Several atmospheric gases contribute to global warming: carbon dioxide, methane, and nitrous oxide. Considering this, which choice would do the LEAST to directly reduce atmospheric carbon dioxide. That is...

Answers

Answer 1

the answer is D.he conversion of restaurant grease to bio-diesel fuel for use by motorists.


Answer 2

D) the conversion of restaurant grease to bio-diesel fuel for use by motorists.


Related Questions

Two species of beetles are both herbivores on the same host plant, and the presence of either beetle species reduces the population growth of the other. the relationship between these beetles is best described as

Answers

relationship between these beetles is best described as competition

BRAINLIESTTT ASAP!!!

How do you recognize substances that have gone through physical or chemical changes?

Answers

chemical change produces a new substance, while a physical change does not. A material may change shapes or forms while undergoing a physical change, but no chemical reactions occur and no new compounds are produced.

Examples of Chemical Changes


Burning wood
Souring milk
Mixing acid and base
Digesting food
A chemical change turns a substance into something it was not before. Clues like light, heat, color change or the smell tell us if something has changed. The starting and ending process of the reaction is totally different. 

It produces a new substance. Example -  mixing HCl and NaOH to make salt and water. Another example is - when an ice cube melts to form water. In short, the only difference is its form. 

Good luck :)

What detail is left unresolved at the end of the selection? the porter?

Answers

The final destination for jimmy and his father

Individuals with anorexia nervosa and bulimia nervosa differ in the

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Anorexia nervosa and bulimia nervosa are both eating disorders, but the main difference is that individuals with anorexia have a tendency to skip meals, while individuals with bulimia go through a cycle of binging (overeating) followed by vomiting. People with anorexia are usually extremely underweight and with an unhealthy figure, while the physical appearance of people with bulimia can be “normal” or sometimes underweighted.

Answer:

Explanation:

Imma be honest, I'm just trying to pass health class at this point so I don't know the answer... XD

A peculiar sensory sensation often preceding the onset of a seizure is called:

Answers

A  peculiar  sensory  sensation  often  preceding  the  a  set  of  a seizure  called   Aura

   A
ura  is   perceptual  disturbance   experienced  by some   with  migraines  or   seizures  before  either  the  headache   or  seizure  begin.  It  is  often  manifests   as   the  perception   of  a   straight  light,  an  unpleasant   smell  or  confusion   thought.some  people  experience  aura  without   subsequent seizure

Which factor most affects the order of amino acids in a protein?

Answers

The DNA in the nucleus of the cell affects the order of amino acids in a growing polypeptide chain. The DNA contains the genetic material wherein it is transcribe to messenger RNA so that the genetic code can be transported outside the nucleus to be translated. The order of nucleotides in the mRNA in triads called codons indicates the order of amino acids being translated as codons correspond to specific amino acids.
The correct answer is the arrangement of codon sequences on the DNA in the nucleus. Genes are composed of codon sequences, which are the three nucleotide sequences that code for an amino acid. These codons code for specific amino acids, therefore during the translation process in the ribosomes they determine the amino acid sequence in a a particular polypeptide as read by the anticodons in the transfer RNA.

What were the conditions like on early Earth? (Be specific)

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- For decades, scientists believed that the atmosphere of early Earth was highly reduced, meaning that oxygen was greatly limited.
- Such oxygen-poor conditions would have resulted in an atmosphere filled with noxious methane, carbon monoxide, hydrogen sulfide, and ammonia.
- The dense early atmosphere, dominated by the "greenhouse gases" carbon dioxide and water vapor, trapped the radiation of the early Sun, while the solid crust radiated volcanic heat from the interior.

On early Earth, conditions were harsh with extreme heat, lack of oxygen, strong radiation, and significant geological upheaval and volcanic activity. The atmosphere was anoxic and filled with reduced inorganic chemicals, quite different from today's environment. The earliest life forms, prokaryotes, were adapted to these extreme conditions.

Conditions on Early Earth

The conditions on early Earth were very different from what they are today. The atmosphere was anoxic, meaning it lacked oxygen, and primarily composed of reduced inorganic chemicals. This reflects a stark contrast to the oxygen-rich atmosphere we have now. It is believed that early cells that formed on Earth were adapted to survive in these harsh conditions. These conditions include extreme heat, the absence of oxygen, and exposure to strong radiation.

Additionally, the geological landscape of early Earth was characterized by tumultuous geologic upheaval and frequent volcanic activity, which would later play a crucial role in the development of the planet's surface and atmosphere. The early atmosphere, largely made up of gases like methane, ammonia, and water vapor, differed vastly from today's nitrogen and oxygen-rich atmosphere.

The first organisms, known as prokaryotes, appeared during this tumultuous time and were well-suited to the high-temperature environments possibly around hydrothermal vents and protected from strong radiation beneath the ocean depths or Earth's surface. Evolution eventually led to microbial mats, which are considered to be some of the earliest forms of life, dating back to about 3.5 billion years ago.

Why does the thermosphere have the highest temperature of all the atmosphere layers?

Answers

Its because the atoms in that layer have the highest amounts of energy due to the interaction with solar radiation. It has the highest temperature, but don't confuse that with heat. The temperature is high, but since it is so thin there is little heat.

Answer:

the suns radiation strikes it first

Explanation:

~apex

Explain what happens to tissues, such as the heart, or the brain, if oxygenated blood is not delivered in a timely manner.

Answers

If theyre not recieving enough oxygen;

Brain: You will suffer from brain damage.That can cause impairment with cognitive activities.

Heart: You increase the chances of getting a heart attack. This can result in Cardiac Arrest. If it no longer recieves oxygen, it will stop beating and you will die.

Death of tissues will occur if oxygenated blood is not delivered in a timely

manner to the brain and heart.

All the cells in the body require oxygen to stay alive and function. This is why breathe in oxygen which is pumped by the heart via oxygenated blood to other parts of the body.

When there is an absence or it not being delivered in a timely manner the

cells of the body will die which will result to death of the organism.

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Applying how are photosynthesis and cellular respiration related?

Answers

the reactants of photosynthesis and products of cellular respiration are the same

Application and Discussion: We mentioned ABO blood typing during the lesson. Let’s consider a different way that knowledge of macromolecules could be useful in forensic science.
Please answer the following questions:
One type of macromolecule:
The function of that macromolecule:
How it is related to forensic science (i.e. provide an example and explain its use in forensic science):

Answers

One of the macromolecules which is known as DNA is used in the polymerization of proteins into smaller units called monomers.

 It is the most common macromolecule in the biochemistry, and they are biopolymers. DNA is related to forensic science in that, it helps to identify individual apart from one another. If there is any case of murder, DNA is used to detect the suspect.
 DNA profiles are used to match crime scene.

Answer:

One type of macromolecule: DNA (deoxyribonucleic acid)

The function of that macromolecule: it is the macromolecule that contains the genetic information of living organisms.

How it is related to forensic science (i.e. provide an example and explain its use in forensic science): DNA is used in forensic science for many applications, one of them is to identify a criminal form the samples of hair, saliva, blood etc. collected from a crime scene.

Explanation:

A macromolecule is a large molecule that is made up of smaller subunits.

DNA is a macromolecule that is made up of nucleic acids.

DNA is most commonly used in forensic science as it is commonly present in the samples such as saliva, hair, blood, etc. that can be easily obtained from a crime scene.

This DNA can then be used to match the person with the help of DNA fingerprinting.

The advantage is that even a small amount of DNA in the samples can be utilized as the technique of polymerase chain reaction (PCR) exists.

Which type of rna brings the information in the genetic code from the nucleus to the ribosomes of the cell? *?

Answers

Hi!

The answer is mRNA.

Hope this helps!

-Payshence xoxo

A 1-year-old infant is pale, but the physical examination is normal. blood studies reveal the infant's hematocrit is 24%. which question by the nurse to the parents would be most useful in helping to establish a diagnosis of anemia?

Answers

Answer:

1. " What's the infant usually daily diet?"

2. " Is the infant on any medication?"

3. " What's the pattern and appearance of bowel movement?"

4. " Did the infant receive phototherapy for Jaundice?"



Hope it helps.

which situation is associated with shear?
A. new rock formations
B. convergent boundaries
C. frequent shallow earthquakes
D. volcanic mountain ranges

Answers

Frequent shallow earthquakes are associated with shear.

Answer:


Frequent shallow earthquakes


Explanation:


Shear is the response of a rock to deformation usually by compressive stress and forms particular textures.


During an earthquake when the earth shakes it produces a super shear earthquake in which the propagation of the rupture along the fault surface occurs at speeds in excess of the seismic shear wave (S-wave) velocity.


The mechanisms of shearing depend on the pressure and temperature of the rock and on the rate of shear which the rock is subjected to.

The major effect of genetic drift is..
A) a reduction in genetic variability.
B) an increase in genetic variation to accommodate changes in abiotic conditions.
C) no change in population size but an increase in favorable alleles.
D) a reduction in population size and an increase in genetic variability.

Answers

Genetic drift results in a reduction in genetic variability. Depending on the situation, there may be a reduction or increase in the population. So, the answer is A.

Please help! I'll give you a medal! Sorry it might be a lot!

What color do you want your insects to be? ______________________________________


A. How would you describe the process of artificial selection? ____________________

___________________________________________________________________

___________________________________________________________________

B. How will mutations be useful in achieving your goal color? _____________________
___________________________________________________________________
______________________________________________,

Answers

1. Green, because it serves as a perfect camouflage against prey in vegetations.

2. It is a process whereby a breeder of animals or plant cultivator, chooses to breed between different species for their characteristics that are inheritable.

3. Mutations is an evolutionary process that helps a specie better adapt to their environment. DNA changes causes by mutation can help lighten or darken colour pigment. Like in the dark-coated mouse, where 9 changes to the DNA coding for color makes its fur lighter for better camouflaging.

The client with major depression and suicidal ideation has been taking bupropion 100 mg po 3 times daily for 5 days. assessment reveals the client to be somewhat less withdrawn, able to perform activities of daily living with minimal assistance, and eating 50% of each meal. at this time, the nurse should monitor the client specifically for which behavior?

Answers

Suicide - indicated sometimes by positive change in mood and motivation

Organelles have their own genomes. when chloroplast dna is sequenced and compared to genomes from members of the cyanobacteria, the sequence is nested within cyanobacteria. this is strong evidence for the hypothesis that:

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This is strong evidence for the hypothesis that the chroloplast originated ais a symbiotic cyanobacteriam that became permanentely  incorporated into its host.the complete genome sequence of cyanobacteria and of the higher plant arabidopsis thaliana leave no doubt tha chroloplast originated through endosymbiosis from a cyanobacteriam
Organelles have their own genomes. when chloroplast DNA is sequenced and compared to genomes from members of the cyanobacteria, the sequence is nested within cyanobacteria. this is strong evidence for the hypothesis that: 

The chloroplast originated as a symbiotic cyanobacterium that became permanently incorporated into its host.

Antibodies to common microorganisms have been developed by
a. infancy
b. adolescence
c. childhood

can someone help me find the answer and understand.

Answers

Antibodies to common microorganisms have been developed by infancy. Since infants are usually born with immature immune systems, their body actively produces antibodies that would help them prevent diseases and sickness. Infancy is the most vulnerable stage of an organism. Antibodies serve as protection for these infants bodies. 

The study of the distribution of plants and animals throughout the world is called:

a. biochemistry

b. biogeography

c. evolutionary development

d. paleobiology,

Answers

Biogeography is the study of the distribution of animals and plants throughout the different places in the world. This study focuses on the communities of organism in the different areas of the Earth and how they are distributed to these areas. The purpose of this study is to explain the process and mechanism of the distribution of the different species in the world.

The study of the distribution of plants and animals throughout the world is called biogeography.

What is the significance of mendel's experiments to the study of genetics?

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Gregor Mendel, through his work on pea plants, discovered the fundamental laws of inheritance. He deduced that genes come in pairs and are inherited as distinct units, one from each parent. Mendel tracked the segregation of parental genes and their appearance in the offspring as dominant or recessive traits.

The significance of Mendel's experiments in the study of genetics is Mendel's revelation significantly increased our understanding of how genes are passed down and inspired the creation of novel experimental techniques.

Who was Gregor Mendel?

Gregor Mendel uncovered the basic principles of inheritance through his study on pea plants. He concluded that genes are inherited from each parent as separate, paired units.

Mendel observed how parental genes separated and if they showed up as dominant or recessive qualities in the children. Mendel created three laws of inheritance that characterized the transmission of genetic features through pea plant breeding before anybody knew genes even existed.

Mendel's revelation significantly increased our understanding of how genes are passed down and inspired the creation of novel experimental techniques.

Therefore, Mendel's discovery greatly expanded our understanding of how genes are handed down and encouraged the development of novel experimental procedures, which is the relevance of Mendel's experiments in the study of genetics.

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According to most scientists, what may be the result of the emission of the greenhouse gases carbon dioxide and methane into earth's atmosphere?

Answers

Global climate change
dangerous smog assuming its coming from fossil fuels

The ability to change the position of your body quickly and control your body's movement is called:

Answers

Agility - the ability to change the position of the body quickly and with control. This helps team players dodge their opponents. Balance - the ability to retain the centre of mass above the base of support when stationary (static balance) or moving (dynamic balance). 

The ability to change the position of your body quickly and control your body's movement is called agility.

What are the advantages of agility?

The advantages of agility are as follows:

It significantly enhances your coordination and body balance.It improves movement skills along with awareness of the body.It increased cognitive function and flexibility.It remarkably prevents injury and improves recovery time. It helps the body to maintain proper alignment and posture.

The process of agility is achieved by numerous activities which facilitate the skills of athleticism. This ability of the body significantly augers and encourages the body in order to learn the overall process of maintaining the accurate placement of the body.

Therefore, agility is the ability to change the position of your body quickly and control your body's movement.

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Repair of damaged neurons can be assisted by certain neurotrophic factors secreted by the

Answers

Repair of damaged neurons can be assisted by certain neurotrophic factors secreted by the Schwann cells.

Hope this helps!

-Payshence xoxo
 

In peas, the allele for round seeds (r) is dominant to the allele for wrinkled seeds (r). what would be the genotype and phenotype ratios of offspring from a cross between rr and rr individuals?

Answers

I believe you meant the allele for round seeds (R) is dominant to the allele for wrinkled seeds (r).
The cross between RR and rr is all Rr, all will have rounds seeds.

Hope this helps! :)

The genotype and the phenotype ratio of the cross between two homozygous recessive parents will be 100% homozygous wrinkled seeded-plants.

What is the genotype and phenotype?

The genotype of an organism is the complete set of its genetic material. Genotype of an organism can also be used to refer to all the alleles or variants of an individual which it carries in a particular gene or the genetic location.

Phenotype of an organism refers to an individual's observable traits, such as its height, eye color, plant characters, and blood type. An organism's phenotype is determined by both their genotype and the environmental factors.

In the cross between two homozygous recessive parents with wrinkled seeds, the genotypic and phenotypic ration of the F1 generation will be 100% homozygous recessive wrinkled seeded-plants.

Learn more about Genotype here:

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List and describe the role of the 3 types of rna.

Answers

There are three RNAs with a role in the synthesis of protein.

mRNA, or messenger RNA, is the link between a gene and a protein. The main role of this ribonucleic acid is in transcription (”reading“) of DNA. The DNA is transcribed by RNA polymerase, and the resulting product of this process is mRNA. This form of RNA can be modified post-transcriptionally with methylguanosine caps and polyadenosine tails. RNA carries the genetic information which is copied from DNA and the information has a form of three-base code (“words”), codons. Each of these codons specifies a particular amino acid.

tRNA or transfer RNA is the molecule with the main function in translation by "decoding" the mRNA message during this process. Each type of amino acid has its own type of tRNA and also has a three-base sequence (anticodon) that can bind complementary with the codons in the mRNA.

rRNA or ribosomal RNA is a main component of ribosomes. rRNA associates with a set of proteins to form ribosomes which catalyze the assembly of amino acids into polypeptide chains (protein).

 

There are also a few more types of RNA which have a regulatory function like, microRNA or siRNA.

The hypothalamus, in addition to the cerebral cortex, is in control of emotional responses. the hypothalamus, in addition to the cerebral cortex, is in control of emotional responses.
a. True
b. False

Answers

The answer is A; true. Emotions are controlled by the limbic system of the brain that is composed of The amygdala, The hippocampus, Regions of the limbic cortex, and The septal area. These regions work in conjunction with the hypothalamus, thalamus and cerebral cortex in the regulation of feelings such as anger, fear, and pleasure.






Final answer:

The statement is true. The hypothalamus is a critical component of the limbic system, regulating emotional responses by interacting with the cerebral cortex, specifically through connections with the amygdala.

Explanation:

The statement that the hypothalamus, in addition to the cerebral cortex, is in control of emotional responses is true. The hypothalamus plays a crucial role in the limbic system, which is heavily involved in regulating emotions. It receives signals from the amygdala, a structure within the temporal lobe of the cerebral cortex known for its involvement in processing emotions. When emotional responses like fear or anxiety are triggered, the amygdala sends signals to the hypothalamus via the medial forebrain bundle, which can stimulate a fight-or-flight response and influence the release of stress hormones through control of the endocrine system.

The hypothalamus is also responsible for maintaining homeostasis and regulating body functions, such as food and water intake, energy expenditure, and body temperature. Furthermore, its connections with other parts of the brain, including the olfactory cortex and septal nuclei, allow it to regulate emotional states and physiological reactions. The cerebral cortex, particularly its frontal regions, also contributes to the modulation of emotional behaviors through higher cognitive processing and regulation. Therefore, both the hypothalamus and the cerebral cortex have integral roles in the complex network that governs emotional responses.

Which compound that directly provides energy in living cells is being produced in every tube where cellular respiration is occurring?oxygenglucosednaatp?

Answers

The compound is ATP. Cellular respiration is a set of metabolic reactions and processes that take place in the cells of organisms to convert biochemical energy from nutrients into adenosine triphosphate, and then release waste products. During cellular respiration, a glucose molecule is gradually broken down into carbon dioxide and water, along with ATP produced directly in the reactions that transform glucose.

ATP, or adenosine triphosphate, is the compound produced during cellular respiration that provides direct energy for living cells. It is generated through pathways like glycolysis, the citric acid cycle, and oxidative phosphorylation, with the mitochondria being the primary site of production in eukaryotic cells.

The compound that directly provides energy in living cells and is being produced in every tube where cellular respiration is occurring is adenosine triphosphate (ATP).

During cellular respiration, glucose is oxidized to carbon dioxide, and this process can produce about 30 molecules of ATP from a single molecule of glucose. The three main pathways used to generate ATP in the cells are: glycolysis, the citric acid cycle (also known as the Krebs cycle or TCA cycle), and oxidative phosphorylation. ATP is largely produced in the mitochondria of eukaryotic cells. Oxygen (O₂) is used in oxidative phosphorylation as the terminal electron acceptor in the electron transport chain (ETC), which drives the production of ATP from ADP.

Could some one please check my answers thank you! not sure if right


1. A neuron fiber that sends a signal from your hand to your brain is called a
a. axon <<<<<<
b. cell body
c. mitochondriond.
d. dendrite

2. at approximately what age does nerve conduction achieve maximum capacity?
a. 5 <<<<<
b.10
c.20
d.30

3.insulin is to glucagon as
a. wet is to dry
b. walking is to running
c. morning is to afternoon
d. a key is to lock <<<

Answers

Answer:

1.a. axon

2.a. 5

3. d. a key is to lock

Explanation:

Good job they are all correct

Why does DNA need to be copied into mRNA?

Answers

mRNA will serve as reference book that contains information as the DNA and its sequence is complementary to the DNA template.

The transfer of information in a DNA strand to a new molecule of messenger RNA is known as transcription. Thus, the process of transcription is carried out by an enzyme called RNA polymerase and a number of accessory proteins called transcription factors. However, DNA is copied into mRNA because mRNA will serve as reference book that contains information as the DNA and its sequence is complementary to the DNA template.

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