Question 6 of 20
A girl swings a yo-yo around in circles. How can she increase the total energy
of this system?
O
A. Reverse the direction of the swing,
O
B. Stand on a table while swinging the yo-yo.
C. Sit on the ground while swinging the yo-yo.
о
D. Swing the yo-yo at a lower speed,
SUBMIT

Answers

Answer 1

Answer:

it's B

Explanation:

Answer 2

A girl can increase the total energy of this system by standing on a table while swinging the yo-yo. Thus, the correct option is B.

What is Yo-yo?

Yo-yo may be defined as a type of toy that consists of a pair of joined discs with a deep furrow between them in which thread is attached and wound.

By reversing the direction of the swing, swinging the yo-yo at a lower speed, and sitting on the ground while swinging the yo-yo decrease the total energy of the system. This is because the system does not have the momentum that is required to increase its overall energy.

Therefore, a girl can increase the total energy of this system by standing on a table while swinging the yo-yo. Thus, the correct option is B.

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Related Questions

*urgent* The liver is essential to the health of the organism. One major function of the liver is–
A) To create tissues
B) To perform proper organ functions with individual cells
C) To synthesize amino acids
D) All of the above

Answers

Answer:

I believe that the answer is C

Nutrients and waste are passed between cells and blood through _____.
A. arteries
B. veins
C. ventricles
D. capillaries

Answers

Answer:

capillaries

Explanation:

they're the points whete the veins and arteries are connected to bloodstream

Why do genetically different cells form during meiosis?

Answers

Answer: meiosis creates new combinations of genetic material in each of the four daughter cells. These new combinations result from the exchange of DNA between paired chromosomes. Such exchange means that the gametes produced through meiosis exhibit an amazing range of genetic variation.

Explanation:

Which of the following is an example of a complex machine?
1. Pulley
2. Wedge
3. Scissors
4. Incline

Answers

3- Scissors are an example of a complex machine.

Answer:

A :3

Explanation:

Just did acceleratted ed. Hope this helps!

The biotic and abiotic factors interacting with each
other in a pond form
A) an ecosystem B) a community
C) a population D) a food web

Answers

Answer:

Answer is A

Explanation

A scientist discovers several new prokaryotic organisms near a deep seafloor vent. Which best describes the general characteristics of these organisms?

A.
colonial, autotrophic
B.
multicellular, heterotrophic
C.
single-celled, autotrophic
D.
multicellular, autotrophic

Answers

Answer:

a,

Explanation:

The general characteristic of the new prokaryotic organisms is single-celled, autotrophic. Therefore, the correct statement is option C.

What are prokaryotic organisms?

Prokaryotic organisms are unicellular organisms that lack a nucleus and other membrane-bound organelles. They can be either autotrophic or heterotrophic.

Deep seafloor vents are chemosynthetic organisms, which produce organic molecules using energy from chemical reactions. Prokaryotic organisms include bacteria and archaea and are the most common types of organisms found in deep-sea vents, and many of these are chemosynthetic and autotrophic.

The new prokaryotic organisms discovered near a deep seafloor vent are single-celled and autotrophic which can produce their food through chemosynthesis.

Therefore, new prokaryotic organisms near a deep seafloor vent are that they are single-celled and autotrophic.

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do plant cells have organelles?

Answers

Answer:

Most organelles are common to both animal and plant cells. However, plant cells also have features that animal cells do not have: a cell wall, a large central vacuole, and plastids such as chloroplasts.

Explanation:

Yes they do most plant cells do

Which two elements make up table salt

Answers

Answer:

Chemically, table salt consists of two elements, sodium (Na) and chloride (Cl).

3. Which structure is specific to eukaryotic cells?
O nucleus
O cytoplasm
DNA
O cell membrane

Answers

The first option NUCLEUS

Like a prokaryotic cell, a eukaryotic cell has a plasma membrane, cytoplasm, and ribosomes. However, unlike prokaryotic cells, eukaryotic cells have: a membrane-bound nucleus. numerous membrane-bound organelles (including the endoplasmic reticulum, Golgi apparatus, chloroplasts, and mitochondria)

what are 3 parts of a nucleotide?

Answers

Answer:

The three parts of a nucleotide are:

- A phosphate group

- Nitrogenous base

- Five-carbon atoms

Explanation:

These are the three parts that make up a nucleotide.

Why is desertification a problem?

A) New farmland is attained.
b) More people will immigrate to deserted areas.
c) Sand helps machinery run more efficiently.
d) Breathing air contaminated with sand particles can be hazardous.

Answers

Answer: The answer is D

How is homeostasis achieved?

Answers

A: Cells maintain internal stability

Homeostasis is achieved once a continuous state of steady internal, physical, and chemical conditions are maintained.

Answer:

A. Cells maintain internal stability

Explanation:

what is the binomial nomenclature in biology?​

Answers

It's the formal naming system scientists use to name all living things, Genus being the scientific name (first part) and the specific epithet being the common name like Elephant

Answer:

Binomial nomenclature ("two-term naming system"), also called binominal nomenclature ("two-name naming system") or binary nomenclature, is a formal system of naming species of living things by giving each a name composed of two parts.

Fyi no I did not get this off of google.    I hoped this helped!

Why are tapeworms parasites to brine shrimps?

Answers

The parasites help the brine shrimp survive in waters laced with toxic arsenic

Answer: The tissue of brine shrimp turns red after it is infected with parasitic tapeworms. This color is caused by an increase in carotenoids, a type of pigmented chemical      

Explanation:

HELPPPP MAN IDKK- IM DOINGTHISLASTMINUTE

Answers

Answer:

gravity

Explanation:

the sun has a gravitational pull that keeps all the planets in orbit and prevents them from just floating away.

Answer:

The reason the planets orbit the Sun is related to why objects fall to Earth when we drop them. The Sun's gravity pulls on the planets, just as Earth's gravity pulls down anything that is not held up by some other force and keeps you and me on the ground.

The attraction between the hydrogen atom on one water molecule and the oxygen
atom on another water molecule is called a(n)

Answers

Answer: Hydrogen bond or a covalent bond.

Explanation:

the molecule that is formed as a result of the acceptance of hydrogen ion and the final acceptor molecule.

Answers

Answer:

H2O (Water)

Explanation:

Oxygen (O2) is the final acceptor molecule after the process of aerobic respiration. Specifically, it accepts hydrogen ions at the end of the electron transport chain, the main energy-generating stage of cellular respiration.

This is why oxygen is needed to form large amounts of cellular energy, as without it, the electron transport chain cannot proceed. When oxygen accepts hydrogen ions, it forms water, a byproduct of aerobic respiration.

The attraction of water molecules to other water molecules is called 3 4 5 6 7​

Answers

The attraction of water molecules to one another is a bond called a Hydrogen Bond

Identify the two main spheres interacting in this photo.
(2 points)
Geosphere
Cryosphere
Biosphere
Cryosphere
Atmosphere

Answers

i believe it’s geosphere and biosphere

A group of biological communities that interact with the physical environment is

Answers

Answer:

Biosphere

Explanation:

A group of biological communities that interact with the physical environment is the "biosphere".

Which of the following best describes the effect of a greater number of cysteine amino acids on the stability of the proteins

Answers

Answer:

The correct answer is -

The change leads to increased protein stability because of an increased number of S-S bonds in the tertiary structure of the proteins.

Explanation:

Cysteine is a special amino acid due to having a free thiol group that can react and forms a sulfur-sulfur bond with another thiol of another cysteine in a protein structure.

These disulfide bonds can stabilize proteins if formed properly and promote stability to the tertiary structure of the proteins. The more the cysteine, the greater the number of thiols, and the greater the s-s bond in the proteins and more stability to the protein.

We are a carbon-based life form. List three properties of carbon that make it an ideal element
from which to construct a wide variety of complex molecules.

Answers

Answer:

Carbon can form four covalent bonds because it needs four electrons to fill its valence shell. Carbon-based molecules can vary in the number of carbon atoms.

Explanation:

-google

What type of cells are found in the skeletal system?

Answers

Answer:

The human skeleton is composed mainly of a substance called bone, and there are primarily four types of cells that make up bone. These are the osteoprogenitor cells, osteoblasts, osteoclasts and osteocytes. Their names all start with the prefix “osteo,“ which is the Greek word for "bone."

Explanation:

When it is high tide on one side of the earth, the opposite side of the earth experiences
A low tide.
B. high tide.
C. flood tide.
D. ebb tide.
E. red tide.

Answers

The answer might be:
B. Low tide
Because of the term “opposite”.

2. What is the name of the process of gathering evidence called? *
1 point
the Experimental Process
the Scientific Proof
the Scientific Experiment
the Scientific Method

Answers

Answer:

the answer is d scientific method

Answer:d the scientific method

Explanation:

in a few sentences tell me what you know about cells.

Answers

Answer:

Cells are the basic building blocks of living things. The human body is composed of trillions of cells, all with their own specialised function.

Explanation:

Cells are made up of energy, and are composed to the human body.

VERY URGENT:
Units that are combinations of two or more fundamental/base units are called (blank) units

Fill in the blank

Answers

Answer:

Derived Units

Explanation:

Answer:

Derived unit

Explanation:

The fundamental unit is Derived unit

WILL GIVE BRAINLIEST!!!!!!!

The main difference between the water cycle and the other chemical cycles is that water



never changes its structural form (H2O) .


is much slower than the other cycles.


creates completely new substances.


is made from matter that has been here since the world was formed.

Answers

Answer:

The answer is A.

Explanation:

Other cycles change their structural form often, but water does not change it's structural form in the water cycle, which is H2O so that is one main difference between the water cycle and oither checmical cycles. So, your answer is A.

The main difference between the water cycle and the other chemical cycles is that water never changes its structural form (H2O). Thus, the correct option for this question is A.

What is the water cycle?

The water cycle may be defined as a type of biogeochemical cycle that significantly involves the gradual and continuous movement of water and its derivative products within the Earth and atmosphere.

The water cycle remarkably consists of three major processes. They are as follows:

Evaporation: a process through which a liquid converts into gas.Condensation: a process through which gas converts into liquid.Precipitation: a process through which liquid water falls on the earth's surface.

The most important concept of the water cycle is that the structural form of water remains constant and the same throughout the process. This property of water differs from other chemical cycles because such cycles involve the alteration in their fundamental component.

Therefore, water never changes its structural form (H2O) is the main difference between the water cycle and the other chemical cycles. Thus, the correct option for this question is A.

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Which would probably have the greatest effect on a protein's function—a change to the primary, secondary, or tertiary structure? Explain your answer.

Answers

Answer:

There are 20 different standard L-α-amino acids used by cells for protein construction. Amino acids, as their name indicates, contain both a basic amino group and an acidic carboxyl group. This difunctionality allows the individual amino acids to join in long chains by forming peptide bonds: amide bonds between the -NH2 of one amino acid and the -COOH of another. Sequences with fewer than 50 amino acids are generally referred to as peptides, while the terms, protein and polypeptide, are used for longer sequences. A protein can be made up of one or more polypeptide molecules. The end of the peptide or protein sequence with a free carboxyl group is called the carboxy-terminus or C-terminus. The terms, amino-terminus and N-terminus, describe the end of the sequence with a free α-amino group.

The amino acids differ in structure by the substituent on their side chains. These side chains confer different chemical, physical, and structural properties to the final peptide or protein. The structures of the 20 amino acids commonly found in proteins are shown in Figure 1. Each amino acid has both a one-letter and three-letter abbreviation. These abbreviations are commonly used to simplify the written sequence of a peptide or protein.

figure1-Protein-Structure

Depending on the side-chain substituent, an amino acid can be classified as being acidic, basic or neutral. Although 20 amino acids are required for synthesis of various proteins found in humans, we can synthesize only ten. The remaining 10 are called essential amino acids and must be obtained in the diet.

The amino acid sequence of a protein is encoded in DNA. Proteins are synthesized by a series of steps called transcription (the use of a DNA strand to make a complimentary messenger RNA strand – mRNA) and translation (the mRNA sequence is used as a template to guide the synthesis of the chain of amino acids which make up the protein). Often, post-translational modifications, such as glycosylation or phosphorylation, occur which are necessary for the biological function of the protein. While the amino acid sequence makes up the primary structure of the protein, the chemical/biological properties of the protein are very much dependent on the three-dimensional or tertiary structure.

A change to the PRIMARY structure WILL HAVE the greatest effect on a protein's function.

The primary structure of a protein refers to the linear sequence of amino acids within a polypeptide chain.

A change in the protein primary structure will change protein properties and likely will also alter their functions.

The secondary structure of a protein refers to the specific arrangement of groups of amino acids. The most common types of secondary structures in proteins include alpha helix and beta sheets.

The tertiary structure refers to the three-dimensional shape of the protein. There are two major main classes of protein tertiary structure: fibrous and globular.

The quaternary structure refers to the association of different protein subunits to form a multimeric protein.

In conclusion, a change to the PRIMARY structure WILL HAVE the greatest effect on a protein's function.

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The cell membrane serves many functions. One of the cell membranes functions is to help the cell maintain homeostasis. How does the cell membrane do that ?

Answers

Answer:

The cell membrane help to maintaining homeostasis by regulating the flow of substances through it and by recognizing potentially harmful agents to the cell.

Explanation:

Cellular membrane is constituted by a lipidic bilayer, whose characteristics allow it to behave as a semi-permeable membrane to the passage of substances.

The selective permeability of the membrane makes it possible to regulate the passage of water, molecules and ions through it into the cell and from there into the extracellular space, a characteristic that allows the maintenance of homeostasis.

Additionally, the cell surface can identify foreign and potentially harmful agents, which can affect the internal balance, preventing in most cases their passage into the cell.  

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