Based on the β-globin alignment, identify the best hypothesis about how humans are related to monkeys and gibbons.
Gibbons are more closely related to humans than monkeys are because the gibbon β-globin sequence is a closer match with the human sequence.

Answers

Answer 1

94.5% similarity can be found between humans and monkeys based on beta globin sequence, this indicates how close monkeys are to umans in terms of genetics.

What is Beta globin?

The beta-globin protein is made using instructions from the HBB gene. Red blood cells include a bigger protein called haemoglobin, of which beta-globin is a part (or subunit). Hemoglobin in adults is made up of four protein subunits: typically two beta-globin subunits and two alpha-globin subunits, which are both produced by the HBA gene. Each of these protein subunits is joined (bound) to a heme, a molecule that contains iron and has the ability to bind one oxygen molecule. Red blood cells' haemoglobin attaches to oxygen molecules in the lungs. These cells subsequently circulate through the bloodstream, supplying tissues all over the body with oxygen.

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Related Questions

A solid that forms when liquids are mixed during a chemical reaction is called:

Answers

A solid that forms when liquids are mixed during a chemical reaction is called a precipitate.

f the doubling time for a bacterial species is 30 minutes and there are two cells at the start, what is the population size after 2 hours?

Answers

f the doubling time for a bacterial species is 30 minutes and there are two cells at the start,  the population size after 2 hours be 32cells

Since the doubling time for the bacterial species is 30 minutes, the number of cells will double every 30 minutes. After 2 hours (or 120 minutes), there will be 4 doublings:

After 30 minutes, there will be 2 x 2 = 4 cells
After 60 minutes, there will be 4 x 2 = 8 cells
After 90 minutes, there will be 8 x 2 = 16 cells
After 120 minutes, there will be 16 x 2 = 32 cells
Therefore, the population size after 2 hours would be 32 cells.

It's worth noting that bacterial growth is rarely so predictable in real-world scenarios, as factors like competition for resources, changes in the environment, and cell death can all affect the growth rate and population size of bacterial populations. However, the concept of exponential growth and the doubling time can be useful for understanding the basic principles of bacterial growth and the potential consequences of uncontrolled bacterial proliferation.

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the space between the parietal layer and visceral layer of the pericardium contains ______.
pericardial fluid
film of serous fluid
pericardial cavity
serous membranes

Answers

The fluid produced into the pericardial cavity by the pericardium's serous layer is known as pericardial fluid. An exterior fibrous layer and an inner serous layer make up the pericardium. Thus, option B is correct.

What is the space between the parietal layer in the heart?

A clear to pale yellow liquid that is present throughout the body, especially in the spaces between organs and the membranes that surround or line them.

Such as the heart and pericardium or the abdomen and peritoneum, and that, when present in significant amounts, is a sign of a pathological condition.

A pericardial effusion's pressure may cause the heart's rhythm to change. In severe circumstances, it could result in mortality if left untreated and cause heart failure.

Therefore, the space between the parietal layer and visceral layer of the pericardium contains film of serous fluid.

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Which part of the cell contains genetic information.A) Plasma membraneB) NucleusC) ChloroplastD) Mitochondria

Answers

Answer: B.) The nucleus

Explanation:

Answer:

B) Nucleus contains genetic information.

Explanation:

The nucleus of a cell is the organelle that contains the genetic information of a cell in the form of DNA (deoxyribonucleic acid). DNA is responsible for transmitting genetic information from one generation of cells to the next and for controlling the function of cells. The nucleus is surrounded by a double membrane called the nuclear envelope, which helps to protect and regulate the genetic material inside. The nucleus also contains other important structures such as chromatin and the nucleolus, which are involved in the regulation of gene expression and the synthesis of ribosomes, respectively.


ALLEN

classify the descriptions of keratin, collagen, and fibroin. some phrases may apply to more than one protein.nswer Bank contains hydroxyproline every third residue is glycine contains heptad repcals has intrachain hydrogen bonds has left-handed helices has interchain hydrogen bonds every second residue is glycine

Answers

Keratin contains intrachain hydrogen bonds, has left-handed helices Collagen contains hydroxyproline, every third residue is glycine, Fibroin contains intrachain hydrogen bonds, has left-handed helices.

Keratin is a fibrous protein that provides structural support and strength to skin, hair, nails, and other tissues in the body. It contains intrachain hydrogen bonds, which help to stabilize its structure, and has left-handed helices, which are a type of alpha helix that provide additional stability. Collagen is the most abundant protein in the body and is a key component of connective tissues such as tendons, ligaments, and cartilage. It contains hydroxyproline, a type of amino acid that is important for its stability, and every third residue is glycine, which helps to maintain its triple-helix structure. Collagen also has left-handed helices and interchain hydrogen bonds, which provide additional stability to the protein. Fibroin is a silk protein that is used by silkworms to produce their cocoons. It contains intrachain hydrogen bonds and has left-handed helices, which contribute to its stability. Fibroin also has interchain hydrogen bonds and every second residue is glycine, which help to maintain its overall structure.

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A DNA molecule that is produced by combining DNA from different sources or organisms is called

A) marker DNA.

B) polymerase DNA.

Eliminate

C) recombinant DNA.

D) trabscrition DNA

Answers

Answer:

C

Explanation:

Recombinant DNA (rDNA) molecules are DNA molecules formed by laboratory methods of genetic recombination (such as molecular cloning) that bring together genetic material from multiple sources, creating sequences that would not otherwise be found in the genome.

differences in these bacterial structures can influence which antibiotics bacteria are susceptible to.
-Gram-positive bacteria,
-Gram-negative bacteria,
-Pathogen bacteria
-antibiotic

Answers

Differences in these bacterial structures can influence which antibiotics bacteria are susceptible to, Option A) Gram-positive bacteria.

Changes in bacterial architecture are caused by both evolutionary and cell wall structural differences.

In contrast, the thick, porous peptidoglycan coating within Gram-positive microorganism cell walls allows antibiotics to more easily infiltrate the cell and/or interact with the peptidoglycan itself. It is crucial because knowing what proteins and enzymes are present in the bacterial cell allows you to determine what needs to be produced to prevent the creation of those enzymes and proteins. Antimicrobial drugs used to dispose of different microbial systems and types of microbial cells have various degrees of resistance. Microorganisms with endospores are the most resistant.

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the thin space between the parietal and visceral layers of the serous pericardium is the ______ cavity.-pericardial-epicardium-endocardial-pleural

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The thin space between the parietal and visceral layers of the serous pericardium is the pericardial cavity.

The fibrous pericardium is a connective tissue layer that supports and protects the heart. It is connected to the diaphragm, the sternum (through the sterno-pericardial ligaments), and the vertebral column via many ligaments. It stabilises the heart.

The outer (parietal) layer of serous pericardium lines the inner surface of the fibrous pericardium. The exterior surface of the heart is lined by the inner (visceral) layer of the serous pericardium. The pericardial cavity, which contains pericardial fluid, is located between the two layers of the serous pericardium. This fluid acts as a lubricant between the two layers and allows the heart to expand and contract.

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the tiny structure within cells, like mitochondria and lysosomes, that carry out a specific function for the cells are called.

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An organelle is a subcellular structure that, like an organ, has one or more distinct duties to do in the cell.

The nucleus, which store genetic information, mitochondria, which provide chemical energy, and ribosomes, which build proteins, are among the more essential cell organelles. Organelles are small cell structures that perform distinct tasks within the cell.

Other organelles found in eukaryotic cells outside the nucleus include mitochondria, chloroplasts, the endoplasmic reticulum, the Golgi apparatus, and lysosomes. Each of these organelles serves a distinct purpose that is essential to the cell's survival.

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What are the inner mass cells of blastocyst?

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An embryo's early development includes a component known as the inner cell mass (ICM), also known as the embryoblast (or pluriblast in marsupials). The blastocyst's mass of cells is what eventually gives rise to the fetus's distinct structures.

What is cells of blastocyst?

A ball of cells known as a blastocyst develops in the first five to six days of pregnancy, shortly after a sperm fertilizes an egg. It embeds itself in the uterine wall, developing into an embryo and subsequently a fetus. An important stage in the development of an amphibian embryo is the blastocoel. It allows for cell movement during gastrulation and prevents premature interaction between the cells below and above the blastocoel.

What cells make up blastocyst?

The blastocyst is made up of three cell lineages: extraembryonic TE cells, primitive endoderm (PE) cells, and pluripotent epiblast (EPI) cells, which contribute to the placenta or yolk sac, respectively.

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which of the following best describes the contraction phase of the excitation-contraction coupling reaction? choose the best answer. view available hint(s)for part g which of the following best describes the contraction phase of the excitation-contraction coupling reaction? choose the best answer. actin pushes on myosin to shorten its length, thereby shortening the muscle. an action potential travels down the t-tubule in order to release ca2 from the sarcoplasmic reticulum. actin and myosin filaments slide past each other to shorten the sarcomere, bringing z disks closer together. an action potential travels down the axon of a motor neuron in order to release acetylcholine onto the motor end plate.

Answers

The correct answer is "Actin and myosin filaments slide past each other to shorten the sarcomere, bringing z disks closer together."

Excitation–contraction coupling describes how an electrical signal, the action potential (AP), traveling along the plasmalemma evokes calcium release from the SR in the region of the myofibrils, causing a change in actin–myosin interactions, which leads to muscle contraction. In cardiomyocytes, the transduction between the electrical signal and Ca2+ release from the JSR is effected by a transmitter, which is, in fact, calcium itself.

During the contraction phase of excitation-contraction coupling, the sarcomeres in the muscle fibers contract as the actin and myosin filaments slide past each other, shortening the muscle. This causes the Z disks to move closer together, leading to muscle contraction.

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What is an example of an energy requiring reaction what uses energy from the sun to produce sugars?

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Photosynthesis is an example of an energy requiring reaction. cellular respiration ,oxygen uses energy from the sun to produce sugars.

In photosynthesis, solar energy is harvested as chemical energy in a process that converts water and carbon dioxide to glucose. Oxygen is released as a byproduct. In a process known as photosynthesis, plants and trees combine carbon dioxide from the atmosphere with energy from the sun to create the food they require to survive and develop. The trees and plants in forests help to produce oxygen as a consequence of photosynthesis by storing carbon above and below the ground.  

In cellular respiration, oxygen is used to break down glucose, releasing chemical energy and heat in the process.  Plants are autotrophs, which means they produce their own food. They use the process of photosynthesis to transform water, sunlight, and carbon dioxide into  oxygen, and simple sugars that the plant uses as fuel. Cellular respiration is a series of chemical reactions that break down glucose to produce ATP, which may be used as energy to power many reactions throughout the body. There are three main steps of cellular respiration: glycolysis, the citric acid cycle, and oxidative phosphorylation.  

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Can I have help please

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1) Emphysema is a chronic lung disease that affects the air sacs (alveoli) in the lungs.

2) Chronic obstructive pulmonary disease

3) Smoking is the leading cause of COPD and is responsible for 80-90% of all cases of the disease.

4) Nicotine is a stimulant

5) Nicotine causes the CNS to be alerted.

6) Carbon monoxide is obtained form incomplete combustion

7) CO can combine with hemoglobin and cause poisoning

What is emphysema?

In emphysema, the walls of the air sacs in the lungs are damaged, causing them to lose their elasticity and ability to expand and contract properly. This leads to the formation of larger air spaces in the lungs and a reduction in the total surface area available for gas exchange.

As a result, the lungs become less effective at exchanging oxygen and carbon dioxide, leading to difficulty breathing, shortness of breath, and other symptoms.

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suggest some factors that should be considered when choosing materials for making a product use one examples of product to illustrate answer

Answers

There are several factors that should be considered when choosing materials for making a product, including:

Cost: The cost of the materials should be considered in order to determine if they are within the budget for the project.

Strength and Durability: The materials used should be able to withstand the intended use of the product and the conditions in which it will be used.

Manufacturing Process: The materials should be compatible with the manufacturing process used to create the product.

Regulatory Compliance: The materials used should comply with any relevant regulations and standards, such as those related to safety and the environment.

Aesthetics: The appearance of the materials should be considered in order to ensure that they match the desired aesthetic for the product.

Availability: The materials should be readily available in the required quantities and at a reasonable lead time.

Sustainability: The environmental impact of the materials and their production should be considered in order to ensure that the product is sustainable and has a minimal impact on the environment.

Example: Product - Water Bottle

When choosing materials for a water bottle, one must consider the following factors:

Cost: The material should be affordable and not significantly increase the cost of the water bottle.

Strength and Durability: The water bottle should be able to withstand the pressure of being filled with liquid and the wear and tear of daily use.

Manufacturing Process: The material should be compatible with the process used to manufacture the water bottle, such as blow molding or injection molding.

Regulatory Compliance: The material should comply with any regulations related to food safety and be free of harmful substances that could leach into the water.

Aesthetics: The material should be aesthetically pleasing and match the desired design of the water bottle.

Availability: The material should be readily available in the required quantities and at a reasonable lead time.

Sustainability: The material should be environmentally friendly, easily recyclable and have a minimal impact on the environment.Materials that can be considered for making a water bottle include:

Plastic

Each of these materials has its own pros and cons and the final decision would depend on the consideration of all the factors mentioned above.

what happens with gametes to create chromosomal abnormalities?

Answers

Chromosomal abnormalities can occur in gametes, which are the specialized cells that fuse during fertilization to form a new organism. These abnormalities can result from errors that occur during the process of meiosis, which is the type of cell division that produces gametes.

There are two types of chromosomal abnormalities that can occur during meiosis: numerical abnormalities and structural abnormalities. Numerical abnormalities occur when there are an incorrect number of chromosomes in the gamete, while structural abnormalities occur when the structure of the chromosome is altered.

Chromosomal abnormalities in gametes can lead to genetic disorders in offspring and can result in various developmental and health problems. However, not all chromosomal abnormalities lead to disorders, and the severity of the effects can vary depending on the type and extent of the abnormality.

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which characteristic of dna allows methylation patterns to be maintained through replication and cell division? topoisomerases the absence of uracil recombination and repair deoxyribonucleotide synthesis semiconservative replication

Answers

Every new DNA double helix would be a hybrid made up of one strand of previously produced DNA coupled to another strand after one cell division.

The process by which a parent cell divides into two daughter cells is known as cell division. Cell expansion and chromosome replication come before cell division, which typically occurs as part of a longer cell cycle. Meiosis produces haploid gametes for sexual reproduction by reducing the number of chromosomes from two of each type in the diploid parent cell to one of each type in the daughter cells. Daughter cells produced during the process of cell division known as mitosis are genetically identical to their parent cells. In cell biology, the cell cycle includes the process of mitosis, in which duplicated chromosomes are split into two new nuclei.

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all of the following provide chemoreceptor input to the respiratory centers of the medulla oblongata, except the group of answer choices aortic body. medullary chemoreceptors. olfactory epithelium. all of the answers are correct. carotid body.

Answers

olfactory epithelium is not included in the chemoreceptor output to a respiratory centres of the medulla oblongata.

These only exist on the ventrolateral surface of the medulla oblongata and monitor changes in the pH of spinal fluid. Central chemoreceptors were once thought to be confined to areas on the ventral side of the medulla, but it is now thought that they are found throughout the brainstem, cerebellum, hypothalamus, and midbrain. High concentrations of ammonia and hydrogen ions, as well as low oxygen concentrations, cause the chemoreceptor cells to react. With the transmission of signals that block inspiration, the pnuemotaxic centre may accurately control the respiratory rate. Direct chemoreceptors include buds, which are sensitive to environmental factors in the mouth, as well as the carotid banks and aortic glands, which sense pH changes within the body. There are two types of chemoreceptors: peripheral and central.

(All of the following provide chemoreceptor input to the respiratory centers of the medulla oblongata, except the

a) Aortic body.

b) Olfactory epithelium.

c) Medullary chemoreceptors.

d) Carotid body.

e) All of the above)

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Where would you expect to find Collenchyma cells?

Answers

Collenchyma cells are elongated living cells found especially around the leaves and stems of dicotyledonous plants, providing mechanical support during growth. At maturity, the cell walls are thick and usually non-lignified, and the thickening is often unevenly distributed.

What are collenchyma and their functions?

Collenchyma is composed of elongated living cells with primary walls of uneven thickness containing hemicellulose, cellulose, and pectin materials. It provides support, structure, mechanical strength and flexibility to the petioles, veins and stems of young plants, allowing them to be easily bent without breaking.

Why is collenchyma known as a living cell?

Collenchyma is a living tissue. Similar cells make up their structure. A strong primary cell wall of cellulose and pectin forms the sole component of the induration cells, which are often viable cells. Intercellular spaces are absent or very limited. 

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what feature of cycads distinguishes them from most other gymnosperms?
1. they have exposed ovules
2. they have flagellated sperm
3. they are pollinated by animals

Answers

The feature of cycads that distinguishes them from most other gymnosperms is that they have flagellated sperm, which is in Option 2, as the gymnosperms have exposed ovules and are pollinated by animals.

What is the significance of cycads?

The cycads are a group of gymnosperms that have evolved in a different strategy for reproduction and flagellated sperm allows them to reproduce in aquatic environments, and flagellated sperm is produced by the male cones.

Hence, the feature of cycads that distinguishes them from most other gymnosperms is that they have flagellated sperm, which is in Option 2, as the gymnosperms have exposed ovules and are pollinated by animals.

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what happens to the products of digestion after absorption?​

Answers

The products of digestion after absorption is passed by the circulatory system to other parts of your body to store or for different types of uses.

What is Digestion?

This is referred to as the breakdown of large insoluble food molecules into small water-soluble food molecules so that they can be absorbed into the watery blood plasma.

The circulatory system which comprises of the blood etc passes them on to other parts of your body to store or use through the help of special cells help absorbed nutrients cross the intestinal lining into your bloodstream.

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How do cells regulate the expression of genes?

a) with stop and start codons

b) by secreting unnecessary proteins

c) with transcription factors

d) by winding or unwinding chromosomes

Answers

Cells regulate the expression of genes with transcription factors.

What are Transcription factors?

Proteins called transcription factors are involved in the process of turning DNA into RNA, or transcribed DNA. A large variety of proteins—aside from RNA polymerase—called transcription factors start and control how genes are transcribed.

One distinguishing characteristic of transcription factors is the presence of DNA-binding domains that enable them to bind to particular DNA regions known as enhancer or promoter sequences.

Some transcription factors contribute to the formation of the transcription initiation complex by binding to a DNA promoter sequence close to the transcription start site.

Therefore, Cells regulate the expression of genes with transcription factors.

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A nerve fiber is a ________ elongated process, usually an axon or a peripheral process.
A. single
B. double
C. triple
D. quadruple

Answers

A nerve fiber is a Option A. single elongated process, usually an axon or a peripheral process.

A nerve fibre, also known as an axon, is a long, slender projection of nerve cells (or neurons) that transports electrical impulses away from the nerve cell body. A neuron usually has one nerve fibre that radiates from its cell body and transmits impulses to neighbouring neurons, muscles, or glands.

Nerve fibre dysfunction can result in severe acquired and inherited neurological illnesses that impact both the central and peripheral nervous systems.

In vertebrates, a nerve fibre is a long, slender extension of a nerve cell, or neuron, that normally carries electrical impulses known as action potentials away from the nerve cell body. The axon's role is to transmit information to various neurons, muscles, and glands.

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which structure is highlighted? posterior view of a human tongue. the highlighted structure resembles two ovals joined at their posterior ends, creating a butterfly-shaped section in the posterior section of the tongue.which structure is highlighted? pharyngeal tonsil lingual tonsil palatine tonsil epiglottis

Answers

The lingual tonsil is most likely the feature shown in the posterior view of a human tongue that resembles two ovals linked at their posterior ends, forming a butterfly-shaped region in the posterior part of the tongue.

Which structure has white pulp highlighted?

The white pulp and the red pulp make up the human spleen. The periarterial lymphatic sheath (PALS) and follicles, two collections of mobile T- and B-lymphocytes, respectively, make up the white pulp.

What use does the organ's white pulp, which is emphasized, serve?

As a result, the spleen's white pulp plays a crucial part in the body's typical immunological response to infection. The white pulp may be penetrated by antigen-presenting cells, which would activate any T lymphocytes that were present.

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what role does the centromere play in cellular reproduction?

Answers

The main function of the centromere is to provide the basis for the assembly of the kinetochore, a protein complex essential for proper chromosome segregation during mitosis in cellular reproduction.

Can cells without centrosomes divide?

There was strong evidence that animal cells cannot divide without centrosomes.

Why are Centromeres Important?

Centromeres are important for proper segregation of chromosomes during cell division in eukaryotes. They are characterized by highly repetitive regions of DNA and associated centromeric proteins required for attachment of microtubules to chromosomes during mitosis.

What if the cell had no centromere?

Without centromeres, kinetochores cannot form and cells cannot separate chromosomes. Therefore, centromeres are essential for the control of chromosome segregation and mitosis. 

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which is not a nonrenewable energy resource? coal natural gas wind nuclear fuels

Answers

Not a nonrenewable energy resource is C. wind

Energy is power that is useful for carrying out various types of activity processes. Energy cannot be created or destroyed, but energy can be changed from one form to another. There are two types of energy based on the source, namely renewable energy and non-renewable energy.

Renewable energy is an energy source that is abundantly available by nature and can be utilized continuously. Wind is a renewable energy resource, meaning that it is a natural resource that can be replenished at a rate comparable or faster than its rate of consumption. Coal, natural gas, and nuclear fuels are all nonrenewable energy resources, meaning that they are finite resources that cannot be replenished at the same rate as they are consumed.

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Choose all features that confined the green algal ancestors of plants to water.
- The inability to produce chlorophyll in a high oxygen environment.
- More predators in land-based ecosystems.
- Higher levels of UV light on land.
- Less water availability in a terrestrial environment.

Answers

It was the lower availability of water(option D) and the higher UV radiation that the plants would have to deal with(optionC) that kept green algal ancestors confined to watery environments.

What are algae?

The term "algae" refers to a large and diverse group of photosynthetic eukaryotic organisms. It is a polyphyletic cluster made up of species belonging to various clades. From single-celled microalgae like Chlorella, Prototheca, and diatoms to multicellular ones like the giant kelp, a massive brown alga that may grow to lengths of up to 50 metres, the organisms featured range from (160 feet).The majority are aquatic and autotrophic, lacking several of the distinguishing cell and tissue types found in land plants, such as stomata, xylem, and phloem (they produce food internally). The largest and most complex marine algae are seaweeds, whereas the most complex freshwater forms are the Charophyta, a group of green algae that includes, among other things, Spirogyra and stoneworts.

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energy produced by or coming from the sun .​

Answers

Energy produced by the sun is solar energy

how much is the knee joint flexed for the pa axial projection (holmblad method) of the intercondylar fossa?

Answers

The distal clavicle and the acromioclavicular joint are assessed using holmblad method the acromioclavicular (AC) joint radiography series.

The patient can be seated or standing straight, with the backs of their shoulders resting on the image receptor, for an AP projection of their AC joints. In cases of suspected acromia-clavicular separation, weight-bearing views could be deceptive if the deltoid and trapezius muscles are very tense. Instead of holding the weights in your hands, you might be able to decrease the impact of this spasm by strapping them to your wrist.

The cross-body adduction test is the most accurate physical examination test for acromioclavicular joint pathology. The midshaft of the clavicle should be maneuvered during this examination, which evaluates the stability of the afflicted shoulder.

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What cells produce cerebrospinal fluid in the brain?

Answers

CSF is primarily generated by the ventricle's choroid plexus epithelium and ependymal cells and flows into interconnected chambers known as cisterns and subarachnoid spaces.

The CPs found within the ventricles of the brain secrete CSF, with the two lateral ventricles being the principal producers. CSF travels unidirectionally from rostral to caudal throughout the ventricular system.

Ependymal cells are ciliated-epithelial glial cells that arise from radial glia on the surface of the brain and spinal canal ventricles. They are essential for cerebrospinal fluid (CSF) balance, brain metabolism, and waste elimination from the brain.

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which biome, because of its climate, has the largest number of species of plants and animals?

Answers

The correct option is C;  Tropical rainforests are home to the greatest variety of living species on the planet.

Although covering less than 2% of the Earth's surface, rainforests are home to more than 50% of all plants and animals found on earth. Tropical forests are the most diverse and productive terrestrial biomes in terms of biodiversity and primary output.

Tropical rainforests receive at least 70 inches of rain each year and have the most plant and animal diversity of any biome. Almost half of the world's species may be found here, with 40 to 100 or more distinct tree species present in each hectare. Tropical rainforests are the world's most ecologically diverse terrestrial ecosystems.

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Full Question ;

Which biome, because of its climate, has the largest number of species of plants and animals? a) Tundra. b) Desert.c) Tropical rainforest.d) Pine forest.

Other Questions
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