During chemiosmosis, hydrogen ions accumulate in the ______ of the mitochondrion to create a large electrochemical gradient for aerobic cellular respiration.

Answers

Answer 1

Answer:

I believe it's the Thylakoid compartment, I would still try to get some other opinions on it but I'm like 90% sure especially if it's something you've been hearing it a lot in class


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A person begins at 0 and walks 5 meters to the right, turns around and walks 8
meters to the left. What is the distance? What is the displacement?

Answers

The distance is calculated out to be 13 meters and the displacement is calculated out to be 3 meters.

What is distance and displacement and how it calculated out to be so?Distance is the measure of how many meters or kilometers you covered in the time period under consideration.Distance is the measure , or a quantity to measure the distance or the product of the speed and time.Displacement is the shortest distance from the initial point to final point.Here is given that the man walks 5 meters to the right and turn around and walks 8 meters to the left.The distance is 13 meters and displacement is 3 meters.

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A solution with a 0.8% concentration of salt is isotonic to red blood cells so the cells stay the same. Cells shrivel in hypertonic solutions and swell and burst in hypotonic solutions. In an experiment testing the effects of various concentrations of salt on red blood cells, which solution would be predicted to cause the red blood cells to swell and burst?

Answers

A hypotonic solution containing less than 0.8% of salt concentration will cause the red blood cells to swell and burst.

Hypotonic solution is the one that contains less amount of solute and more amount of solvent in it. When any cell is placed in hypotonic solution, it swells up because the amount of solutes is more in the cell than the solution. As a result the cell may even burst after swelling.

Red blood cells are the type of blood cells that contain the pigment hemoglobin which provides the blood its characteristic color. The hemoglobin not only provide color to the blood but also act as a transport system for the gases across the whole body.

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What is this gonna be?

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Answers

I think Chris might have said it best

When he said the beautiful ones - they were true every time

She's the reason for all my stress

List FOUR features of the alveoli.

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The pulmonary alveoli are small sacs found in the lungs, where gas exchange takes places.

Some of their features are:

• They are found in the respiratory bronchioles.

,

• They are cup-shaped cavities

,

• The gas exchange happens by diffusion in the alveolar membrane.

,

• They consist of an epithelial layer and an extracellular matrix surrounded by capillaries.

• They are found only in mammalian lungs

,

• They can stretch during inhalation thanks to collagen fibers.

,

• In humans, they are functional at 32 weeks of gestation, but they continue to develop until puberty.

What are staphylococci?
A. Cocci form a ring
B. Cocci that form a line
C. Cocci that form clusters

Answers

C. Cocci that form clusters

Many species of organisms are found only on islands. Lemurs are found only on Madagascar and koalas only on Australia. Which factor contributes MOST to this situation?
Responses
A small land areasmall land area
B limited food varietylimited food variety
C genetic isolationgenetic isolation
D fewer predatorsfewer predators

Answers

Answer:

c

Explanation:

genetic isolation occurs when there is no genetic exchange

analysis of the first bacterial genome to be sequenced, h. influenzae, revealed .................. rrna genes, ............... different trna genes, and ........... potential protein-coding genes.

Answers

Analysis of the first bacterial genome to be sequenced, h. influenzae, revealed 6 rrna genes, 54 different trna genes, and 1743 potential protein-coding genes.

What was the first genome to be finished?Haemophilus influenzae was the first creature whose entire genome was completely sequenced in 1995. Due to their smaller genome sizes, other bacteria and some archaea were sequenced first after it. The 1,830,140 base pair DNA genome of H. influenzae is large.

The first genome's sequencing method:The first complete genome of a virus named phiX174 is sequenced by Frederick Sanger and his team in 1977 using a DNA sequencing technique they developed.

How is genomic sequencing carried out? What is it?a technique used in laboratories to map out the complete genetic composition of a particular organism or cell type. To detect changes in specific regions of the genome, utilize this technique. These modifications could aid research into the pathogenesis of particular diseases like cancer.

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An object whose volume is calculated by multiplying length, width and height.

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A rectangular prism would be your answer.

you are studying two linked genes that influence vine height and fruitcolor in squash.yellow color is dominant over green, and tall height isdominant over short.you get the following numbers of offspring from

Answers

The recombinant offsprings are Tall green and short yellow.

What are recombinant offsprings?

Children who differ from their parents in terms of their allele combinations are known as recombinant offsprings. Consider the scenario where a mother's haploid cell contains the alleles AB and the father's haploid cell contains the alleles ab. A diploid cell with the sequence Aa+Bb is created when they come together.

The exchange of genetic material between distinct organisms, commonly referred to as genetic recombination or genetic reshuffling, produces offspring with features that are different from those of either parent.

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The complete question is-

You are studying two linked genes that influence vine height and fruit color in squash. Yellow color is dominant over green, and tall height is dominant over short. You get the following numbers of offspring from your testcross:

Tall yellow 198

Short green 192

Tall green 54

Short yellow 56

Which offspring are recombinants? (most inclusive answer)

A) Tall green

B) Short yellow

C) Tall yellow and short green

D) Tall green and short yellow

E) Short green and tall green

what forms when multiple amino acids join together?

Answers

Answer:

A peptide is two or more amino acids joined together by peptide bonds

Explanation:

the sense strand of a particular gene (dna) would be identical to the mrna transcript for that gene, except the mrna would have uracil nucleotides instead of thymine nucleotides.

Answers

The given statement exists true. Mostly as a result of the hydrolysis-induced release of ammonia during cytosine deamination to uracil.

Why is uracil used instead of thymine?

However, RNA uses uracil since the instability doesn't matter as much for RNA because mRNA is very short-lived and any potential errors don't create any permanent damage. Thymine is easily oxidized as well. The nucleus protects the thymine from oxygen.

In contrast to RNA, which also contains adenine, cytosine, and guanine but lacks thymine, DNA only has these four bases: adenine, cytosine, guanine, and thymine.

Mostly as a result of the hydrolysis-induced release of ammonia during cytosine deamination to uracil. When thymine is employed, the cell quickly realizes that the uracil is out of place and can repair it by replacing it with a cytosine once more.

The complete question is:

T/F Some viruses can infect multiple types of host organisms (animals, etc) and may also infect cells of different tissue types within a single host.

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in the second half of the glycolytic pathway, atp molecules are produced and with the offset of atps consumed in the first half, the net yield is atps per glucose.in the second half of the glycolytic pathway, atp molecules are produced and with the offset of atps consumed in the first half, the net yield is atps per glucose.

Answers

During the first half of glycolysis, two molecules of ATPs are consumed. In the second half however, 4 molecules of ATPs are produced per glucose. If we remove the two ATPs that has been consumed, the net yield is two ATPs per glucose

Glycolytic pathway is an anaerobic process that converts glucose into pyruvate molecules and Adenosine Triphosphate [ATP]

The pathway consist of 10 steps.

During the first phase [first five steps], 2 molecules of ATP are consumed to two molecules of Glyceraldehyde-3-phosphate [GA3P] which enter the second phase of the pathway.

At the end of the second phase, 4 molecules of ATPs and 2 molecules of pyruvate are produced

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All cells have a phospholipid bilayer as a cell membrane. Thinking about the variety of shapes and sizes of cells what can you conclude about the cell membrane?

Answers

Answer:

Phospholipid bilayers are critical components of cell membranes. The lipid bilayer acts as a barrier to the passage of molecules and ions into and out of the cell. However, an important function of the cell membrane is to allow selective passage of certain substances into and out of cells

Explanation:

The phospholipid bilayer is critical in maintaining the integrity of the cardiomyocyte, as it forms a permeability barrier that provides a physical interface between the inside and the outside of the myocyte. It also contains key enzymes and ion channels that regulate ionic gradients across the cell membranes.

What is the term fo the material though which wave moves

Answers

The material through which a wave moves is called a medium.

What are waves?

wave: the regular, systematic spread of disturbances from one location to another. The waves that travel on water's surface are the most well-known, but waves also exist in sound, light, and the movement of subatomic particles. The disturbance oscillates periodically (see periodic motion) with a set frequency and wavelength in the simplest waves. While electromagnetic waves (see electromagnetic radiation) do not require a medium to travel through and can move through a vacuum, mechanical waves, like sound, need one. The characteristics of the medium affect how a wave travels across it. also see seismic wave.

Many waves require something to travel through. Water waves travel along the surface of the water, and sound waves travel through air. You can even make a wave travel along a rope. The material through which a wave travels is called a medium. Gases (such as air), liquids (such as water), and solids (such as ropes) all act as mediums. Waves that require a medium through which to travel are called mechanical waves.

Hence The material through which a wave moves is called a medium.

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the amino acids in the original partial sequence (n-term-...p-i-e...-c-term) have little to no impact on protein structure and function. however the amino acid sequence near the c-terminal end of the protein is required for normal function. any amino acid changes in this region of the protein will result in a nonfunctional protein.

Answers

In the primary structure of proteins, any amino acid changes in the functional region of the protein will result in a nonfunctional protein.

How does amino acid sequence affect the function of a protein?

Proteins are polymers made up of amino acid monomer units.

The sequence of amino acids in a protein describes the primary structure of a protein.

Proteins are molecules whose functions depend on their structures.

There are four levels of structure in a protein molecule:

primary structuresecondary structuretertiary structure andquarternary structure

The most important structure of a protein is the primary structure. Thus, any change in the sequence of amino acids especially on the active site of the protein will affect the protein function.

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What did Darwin see in South America that surprised him?

Answers

Answer:

In South America, Darwin saw fossils of sea animals high in the mountains.

Explanation:

Controls cell division

A. Golgi apparatus

B. Lysosome

C. mitochondria

D. nucleus

E. ribosome

F. vacuole

Answers

The cell nucleus is the organelle responsible for controlling cell division in eukaryotic cells (Option D).

What is the cell nucleus?

The cell nucleus is an organelle in eukaryotic cells that contains the genetic material, i.e., the DNA sequence, which is responsible for encoding the information required to synthesize proteins and further biomolecules in a cell. This DNA is a long nucleotide sequence that contains genes that are transcribed to modulate cell division during mitosis or meiosis.

Therefore, we can conclude that the cell nucleus contains DNA that is responsible to modulate the cell division process of cells.

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Classify a pet dog select all that apply

Answers

Dogs are classified as follows:

Kingdom—Animalia (note the Latinized spelling)
Phylum—Chordata (presence of a nerve cord along the back)
Class—Mammalia (presence of hair, milk glands)
Order—Carnivora (meat eaters)
Family—Canidae (dog family)
Genus, species—Canis familiaris.

(i can’t exactly help because there are no answer choices . sorry)

Answer: Hey, can you please give us options? It'd be helpful for us to assure the answer we give will be correct.

Explanation:

hereditary spherocytosis (hs) is a disorder of red blood cells that causes the cells to be smaller and spherical instead of having the usual flattened, biconcave shape. the average diameter of normal red blood cells is 7.2μm, and the average diameter of red blood cells in a person with hs was found to be 6.7μm. the normal red blood cell has an average surface area of 136μm2 and an average volume of 91μm3.

Answers

Answer:

Hereditary spherocytosis (HS) is a disorder of red blood cells that causes the cells to be smaller and spherical instead of having the usual flattened, biconcave shape. The average diameter of normal red blood cells is 7.2μm, and the average diameter of red blood cells in a person with HS was found to be 6.7μm. The normal red blood cell has an average surface area of 136μm² and an average volume of 91 μm². Which of the following provides an accurate calculation of the surface area to volume ratio of an HS red blood cell, as well as a prediction of its effect on the efficient transferring of oxygen compared to a normal red blood cell? a. The ratio is 0.45, and the cells are more efficient at transferring oxygen. b. The ratio is 1.12, and the cells are less efficient at transferring oxygen. c. The ratio is 0.89, and the cells are less efficient at transferring oxygen. d. The ratio is 141, and the cells are more efficient at transferring oxygen.

The ratio is 0.89, and the cells are less efficient at transferring oxygen.

What is hereditary spherocytosis?

Hereditary spherocytosis (HS) is a genetic disorder that affects the shape of red blood cells. Red blood cells are responsible for carrying oxygen to the body's tissues, and they have a characteristic flattened, biconcave shape that allows them to move easily through the blood vessels and deliver oxygen to the tissues.

In people with HS, the red blood cells are smaller and more spherical than normal, which can cause problems with their function. The smaller size of the red blood cells in people with HS can lead to an increased number of red blood cells being produced in an attempt to compensate for the reduced oxygen-carrying capacity. This can lead to an excess of red blood cells in the blood, known as polycythemia, which can cause the blood to become thick and viscous.

HS is caused by mutations in genes that are involved in the production and function of red blood cells. The disorder is inherited in an autosomal dominant pattern, which means that a person only needs to inherit one copy of the mutated gene to develop the condition. HS is typically diagnosed in childhood and can be treated with medications, blood transfusions, or surgery.

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A student is investigating a cell. The cell has a nucleus and organelles as well as a cell wall. Which type of cell is it?

Prokaryotic because it has a nucleus and organelles.

Eukaryotic because it has a nucleus and organelles.

Eukaryotic because it has a cell wall.

Prokaryotic because it has a cell wall.

Answers

A cell with a nucleus, a cell wall, and other organelles would be a eukaryotic cell because of the presence of a nucleus and organelles—option 2.

What are eukaryotic cells?

Eukaryotic cells are cells that have nuclei and membrane-bound organelles such as mitochondrion, chloroplasts, and so on.

Eukaryotic cells are of two types, namely:

Plant cellsAnimal cells

Plant cells have cell walls and chloroplasts. The chloroplast is an organelle that functions in photosynthesis. Plant cells also have large central vacuoles.

Animal cells, on the other hand, have no cell wall and their vacuoles are usually smaller than that of plant cells.

Considering all this information, a cell that has a nucleus and organelles, as well as a cell wall, would be a eukaryotic plant cell.

Thus, the cell that the student is investigating is a plant cell.

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1. Describe the 4 features that all cells have in common.

2. What are the two types of cells, and what is the difference between these two types of cells?

(class discussion)

Answers

The 4 features that all cells have in common are Cytoplasm, plasma membrane, DNA, ribosomes. Further, the two types of cells are Prokaryotes and Eukaryotes.

The Four Common elements of Cells

Four elements are present in all cells: the cytoplasm, a jelly-like area inside the cell where other cellular components are located; the plasma membrane, an outer covering that separates the interior of the cell from its surrounding environment; the DNA, the genetic material of the cell; and the ribosomes, tiny particles that synthesize proteins.

Difference between Prokaryotes and Eukaryotes

Prokaryotes, however, vary from eukaryotic cells in a number of ways. A prokaryotic cell is a straightforward, one-celled (unicellular) organism that is devoid of a nucleus or any other organelle that is membrane-bound. Soon, it will become clear that this is very different in eukaryotes.

In contrast to Archaea and eukaryotes, bacteria have peptidoglycan, which is composed up of sugars and amino acids, as well as polysaccharide capsules in many cases. The cell wall serves as an additional layer of defense, aids in maintaining the cell’s form, and stops dehydration.

The cell can adhere to surfaces in its environment thanks to the capsule. Fimbriae, pili, or flagella are present in several prokaryotes. While most pili are employed to exchange genetic material during conjugation, a sort of reproduction, flagella are used for motility.

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What happens to the lungs when air is blown in?

Answers

Your lungs have more room to grow larger as they fill up with air.
Every time you inhale air, dozens of body parts work together to help get that air in there without you ever thinking about it. As you breathe in, your diaphragm contracts and flattens out. This allows it to move down, so your lungs have more room to grow larger as they fill up with air.

A crest of a wave with an amplitude of 5 meters intersects the through of another wave with an amplitude of 2 meters. What is the resulting amplitude?


2 meters
7 meters
5 meters
3 meters

Answers

A destructive interference establishes the interaction between the wave's crest and another wave's trough. The resulting amplitude is the difference between the crest and the trough amplitudes. D) 3 meters.

What is a wave composed of?

Waves are composed of

Crest: Highest part of the waveTrough: The lowest part of the wave

Several variables can be considered when analyzing waves, such as

Height: Difference between the highest and the lowest part of a waveAmplitude: Distance from the baseline, which is half the wave's height.Wavelength: Horizontal distance between two crestsPeriod: Time spent between one wave and the other one

Here, we are considering the amplitud and the interaction between and wave's crest with a wave's trough, which means we are referring to a destructive interference.

In destructive interference there is no complete anulation of amplitudes when one of the amplitudes is higher than the other one. So to get the resulting amplitud, we should look for the difference between them.

Wave A crest is 5 meters above the baseline. Wave B trough is 2 meter below the baseline.

The difference would be 3 meters above the baseline. This means that the resulting amplitud is 3 m.

Option D) 3 meters.

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While walking barefoot on the beach, joe stepped on a thorn that penetrated through the sole of his foot to the dermis. How many layers of epidermis did the thorn penetrate?.

Answers

While walking barefoot on the beach, joe stepped on a thorn that penetrated through the sole of his foot to the dermis. The thorn penetrates 5 layers of the epidermis.

The top layer of skin on your body is called the epidermis. It serves a variety of crucial roles, such as shielding your body from the elements, maintaining moisture levels in your skin, generating new skin cells, and determining the color of your skin. It's crucial to look after your skin.

The dermis helps in thermoregulation, sensibility, and support and protection of deeper layers of skin. The basic cells in the dermis are fibroblasts, but histiocytes, mast cells, and adipocytes are also crucial for preserving the dermis' typical form and function. The skin is made up of three tissue layers: the epidermis, and the outermost layer. The middle layer is the dermis. The bottom, or fatty layer, is the hypodermis.

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What was the purpose of using CRISPR in the Anopheles gambiae mosquitoes experiment?Group of answer choicesTo find a way to lower mosquito populations in the wild and get rid of malaria in the future.The purpose of this experiment was to create a new disease like malaria.To find a way to lower mosquito populations in the wild and increase cases of malaria in the future.To find a way to increase mosquito populations in the wild and get rid of malaria in the future.

Answers

To find a way to lower mosquito populations in the wild and increase cases of malaria in the future the purpose of using CRISPR in the Anopheles gambiae mosquitoes experiment.

Why do humans get malaria?

The malaria parasite, which is spread by infected mosquitoes, multiplies inside red blood cells after entering the human bloodstream. After a few days, these cells burst, infecting other red blood cells and resulting in symptoms such as a severe headache, nausea, vomiting, fever, and coma.

What causes malaria largely?

A plasmodium-genus single-celled parasite, which causes malaria. Most frequently, mosquito bites are the means of parasite transmission to people.

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Given that the starting population, N(0), is 10 and has a growth rate, m, of 2
individuals per unit of time, what will the population be at 25 units of time?
OA. 80
OB. 75
OC. 60
OD. 125
SUBMIT

Answers

The starting population, N(0), is 10 and has a growth charge, m, of 2 individuals in keeping with a unit of time, the populace is at 25 devices of time: OA.80

A discrete assemblage of entities with identifiable traits inclusive of human beings and animals with the goal of analysis and information collection is known as a population. It consists of a comparable institution of species that reside in a specific geographical region with the ability to interbreed. the full number of humans dwelling in a specific area in a selected time is referred to as the populace.

The population is one of the important factors which facilitates the balance of the environment, the populace ought to the stable with the means and resources. it can be a set of individuals, items, events, organizations, and so on. you use populations to draw conclusions. Definition 1: Population. An example of a population is the full frame of scientists in the faculty. This includes all college students observed at that school during the statistical series.

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Part C
A friend believes that studying the genetics of dead organisms offers little benefit to modern-day humans. Do you agree
with this statement? Use information from the article(DNA: our ancient ancestors had lots more) to support your argument. Need help asp thanks

Answers

Yes, studying of genetics of dead organisms has offered a great benefit to modern-day humans. This information has greatly uplifted out understanding about the previous beings.

DNA research

All living things have a fundamental component called DNA, which is made up of information essential for the development of the body and the maintenance of its biological functions.

Thanks to recent technical advancements, scientists can now directly extract DNA from the remains of long-dead people and other organisms.

With the ability to read ancient DNA, we may examine the genetic alterations that shaped modern animals, acquire new information about ancient life, and gain fresh perspectives on intriguing evolutionary puzzles.

How did Neanderthals develop, for instance, and why did mammoths become extinct?

Examining systems that influence how genes function, known as epigenetics, can offer additional significant information.

For instance, using epigenetics, we discovered intriguing alterations in the modern human voice box’s (officially known as the larynx) structure that may have enabled us to create complex linguistic structures and produce rich tones.

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interesting fact about circulatory system

Answers

Answer:

1.The only muscle that is always active and ceases only when we pass away is the heart.

2.An estimated 15 million blood cells are lost per second.

3.Every day, 200 billions of platelets, which are the disk-shaped pieces of blood cells, are created.

4.An infant's blood volume is only one liter, compared to an adult's normal 5–6 liters.

Explanation:

why can mitosis be called cell duplication

Answers

Because, in general, the 2 daughters cell are identical to the single parent cell: the daughter cells have the same number of chromosomes as each other and as the parent cell, and the daughters cells are genetically identical to each other and to the parent cell. That is not true for meiosis, in which all the daughter cells differ from each other genetically, and from the parent cell both genetically and in the number of chromosomes.
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Mitosis is considered an “equational” form of cell division — it occurs in cells that do not produce gametes (e.g., somatic cells). During mitosis, a cell divides once to produce two daughter cells with genetic material identical to that of the original parent cell and to each other

“Why is there so much peat in the peat/perfrost system? (Minimum of 5 sentences)


PLEASE HELP!!!!!!

Answers

Answer:

Peatlands form in areas where waterlogged conditions slow down the decomposition of plant material and peat accumulates. This accumulation of carbon-rich plant remains has been especially strong in northern tundra and taiga areas where they have helped cool the global climate for more than 10,000 years.

i just had that :D

Explanation:

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