Answer:
Active site and protein.
Explanation:
The two components which are often found as part of an enzyme are Active site and protein. Proteins are referred to as macromolecules or macromolecules which consists of more or one of a chain of amino acid residue. They do perform an array of functions which are within organisms.
HELPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPP
Explain please
Answer:
Site A W,X,Y,Z
Site B W,Z,Y,X
Explanation:
this is true believe meWhere in the cell does glucose end up? Why
Answer:
In stage one, glucose is broken down in the cytoplasm of the cell in a process called glycolysis. In stage two, the pyruvate molecules are transported into the mitochondria. The mitochondria are the organelles known as the energy "powerhouses" of the cells
I need number 3 plz it’s urgent
Answer:
a person with 2 ppl inside them
Explanation:
When do the cells undergoing meiosis become immediately haploid from a diploid parental cell?.
The cells undergoing meiosis become immediately haploid from a diploid parental cell during telophase I. Telophase I is a sub-process of meiosis 1.
How is the complete process of meiosis cycle ?Meiosis division functions to produce gametes, and produces 4 daughter cells that have half of the chromosomes of the parent cell. The number of chromosomes owned by daughter cells is called haploid (n).In the telophase I sub-process, homologous chromosomes separate and move in opposite directions, then the nuclear membrane begins to form again, and cytokinesis occurs which causes the formation of two haploid daughter cells.While the complete sub-process that occurs in the process of meiosis I begins with prophase I, metaphase I, anaphase I, and finally telophase I.In the prophase I process, the nuclear membrane turns into fragments and a cleavage spindle forms, then the chromatin threads condense and become paired hemolog chromosomes, then cross-over or exchange of appropriate DNA between non-sister chromatids occurs.Whereas in the process of metaphase I the chromosomes line up in the division plane, and in the process of anaphase I the homologous chromosomes separate and move in opposite directions.Learn more about process of meiosis here: brainly.com/question/11954206
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A firm has $820 in inventory, $3,200 in fixed assets, $1,210 in accounts receivable, $890 in accounts payable, and $360 in cash. What is the amount of the net working capital?
a. $4,700
b. $5,590
c. $3,600
d. $2,390
e. $1,500
The net working capital for the firm is $1,500, calculated by subtracting current liabilities from current assets, the correct option is (e).
To calculate the net working capital, you need to subtract the current liabilities from the current assets.
In a company's financial statements, the formula for calculating current assets can be expressed as the sum of inventory, accounts receivable, and cash.
Current Assets = Inventory + Accounts Receivable + Cash
Current Liabilities = Accounts Payable
Using the given values:
Current Assets = $820 (Inventory) + $1,210 (Accounts Receivable) + $360 (Cash)
= $2,390
Current Liabilities = $890 (Accounts Payable)
The formula to calculate Net Working Capital is derived by subtracting Current Liabilities from Current Assets.
Net Working Capital = Current Assets - Current Liabilities
Net Working Capital = $2,390 - $890
= $1,500
Therefore, the amount of net working capital is $1,500.
Hence, the correct option is (e).
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All of the members of the same species in the same place at the same time that can interbreed.
O genepool
O population
O community
O species
Answer:
Genepool
Explanation:
I hope this helps
please answer all :)
Answer:
i) Rusting occurs the least in tubes 2 and 3 because either of air and water which are necessary for rusting is absent in the two tubes respectively.
ii) Rusting occurs most in tube 1 because both air and water which are necessary for rusting are present.
Explanation:
Rusting is a chemical change which involves a redox reaction. During the process of rusting, metallic iron is oxidized to hydrated iron (iii) oxide by oxygen present in air.
For rusting to take place effectively, each of these three factors mist be available: metallic iron, oxygen and water.
In the figure above, the iron nails in the three tester tubes will rust to different extents based on the availability of the three factors.
In test tube 1, the iron nails will rust the most because all the three factors: metallic iron, oxygen present in air, and water are abundantly present.
In test tube 2, the iron nails will rust the least or not at all because boiling of water removes dissolved oxygen from water and the oil layer above the boiled water prevents entry of oxygen from air. Thus, the nail do not rust because one of the three factors for rusting to take place, in this instance, oxygen is absent.
In test tube 3, the iron nails rusts the least or not at all as well because moisture or water is absent. Calcium chloride, a drying agent removes all the moisture from inside the tube. Hence, even though air is present, rusting do not occur as there is no moisture or water present.
Which of these contains a single, long DNA molecule? Question 1 options: gene nucleotide chromosome deoxyribose.
A single, long DNA molecule makes up a chromosome.
The correct option is the (C) chromosome.
ChromosomeInside the nucleus, chromosomes are thread-like structures.It consists of a single molecule of DNA and is made up of protein.It stores the organism's genetic material.Thus, the (C) chromosome is the correct option.
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Answer:
chromosome
Explanation:
k-12
What are the functions of the organelles labeled here as I and III? Select
all that apply.
..
Protein assembly
Protein synthesis
Energy transformation
Energy production
VI
Organelle I is the ribosome, which is responsible for protein synthesis. Organelle III is the mitochondrion, which is involved in energy transformation and energy production through cellular respiration.
Organelle I, which is labeled as the ribosome, is responsible for protein synthesis. Ribosomes are involved in the process of translation, where they read the mRNA (messenger RNA) and assemble amino acids into polypeptide chains, ultimately forming proteins.
Organelle III, which is not specified in the question, cannot be identified based on the provided information. However, if we assume it refers to mitochondria (as labeled with Roman numeral VI), then its function is energy production.
Mitochondria are the powerhouses of the cell and are involved in cellular respiration, a process that generates ATP (adenosine triphosphate), the primary energy currency of the cell.
Therefore, the correct functions for organelle I (ribosome) are protein synthesis, and for organelle III (mitochondria) are energy production.
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What percentage of babies have Brown and Blue eyes? (to find percent divide the total number of blue-eyed babies by the total number of babies born. You should get a decimal number. Just use the first two numbers as the percent. If your answer is .25 you would have 25%).
We have 20 babies. 10 have blue eyes, which means their genotype is -bb-, while 10 have brown eyes, which means their genotype is either -BB/Bb-. So, according to the data half of the babies have blue eyes, while the other half has brown eyes. This means 50% for each condition: 50% has blue eyes, 50% has brown eyes.
10. Explain what will happen if you forget to water your plants? Why would this happen?
Answer:
Not enough water is one of the most common reasons that plants are unhealthy, wilt, and die. It’s not always easy, even for expert gardeners, to get watering right. To avoid or minimize the problems associated with under watering, know the signs of plants getting too little water.
:)
What is the name of the cell produced on the underside of a fem that can grow into a new fern?
O a seed
O a a frond
O a spore
a cone
plss i need help
Answer:
A spore
Explanation:
What is the name of the cell produced on the underside of a fem that can grow into a new fern?
O a spore
Hope it helped you buddy brainiest plz and thank you!!!!!
A spore is the cell which is produced on the underside of a fern that can grow into a new fern. These are a mode of asexual reproduction. Thus, the correct option is C.
What is a fern?A fern is a member of a group of vascular plants which reproduces by the formation of spores and neither by seeds nor by flowers. Fern plants belong to the clade Tracheophytes and division Polypodiophyta.
Ferns are the plants which reproduce from spores that are gathered in the form of clusters called sori, which are usually present on the underside of the fronds of fern. The spores can be yellow, green, brown, or black in color. The sori are sometimes covered with a membrane known as the indusium, which lifts up when the spores are ripe and drop off from the plant.
Therefore, the correct option is C.
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explain how can the hardy-weinberg principle of genetic equilibrium be used to determine whether this population is evolving?
The Hardy-Weinberg principle of genetic equilibrium is a theoretical model that assumes that the allele frequencies in a population remain constant over time.
This principle can be used to determine whether a population is evolving by comparing the observed allele frequencies in a population with the expected allele frequencies calculated using the Hardy-Weinberg equation.
If the observed allele frequencies in a population deviate from the expected allele frequencies calculated using the Hardy-Weinberg equation, this indicates that the population is evolving. For example, if the frequency of the dominant allele increases or decreases over time, this can indicate that natural selection is favoring one phenotype over another. Similarly, if the frequency of the recessive allele decreases over time, this can indicate that genetic drift is occurring in the population.
In conclusion, the Hardy-Weinberg principle of genetic equilibrium can be used to determine whether a population is evolving by comparing the observed allele frequencies in a population with the expected allele frequencies calculated using the Hardy-Weinberg equation. Any deviation from these expected frequencies indicates that the population is evolving.
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A person can have hundreds of different type of cells because:different cells result from genetic variation in meiosis.different cell types have different genes.different cell types all have the same genes but have different genes active.None of these choices is correct.
Humans have specialized cells in the body. Each cell type performs a unique function. Humans have different type of cells with different structures and functions.
All the cells in a human's body contain the same DNA. However, the human body is composed of many different types of cells. Because of gene regulation, each cell type possess a different set of active genes although all the cells of the body contain the same DNA.
Answer - different cell types all have the same genes but have different genes active.
Q: Which is a reason why cells remain small?
A- Large cells have difficulty diffusing nutrients
rapidly enough
B- As cells grow, their ratio of surface area to
volume decreases.
C- Transportation of wastes becomes a problem
for large cells.
D- All of the above.
Answer:
b. as cells grow their ratio of surface area to volume decrease
1. The oval or almond shaped male sex organs are the:
sperm
testes
semen
ovary
The oval or almond shaped male sex organs are known as the testes. These are essential organs responsible for the production of sperm and the male sex hormone testosterone.
The testes are located in the scrotum, which is a sac-like structure that hangs outside the body. The scrotum serves as a temperature regulator to maintain the optimal temperature for sperm production.
Testes are made up of seminiferous tubules that contain specialized cells called Sertoli cells, which are responsible for supporting the maturation of sperm cells. Leydig cells, which are located in the testes, produce testosterone. The testosterone produced by Leydig cells is necessary for the development of male secondary sexual characteristics, such as deepening of the voice, facial hair, and increased muscle mass.
In summary, the oval or almond shaped male sex organs are the testes, which are responsible for the production of sperm and the male sex hormone testosterone. The testes are essential for male fertility and play a crucial role in the development of male secondary sexual characteristics.
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The testes are the primary male reproductive organs responsible for the production of sperm and the secretion of testosterone, the primary male sex hormone The oval or almond-shaped male sex organs referred to in the question are the testes.
The testes are the primary male reproductive organs responsible for the production of sperm and the secretion of testosterone, the primary male sex hormone. They are located in the scrotum, a sac-like structure outside the body, which helps maintain a slightly lower temperature necessary for sperm production.
The testes have an oval or almond shape and are typically about 4 to 5 centimeters in length. Inside the testes, there are coiled structures called seminiferous tubules, where spermatogenesis (the production of sperm) takes place. Sertoli cells and Leydig cells are also present in the testes, which support sperm development and hormone production, respectively.
In summary, the oval or almond-shaped male sex organs mentioned in the question refer to the testes. These organs play a crucial role in the production of sperm and the secretion of testosterone, contributing to male reproductive function and secondary sexual characteristics.
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HELP
HELP
HELP
HELP
I NEED THIS
Answer:
i think its d sorry if im wrong :(
HELP PLS PLS PLS PLS
Answer:
lizards cooperate to find food and share what they find with other lizards
leukemia is a cancer of white blood cells. successful treatment for leukemia includes bone marrow transplants, which get rid of all the cancerous white blood cells in the patient and replace them by inserting healthy stem cells. stem cells can be used in this way because they can divide repeatedly and become a wide variety of types of cells. this is also called:_____
The process described is commonly known as stem cell therapy or hematopoietic stem cell transplantation (HSCT).
HSCT involves the replacement of diseased or damaged bone marrow or blood cells with healthy stem cells obtained from the patient or a donor. The stem cells can be harvested from the bone marrow, peripheral blood, or umbilical cord blood and can differentiate into a wide range of blood and immune cells.
In the case of leukemia, HSCT is used to replace the cancerous white blood cells with healthy ones, which can help restore normal blood cell function and immune system activity. Stem cell therapy has also been used to treat other blood-related disorders, such as sickle cell anemia and lymphoma, and shows promise for treating other conditions in the future.
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Although the vast majority of women who inherit a single copy of an X-linked recessive disease allele are not affected by the disorder, a small percentage of women do display the disease phenotype. Which of the following could explain this rare phenomenon
Turner syndrome (a sex-chromosome aneuploidy in which women have only one X chromosome) explains the rare phenomenon.
'What is turner syndrome?'
Turner syndrome is a disorder that primarily affects females and is brought on by a missing or partially deleted X chromosome. Numerous medical and developmental issues, including as short stature, ovarian failure, and heart anomalies, can be brought on by Turner syndrome.
Turner syndrome can be identified during pregnancy, during infancy, or in the early years of life. Sometimes the diagnosis of Turner syndrome in girls with minor indications and symptoms is not made until the teen or young adult years.
Turner syndrome patients need constant medical treatment from a range of specialists. The majority of girls and women may enjoy healthy, independent lives with regular examinations and the right treatment.
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Identify what humans can do to minimize the impact of urban sprawl on wildlife.
Biomagnification is... concentration of a contaminant stays the same as you move to higher trophic concentration of a contaminant increases as you move to higher trophic level concentration of a contaminant increases as an individual grows concentration of a contaminant stays the same as an individual grows
Answer: Biomagnification refers to the process by which the concentration of a contaminant increases as you move to higher trophic levels in a food chain or food web. In other words, as organisms consume other organisms, the contaminants present in the prey accumulate and become more concentrated in the bodies of the predators.
To understand this process, let's consider an example involving a water ecosystem. Suppose a pollutant is released into the water, such as a pesticide or heavy metal. The primary producers, such as algae or aquatic plants, absorb small amounts of the contaminant from the water. As herbivorous organisms consume these primary producers, they ingest the contaminants along with their food.
Since the contaminant is not easily broken down or eliminated from the organisms' bodies, it accumulates over time. As a result, the concentration of the contaminant becomes higher in the herbivores than in the primary producers. Now, when carnivorous organisms consume the herbivores, they not only accumulate the contaminant from their own food but also from all the prey they have consumed. This leads to an even higher concentration of the contaminant in the carnivores.
Therefore, biomagnification describes the phenomenon where the concentration of a contaminant increases significantly as you move up the food chain or trophic levels. The highest concentration of contaminants is often found in top predators, such as large fish, birds of prey, or mammals, which can have adverse effects on their health and reproductive capabilities.
It's important to note that biomagnification primarily occurs for persistent and non-biodegradable contaminants that cannot be easily metabolized or excreted by organisms. These contaminants are often lipophilic (fat-soluble), which allows them to accumulate in fatty tissues and remain in the organism's body for long periods, leading to biomagnification.
Explanation:
C4 photosynthesis occurs in a small percentage of plants living in _____ environments
C₄ photosynthesis occurs in a small percentage of plants living in warm, tropical and subtropical environments.
C₄ photosynthesis is a type of photosynthetic pathway employed by some plants as an adaptation to overcome limitations of the traditional C₃ photosynthesis pathway. These plants have adapted to high light, high temperature, and low carbon dioxide (CO₂) conditions, which are common in such environments.
C₄ plants have specialized leaf anatomy and biochemistry that allow them to efficiently fix CO₂ into a four-carbon compound before performing the conventional photosynthesis process, which helps them to conserve water and efficiently use CO₂ even under stressful environmental conditions. Examples of C₄ plants include maize, sugarcane, and sorghum, among others.
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Processing of eukaryotic RNA yields a mature mRNA that typically O has a 5' cap, a 3' poly A tail, and has removed an amount of introns O has a mix of methylated groups before and after the open reading frame and the 3' poly A tail
O has a 3' cap, a 5' poly A tail, and no introns
O has a 5' cap, a 3' poly A tail, and has spliced out methylated exons
The processing of eukaryotic RNA yields a mature mRNA that typically has a 5' cap, a 3' poly A tail, and has removed an amount of introns.
During the processing of eukaryotic RNA, the primary transcript undergoes several modifications to form a mature mRNA. One of the modifications is the addition of a 5' cap, which consists of a modified guanine nucleotide, to the 5' end of the mRNA.
This cap protects the mRNA from degradation and helps in the translation of the mRNA. Another modification is the addition of a 3' poly A tail, which consists of multiple adenine nucleotides, to the 3' end of the mRNA. This tail also helps in the stability and translation of the mRNA.
Additionally, during RNA splicing, introns (non-coding regions) are removed from the primary transcript, and the exons (coding regions) are spliced together to form a mature mRNA. The resulting mRNA is then transported out of the nucleus to the cytoplasm, where it can be translated into a protein.
Hence, a mature eukaryotic mRNA typically has a 5' cap, a 3' poly A tail, and has removed an amount of introns.
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what do scientist need to look at before devleping an argument
Answer:
Because they are genuis
Explanation:
Solid tumors are clusters of cancer cells and often contain blood vessels. When molecule B binds to the wild-type Brec protein in the plasma membrane of certain solid tumor cancer cells (Figure 1), the cancer cells express the membrane protein A and sometimes stimulate increased growth of blood vessels into the tumors.
Cells with a particular mutation in the Brec gene (Brec-MUT cells) have much increased expression levels of A and stimulate greater growth of blood vessels than do cancer cells with the wild-type Brec (Brec-WT cells); the cells with the mutant Brec can trigger intracellular signaling in the absence of B.
Researchers proposed that the signaling pathway modeled in Figure 1 is triggered by activation of the wild-type Brec and is associated with phosphorylation and activation of kinase D, expression of A, and the ability of the cancer cells to stimulate blood vessel growth.
Part A: Based on the signaling model shown in Figure 1, describe the role of molecule C-P in the activation of D.
Part B: Explain how a molecule such as kinase D can amplify an extracellular signal. Explain how the mutant Brec protein is able to activate kinase D even in the absence of its ligand.
Part C: Based on the proposed signaling pathway, predict the relative activity of kinase D in the Brec-WT cells compared with kinase D in the Brec-MUT cells when both cell types are grown in nutrient broth lacking B. Justify your prediction.
Part D: The researchers claim that treatment with a compound that inhibits dephosphorylation of the intracellular domain of the Brec protein will inhibit expression of A in Brec-WT cells but not in Brec-MUT cells. Based on the information provided, provide reasoning to refute their claim.
The molecule C-P phosphorylates and thus activates D, whereas Kinase D amplifies cellular signaling by phosphorylating many substrates. In this case, it is expected to observe kinase D overexpression in Brec-MUT cells.
Cancer, phosphorylation and signaling pathwaysCancer can be defined as a multifactorial disease, which is often associated with uncontrolled cell growth.
Cancer signaling may be associated with defective pathways such as, for example, a mutated kinase protein that affects normal downstream molecular cascades.
A kinase is a specific protein that acts to phosphorylate specific cellular substrates, thereby activating/deactivating a particular signaling pathway.
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does photosynthesis occur in mushroom.why?
Answer:
no
Explanation:
because it is fungi and it doesnt have chloroplast (which is needed for photosynthesis)
differentiate between compression and rare faction
Answer:
Compression- a region in a longitudinal (sound) wave where the particles are closest together. Rarefaction- a region in a longitudinal (sound) wave where the particles are furthest apart.
Explanation:
Write the classification of bamboo as per hierarchy and it’s characteristics
Explanation:
kingdom - plantae
Divison - Magnoliophyta
Class - Liliopsida
Order - Poales
Family - poaceae
Genus - Chusquea
Species - C. antioquensis
They have fibrious root system.
for many years in a row, conditions were so unusually dry on a remote island that only the toughest plant seeds were produced. the seeds were the sole food of a bird species there; the bigger beak a bird had, the better its chances of breaking open the seeds so it could survive and reproduce. after many years, the average beak size was much larger than it had been before the drought. this an example of which property of life?
This is an example of the property of life known as adaptation. Here birds with larger beaks had a better chance of survival and were more likely to pass on their genes to future generations.
The bird species adapted to the unusually dry conditions by selecting and favoring individuals with bigger beaks, which allowed them to better break open the tough plant seeds and survive. Over time, this adaptation resulted in a shift in the average beak size of the species. Additionally, this example demonstrates the interconnectedness of species and how changes in the environment can drive natural selection and affect the way species reproduce and evolve over time.
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