Which statement best explains the transfer of energy as the bat collides with the ball?

A. The bat gains kinetic energy, and the ball loses kinetic energy.
B. The bat and the ball both gain kinetic energy.
C. The bat and the ball both lose kinetic energy.
D. The bat loses kinetic energy, and the ball gains kinetic energy.​

Answers

Answer 1

Answer:

D. The bat loses kinetic energy, and the ball gains kinetic energy.​

Explanation:

I got it right


Related Questions

Study the image, which describes how rapid changes in weather conditions occur.

How rapid changes in weather conditions occur. Arrow labeled Direction of frontal movement points right toward Cold front map symbol. Arrow labeled Rising warm air in front of cold front points from cold front to sky. Also labeled are: Development of clouds because of upward movement of warm air, and Advancing cold air behind cold front.

Based on the arrows, what does the image represent?

Air masses are barely moving.
Air masses are colliding with each other.
Jet streams are forming in the upper atmosphere.
Weather conditions are remaining steady and unchanged.

Answers

The image represents air masses colliding with each other, leading to rapid changes in weather conditions.

The image represents the process of rapid changes in weather conditions occurring. The arrows in the image indicate various elements and phenomena related to these changes.

At the top, the final answer is that the image represents "Air masses are colliding with each other."

1. The arrow labeled "Direction of frontal movement" points right toward the "Cold front" map symbol. This indicates the movement of a cold front.

2. The arrow labeled "Rising warm air in front of cold front" points from the cold front upward into the sky. This signifies the upward movement of warm air.

3. The image also shows the development of clouds due to the upward movement of warm air. This indicates the presence of moisture in the atmosphere.

4. Finally, the image depicts advancing cold air behind the cold front, indicated by an arrow. This cold air is moving in the direction of the warm air.

Putting all these elements together, we can conclude that the image represents air masses colliding with each other. The cold front is advancing and pushing against the warm air, leading to the formation of clouds and changes in weather conditions. This collision between air masses often results in rapid changes in weather patterns, such as storms, rain, or temperature fluctuations.

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Which two options are examples of making direct observations rather than inferences

Which two options are examples of making direct observations rather than inferences

Answers

Answer:

the answer is b and c to the question

Is hydrogen an atom or molecule

Answers

it’s a molecule .......
The answer I think is molecule

If the amount of carbon dioxide DECREASED in the environment how would this affect the overall growth of the plants?

Answers

In the hypothetical extreme case that the CO2 (carbon dioxide) decreased so much that was almost over, it would affect plants negatively because this molecule it's necessary for them to do photosynthesis, the process that allows them to produce energy to stay alive, and thus grow and do all the processes living organism do.


The conformational change in an enzyme after the substrate is bound that allows the chemical reaction to proceed, can be explained by
A.induced fit
B. transition
C. fit and fine
D. Pasteur

Answers

The correct answer to explain the conformational change in an enzyme after the substrate is bound, allowing the chemical reaction to proceed, is A.

In general, how will parts of an ecosystem that are destroyed by natural events or by human development change over time?

Answers

Answer:

They will adapt.

Explanation:

I really like your anime profile.

-------- alveolar cells provide the primary diffusional area for gas exchange with the blood in the lung

Answers

The alveolar cells of the lung provide the primary diffusional area for gas exchange between the air and the blood. Alveoli are tiny, balloon-like sacs in the lungs that are lined with a single layer of alveolar cells.

These cells form a thin, permeable membrane through which oxygen and carbon dioxide can pass from the air into the blood, and vice versa.

The alveolar cells are extremely important for respiration. Oxygen from the air enters the alveolar cells, where it diffuses into the blood. At the same time, carbon dioxide from the blood diffuses across the membrane into the alveolar cells, where it is expelled out of the body. This process, known as gas exchange, is essential for maintaining oxygen levels in the body and eliminating carbon dioxide.

The alveolar cells are also involved in the process of surfactant production. This is a complex mixture of lipids and proteins that provides a lubricating surface in the alveolar sacs, preventing them from collapsing and allowing for easier breathing.

The alveolar cells play a critical role in the process of respiration, providing the primary diffusional area for gas exchange with the blood. Without them, oxygen and carbon dioxide would not be able to diffuse across the alveolar membrane, and respiration would be impossible.

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Emily's dog has puppies. 3 puppies are brown and 2 puppies have spots. The difference in their coat color is known as A trait B feature r variation​

Answers

Answer:

What

Explanation:

Answer:

This is known as A. Trait

Which of the following is NOT a way to gain scientific
knowledge?
a. Through experimentation
b. Through observation.
c. By making models
d. By making assumptions or guesses

Answers

D. By making assumptions or guesses

Science is based on facts and observations.

It can’t be experimentation because that gives you more data (more facts) to work with

It can’t be observation because it is giving you more information to help with your data

It can’t be by making models because a model will be giving you things to observe


But, guessing is based solely on intuition and luck. There’s no factual basis to a guess.

6. Make Models Develop a taxonomic key that
a person could use to identify the following ani-
mals: hawk, alligator, duck, snake

6. Make Models Develop a taxonomic key thata person could use to identify the following ani-mals: hawk,

Answers

Here's a taxonomic key to identify the four animals mentioned:

Is the animal a bird? Go to 2. Is it a reptile? Go to 3.

Does the bird of prey have hooked beaks and sharp talons? If yes, then it is a hawk. If not, go to 4.

Does the reptile have a long tail, four legs, and scaly skin? If yes, then it is an alligator. If not, go to 4.

Is the animal a bird with a broad, flat beak and webbed feet? If yes, then it is a duck. If not, go to 5.

Does the animal have a long, slender body and no legs? If yes, then it is a snake.

Help pls: As the human population has increased over time, wilderness lands have decreased.
What are the two main reasons that wilderness land has decreased?
Select the two correct answers.
• Pollution has harmed wilderness areas.
• Towns and cities have grown and expanded.
• Human activities have caused the climate to change.
• More land is needed for farming and ranching.
• People no longer need or want wilderness areas.

Answers

Answer:

• Pollution has harmed wilderness areas.

• More land is needed for farming and ranching.

Explanation:

A student conducted an experiment to determine if the temperature of the water affected the breathing rate of the freshwater sunfish. Temperature was measured in degrees Celsius and breathing rate was per minute.


What is the dependent variable?

Answers

The dependent variable is the animal's breathing rate. It changes in response to the change in water temperature -independent variable-.

What are dependent and independent variables?

When conducting an experiment, we must always consider the involved variables.

Independent variables are those modified or changed by the researcher to study how this change affects another variable and hence the results. This variable is not affected by any other one but influences or causes a reaction in other variables.

The dependent variable is the one influenced by the independent variable, and is affected by any change on this last one. Its response might be either directly proportional or inversely proportional to the change in the independent variable.

In the exposed example,

The experiment was done to determine if water temperature influences on the fishes' breathing rate.

Variables are

water teperature, fishe's breathing rate.

Water temperature influences the animal's breathing, so this is the independent variable.

The animal's breathing rate changes as temperature changes. So this is the dependent variable.

The dependent variable is then the animal's breathing rate. It changes in response to the change in water temperature -independent variable-.

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Hi can someone please help describe this object that was viewed under high magnification

Hi can someone please help describe this object that was viewed under high magnification

Answers

Explanation:

The cells on the skin of a body.

The given image shows the brain cells stained with pink colour with small dotted cells scattered around observed under high magnification.

Before brain tissue can be observed under a microscope, it must be thoroughly dyed with chemicals, thinly sliced, and studied under an electron microscope, where slices that resemble thin plates coated in microscopic soap bubbles are visible to researchers. The soap-bubble boundary indicates where one neuron ends and another begins, and some bubbles serve as the cross-section of a neuron.

However, there are issues with this type of imaging: the staining frequently does not reveal enough structure, the slices may be twisted, and the images may be hazy.

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How is a punnett square done differently for a sex linked trait such as hemophilia?

Answers

Answer:

Punnett square is a tool used to predict the probability of offspring inheriting certain traits based on the parents' genotypes. When it comes to sex-linked traits, such as hemophilia, the inheritance pattern is different from other traits. Hemophilia is caused by a mutation on the X chromosome and is therefore a sex-linked recessive trait.

To create a Punnett square for a sex-linked trait like hemophilia, the following steps can be taken:

Determine the genotypes of the parents: In humans, females have two X chromosomes (XX), and males have one X and one Y chromosome (XY). For example, if the mother is a carrier for hemophilia (XH Xh) and the father does not have hemophilia (XY), their genotypes would be XH Xh and XY, respectively.

Write the parents' gametes: Gametes are sex cells that carry half the genetic information of the parent. The mother's gametes would be XH and Xh, and the father's gametes would be X and Y.

Create the Punnett square: In a typical Punnett square, you would place the possible gametes of one parent along the top and the other parent along the side. However, since hemophilia is a sex-linked trait, you only need to place the mother's gametes along the top of the square, and the father's sex chromosomes along the side.

XH Xh

Y XY XHY XhY

X XHX XhX XX

Determine the possible offspring: Once the Punnett square is completed, you can determine the possible offspring's genotype and phenotype. In the case of hemophilia, males only need one copy of the X-linked gene to express the trait. Therefore, any male offspring with an Xh allele will have hemophilia, while females need two copies of the X-linked gene to express the trait. Females with one Xh allele are carriers and do not show symptoms.

By following these steps, you can use the Punnett square to predict the probability of offspring inheriting hemophilia.

Explanation:

Answer:

Based on the Punnett square, there is a 50% probability that the children will have hemophilia. For the female offspring, the possible genotypes are XH,Xh X H , X h (carrier) and Xh,Xh X h , X h (hemophiliac). For the male offspring, the possible genotypes are XH,Y X H , Y (no disease) and Xh,Y X h , Y (hemophiliac).

Will this movement re hire an input of energy?

Will this movement re hire an input of energy?

Answers

Their movement will require the input of energy. That is option B.

What is an active transport?

An active transport is defined as the movement of molecules across the cell membrane from different compartments in the living organism.

The active transport makes use of energy because of the need to move molecules from a semi permeable membrane that is against a concentration gradient.

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1. Fill in the rest of the table based on the information already there.
2. What is the percentage of heterozygous tasters (2pq) in the class?​

1. Fill in the rest of the table based on the information already there. 2. What is the percentage of

Answers

1. The filled table based on the information already there is attached below.

2. The percentage of heterozygous tasters in the class is 39%.

How to calculate percentage?

2. The percentage of heterozygous tasters (2pq) in the class:

The percentage of heterozygous tasters in the class is 39%. This can be calculated by taking the number of heterozygous tasters (11) and dividing it by the total number of people in the class (28).

(11 / 28) × 100 = 39%

The percentage of heterozygous tasters in the North American population is 55%. This can be calculated by taking the number of heterozygous tasters (75) and dividing it by the total number of people in the North American population (135).

(75 / 135) × 100 = 55%

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1. Fill in the rest of the table based on the information already there. 2. What is the percentage of

Use your codon chart to determine the amino acid sequence. Remember to read through the strand and ONLY start on AUG and STOP when you reach a stop codon (UGA, UAA, or UAG). Follow the example in the box. Abbreviate the proteins using the first three letters of the amino acid name.

Answers

Methionine (AUG)Amino acids can be abbreviated using the first three letters of their name.

Methionine can be abbreviated as Met.

The given RNA sequence is AUGUAACGAUGCGUCGUGGCAUCAUGCUGCGUCAGCGGCGAGUCUGACCCGUCUCUAACAGGACGGCCGGGCGUUGUCGUUGA.

We can use the codon chart to determine the amino acid sequence.

The codon chart is used to determine which amino acid is coded by a particular codon in a strand of DNA/RNA.A codon is a sequence of three nucleotides in DNA or RNA that encodes for a specific amino acid.

Each codon codes for a different amino acid.

For example, the codon AUG codes for the amino acid methionine.

To determine the amino acid sequence, we start reading the RNA strand from the start codon AUG and continue reading until we reach a stop codon (UGA, UAA, or UAG).

Then we write down the amino acid sequence for the codons we read, using the codon chart.

Here, the sequence starts with AUG, which codes for methionine.

After that, the next codon is UAA which is a stop codon, so we can stop.

The amino acid sequence is therefore Methionine. So, the answer would be Methionine (Met).

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Q1) Based on the information in the unit, explain why the number of predators is declining in the
Appalachian region. What effects might this have on the forest?


Q2) Why is it important that diverse areas of the forest are monitored when counting trees? What
could happen if this wasn't done?

Q3) The unit discusses measuring growth in forests. Where else might it be important to measure
the growth of trees? Why?

Q4) If trees in a timber cruise were found to be of many different species, would that mean that the
forest could be used for timber? Explain your answer.

Q5) Why do you think that biodiversity is good for ecosystems?

Answers

Answer:

Q1) The number of predators is declining in the Appalachian region due to factors such as habitat loss, hunting, and disease. This can have significant effects on the forest ecosystem, as the absence of predators can lead to an increase in the populations of their prey. This can, in turn, cause a decrease in the populations of other species that rely on those prey for food, and can also result in an overgrazing of certain plant species, leading to a disruption in the balance of the forest ecosystem.

Q2) It is important to monitor diverse areas of the forest when counting trees because different areas may have different types of trees or different densities of trees. Focusing on only one type of area or tree species could result in an inaccurate count and misrepresentation of the forest's overall health. If diverse areas of the forest are not monitored, it could lead to an incomplete understanding of the forest's ecosystem, and potentially lead to poor management decisions.

Q3) It is important to measure the growth of trees in other areas such as urban environments, parks, and nature reserves. This is because trees provide essential benefits such as shade, air purification, and carbon sequestration, and monitoring their growth can help determine their health and inform management decisions. In urban environments, for example, trees can help mitigate the effects of heat islands and improve air quality.

Q4) The presence of multiple species in a timber cruise does not necessarily mean that the forest can be used for timber. The species of trees, their size, and their density all play a role in determining the economic viability of a timber harvest. Additionally, other factors such as the terrain and accessibility of the forest also need to be considered.

Q5) Biodiversity is important for ecosystems because it provides stability and resilience. A diverse ecosystem can better withstand environmental stressors such as climate change, disease, and natural disasters, as different species may have different adaptations and roles within the ecosystem. Biodiversity can also provide important ecosystem services such as pollination, nutrient cycling, and pest control. Furthermore, a diverse ecosystem can be more aesthetically pleasing and provide recreational opportunities for people.

What type of boundary is this?

What type of boundary is this?

Answers

The image represents the continental-continental boundary. When two continental plates collide, that's another kind of convergent plate boundary. The continental lithosphere is very thick and has a low density. The continental lithosphere cannot subduct. So when two mainland plates impact, they simply crush together.

Plate tectonic boundaries come in three varieties: plate boundaries that are transformed, divergent, and convergent. The three primary types of plate boundaries are depicted in this image: transform, convergent and divergent.

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Hurry! Due tommorow.

Hurry! Due tommorow.

Answers

The body is composed of many parts. The parts of the body make it possible for the body to work very well.

How does the body work together in unison?

The body is composed of many parts. The parts of the body make it possible for the body to work very well. Now all the parts of the body play various roles but all the roles that are played by the parts of the body have the grand purpose of making the body to work.

Foe instance, the eyes enables us to see while the leg moves us form place to place. The entire skeletal system assist in making this movement possible.

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Which of the following describes structures and functions of
the human body?
SELECT ALL THAT APPLY
a can relay messages faster than 400 km/hr
b can repair itself, if necessary
C a pump that moves about a million barrels of fluid
over its lifetime
d a control center that contains billions of individual
components

Answers

Answer:

A. Neurons

B. Liver

C. Heart

D. Brain

how do i turn off the internet while choking bart simpson

Answers

Answer:

good question, you don't. Or simply wait untill you finish choking bart

Discuss the function of non-algae plants in the ocean

Answers

Marine plants similar to alge help provide sutanacne and shelter to marine life. but they are not just importiant to aquatic ecosystems; they provide about 70-80 percent of the oxygen on earth, making them extremly importiant to our everyday lives as well! marine plant and alge are both different and similar to their cousins on land: like terrestrial plants they rely on sunlight, so they are usally only found at depths were at least some light can penetrait.

i hope this helps!

happy st patricks day have a good day

Final answer:

Non-algae plants in the ocean, particularly seagrasses and mangroves, provide critical habitats for marine species, improve water clarity, protect coastal areas, and prevent erosion.

Explanation:

Non-algae plants in the ocean, specifically seagrasses and mangroves, play vital roles in marine ecosystems. Seagrasses provide a habitat for many marine creatures including fish and invertebrates, acting as a nursery ground for young organisms. They also contribute to water clarity by helping to bind the sediment.

Mangroves, on the other hand, act as a buffer zone protecting the coastal areas from strong waves and winds. They prevent erosion and contribute to the stability of the shoreline. Mangroves is also a critical habitat for various forms of wildlife and serve as a breeding ground for a multitude of marine species.

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A basketball player jumps straight up to dunk a basketball. The basketball player's speed increases as she returns to the ground. What is true
about the forces acting on the basketball player?
The upward force is greater than the downward force.
The downward force is greater than the upward force.
The rightward force is greater than the leftward force.
The leftward force is greater than the rightward force.

Answers

Answer:B

Explanation:

Answer:

B) downward force...etc

Explanation:

it makes sense lol

which body structure have walls one cell thick

Answers

Answer:

Capillaries

Explanation:

Capillaries. Capillaries connect the smallest branches of arteries and veins. The capillaries are where molecules are exchanged between the blood and the body's cells. The walls of capillaries are just one cell thick.

The only body structure that has walls one cell thick is capillaries.

What are capillaries?

Capillaries, the blood vessels in our bodies are so minuscule that red blood cells can only travel through them in a line. Comprised of a layer of cells capillaries facilitate the exchange of crucial substances like oxygen carbon dioxide, nutrients and waste materials, between the bloodstream and the surrounding tissues.

With the above details we can conclude that the  body structure that has walls one cell thick is capillaries.

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characteristics of cancerous kidney cells

Answers

Answer:

kidney cancer is often not diagnosed until it has begun to spread. Symptoms of kidney cancer can include: Blood in the urine (a condition called hematuria).

Explanation:

Cancer cells grow and divide at an abnormally rapid rate, are poorly differentiated, and have abnormal membranes, cytoskeletal proteins, and morphology. The abnormality in cells can be progressive with a slow transition from normal cells to benign tumors to malignant tumors.

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A water quality specialist in South Dakota notices local streams in a region have high salinity levels. The inland streams are not connected to any wetland, only a local watershed from a mountain region.

Which of the following is a possible source of the extra salt in the stream?

- Ocean upstream
- Lake downstream
- Nearby fracking
- Pump jack drills

A water quality specialist in South Dakota notices local streams in a region have high salinity levels.

Answers

Given what we know about the processes mentioned, we can confirm that a possible source for the extra salt in the stream is Nearby Fracking.

Fracking is a highly controversial process in which highly pressurized water is used for drilling. It is often used to mine natural gas and oil. The controversy lies within its high environmental cost.

The environmental cost factor lies in the use of massive amounts of water and its further contamination of nearby water sources due to the chemicals released during this process.

This, coupled with the fact that the water source in question is stated to not be connected to any form of wetland leads us to the conclusion that the most likely source of extra salt in the stream is nearby fracking.

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A water quality specialist in South Dakota notices local streams in a region have high salinity levels.

Identity each event as the result of mechanical weathering or chemical weathering.
mechanical weathering chemical weathering
The minerals in a marble statue react
with water to form acids and pores in
the structure.
A piece of rock crumbles after being
constantly thrashed by strong waves.
Industrial runoff forms cracks in a
rocky structure in its path.
The rocks in a region are streaked
orange after being exposed to
repeated rains.

Answers

The events described involve both mechanical and chemical weathering processes, highlighting the complex nature of how weathering affects geological structures.

The events can be identified as the result of mechanical weathering or chemical weathering as follows:

The minerals in a marble statue react with water to form acids and pores in the structure - This is an example of chemical weathering. The water reacts chemically with the minerals in the marble, causing them to dissolve and form acids. These acids further react with the marble, leading to the formation of pores and overall degradation of the statue's structure.

A piece of rock crumbles after being constantly thrashed by strong waves - This is an example of mechanical weathering. The constant thrashing of strong waves exerts physical force on the rock, causing it to break apart or crumble. This type of weathering occurs due to mechanical forces like abrasion, pressure, or impact that physically break down the rock into smaller pieces.

Industrial runoff forms cracks in a rocky structure in its path - This is a combination of chemical and mechanical weathering. The industrial runoff may contain acidic or corrosive substances that chemically react with the minerals in the rock, leading to their dissolution or weakening. The cracks in the rocky structure may also be a result of the mechanical force exerted by the flowing runoff, causing physical fractures in the rock.

The rocks in a region are streaked orange after being exposed to repeated rains - This is an example of chemical weathering. The repeated rains introduce water into the rocks, which may contain dissolved iron compounds. Over time, these iron compounds oxidize in the presence of water and oxygen, leading to the formation of orange-colored iron oxide minerals, such as rust. The streaking of rocks with orange indicates the chemical transformation of the minerals due to the weathering process.

In summary, the events described involve both mechanical and chemical weathering processes, highlighting the complex nature of how weathering affects geological structures. Mechanical weathering involves physical forces breaking down rocks, while chemical weathering involves chemical reactions leading to the alteration or dissolution of minerals.

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what happens at divergent, convergent, and transform boundaries

Answers

Answer:

Divergent boundary—where the new crust is formed as the plates shift away from each other. Convergent boundary—where the crust is broken when one plate dives under another. Turn borders—where the crust is neither formed nor lost as the plates slip horizontally past each other.

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Explanation:

Check all that are true of the following scenario.
An archer strings an arrow on a bow and draws the string back. Aiming the bow
upwards at a 45 degree angle, the archer pauses with arms locked into position and
then releases the string. The arrow flies upwards making an arc and then sticks into
the trunk of a tree with an audible thud.
At least four different types of energy are illustrated in this example.
The first energy transformation in the scenario is chemical energy to kinetic.
From the time the archer draws the bow until the thud us heard, entropy increases in
the universe.
The energy of the arrow at the end of the scenario is equal to the energy exerted by the
muscles of the archer.
When the arrow sticks into the tree the original energy has all been used up.

Answers

Statements 1 and 3 are true, while statements 2 and 4 are false.The first energy transformation in the scenario is chemical energy to kinetic. - True.

The archer converts chemical energy stored in their muscles into kinetic energy when they release the string and propel the arrow forward.From the time the archer draws the bow until the thud is heard, entropy increases in the universe. - False. Entropy is a measure of disorder or randomness in a system. In this scenario, the archer's actions do not necessarily lead to an increase in entropy.

The energy of the arrow at the end of the scenario is equal to the energy exerted by the muscles of the archer. - False. Energy is conserved in a closed system, but some energy is lost as heat and sound during the process. Therefore, the energy of the arrow at the end may be less than the energy exerted by the archer's muscles.

When the arrow sticks into the tree, the original energy has all been used up. - False. Energy is not created or destroyed but rather transformed from one form to another. Some of the initial energy from the archer's muscles is transferred to the arrow's kinetic energy, but it is not entirely used up.In summary, statements 1 and 3 are true, while statements 2 and 4 are false.

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