What new information do you feel like you missed? If you are having trouble recalling reread to clarify. The Big Bang theory.

What New Information Do You Feel Like You Missed? If You Are Having Trouble Recalling Reread To Clarify.

Answers

Answer 1

The information about the big bang theory is everything in the cosmos was compressed into a singularity, a point of infinite heat and density, around 13.7 billion years ago. Our cosmos suddenly began to expand explosively, expanding faster than the speed of light.

According to the Big Bang theory, the Universe's present and past matter both originated at the same moment, around 13.8 billion years ago. At this point, all matter had been gathered into a singularity, which was a tiny small ball with infinite density and extreme heat.

Never was The Big Bang Theory canceled. Jim Parsons' unwillingness to extend his $50 million deal for seasons 13 and 14 had a significant impact on the choice. He loved playing Sheldon Cooper, but soon he became tired of it and was afraid of what life had in store for him outside of the sitcom.

The Big Bang theory's basic tenet is that the cosmos began at a single location some 13.8 billion years ago. Georges Lemaitre put forth the Big Bang idea in 1927. Georges referred to it as the hypothesis of the primordial atom rather than the Big Bang idea.

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Related Questions

Albinism is caused by a recessive mutation. If two albino mice mate and produce offspring with normal pigmentation, what could you conclude about the parental mutations

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Answer: A geneticist studies a series of families in which both parents are normal and at least one child has albinism. The geneticist reasons that both parents in these families must be heterozygotes and that albinism should appear in  of the children of these families. To his surprise, the geneticist finds that the frequency of albinism among me children of these families is considerably greater "Than . Can you think of an explanation for the Thigher-than-expected frequency of albinism among These families?

Explanation:

Explain the relationship between a thriving civilization and it’s agriculture system? In a paragraph

Answers

Answer:

They use advance technologies in agriculture.

Explanation:

There is a direct relationship between thriving civilization and it’s agriculture system because they use advance methods and technologies in agriculture instead of traditional practices. They use heavy machinery for tillage in order to save the time, use high yielding varieties, use proper dose of fertilizers, use of pesticides and weedicides in order to protect the crop. They harvest the crop by using thresher in order to avoid post harvest losses. In short, they use all technologies available to make a higher yield in order to earn more profit.

Human body cells have______ pairs of chromosomes
O 23 pairs
O
46 pairs
O 3 pairs
O 6 pairs

Answers

Answer:

23 pairs

Explanation:

In humans, each cell normally contains 23 pairs of chromosomes, for a total of 46. Twenty-two of these pairs, called autosomes, look the same in both males and females

have great day

Human body cells have______ pairs of chromosomesO 23 pairsO46 pairsO 3 pairsO 6 pairs

Which of the following nutrient provide more energy? a. Protein b. Carbohydrate c. Lipids d. Vitamins​

Answers

The nutrient which provide more energy is C. Lipids

Among the given options, lipids provide the most energy per unit mass. Lipids, also known as fats, are a concentrated source of energy in the diet. When metabolized, lipids yield approximately 9 kilocalories (kcal) of energy per gram.

Carbohydrates, including sugars and starches, provide approximately 4 kcal of energy per gram. They are a readily available source of energy for the body, particularly for short-term energy needs. Proteins also provide approximately 4 kcal of energy per gram. However, their primary role is not as an energy source but rather as the building blocks for tissues, enzymes, and other important molecules in the body.

Vitamins, on the other hand, do not provide significant energy. They are essential for various biochemical processes in the body but do not contribute directly to energy production.

It is important to note that while lipids provide the most energy per gram, the overall balance and variety of nutrients in a diet are crucial for maintaining optimal health. Nutrient needs vary based on individual factors, such as age, sex, activity level, and overall health goals. Therefore, Option C is correct.

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Which of the following would be an example of an R-selected species?

Answers

An example of an R-selected species would be one that produces a large number of progeny with small size. So, the correct option is C.

R-selected species are characterized by their reproductive strategy, which focuses on producing a large number of offspring with relatively small size. These species prioritize quantity over quality when it comes to offspring production.

Option ''Large number of progeny with small size'' represents an example of an R-selected species. These species typically have a high reproductive rate and invest minimal resources in individual offspring. By producing a large number of progeny, they increase the chances of survival and successful reproduction in unpredictable or unstable environments.

In contrast, options A) Small number of progeny with small size and B) Small number of progeny with large size represent strategies more commonly associated with K-selected species. K-selected species prioritize quality over quantity, producing fewer offspring but providing them with greater parental investment and resources, resulting in larger size and higher survival rates.Option D) Large number of progeny with large size is less commonly observed in nature and does not align with the reproductive strategy of either R-selected or K-selected species.

Therefore, the correct option is C.

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Complete Question:

Which of the following would be an example of an R-selected species?

A) Small number of progeny with small sizeB) Small number of progeny with large sizeC) Large number of progeny with small sizeD) Large number of progeny with large size

The processes by which a molecule can be extracted and processes by which a molecule can be isolated

Answers

Answer:

Extraction is the first step to separate the desired natural products from the raw materials.

solvent extraction, distillation method, pressing and sublimation

Isolation can be achieved from polyherbal formulation but it will be rather difficult and would involve complex purification steps .

Explanation:

Have a great day!

To enter or leave a cell substance must be through
a - microtubules
b - Golgi apparatus
c - the plasma membrane
d - the nucleus​

Answers

Answer:

d - the nucleus

I hope it helps......

c - the plasma membrane

The plasma membrane is barrier between the outside and the inside of the cell

inquiry based pedagogy is being embraced in principle across the globe. in the last decade , it has been supported by an increasing body of research on its effectiveness. illustrate your understanding of the concept of inquiry based pedagogy with a relevant example​

Answers

Inquiry-based pedagogy involves fostering curiosity and active learning. For example, students investigating real-world environmental issues and proposing solutions.

Inquiry-based pedagogy is a teaching approach that promotes active learning and critical thinking through inquiry and exploration. One relevant example of inquiry-based pedagogy is a science classroom where students are encouraged to design and conduct their own experiments. Instead of simply following instructions, students formulate research questions, develop hypotheses, plan and execute experiments, collect and analyze data, and draw conclusions. For instance, students may investigate the effect of different variables on plant growth by manipulating factors like light, water, or soil composition. This approach allows students to engage in authentic scientific practices, develop problem-solving skills, and gain a deeper understanding of the scientific method. By actively participating in their learning process, students develop a sense of ownership and become more engaged, fostering a love for learning and nurturing their ability to explore and discover knowledge independently.

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(20 POINTS) Of the animals in this phylogenetic tree, which two species are most closely related?
human
thesus monkey
mouse
chicken
frog
lamprey

(20 POINTS) Of the animals in this phylogenetic tree, which two species are most closely related?humanthesus

Answers

It should be the human and the thesus monkey

Answer:frog and mouse

Explanation:

List and explain types of tropic response in plants?​

Answers

Plants exhibit various types of tropic responses, which are directional growth movements in response to external stimuli. Here are four types of tropic responses commonly observed in plants:

1. Phototropism: Phototropism is the growth response of plants towards or away from a light source. Typically, plant shoots exhibit positive phototropism, meaning they grow towards the light, while roots exhibit negative phototropism, growing away from the light. The hormone auxin plays a crucial role in mediating phototropic responses by redistributing growth hormones unevenly in plant tissues.

2. Geotropism/Gravitropism: Geotropism, also known as gravitropism, is the response of plants to gravity. Plant roots exhibit positive geotropism, growing towards the pull of gravity, while shoots exhibit negative geotropism, growing against the force of gravity. The differential distribution of auxin in response to gravity influences the growth patterns in roots and shoots.

3. Thigmotropism: Thigmotropism is the response of plants to touch or mechanical stimuli. It involves directional growth in response to contact with solid objects. For example, tendrils of climbing plants exhibit thigmotropic responses by coiling around supports for stability and attachment. Thigmotropism is often mediated by changes in the growth hormone auxin.

4. Hydrotropism: Hydrotropism is the growth response of plants towards or away from water. Roots typically exhibit positive hydrotropism, growing towards moisture, which aids in water absorption. This response allows plants to effectively navigate their roots towards water sources and ensure their survival in water-scarce environments.

These tropic responses are critical for plant survival and adaptation to their environment. They enable plants to orient their growth towards essential resources such as light, gravity, mechanical support, and water, maximizing their chances of obtaining necessary nutrients and ensuring optimal growth and development. The mechanisms underlying these tropic responses involve complex interactions between hormones, growth factors, and environmental cues, allowing plants to respond and adapt to their surroundings.

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which best describes the function of the circulatory system

which best describes the function of the circulatory system

Answers

Answer:

b) to deliver nutrients and other essential materials to cells

Robert loves to ride his bicycle. The force he applies on the pedal is called the _______.

Answers

Answer:

Gravity and wind

Explanation:

hope this helps

Robert loves to ride his bicycle. The force he applies on the pedal is called the rolling resistance and aerodynamic drag, together with inertia forces during acceleration and gravity forces when climbing an incline.

What is the force applied to the pedals of a bicycle?

The forces that resist the movement of the bicycle include rolling resistance and drag, as well as inertial forces during acceleration and gravity when climbing slopes. The rider overcomes this resistance by applying force to the pedals. The pedal is transmitted to the rear wheels via a mechanical drive.

The effectiveness of pedaling force in cycling is usually measured by the ratio of the force perpendicular to the crank arm (effective force) to the total force exerted on the pedal (residual force). Most studies measuring pedal force are limited to one leg, but some studies report asymmetry in pedal force on both sides.

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What distinguishes science from other disciplines that do not use scientific methods?
O Science relies on observation, measurement, and experimentation.
O Science relies on fixed experimental results that cannot be changed over time.
O Science can answer all questions about the natural world through experimentation
O Science relies on anecdotal evidence that may or may not be measured and verified.

Answers

Answer:

Science relies on observation, measurement, and experimentation.

Explanation:

If science is not understood exclusively as a system of knowledge, but also as

a kind of human activity aimed at acquiring new knowledge about reality - the question of the method by which such activity is performed arises.

In order to be properly defined, science must point to the method it uses and its features - criticality.

NEED HELP WILL GIVE BRAINLISEST RN

NEED HELP WILL GIVE BRAINLISEST RN

Answers

From punnett squares, we can get genotypic and phenotypic ratios  and probabilities among the progenies. Cross 1: genotypic ratio 1:2:1. Phenotypic ratio 3:1. Cross 2: 75% probability of having a white horn.

What is a punnett square?

The Punnett square is a graphic representation that shows the different types of gamete combinations according to the alleles involved in a cross.

Punnett square shows the probabilities of getting offspring with different genotypes and their consequent phenotypes.

Cross 1:

Parentals) Ee   x   Ee

Gametes) E   e    E   e

Punnett square)   E     e

                      E    EE    Ee

                       e    Ee    ee

F1) Genotype

25% = 1/4 of the progeny is expected to be homozygous dominant EE

50% = 2/4 of the progeny is expected to be heterozygous, Ee

25% = 1/4 of the progeny is expected to be homozygous recessive, ee

    Phenotype

75% = 3/4 of the progeny is expected to express one eye (1/4 EE + 2/4 Ee)25% = 1/4 of the progeny is expected to express two eyes (ee)

Genotypic ratio ⇒ 1:2:1 ⇒ 1/4 EE : 2/4 Ee : 1/4 ee

Phenotypic ratio ⇒ 3:1 ⇒ 3/4 one eye : 1/4 two eyes

Cross 2:

Parentals) Ww   x   Ww

Gametes) W   w    W   w

Punnett square)   W    w

                      W   WW   Ww

                       w   Ww   ww

F1) Genotype

25% = 1/4 of the progeny is expected to be homozygous dominant WW

50% = 2/4 of the progeny is expected to be heterozygous, Ww

25% = 1/4 of the progeny is expected to be homozygous recessive, ww

    Phenotype

75% = 3/4 of the progeny is expected to express white horn (1/4 WW + 2/4 Ww)25% = 1/4 of the progeny is expected to express brown horn (ww)

Genotypic ratio ⇒ 1:2:1 ⇒ 1/4 WW : 2/4 Ww : 1/4 ww

Phenotypic ratio ⇒ 3:1 ⇒ 3/4 white horn : 1/4 brown horn

Offspring has 75% probability of having a white horn.

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Where does the stage of respiration take place that releases the most energy from glucose?

Answers

Answer:

The first stage of cellular respiration, called glycolysis, takes place in the cytoplasm. In this step, enzymes split a molecule of glucose into two molecules of pyruvate, which releases energy that is transferred to ATP.May

Explanation:

Answer:

Apparently, two ATPs come from glycolycolytic, two from the citric acid cycle, and 34 from each glucose molecule's electron transmission chain, which is by far the most energy-producing.


How is energy causing motion or creating a change in water

Answers

Answer:

basically work requires energy so we can say energy is directly proportional to work SO FORMULA OF WORK IS = Force × distance so energy = work

Explanation:

sorry if that doesnt make sense

A cell goes through cellular respiration and produces ATP which it then uses to move a molecule across the cell membrane. How does the energy in the original glucose molecule change during this process?

-The stored energy in the glucose is used to produce ATP that can be converted to mechanical energy when the molecule moves across the cell membrane.

-The energy in the glucose is stored as kinetic energy in the ATP and released as potential energy when the molecule moves across the cell membrane.

The energy in the glucose is stored as mechanical energy in the ATP and released as potential energy when the molecule moves across the cell membrane.

The kinetic energy in the glucose is stored as potential energy in the ATP and released as kinetic energy when the molecule moves across the cell membrane.

Answers

During cellular respiration, a cell generates ATP, which is subsequently utilized to facilitate the movement of a molecule across the cell membrane. The stored energy in the glucose is used to produce ATP that can be converted to mechanical energy when the molecule moves across the cell membrane. Thus, the correct answer is Option 1.

During cellular respiration, a cell breaks down glucose into ATP, which acts as the energy currency in the cell. This ATP is then used to power cellular activities, including the active transport of molecules across the cell.

When glucose enters cellular respiration, its stored energy is slowly released and taken up as ATP. This energy conversion is mediated by a series of chemical reactions that occur during the stages of cellular respiration, such as glycolysis, the citric acid cycle, the electron transport chain and the breakdown of glucose and ultimately produce ATP molecules.

Once ATP is produced, it can be used by specific proteins called transporters or pumps built into the cell. These transporters harness the energy stored in ATP and use it to move molecules aggressively through the cell, against their increased concentration This movement requires an energy input and is essential for cellular internalization in various processes such as nutrient uptake, waste removal and signal transduction.

Therefore, the correct answer is Option 1.

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The correct answer is Option  a. The stored energy in the glucose is used to produce ATP that can be converted to mechanical energy when the molecule moves across the cell membrane.

During cellular respiration, glucose is broken down in a series of enzymatic reactions in the presence of oxygen. This process occurs in multiple stages: glycolysis, the Krebs cycle (also known as the citric acid cycle or tricarboxylic acid cycle), and the electron transport chain.

In glycolysis, glucose is converted into pyruvate, generating a small amount of ATP and NADH. Pyruvate then enters the mitochondria, where it is further metabolized in the Krebs cycle, resulting in the production of more ATP and electron carriers (NADH and FADH2). These electron carriers donate their electrons to the electron transport chain, located in the inner mitochondrial membrane.

The electron transport chain uses the energy from the electrons to pump protons across the membrane, creating an electrochemical gradient. This gradient is used by ATP synthase to produce ATP from ADP and inorganic phosphate through a process called oxidative phosphorylation.

Once ATP is generated, it can be utilized by the cell to perform various energy-requiring processes, such as active transport of molecules across the cell membrane. In this case, ATP can be hydrolyzed by an ATP-powered pump, such as a sodium-potassium pump, providing the necessary energy to move molecules against their concentration gradient.

Therefore, the energy in the original glucose molecule is ultimately converted into ATP, which can be utilized as a source of energy for the cell. When ATP is hydrolyzed, the stored energy is released and can be converted into mechanical energy to drive processes like molecule transport across the cell membrane. Therefore the correct option is A

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True or False: The bonds that different atoms
make create the variety of molecules and
compounds that make up everything.
False
True

Answers

Answer:

true

Atoms bonded together make molocules and compounds which make up everything we know.

Most articles pass right through the atom, this means that most of the atom is

Answers

Most articles pass right through the atom, this means that most of the atom is an empty space.

What is an atom?

An atom is described as a particle that consists of a nucleus of protons and neutrons surrounded by a cloud of electrons.

Protons and neutrons make up the core nucleus of an atom, which is encircled by an electron cloud. In relation to the size of the atom as a whole, the nucleus is exceedingly small.

As a result, the electrons surrounding the nucleus are the primary target of interactions when particles or even light pass through an atom. The majority of the atom's remaining space, which includes the nucleus, is vacant.

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The first major activity of fertilization is
a) fusion of the genetic material
b) regulation of sperm entry into cells
c) contact and recognition between sperm and egg
d) activation of egg metabolism
e) all of the above

Answers

Answer:

It is between B and C I think it is B but not sure

Explanation:

Hope it helps

Can someone help me recreate this? I can’t screenshot it. Do the glucose and NOT any of the lactic acid data.

Can someone help me recreate this? I cant screenshot it. Do the glucose and NOT any of the lactic acid

Answers

An organic acid is lactic acid. Its chemical formula is CH3CH(OH)COOH. It is miscible with water and has a white solid state.

Thus, It transforms into a colorless solution when dissolved. In the process of production, both synthetic and natural resources are used. Due to the presence of a hydroxyl group next to the carboxyl group, lactic acid is an alpha-hydroxy acid (AHA).

It serves as a synthetic intermediate in a number of biochemical and organic synthesis industries. Lactate (or the lactate anion) is the conjugate base of lactic acid. The resulting acyl group is known as lactoyl.

Lactic acid has two enantiomers and is chiral. One is called l-lactic acid, (S)-lactic acid, or (+)-lactic acid, while the other, which is d-lactic acid, (R)-lactic acid, or ()-lactic acid, is its mirror image.

Thus, An organic acid is lactic acid. Its chemical formula is CH3CH(OH)COOH. It is miscible with water and has a white solid state.

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Construct a scientific explanation about how glucose is used in a tree to help it grow.

Answers

Glucose provides plants with needed food through a process called photosynthesis. This process helps plants convert the energy they take in from sunlight into sugar to help nourish the plant. Photosynthesis occurs when carbon dioxide, water and sunlight are combined. Plants use these to form glucose and oxygen.

Which of these organisms are herbivores?
producer
primary consumer
decomposer
scavenger

Answers

It should be “primary consumer”,

because everything else eats the primary consumer which eats the producer

Which of the following is not an example of quantitative data? a. The high temperature for each day in May b. The names of chemicals found in one brand of diet soda c. The win-loss record of a tennis team since 1990 d. The average growth in height of all sophomores over a year

Answers

Answer: B: the names of chemicals found in one brand of diet soda. Quantitative means that a number should be involved in the data. All of the other options involve a number of some sort, but names do not fall into that category. Therefore, that is the answer.

Describe how hibernation has helped bear species to survive.

write your answer in form of a claim, evidence, and reasoning statement.

1.Make a claim to answer the question(restate your question).
2.Give evidence to support your claim(my evidence is).
3.Use reasoning to explain how your evidence supports you claim(this shows).

ty please no scams brainliest also to the first person who answers and at least 5 sentence answer ty.

Answers

Hibernation helps animals survive the changing seasons. Foods that bears eat, such as berries and flowers, are much less available during cold winter months. When they hibernate, bears enter a deep sleep. ... While they sleep, the bears can survive because their bodies live off of their stored fat or food.

During hibernation, the animal’s body temperature, heart rate and breathing rate all drop to significantly lower levels. Animals do this to survive the winter because the weather is cold and food is scarce. It is advantageous because these animals can quite literally shut themselves off for weeks at a time rather than try and survive through harsh weather conditions.

While many people think bears are hibernators, they actually participate in a similar, though not exact, practice. Instead of hibernating, bears fall into a deep sleep called torpor. During torpor, heart rate and breathing rate decreases, body temperature reduces slightly and bears do not eat or release bodily waste. Bears can sleep more than 100 days without eating, drinking, or passing waste!

Bears sleep in dens that they make themselves, as well as in hollow trees, caves and dens built by other bears. A den can be built in 3–7 days, however, the timing of den building varies from bear to bear. While some bears build their dens months before hibernation season, others choose to excavate their dens.

These animals can dramatically drop their body temperature to below freezing—salty body fluids work to prevent tissue crystallization in particularly cold temperatures.

So really, animals that are true hibernators don’t actually sleep through the entire winter.

The urea produced by their fat metabolism is broken down and the nitrogen is re-used by the bear to rebuild protein.

Answer:

Hibernation helps animals survive the changing seasons. Foods that bears eat, such as berries and flowers, are much less available during cold winter months. When they hibernate, bears enter a deep sleep. ... While they sleep, the bears can survive because their bodies live off of their stored fat or food.

During hibernation, the animal’s body temperature, heart rate and breathing rate all drop to significantly lower levels. Animals do this to survive the winter because the weather is cold and food is scarce. It is advantageous because these animals can quite literally shut themselves off for weeks at a time rather than try and survive through harsh weather conditions.

While many people think bears are hibernators, they actually participate in a similar, though not exact, practice. Instead of hibernating, bears fall into a deep sleep called torpor. During torpor, heart rate and breathing rate decreases, body temperature reduces slightly and bears do not eat or release bodily waste. Bears can sleep more than 100 days without eating, drinking, or passing waste!

Bears sleep in dens that they make themselves, as well as in hollow trees, caves and dens built by other bears. A den can be built in 3–7 days, however, the timing of den building varies from bear to bear. While some bears build their dens months before hibernation season, others choose to excavate their dens.

These animals can dramatically drop their body temperature to below freezing—salty body fluids work to prevent tissue crystallization in particularly cold temperatures.

So really, animals that are true hibernators don’t actually sleep through the entire winter.

The urea produced by their fat metabolism is broken down and the nitrogen is re-used by the bear to rebuild protein.

Explanation:

What biological macromolecule is made up of monomers like the one shown below? A. Lipid B. Nucleic acid C. Protein D. Carbohydrate

What biological macromolecule is made up of monomers like the one shown below? A. Lipid B. Nucleic acid

Answers

Answer:

D. Carbohydrate

Explanation:

Answer:

lipids

Explanation:

I just did it and got it right

Diabetes is the result of insufficient glucose uptake by the cells from the blood. Two patients were tested for diabetes by measuring their blood glucose levels after eating. Determine the best type of graph and plot the data presented in table 6
Time after eating (hours)
0, 0.5, 1, 1.5, 2, 2.5. 3, 4

Glucose in mg/dl Person A
75, 170, 155, 150, 140, 130, 120, 105,

Glucose in mg/dl Person B
70, 170, 200, 260, 255, 245, 230, 200

Answers

Answer:

ExplanationQual desses eventos ocorre durante a replicação do DNA?

A DNA polimerase sintetiza uma fita complementar a partir de uma, mas não de ambas as

fitas originais.

A DNA polimerase sintetiza uma fita complementar de cada uma das fitas originais.

A DNA ligase quebra uma das fitas originais, e outras enzimas remontam os

componentes em uma nova fita,

a DNA ligase separa ambas as fitas originais e outras enzimas remontam os

componentes em duas novas fitas.:

What happens during the electron transport chain phase of cellular respiration?

Answers

There is the formation of 36 ATP in cellular respiration which will be used to perform functions in the body.

The electron transport chain is also known as oxidative phosphorylation and in this, the electron transport chain forms a hydrogen gradient or proton gradient across the inner membrane of the mitochondria because the electron transport chain takes place in mitochondria and that is why it is called as powerhouse of the cell as all the ATP or large amount of ATP is generated by ETC and they generate around 36 ATP from one chain and this chain has series of proteins like ferredoxin, cytochrome, a and b, and phycocyanin, plastoquinone through which the electrons are passed on from each protein molecules and continue to do the redox reaction and the energy which is released from these reactions is caught by the formation of protein gradient which then undergoes the process of chemiosmosis to form the ATP. The protons are passed from the F1 F0 channel and using the ATP synthetase enzyme they synthesize ATP at the end of the electron transport chain electrons are transferred to the molecular oxygen which gets split in half and takes the H+ to form the water.

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The vultures belong to a group called "detritivores." What are detritivores?

Answers

Detritivorous are a group of animals that feed from dead organic material.

I need help please and thank you

I need help please and thank you

Answers

The answer to your question is c because ecology is in fact the study of ecosystems; how organisms interact with their surroundings

Answer:

dude its c

Explanation:

yeah

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