*1. The internal energy with a system associated with the motion of particles and that can be added to a substance is called_____.

A. Thermal energy

B. Electrostatic forces

C. Temperature

D. Kinetic energy






*2. Which statement describes the effect of adding more energy to a system, assuming a phase change does not occur?

A. The particles within the system will have greater motion, and the temperature will decrease.

B. The particles within the system will have greater motion, and the temperature will increase.

C. The particles within the system will have less motion, and the temperature will increase.

D. The particles within the system will have less motion, and the temperature will decrease.






*3. Which statement correctly describes how attractions that hold particles break?

A. Attractions due to electrostatic forces. When particles have low enough energy, these forces can no longer keep particles together.

B. Attractions due to gravitational forces. When particles have low enough energy, these forces can no longer keep particles together.

C. Attractions due to gravitational forces. When particles move fast enough, these forces can no longer keep particles together.

D. Attractions due to electrostatic forces. When particles move fast enough, these forces can no longer keep particles together.






*4. Which statement explains why a rubber band analogy is not a perfect comparison for bonds in a substance when considering phase changes?

A. For a phase change from liquid to gas, the bonds break completely and particles can move independently of each other.

B. For a phase change from liquid to gas, the bonds do not break completely and the particles can still slide past each other.

C. For a phase change from solid to liquid, the bonds break completely and particles can move independently of each other.

D. For a phase change from solid to liquid, the bonds do not break completely in the particles can still slide past each other.






*5. The boiling point of benzene is 80°C. Which pair of samples will have the same average kinetic energy as benzene molecules?

A. Two samples of liquid benzene, one at 70°C in the other at 80°C.

B. A sample of liquid benzene at 70°C and a sample of gaseous benzene at 90°C.

C. Two samples of gaseous benzene, one at 80°C in the other at 90°C.

D. A sample of liquid benzene at 80°C and a sample of gaseous benzene at 80°C.

Answers

Answer 1

Answer:

1. thermal energy

2. the particles within the system will have greater motion, and the temp will increase.

3. attractions occur due to electrostatic forces. when particles move fast enough, these forces can no longer keep particles together.

4. for a phase change from a solid to liquid, the bonds do not break completely and particles call still slide past each other.

5. a sample of liquid benzene at 80°C and a sample of gaseous benzene at 80°C

Explanation:

hope this helps

Answer 2

Temperature is a measure of the average kinetic energy of molecules.

The particles of a substance are in constant random motion. As more thermal energy is added to the particles, the motion of the particles increases. If more energy is added to a system during phase change, the particles within the system will have greater motion, and the temperature will increase.

Attractions between particles is greater when the kinetic energy of molecules decreases. Therefore, a statement that correctly describes how attractions that hold particles break is; "attractions due to electrostatic forces. When particles move fast enough, these forces can no longer keep particles together."

The rubber analogy is commonly used to describe covalent bonds where stretching of bonds occur. This analogy is not apt in describing phase changes because for a phase change from a solid to liquid, the bonds do not break completely and particles call still slide past each other.

The average kinetic energy of molecules depend on temperature hence a  sample of liquid benzene at 80°C and a sample of gaseous benzene at 80°C will have the same average kinetic energy.

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Related Questions

How do atomic and molecular interactions explain the properties of matter that we see and feel

Answers

The atomic and molecular interactions unveil the bulk properties of matter in our environment by ways of the fact that everything in the whole universe is made of either atoms, molecules or even ions

How matter is made up of atoms and molecules?

It has been proven practically everything in the whole universe is matter and everything which interact with matter is also matter. This explains to us the reasons why matter could be atoms, molecules or ions.

That being said, some substances (matter) is made up of atoms of elements, some made up of molecules or atoms and molecules and others ions or both. However, matter is anything which has mass and occupies space.

In conclusion, we can now conclude from the explanation above that the properties of matter are as a result of the interaction which exists between matter at the atomic and molecular level.

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Compare and contrast thermal energy and heat

Answers

Explanation:

The difference between heat and thermal energy is that thermal energy is not in the process of being transferred; it is not in transit, but remains as part of the internal energy of the system; heat, on the other hand, is energy in transit, i.e. energy in the process of being transferred from a hotter system.

Consider an ice cube and a hot radiator. Which has the higher thermal energy?

the ice cube

the radiator

Answers

The answer to your question is the radiator

The thermal energy of a material increases with temperature. Therefore, the radiator  has the higher thermal energy.

What is thermal energy?

When the temperature rises, a type of energy called thermal energy is produced. The amount of thermal energy usually directly inversely proportional to the object's change in temperature. Thermal energy takes the form of heat.

The thermal energy of a material increases with temperature. The quicker motions of the substance's atoms and molecules are what cause thermal energy to grow as temperature rises.

In some cases, a substance's molecules will separate from one another and leave because the temperature is just so high. Unexpectedly, thermal energy also affects the states of matter. The radiator  has the higher thermal energy.

Therefore, the radiator has the higher thermal energy.

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How do models help scientists study atomic composition?

Answers

Models can be used to represent a process or show the composition of a material. For example, a model of an atom shows what matter is made out of and how it is composed. Scientists have been using models since ancient times to help explain the world around us. Models help you understand something that you cannot see or touch by making it visible or giving it a form that you can physically explore. In this case, the model lets scientists explore atoms without having to use an electron microscope. This method provides them with up-close images from different angles so they can learn about their properties in detail.

1.25 is the closest to 1.04 or not I want to answer please. I think it's true, but I want to prove it scientifically, please.

Answers

Answer:

false because if you round both of them

A sample of hydrogen sulfide, H2S, has a mass of 13.7513.75 g. Calculate the number of hydrogen sulfide molecules in the sample

Answers

Answer: 2.43 x 10^23 molecules

Explanation:

Molar mass of H2S: 2(1.008) + 32.06 = 34.1 g/mole

Avogadro’s number for converting moles to atoms or molecules: 6.02 x 10^23

(13.751375g H2S)(1 mole H2S)(6.02x10^23 molecules) / (34.1g/mole H2S)(1mole H2S) = 2.43 x 10^23 molecules H2S

1 question hurry as fast as possible no link

Answers

Answer: ELEMENT

Explanation:

The answer is element

a solution of HCI contains 36 percent HCI,by mass and calculate the mole fraction of HCI in the solution?​

Answers

Explanation:

You have a solution that contains 36 g HCl dissolved in 64 g water

Molar mass HCl = 36.45 g/mol

Mol HCl in 36 g = 36 g / 36.45 g/mol = 0.9876 mol

Molar mass H2O = 18 g/mol

Mol H2O in 64 g = 64 g / 18 g/mol = 3.5556 mol

Total mol = 0.9875 + 3.5556 = 4.5431 mol

Mol fraction HCl = 0.9876 mol / 4.5431 mol = 0.2174

Mol fraction H2O = 3.5556 / 4.5431 = 0.7826

The answer should have 2 significant digits:

Mol fraction HCl = 0.22

Mol fraction H2O = 0.78

Mol fraction has no units.

THAT IS HELPFUL FOR YOU

PLEASE MARK ME AS A BRAINLIST

Help pretty please :)

Answers

the answer is 15 bc you multiply the coefficient but the subscript

A burning candle demonstrates the following type of energy transformations.


A: chemical → heat → light
B: heat → chemical → light
C: electrical → light
D: chemical → electrical → light​

Answers

Answer:

B

Explanation:

the candle is hot so the first energy form should be heat. u could now just eliminate the rest but for further notice. the heat melts the wax in the candle, which is a physical change but also the thread is burning out which is a chemical change then light follows

What’s the answer to this

Answers

Answer: 5

Explanation:

please brainliest me

I believe it is 3

Answer:

Explanation:

Which of the following does NOT involve a physical change?

Answers

Answer:

Degradation of matter

Explanation:

Physical change is a temporary change.

An electron is present at an energy level with an energy of 5.44 x 10−19 J. After a second, the electron is present at an energy level with energy, 2.4 x 10−19 J. What most likely happened during the transition?
A photon of energy 7.84 x 10−19 J was released.
A photon of energy 3.04 x 10−19 J was released.
A photon of energy 7.84 x 10−19 J was absorbed.
A photon of energy 3.04 x 10−19 J was absorbed.

Answers

Answer:

Explanation:

b

Temperature is a measure of ___________

A: Heat Energy
B: Potential Energy
C: Climate
D: Kinetic Energy​

Answers

Answer:

D: Kinetic Energy​

Explanation:

Temperature is a measure of kinetic energy. Temperature is a measure of the average kinetic energy of the particles in an object. When temperature increases, the motion of these particles also increases.

Hope this helps :)

help me someone! giving brainliest

Answers

Answer:

last or second

Explanation:

report me if not correct

Answer:

Should be the second one

Explanation:

In comments

Thanks for the Brainliest

Copper is an example of?
Transition Metal
Noble Gases
Alkali Metal
Halogen

Answers

Answer:

Transition Metal

Explanation:

If you look at a periodic table, you can see that Cu is a transition metal.

How many grams are in 0.39 moles of water

Answers

Answer:   7.025959200000001

Explanation:

Argon (Ar): [Ne]3s23p6 core electrons valence electrons

Answers

Answer:

1. The core electrons are 10

2. The valence electrons are 8

Explaination:

Core electrons are electrons located in  the inner shells of and atom.

Valence electrons are electrons located on the outermost shell of an atom

From the question given above, we obtained:

Ar (18) => [Ne] 3s²3p⁶

Recall

Ne (10) => 1s² 2s²2p⁶

Therefore,

Ar (18) => [1s² 2s²2p⁶] 3s²3p⁶

From the above illustration,

Inner shell (core shell) => 1s² 2s²2p⁶

Outermost shell (valence shell) => 3s²3p⁶

1. Determination of the core electrons

Inner shell (core shell) => 1s² 2s²2p⁶

Core electrons = 2 + 2 + 6

Core electrons = 10

2. Determination of the valence electrons

Outermost shell (valence shell) => 3s²3p⁶

Valence electron = 2 + 6

Valence electron = 8

Answer:

10 core electrons

8 valence electrons

Explanation:

how many grams of H20 can be formed from 0.996 g C8 H18?​

Answers

The answer is 1.41g

2. Why was sud production used to assess the effectiveness of the synthesized soaps?

Answers

Answer:

Soap is effective as a cleaning agent because it is amphiphilic; it is partly polar and partly nonpolar. ... The sodium ion of the soap is replaced by one of these new ions, and the resulting salt is no longer soluble.

Soap seems to be amphiphilic, or partially polar as well as partially nonpolar, it works well as a cleaning agent. Several of these newfound ions take the place of such soap's sodium ion, rendering the salt insoluble.

What is Soap?

Long chain fatty acids are salts of sodium and potassium that have a cleaning effect in the water. referred as soap They should be used as cleaning agents to get rid of oil and filth from garments and skin. As an illustration, stearic, oleic, as well as palmitic acids are used to create sodium stearate, sodium oleate, respectively sodium palmitate.

What is cleaning agent?

Cleaning agents, often known as hard-surface cleansers, are things that are used to get rid of debris from surfaces, such as dust, stains, foul odors, and clutter. Health, aesthetics, odor removal, and stopping the transfer of dirt and toxins to oneself or others will be among the goals of cleaning products.

Because soap can serve as an emulsifying agent, it would be a superior cleanser. An emulsifier has the ability to mix two immiscible liquids together.

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Bio fuel is a mixture of petrol and 20%——————​

Answers

Answer:

methane and petrol okkkkkkkkkkkkkkkkkkk

The empirical formula of hydrazine, molecular mass 32 grams, is NH2. What is the molecular formula of hydrazine?
A) (NH)4
B) N2H4
C) NH
D) NH2

Answers

Answer:

B) N2H4

Explanation:

how many grams of C2H5OH would get if you started with 5.0 g

Answers

Answer:

92.13688 grams

Which of the following correctly describes the law of conservation of matter?
O Matter makes up 98% of stuff in the universe, so it has to be created and destroyed sometimes
O Matter can be destroyed during a chemical reaction as long as it is created again in a different reaction
O Matter can only be created, but not destroyed in chemical equations
O Matter can neither be created nor destroyed during a chemical reaction

Answers

Assertion is correct statement but reason is wrong statement.

Assertion is correct statement but reason is wrong statement.Matter can neither be created nor destroyed is a statement of the law of conservation of mass.

Matter can neither be created nor destroyed is a statement of the law of conservation of mass.The assertion is correct but the reason is incorrect.

5. Which element would form
covalent bond with Oxygen (0)
Sodium (Na)
Calcium (Ca)
Aluminum (AI)
Selenium (Se)

Answers

Na would be your answer

Someone help pls this is due today

Answers

Answer:

arrow down is gravity

Explanation:

Answer: The person above me is right

Explanation:

Have a Great day!

Plants exchange carbon dioxide, water, and oxygen with their surrounding environment through openings in their ________ called _________.
A.
leaves, xylem
B.
roots, guard cells
C.
leaves, stomata
D.
stems, sori

Answers

C. Leaves and Stomata
the answer to this is c as there are openings in leaves!

SUPPER EASY WILL GIVE BRAINLIEST NEED HELP ASAP


7. Which
pocess is an example of a chemical
change?

A. Salt mixes with water and
dissolves.

B. An aspirin tablet is crushed into a fine
powder.

C. Water droplets form on the outside of a
cold drink glass.

D. An antacid tablet is added to water and
bubbles are produced.

Answers

Answer:

Your answer will be (D).

Hope this helps!

Answer:

D

Explanation:

You can tell when a chemical change occurs if a gas is produced (bubbles), an odor is produced, if there is a color change, or if the surroundings get hotter or colder.

Help please witb this

Answers

Answer:

9

Explanation:

In a chemical equation, the subscript numbers next to each element's symbol tell us how many atoms of that element are in the substance. So, for example, in H₂O, there are 2 atoms of hydrogen since there is a "₂" next to the H.

What's next to our H in C₄H₉? It looks like "₉," so we can determine that there are 9 hydrogen atoms in C₄H₉ (which is butyl, by the way).

Hopefully that's helpful! :)

Representa la formación del enlace entre las siguientes sustancias, calcula también la diferencia de electronegatividad:

a) La reacción entre el aluminio y el cloro.
b) La reacción entre el sodio y el fósforo
c) La reacción entre litio y el yodo.
d) La reacción entre el estroncio y el azufre.​

Answers

                                                                                                 

      A) La reacción entre el aluminio y el cloro.

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