what combines with hydrogen during aerobic cellular respiration

Answers

Answer 1

Answer:

Oxygen combines with hydrogen. I think that's the correct answer... sorry if I'm wrong :[

Explanation:


Related Questions

what molecule provides the energy that powers active transport?

Answers

Answer:

adenosine triphosphate (ATP)

Explanation:

Active transport mechanisms require the use of the cell's energy, usually in the form of adenosine triphosphate (ATP).

Based on the pedigree chart above, is red hair dominant or recessive? How do you know?

Answers

Answer:

it's recessive because if both parents do not have the trait and the child does, it's recessive

Explanation:

I am an
organism that lives off of and harms its host. What am I?

Answers

Answer:

Symbiosis is the close relationships of two organisms of different species such as this; this is an example of a parasitic relationship. As such, these organisms are known in general terms as parasites.

Explanation:

The most common measure of inflation is a statistic called the Government officials in Country M have determined that they need to take action to encourage the growth of their economy. To do this, they have introduced an incentive policy that offers citizens free education. This is extended to all individuals who sign a contract agreeing to work within their specific industry for the next ten years.


.

Answers

Answer: a. Education to reduce unemployment and increase production

Explanation:

Education gives people specialized knowledge and skills that will enable them improve production processes and thus increase efficiency which will drive economic growth.

By investing in education in such a manner, Country M is aware of the benefits of education and hope to harness it to reduce unemployment and increase their production capacity which will drive economic growth.

According to the _______ hypothesis, the moon formed far away from the earth and was later captured by the earth's gravity.
The most popular hypothesis for the moon's origin is the _______.
Telescopes can be engineered to gather light from any portion of the _______.
In 2021 the James Webb Telescope will begin operation focusing on infrared wavelengths and must be kept extremely _______.
Scientists estimated the age of the universe to be nearly _______ billion years using Hubble's pictures and images from the Wilkinson probe.

Answers

Answer:

The correct answer is -

1. capture

2. the giant impact hypothesis

3. electromagnetic spectrum

4. cold

5. 14

Explanation:

Capture hypothesis is presented by the Urey and was dominant up to the 60s which states that the Moon was an asteroid-like wandering structure that formed somewhere far in the solar system and was captured by Earth's gravity while it was wandering.

The most dominant and popular theory for the origin of the moon is the giant impact hypothesis says that it is formed from the debris left after the collision of the earth and Theia a Mars-sized body.

Telescopes are tools engineered for collecting light from any part of the electromagnetic spectrum.

Scientists estimated that the age of the whole universe to be nearly 14 billion years with the help of Hubble's pictures and pictures from the Probe of Wilkinson

1. capture

2. giant impact hypothesis

3. electromagnetic spectrum

4. cold

5. 14

6. The moon's mass is much lower than the earth's; therefore, its gravity isn't strong enough to hold an atmosphere. This lack of an atmosphere and the moon's small size allowed it to become cool enough to the point at which it completely solidified. Thus, the moon doesn't have any plate tectonic activity.

NEED HELP ASAP WILL GIVE BRAINLIST
All of the lizards, snakes, cacti, and other living organisms that can be found in the same area would be an example of this

Answers

Answer:

desert or hot place

Explanation:

all of those are reptiles and they have a special type of skin and they love to sun bathe I guess

How is a single cell similar to a gray wolf

Answers

Answer:

Grey wolf optimizer (GWO) is a newly developed metaheuristic inspired by hunting mechanism of grey wolves. The paramount challenge in GWO is that it is prone to stagnation in local optima. This paper proposes a cellular grey wolf optimizer with a topological structure (CGWO). The proposed CGWO has two characteristics. Firstly, each wolf has its own topological neighbors, and interactions among wolves are restricted to their neighbors, which favors exploitation of CGWO. Secondly, information diffusion mechanism by overlap among neighbors can allow to maintain the population diversity for longer, usually contributing to exploration. Empirical studies are conducted to compare the proposed algorithm with different metaheuristics such as success-history based adaptive differential evolution with linear population size reduction (LSHADE), teaching-learning based optimization algorithm (TLBO), effective butterfly optimizer with covariance matrix adapted retreat phase (EBOwithCMAR), novel dynamic harmony search (NDHS), bat-inspired algorithm (BA), comprehensive learning particle swarm optimizer (CLPSO), evolutionary algorithm based on decomposition (EAD), ring topology PSO (RPSO), crowding-based differential evolution (CDE), neighborhood based crowding differential evolution (NCDE), locally informed particle swarm (LIPS), some improved variants of GWO and GWO. Experimental results show that the proposed method performs better than the other algorithms on most benchmarks and engineering problems.

Explanation:

Hope it's help mark as Brainlist

A recently created metaheuristic called the "grey wolf optimizer" (GWO) was influenced by the way that grey wolves hunt. The main problem with GWO is that it can become stuck in local optima.

What is GWO?

In this study, a topologically structured cellular grey wolf optimizer is proposed (CGWO). There are two features of the suggested CGWO. First off, interactions between wolves are limited to those with whom they share topological neighbors, favoring exploitation of CGWO.

Second, the population variety can be preserved for a longer period of time by a technique of information transmission involving overlap among neighbors, usually promoting exploration.

The proposed approach is compared empirically against other metaheuristics, including the teaching-learning based optimization algorithm (TLBO), successful butterfly algorithms, and success-history based adaptive differential evolution with linear population size reduction (LSHADE).

Therefore, A recently created metaheuristic called the "grey wolf optimizer" (GWO) was influenced by the way that grey wolves hunt. The main problem with GWO is that it can become stuck in local optima.

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calculate 1.6238 x 10^8 in standard notation​

Answers

Answer:

162,380,000

Explanation:

Answer:

yeah what the other person said

Explanation:

lol

What do I say if my agriculture asks me what I'm growing.

Answers

tell them what your growing?

Artificial eutrophication is caused by

Answers

Answer:

Fertilizer from farms, lawns, and gardens is the largest source of nutrients that cause artificial eutrophication. Phosphates in some laundry and dish-washing detergents are another major cause of eutrophication . Phosphorus is a plant nutrient that can cause the excessive growth of algae

Explanation:

What determines the carrying capacity in an ecosystem? *
A:The number of different species in an ecosystem
B:limiting factors
C;:only biotic factors
D:only abiotic factors

Answers

Answer:

B:limiting factors

Explanation:

A limiting factor is anything that constrains a population's size and slows or stops it from growing.

Answer:

B:limiting factors

Explanation:

A position effect variegation (PEV) phenotype can be used to identify new genes that regulate heterochromatin formation. For example, strains of Drosophila melanogaster with the white variegation phenotype can be subjected to mutagenesis to screen for mutations in other genes that suppress PEV, meaning the mutation results in a lower white pigment production. Using what you know about the enzymes that control heterochromatin spreading, describe one mutation that you would expect to be a suppressor of variegation

Answers

Answer:

by mutation of genes encoding histone modification enzymes that lead to loss of gene repression by the alteration of the chromatin structure

Explanation:

Histone methylation is an important epigenetic modification involved in regulation of gene expression. Histone methyltransferases and histone demethylases are enzymes capable of modifying the chromatin structure by adding or removing methyl groups of the N-terminal of the core histones, respectively. There are suppressor of variegation (Su-var) enzymes capable of removing activating chromatin marks such as, for example, histone H3 lysine methylation, thereby mutations in these epigenetic modifiers may result in a loss of gene silencing by directly opening the chromatin structure. For example, Su(var)3–9 is a histone lysine methyltransferase enzyme that controls the formation of heterochromatin.

Compared to today's corn plant, teosinte:
is taller and has more branches.
is taller and has fewer branches.
is shorter and has more branches.
is shorter and has fewer branches.

Answers

Answer:

is shorter and has more branches.

Explanation:

Answer:

c

Explanation:

Please help me out .Some organisms have genes that improve their ability to survive and reproduce. If the genes also help their offspring survive and reproduce, then which of the following will most likely increase?

A.The frequency of the genes in the population

B.The frequency of the genes in one individual

C.The number of genes in the species

D.The number of genes in one chromosome​

Answers

Answer:

A. The frequency of the genes in the population

Explanation:

Genes are fundamental units that are part of the hereditary. The genes help offspring to survive and reproduce, then the frequency of genes in the population will increase. Hence, Option A is correct.

What are genes?

Genes are the functional units of heredity, genes are made up of DNA. Four factors change gene frequencies in a population namely migration, mutation, selection, and random genetic drift.

Gene frequency is called allele frequency. It remains constant from generation to generation if there are no distributing factors. The alteration in the genes causes the change in the frequency that plays an important role in variation and evolution.

The frequencies of genes increase when they are selected favorably. Darwin proposed the theory of natural selection, which states that natural selection acts on favorable variations that occur among a species' individuals.

Therefore, if genes help their offspring to survive and reproduce then the frequency of a gene in a population will increase. Hence, the correct option is A.

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What bases pair with the following sequence in DNA: AATCGTATCGAC *

Answers

Answer: The two strands are held together by hydrogen bonds between the bases, with adenine forming a base pair with thymine, and cytosine forming a base pair with guanine.

Explanation:

18. Which of the following is not an example of a marine producer?
O A. Phytoplankton
B. Chemosynthetic Archaea
O C. Cyanobacteria capable of photosynthesis
O D. Bacteria that carry out decomposition

Answers

Answer:

the answer is phytoplankton

Phytoplankton is an example of a marine producer.

PHYTOPLANKTON:Phytoplankton are microscopic algae found in marine water bodies. Marine refers to water bodies that contain high concentration of salts.

Algae are a set of organisms that perform photosynthesis to produce food in the aquatic environment, hence, they are ecological producers.

Phytoplanktons produce food in a marine habitat and other organisms depend on this source of energy.

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What structure is the site of photosynthesis within a plant

Answers

The answer is leaves.
Mitochondria I thought that’s the main

You have studied some microbes that cause disease. Understanding how microbes grow and multiply is important when identifying and dealing with transmission of infection. This week will focus on bacteria. Think about what you already know about bacteria, how they are structured, function, and replicate. Discuss what you need to know in order to deal in the field with bacterial outbreaks.

Answers

Answer:

Structure: unicellular organisms (single-celled), no nucleus or membrane-bound organelles, genetic material usually composed of a single circular bacterial chromosome coiled up in a region of the cytoplasm

Function: metabolic functions are carried out in the bacterial cytoplasm

Replication: generally asexual (binary fission)

Explanation:

Bacteria are prokaryotic organisms, i.e., unicellular organisms that do not have a cell nucleus nor any membrane-bound organelles . Generally, the genetic material is composed of a single DNA circular molecule (bacterial chromosome), which is localized in a specific region of the cytoplasm (nucleoid region). Prokaryotic cells are usually smaller than eukaryotic cells (0.1 - 5 μm in size). In bacteria, metabolic functions (i.e., growth and reproduction) occur in the cytoplasm. The most important process of reproduction in bacteria is binary fission, a form of asexual reproduction where a single bacterial cell divides into two. Bacteria can also exchange genetic material by sexual reproduction mechanisms (i.e., conjugation, transformation and transduction). The main strategy to prevent outbreaks caused by bacteria is to know the conditions where they grow and reproduce. For example, Salmonella is a genus of infectious bacteria that may cause an outbreak. Salmonella infection may be prevented by eliminating conditions where they can multiply. Measures to prevent Salmonella outbreaks include cook food thoroughly (do not eat raw eggs or raw beef), refrigerate foods, wash hands, etc.

Clones produced from the same organism are found to exhibit slightly different physical traits. What is the most likelyreason for this?

Answers

Mutation. As DNA is read and copied it has a chance to read wrong creating new proteins.

You are working with a patient in the ER room that is in severe pain from getting hit by someone in an automobile that did not pay attention to the patient crossing the street in the designated cross walk. They need a morphine-sulfate 0.9% NaCl I.V. dialysis bag to reduce pain. If the bag is composed of 1000mL of water, how many milligrams (mg) of NaCl are in this bag that the patient needs?

Answers

Answer: 9 mg NaCl

Explanation:

Assume 0.9% w/v

so, 0.9 mg/100 mL

1. Which of the following is NOT a major tectonic plate?
Eurasian
Nazca
South American
Canadian
Australian

Answers

The option that is not a major tectonic plate is known as Australian. Thus, the correct option for this question is E.

What is a Tectonic plate?

The tectonic plate may be characterized as a type of gigantic piece of the Earth's crust and uppermost mantle. They are generally constructed up of the oceanic crust and continental crust.

Earthquakes take place around mid-ocean ridges and the large faults which definitely mark the edges of the plates. Due to this, the surface of the earth is cracked into moderate to larger pieces called plate tectonics. The lithosphere of the earth is correspondingly divided into seven major and some minor plates.

Therefore, the option that is not a major tectonic plate is known as Australian. Thus, the correct option for this question is E.

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How do mutation, genetic recombination during sexual reproduction, and lateral gene
transfer produce genetic variation?

Answers

A mutation occurs when there are changes in the gene structure of organisms. It may either increase or decrease the fitness of organisms. However, for mutations to be evident in an organism, it must be inherited by the offspring.

On the other hand, genetic recombination occurs during the sexual reproduction of two parents. During this process, different gene combinations or genotypes are produced. This event is similar to shuffling a deck of cards.

Lateral gene transfer occurs when the genetic material is transferred between organisms. This is not the same as transferring the genes from parent to offspring. This process usually occurs in single-celled organisms such as bacteria and plasmids.

When the mutation, genetic recombination at the time of the se-xual reproduction so there should be the change in the structure of gene.

What happen when mutation, genetic recombination generated:

The mutation should be arise at the time when there should be change in the gene structure of an organism.

The genetic recombination arise at the time of se-xual reproduction with respect to the two parents.

And, Lateral gene transfer arise at the time when the genetic material should be shifted between the organism

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The Channel Islands run in
mountain ranges run in
direction where other
direction.

Answers

Answer:do not know

Explanation:yeah don’t know

Which of these are gametes? (Select all that apply.)
zygote
sperm
spore
egg

Answers

Gametes refers to reproductive cells or in other words sex cells meaning the answer to the question would be sperm and egg

Answer:

sperm and egg

Explanation:

I got little time left

Answers

I can’t see anything

MULTIPLE CHOICE QUESTION
Which of the following are examples of
ecosystems (choose all that apply)?
Ocean
River
Desert
Forest

Answers

Answer:

All of the above

Explanation:

The definition of ecosystem is "a biological community of interacting organisms and their physical environment." and all four of the answers fit the bill.

The fact that all organisms share some basic features and life processes is used by biologists to explain the idea that all life descended from a common ancestor. Which of the following is evidence that justifies this claim?

a. All organisms are made up of cells that contain energy-producing mitochondria.
b. All organisms are made up of cells that reproduce asexually through mitosis and meiosis.
c. The cells of all organisms contain DNA that is housed in a membrane-bound nucleus.
d. The cells of all organisms share common metabolic processes, such as cellular respiration.

Answers

Answer:

c. The cells of all organisms contain DNA that is housed in a membrane-bound nucleus.

Explanation:

DNA is the genetic material found in the cells of living organisms. Among the characteristics of the DNA that makes up the genetic code, it is said to be nearly universal though. DNA is said to be the "blueprint of life".

This means that the DNA sequence that encodes protein and useful information is the same in almost all living organisms. Hence, the statement that "cells of all organisms contain DNA that is housed in a membrane-bound nucleus is the" justification that fact that all organisms share some basic features and life processes is used by biologists to explain the idea that all life.

Answer:

the cells of all organisms share common metabolic process such as cellular respiration

Explanation:

3. Blood that travels from the heart to the lungs is said to be in which process?
A. Systemic Circulation
B. Homeostasis
C. Pulmonary Circulation
D. Coagulation

Answers

Pulmonary circulation moves blood between the heart and the lungs. It transports deoxygenated blood to the lungs to absorb oxygen and release carbon dioxide. The oxygenated blood then flows back to the heart. Systemic circulation moves blood between the heart and the rest of the body.



so answer
pulmonary circulation

uwu
Option c
The process of blood travel from heart to lungs is pulmonary circulation

Which cell express higher levels of genetic variation

Answers

Answer:

mutation, recombination, and immigration of genes.

Hello Help plz :)What is rRNA

Answers

The answer is C. Hope this helps

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