruit. the bird consumes the fruit, ingests the seeds, and then deposits the seeds in a new location.

Answers

This is an example of mutualism, a type of symbiosis in which both species benefit. In this case, the saguaro cactus provides food for the white-winged dove, and in return the dove deposits the seeds of the cactus in new locations, helping the cactus to propagate.

Mutualism plays an important role in nature, as it helps to ensure the survival of both species. In this case, the saguaro cactus needs the white-winged dove to spread its seeds and help it to propagate, while the dove relies on the cactus for food. This type of symbiotic relationship can be seen in numerous species throughout the world, and is an important factor in maintaining the balance of nature.

In addition to providing food for the white-winged dove, the saguaro cactus also offers other benefits. Its large fruit is a valuable source of nutrition for other species, such as birds, mammals, and reptiles. The cactus also provides shelter for various animals, including bats, lizards, and hummingbirds. The shade from the cactus helps to keep the environment cooler, which can be beneficial to other species in the area.

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What is a pedigree and how is it read?

Answers

One can identify how a specific trait is passed down via a family using pedigrees. The relationship between parents, children, and siblings determines whether a feature is present or absent in a pedigree.

A pedigree displays the relationships between family members and indicates the family members who have specific genetic pathogenic variants, traits, and diseases, as well as information on their present health. The genealogy of a family may show how diseases are passed down through the generations.

The AKC pedigree is a traditional lineage pedigree, which reads from your dog on the left through subsequent generations branching to the right. It contains a history of your dog's direct ancestors. You can read each successive generation to the right by starting with your dog at the left.

If a trait skips a generation in a pedigree, it is frequently an autosomal recessive trait, according to one tip for spotting recessive traits (although a trait can be autosomal recessive and not skip generations). Both gender share the same prevalence of these traits.

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What does a plant life cycle start with?

Answers

its a plant dawg think smarter not harder ✊

How might the genetic content of these change by the time tetrads have aligned at the metaphase plate during metaphase I of meiosis

Answers

Sister chromatids are chromosomal chromatids that are identical to one another. They are normally produced by the DNA molecule of a single chromosome replicating in a semi-conservative manner.

They are therefore "photocopies" of the original parent chromosomes that have been joined at the Centromere. They share the same gene and allele makeup, making them completely identical.

There are, however, slight variations between the two identical sisters due to mutation from replication errors and alterations in the length of telomere repeats.

In metaphase I, tetrads arrange themselves along the metaphase plate whereas homologous pairs orient themselves randomly. During anaphase I, homologous chromosomes separate and centromeres deteriorate.

In telophase I, chromosomes move to opposite poles, and in cytokinesis, the cell splits into two haploid cells.

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Why are identical twins rare?


Word Bank:

gene, chromosome, reproductive cell, identical twin, fraternal twin, trait, protein, variation.

Mention:
Explain how genes are passed on normally in humans.
Explain how genes are passed on in identical twins.
Explain why identical twins are rare.

Answers

Identical twins are rare because they are generated when a fertilized egg is divided into two zygotes and thus generate two different organisms having genetically identical material. Genes are passed on normally in humans due to the inheritance from parents to offspring, they (genes) are passed on in identical twins as copies in the egg cell.

What is the proportion of identical twins in nature?

The proportion of identical twins in nature is relatively low in the order of 1 to 250, which inherit the same genes contained in homologous pairs of chromosomes, while fraternal twins denote the process of fertilization of two separate eggs to form different organisms. These genes generate different proteins that will lead to different traits.

Therefore, with this data, we can see that the proportion of identical twins in nature is low because the division of the egg cell after fertilization cell is a rare process.

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What happens to the 3 carbon sugar that exits the Calvin cycle?

Answers

By carbon fixation, 3-PGA molecules are transformed into glucose molecules, which are simple sugar molecules.

It corresponds to the second phase of Calvin's cycle. By carbon fixation, 3-PGA molecules are transformed into glucose molecules, which are simple sugar molecules. Energy for this stage is provided by ATP and NADPH generated during the light-dependent activities of photosynthesis. Thus, the Calvin cycle is a mechanism through which plants convert solar energy into compounds like sugars that may be stored for a long period. ATP and NADPH provide the sugars with their energy.

This procedure is referred to as reduction because 3-PGA molecules get electron transfers to produce glyceraldehyde-3 phosphate.

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According to the theory, why is it important to know how much of a pathogenic risk an item poses to an end-user? a) End-users must be informed of decontamination risks so they can choose whether to receive treatment or not b) The risk determines how long you can wait before cleaning it c) The risk of infection determines whether you should dispose of the item or not after use d) The risk determines how you must decontaminate an item so that the next user doesn't get infected

Answers

In order is for end-user to decide whether or not to get therapy, this information is required.

Why do we seek therapy?

A treatment is anything that medical professionals perform on patients in order to manage a health issue, minimize its symptoms, or resolve it. Treatments may take the form of medication, counseling, surgery, or other measures. A health issue is said to be cured when a treatment permanently resolves it. Some medical conditions can be treated.

Meaning of treatment plan

Pay attention to how it sounds. (TREET-mint plan) A thorough plan that includes information about the patient's ailment, the intended treatment outcome, available treatment modalities, potential side effects, and anticipated treatment time.

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Changing the temperature or pH can change an enzyme's shape. Explain how changing the temperature or pH might affect the function of an enzyme.

Answers

Answer:

Temperature: Raising temperature generally speeds up a reaction, and lowering temperature slows down a reaction. However, extreme high temperatures can cause an enzyme to lose its shape (denature) and stop working. pH: Each enzyme has an optimum pH range. Changing the pH outside of this range will slow enzyme activity.

The same basic internal organs (kidneys, stomach, heart, and lungs) are found in frogs, birds, snakes, and rodents. This is primarily an example of ________.Group of answer choicesinheritance of acquired characteristicsstructural homologydevelopmental homology

Answers

The same basic internal organs (kidneys, stomach, heart, and lungs) are found in frogs, birds, snakes, and rodents. This is primarily an example of structural homology

The phrase "survival of the fittest" refers to the process of natural selection, a mechanism that promotes evolutionary development. Natural selection works by favoring individuals who are more suited to a particular set of environmental conditions over those who are not.

Because it brings new variety into the population, mutation is the only method of evolution identified that increases the quantity of genetic variation. Genetic drift is the loss of genetic variation caused by chance over time.

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Seeds are important to the reproduction of many kinds of plants. Some seeds, especially those dispersed by animals, are enclosed in a sweet, fleshy fruit. How would damage to the vascular tissue leading to a developing fruit affect the fruit?
A.Water loss from the fruit would happen at an increased rate.
B.The number of seeds enclosed in the fruit would decrease.
C.The amount of water and sugar stored in the fruit would decrease.
D.The raw materials needed for photosynthesis would not reach the fruit.

Answers

Damage to the vascular tissue leading to a developing fruit affect the fruit because the raw materials needed for photosynthesis would not reach the fruit, option D.

What is the function of vascular tissues in plants?

Vascular tissues are complex conducting tissues in higher plants made up of various cell and element types. Xylem and Phloem are the two main components of plant vascular tissue. These tissues are in charge of transporting water and nutrients in plants.

Damaged vascular tissue may cause the fruit to develop incompletely or not at all. When vascular tissues like xylem and phloem are damaged, the fruit does not fully develop because the food produced in the leaves does not reach the seed.

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Do whales breathe oxygen or carbon dioxide?

Answers

Whales are mammals, not fish. This means that, like all land mammals, they breathe oxygen through their lungs.

Whales and dolphins are mammals, and like us, they breathe air into their lungs. Because they do not have gills, they cannot breathe underwater like fish. Whales are mammals just like humans. Therefore, they have lungs and breathing air on their surface. It cannot extract oxygen from water like fish do with their gills. Whale inhalation is "conscious". The respiratory function of these animals is under the voluntary control of the central nervous system "CNS".

Whales accumulate carbon in their bodies during their long lifespans. When they die, they sink to the bottom of the ocean. Each large whale binds an average of 33 tons of carbon dioxide and removes this carbon from the atmosphere over centuries. Trees, on the other hand, only absorb up to 48 pounds of CO2 per year

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