Using energy from a vehicle to recharge the battery when slowing down or stopping the vehicle is called what?
A. Adaptive braking
B. Regenerative braking
C. Fuel cell braking
D. Capacity braking

Answers

Answer 1

Answer:

B Regenerative braking


Related Questions

Where does a cell get its energy (in the form of ATP) in order to fight off a virus?

Answers

Answer:

Through the mitochondria.

Explanation:

the Mitochondria makes ATP energy through the energy stored in food. which is done by respiration which uses oxygen in a process which generates energy.

Also the mitochondria is the only thing in the body that can make ATP energy

Which of these statements about fungi are true?

Answers

Answer: where are your statements

Explanation:

Answer:
B
Explanation:
Fungal spores (macro- and microconidia) are inhaled and develop into yeast in the lung parenchyma.

What is endocrine system..?​

Answers

Answer: The endocrine system is made up of glands that make hormones, Hormones are the body's chemical messengers. They carry information and instructions from one set of cells to the other.

Explanation:

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Your endocrine system is made up of several organs called glands. These glands, located all over your body, create and secrete (release) hormones.

Hormones are chemicals that coordinate different functions in your body by carrying messages through your blood to your organs, skin, muscles and other tissues. These signals tell your body what to do and when to do it.

Functions of Endocrine System.

Hormones affect nearly every process in your body, including:

Metabolism (the way you break down food and get energy from nutrients).

Growth and development.

Emotions and mood.

Blood pressure.

_________________________________

in the splicing step of gene expression, ______ are spliced out, and ________ are stitched together.

Answers

In the splicing step of gene expression, introns are spliced out, and exons are stitched together.

What is gene expression?

Gene expression refers to the process of protein synthesis that begins with a gene in DNA and finishes with a functional protein. The genetic code is translated to make protein during gene expression. Gene expression is a complex process that requires many different molecules, including RNA polymerases, transcription factors, and other regulatory proteins.

In eukaryotic cells, pre-mRNA is modified before it exits the nucleus. RNA splicing is a crucial aspect of pre-mRNA processing, in which non-coding introns are excised and exons are joined to produce mature mRNA molecules. The splicing process is carried out by a complex machinery consisting of small nuclear ribonucleoprotein particles (snRNPs).

The snRNPs in spliceosomes recognize introns and bring together the flanking exons for precise excision. Intron removal is followed by the ligation of exons, which results in the formation of a mature mRNA molecule that can be exported from the nucleus to the cytoplasm, where it can be translated into a functional protein.

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what are the parts of the male structure of a flower?

Answers

The parts of the male structure of  flower have three parts stamen ,sepals and petals. Flowers are two types male flower and female flower . Two categories of flowers differ by bisexual (male flower + female flower) and asexual (male flower/female flower).

Male flower reproductive part is called stamen. Stamen having two parts anthor lobe (which is in the shape oval at the top) and filament (which supports anthor lobe having shape thin cylinder shape). Anther lobe having two pollen which is filled with pollen grains.  Sepals are outer part of the flower which supports the flower and petals are protect  reproductive parts of flower which is  spectacular  color.

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2.2. Which of the following is NOT a type of animal hair which may be found at a crime
scene?
(25 Points)
A. Pelts and furs
B. Wild game
C. Domestic
D. Fibers

Answers

Answer:

Diber

Explanation:

The branch of science used for criminal investigation and sample analysis with biological methods to find the proof and clues for the crime is called forensic science. It utilizes the genetic makeup of the organism to catch the culprit based on the evidence collected.

Wild game is not a type of animal hair that may be found at a crime.

Why hair is used for forensics?

Hairs and other samples like blood, nails, clothes and other stains can be used for the investigation of the culprit in forensic sciences.

The hair sample can be used for the DNA analysis of the culprit by screening the sample and are checked and is tested for suitable culprit match.  

The hair sample can be a piece of good evidence for testing as it can last longer and the elements of it do not degrade at a fast rate.

Therefore, option B is correct.

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Okay ill give you a brainy thing if you answer correctly please don't guess this is a big part of my grade God bless​

Okay ill give you a brainy thing if you answer correctly please don't guess this is a big part of my

Answers

Answer:

maybe 25% not to sure sorry if wrong

vasopressin is a hormone produced in the hypothalamus that regulates the concentration gradients of body fluids. vasopressin is 5.94% s by mass, and each vasopressin molecule contains 2 sulfur atoms. calculate the molar mass of vasopressin

Answers

The molar mass of vasopressin is 1082 g/mol.

To calculate the molar mass of vasopressin, we need to know the atomic masses of the elements that make up the molecule.

First, let's calculate the mass of sulfur in vasopressin. Since each molecule contains 2 sulfur atoms, the mass of sulfur in vasopressin can be calculated as follows:

mass of sulfur = 2 * mass of 1 sulfur atom = 2 * 32 g/mol = 64 g/mol

Next, let's find the total mass of vasopressin. According to the information given, vasopressin is 5.94% sulfur by mass, so the total mass can be calculated as follows:

mass of vasopressin = (mass of sulfur) / (percent sulfur by mass) = (64 g/mol) / (5.94%) = 1082 g/mol

Therefore, the molar mass of vasopressin is 1082 g/mol.

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WILL GIVE BRAINLYIST!!!!
Pleiotropy and Polygenic traits are very easily confused. Please write a sentence describing the primary difference between these two inheritance patterns.

Answers

Answer:

Polygenic is a phenotype that is influenced by more than one gene, Pleiotropy occurs when one gene influences two or more unrelated phenotypic traits.

Explanation:

A polygenic trait is influenced by something, while Pleiotropy influences two or more phenotypic traits...so in simple words, one is influenced by something and the other influences different things  

Hey I really hope it helps, I tried my best helping you!

Four sex cells are produced. Each cell has _________________ the number of chromosomes of the __________________________ cell. Each sex cell haqs only ________________________ chromosome form an orginal pair. How many chromosomes are in each cell in step 3?___________________________

Answers

Answer:

Four sex cells are produced. Each cell has ___half___ the number of chromosomes of the __parent______ cell. Each sex cell has only ____one_ chromosome from an original pair.

Explanation:

Answer:

How many chromosomes are in each cell in step 3? 4

Explanation:

it is 4 because if you count it in the diagram, there are two cells and two pairs of chromosome in each, which is a total of 4.

I think this is right.

Hope it helps!

Have a great day!

In a large, random-mating population of lab mice, the A1 allele is dominant and confers a 25% fitness advantage over the A2A2 wild type (thus, A2A2 has a fitness of 0. 8). Initially, the allele frequencies for A1 & A2 are p=0. 4 and q=0. 6, respectively. After 1 generation, what will the new frequency of the A1 allele be?

Answers

In a large, random-mating population of lab mice, with the A1 allele conferring a 25% fitness advantage over the A2A2 wild type, the initial allele frequencies are p=0.4 for A1 and q=0.6 for A2. After one generation, the new frequency of the A1 allele can be determined using the principles of population genetics.

Explanation: To calculate the new frequency of the A1 allele after one generation, we can use the Hardy-Weinberg equilibrium equation: p^2 + 2pq + q^2 = 1, where p represents the frequency of the A1 allele and q represents the frequency of the A2 allele. Given that the fitness advantage of the A1 allele is 25%, the relative fitness values can be calculated as follows:

A1A1 genotype: (1 + 0.25) = 1.25

A1A2 genotype: (1 + 0) = 1 (no fitness advantage)

A2A2 genotype: (1 + 0) = 1 (no fitness advantage)

Using these relative fitness values, we can calculate the new frequency of the A1 allele. The frequency of the A1A1 genotype will be p^2 x 1.25, the frequency of the A1A2 genotype will be 2pq x 1, and the frequency of the A2A2 genotype will be q^2 x 1. After one generation, the sum of these frequencies should still equal 1.

By solving these equations simultaneously, we can determine the new frequency of the A1 allele. However, additional information is required to accurately calculate the new frequency after one generation, such as the genotypic frequencies of the initial population or the number of individuals in the population. Without this information, it is not possible to provide an exact value for the new frequency of the A1 allele.

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f. What happens to the PGAL molecule that does not continue on in the Calvin cycle?

Answers

Answer:

The cell uses it to produce glucose and other biomolecules.

Explanation:

The regeneration of significant quantities of RuBP using PGAL molecules allows the Calvin cycle processes to be repeated. The rearrangement of carbon atoms in three-carbon containing molecules to produce five-carbon molecules is required for RuBP regeneration from PGAL.

~

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Prior to drawing blood for a blood donation, the nurse will scrub the arm with a Betadine solution. This form of antimicrobial control would be called __________.
A. antisepsis B. disinfection C. sterilization D. sanitization

Answers

The form of antimicrobial control described in the scenario, where the nurse scrubs the arm with a Betadine solution prior to drawing blood, would be called: A. antisepsis.

Antisepsis refers to the use of antiseptic agents to inhibit or kill microorganisms on living tissues, such as the skin.

The purpose of using an antiseptic, such as Betadine solution (povidone-iodine), is to reduce the number of potentially harmful microorganisms present on the skin surface before a medical procedure.

Antisepsis differs from other forms of antimicrobial control:

B. Disinfection: Disinfection involves the use of antimicrobial agents to kill or reduce the number of microorganisms on inanimate objects or surfaces. It is typically used to disinfect medical equipment, surfaces, or instruments.

C. Sterilization: Sterilization is a procedure that eradicates or eliminates all types of microorganisms, such as bacteria, viruses, fungi, and spores, effectively eliminating their presence and viability. Sterilization methods are used to ensure the complete absence of viable microorganisms on objects or surfaces.

D. Sanitization: Sanitization refers to the process of reducing the number of microorganisms on surfaces to a safe and acceptable level, according to public health standards. It aims to lower the risk of infection but does not guarantee complete elimination of all microorganisms.

In the given scenario, the nurse is using an antiseptic solution (Betadine) to cleanse the arm and reduce the number of microorganisms on the skin before the blood donation procedure.

This falls under the category of antisepsis, as it targets living tissues to prevent or minimize the risk of infection during the procedure.

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which portion of a normal ecg represents ventricular depolarization?

Answers

The portion of a normal ECG (electrocardiogram) that represents ventricular depolarization is the QRS complex.

The QRS complex is a distinctive waveform on the ECG that consists of three waves: Q, R, and S. It represents the electrical activity associated with ventricular depolarization, which is the contraction of the ventricles of the heart. During ventricular depolarization, the electrical signal spreads through the ventricles, causing them to contract and pump blood.

The QRS complex is typically larger and more pronounced than other waves on the ECG because ventricular muscle mass is greater than atrial muscle mass, resulting in a stronger electrical signal. The QRS complex is an important component of the ECG for assessing the electrical activity and function of the ventricles.

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Which two chemical processes are represented by the equation below?

starch + water <—enzymes—>
sugars

Answers

Hydrolysis + water because when the starch is being added with water the water is breaking it down

Explanation:

Fossils
.......... do fossils not support the theory of continental drift ​

Answers

Fossils do support the theory of continental drift because they showed up on shores of other continents, and that made the possibility that continents were once attached.

According to the poiselle's low , if the radius of the
blood vessels decreases by 2; what happens to the resistance of
that blood vessel

Answers

According to Poiseuille's law, if the radius of a blood vessel decreases by 2, the resistance of that blood vessel will increase.

Poiseuille's law describes the relationship between the radius of a blood vessel, the flow rate of blood through the vessel, and the resistance to that flow. According to the law, the resistance (R) of a blood vessel is inversely proportional to the fourth power of its radius (r). In mathematical terms, the formula is R ∝ 1/r^4.

When the radius of a blood vessel decreases by 2, it means that the new radius is half of the original radius. If we substitute this new radius into the Poiseuille's law equation, we find that the resistance will increase significantly. Since the resistance is inversely proportional to the fourth power of the radius, decreasing the radius by 2 will result in an increase of (1/0.5)^4 = 2^4 = 16 times in resistance.

In simpler terms, if the radius of a blood vessel decreases, the available space for blood to flow through becomes smaller. This reduction in space leads to increased friction between the blood and the vessel walls, which in turn increases the resistance to blood flow. Consequently, the heart has to work harder to pump the blood through the constricted blood vessels, leading to increased pressure within the vessels.

In summary, according to Poiseuille's law, when the radius of a blood vessel decreases by 2, the resistance to blood flow through that vessel increases significantly. This highlights the importance of maintaining healthy blood vessel function and avoiding conditions that can cause constriction or narrowing of the vessels.

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PLEASE HELP ME - In 1839, Schleiden and Schwann began formulating a theory of cells and their role in living organisms. Over time, cell theory has been updated. Modern theory is summarized below. All known living things are made up of cells. The cell is the structural and functional unit of all living things. All cells come from pre-existing cells by division. The flow of energy occurs within cells. Cell theory explains all of the following except a. the growth of animals. b. how viruses require the cells of living organisms to survive. c. how bacteria reproduce. d. the storage of chemical energy in plant cells.​

Answers

It made it possible to actually see cells. Explanation: With the development and improvement of the light microscope, the theory created by Sir Robert Hooke that organisms would be made of cells was confirmed as scientist were able to actually see cells in tissues placed under the microscope.

Thank You so Much

your amazing have a great life

Question: What do you know about animal production, processing,
marketing, and breeding?

Answers

Answer:

sex

Explanation

they have to sexual intercourse to produce a baby

Answer:

production produce marketing and breeding because they also born baby and processing foods also in there part of body

Explanation:

little bit only I don't know so much if you think the answer is correct then it ok

What is gained from each part of aerobic respiration?

Answers

Answer:

Cellular respiration uses energy in glucose to make ATP. Aerobic (“oxygen-using”) respiration occurs in three stages: glycolysis, the Krebs cycle, and electron transport. ... This results in a net gain of two ATP molecules. Life first evolved in the absence of oxygen, and glycolysis does not require oxygen.

Hope this helps..

Why would two different species have similar features or behaviors

Answers

Answer:

Adaptation and environment

Explanation:

You can have two different species that were one in the same at some point in time, but you have varying aspects such as environmental factors and natural selection.

In which country the lapsi is found,

Answers

Answer:

Nepal

Lapsi (Choerospondias axillaris) is a popular fruit tree that is found in Nepal and many other Asian countries.

Answer:

Nepal

Explanation:

Many organisms of a food chain feed on plants to derive energy for their vital activities. What is the food from which plants derive energy for their own growth and reproduction? Responses oxygen released by other plants oxygen released by other plants nutrients absorbed from the soil nutrients absorbed from the soil minerals absorbed from water in the soil minerals absorbed from water in the soil sugars made from carbon dioxide and water sugars made from carbon dioxide and water

Answers

Light work is the food from which plants derive energy for their own growth and reproduction.

What is carbon dioxide ?

One part carbon and two parts oxygen make up the gas called carbon dioxide. Its usage by plants to create carbohydrates during a process known as photosynthesis makes it one of the most significant gases on the planet.

What is reproduction?

Creating offspring is considered reproduction.  An organism that reproduces sexually integrates the genetic makeup of both parents to create a genetically distinct individual. One parent replicates itself to create a genetically identical offspring in asexual reproduction.

Therefore, Light work is the food from which plants derive energy for their own growth and reproduction.

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Which of the following segments of double-stranded DNA requires the highest temperature to separate the strands?
A). 5'-AAAATTTT-3'
3'-TTTTAAAA-5'
B). 5'-CGAATAGC-3'
3'-GCTTATCG-5'
C). 5'-ATGCATGC-3'
3'-TACGTACG-5'
D). 5'-CGATTAGC-3'
3'-GCTAATCG-5'
E). 5'-GCGCGCGC-3'
3'-CGCGCGCG-5'

Answers

The segment of double-stranded DNA that requires the highest temperature to separate the strands is option E) 5'-GCGCGCGC-3' / 3'-CGCGCGCG-5'.

This is because it consists of the greatest number of hydrogen bonds between complementary base pairs, making it more stable and requiring more energy to break the hydrogen bonds and separate the strands.

The stability of double-stranded DNA is primarily determined by the number of hydrogen bonds formed between complementary base pairs. Adenine (A) forms two hydrogen bonds with thymine (T), while cytosine (C) forms three hydrogen bonds with guanine (G). The more hydrogen bonds present, the higher the energy required to break them and separate the DNA strands.

In option E) 5'-GCGCGCGC-3' / 3'-CGCGCGCG-5', each base pairs with its complementary base, resulting in eight hydrogen bonds in total. This segment has the highest number of hydrogen bonds among the given options, making it the most stable and requiring the highest temperature to separate the strands.

In comparison, options A), B), C), and D) have fewer hydrogen bonds between complementary base pairs, making them less stable and requiring lower temperatures to denature the DNA.

Therefore, option E) 5'-GCGCGCGC-3' / 3'-CGCGCGCG-5' is the segment that requires the highest temperature to separate the DNA strands.

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12. What determines a protein's structure and function?

Answers

Each protein's 3D shape and function depend on its amino acid sequence. Nucleotides in gene sequences code amino acids.

What is protein?

Large biomolecules and macromolecules known as proteins are made up of one or more long chains of amino acid residues.

Proteins are the fundamental elements necessary for life. Protein can be found in each and every cell in the human body. A chain of amino acids constitutes the fundamental structure of proteins. In order for your body to be able to repair damaged cells and create new ones, you need to get enough protein in your diet.

They serve as the fundamental component of a variety of bodily structures and substances, including hair and skin, as well as enzymes, cytokines, and antibodies.

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x Question 1
O points
1
Look at the following chemical reaction.
HR
H
ů 요
H С
N С
H
H
H O
RH
HR H
+
ö-H
O
21
HC NC
N
co-H
H
O RH
Which process is happening in the reaction that is shown?
+
нон
A. lonization

Answers

Lionization is the answers me

PLEASE HELP ME!!!!!!
What happens to the muscles when the weight is lowered?

PLEASE HELP ME!!!!!! What happens to the muscles when the weight is lowered?

Answers

Answer:

C is the answer to the question

Which structure does the immune system target in type 1 diabetes?
a. beta cells of the pancreas
b. liver cells that release glucose
c. insulin receptors on fat cells
d. red blood cells in the bloodstream

Answers

Answer:

The thymus plays an important role in deletion of potentially autoreactive T cells. However, the presence of islet-specific T cells in the circulation of type 1 diabetes patients and healthy subjects indicates that the thymus is not capable of efficiently deleting all autoreactive T cells (Mathis and Benoist 2009).

Explanation:

Answer:

A: beta cells of the pancreas

Explanation:

Type 1 diabetes makes the pancreas produce little to no insulin.

Hemophilia is an X-linked recessive genetic disorder. A baby girl is found to have inherited the trait from her parents. What are the phenotypes of the parents?

Answers

X-linked genes are inherited. The affected girl's father is hemophilic (X-Y), and the mother might be either hemophilic (X-X-) or carrier normal (X+X-).

What are the X-linked genes?

These are the genes located in the X séx chromosome and not in the somatic ones.

Traits coded by these genes are inherited. This is, X-linked genes are transmitted from parents to children through generations.

According to this, X-linked genetic disorder will be inherited as well.

Men have a high probability of being affected since they only have one copy of the X chromosome.  In women, the effect of the mutation might be musk in heter0zyg0us state.

Hemophilia is a X-linked recessive genetic disorder.

Let us represent the recessive allele with the symbol -, and the dominant allele with the symbol +.

X- is the chromosome carrying the recessive allele X+ is the chromosome carrying the dominant allele

For the affection to be expressed, the person must be either,

X-X-  ⇒   woman/girlX-Y  ⇒    man/boy

If the baby girl is found to have inherited the trait from her parents, then her genotype is X-X-. She must have received one X- chromosomes from each parent.

Her father provided the X chromosome, so he must be hemophilic (X-Y)Her mother provided the other X chromosome, but she can be either a carrier (heter0zyg0us, X+X-) or hemophilic (h0m0zyg0us recessive, X-X-).

Options,

Cross 1) affected father x carrier mother

Parentals)   X-Y    x    X+X-

Gametes)  X-      Y    X+     X-

Punnett square)       X-       Y

                       X+   X+X-    X+Y

                       X-    X-X-     X-Y  

F1) 1/2 = 50% of the progeny is expected to be healthy (25% X+X- girls + 25% X+Y boys)

    1/2 = 50% of the progeny is expected to be hemophilic (25% X-X- girls + 25% X-Y boys)

Cross 2) affected father x affected mother

Parentals)   X-Y    x    X-X-

Gametes)  X-      Y    X-     X-

Punnett square)       X-       Y

                       X-    X-X-    X-Y

                       X-    X-X-     X-Y  

F1) 100% of the progeny is expected to be hemophilic (50% X-X- girls + 50% X-Y boys)

the phenotype of the fatherhemophilic (X-Y)the phenotype of the mother ⇒ normal carrier (X+X-) or hemophilic (X-X-)

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Which of jean-baptiste lamarck’s proposals would support the idea that an individual who develops large muscles due to weight training would have offspring that also have large muscles?

Answers

Lamarckism, a theory of evolution based on the idea that physical changes in organisms during their lives, such as greater development of an organ or a portion due to increased use, could be passed on to their offspring.

Lamarck claimed that organisms changed how they behaved in response to environmental change. Their altered behaviour caused their organs to undergo modification, which their progeny inherited.

One of the most well-known early evolutionists was Jean Baptiste Lamarck (1744–1829). They instead evolved into different species. Lamarck believed that since primitive organisms coexist with complex "advanced" species today, spontaneous generation must be the source of their ongoing creation.

Organisms changed their behaviour in reaction to environmental change, according to Lamarck.

Their altered behaviour caused their organs to undergo modification, which their progeny inherited. For instance, giraffes evolved their long necks and front legs over many generations of leaf-chewing on tall trees. Stretching up to the leaves changed the neck and legs, and these new traits were passed down to their progeny.

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