Which of the following is an intensive property of a sample of water?
A. Mass
B. Molar mass
C. Number of moles
D. Volume

Answers

Answer 1

Molar mass is an intensive property of a sample of water.

The molar mass of a certain chemical entity is its mass per unit quantity (symbol M, SI unit kgmol1). Always identify the chemical in question in accordance with the definition of the mole. A substance's molar mass is the volume of the material that contains one mole of the substance. Its basic definition is the weight of a single mole of a substance. The atomic mass of each substance is multiplied by the subscript of that element in the chemical formula to determine the molar mass.

One mole of a specific compound or material has a mass of 1 molar. We are aware that the number of moles in a compound (n) can be expressed as the ratio of the compound's  given mass to its molar mass. This is measured in g mol1, the standard unit. However, the SI unit, kg mol 1, is quite uncommon. The amount of particles in 1 mole of the substance is equal to the number of atoms present in 12g of the 12C isotope.

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Related Questions

Campher freezes in winter or not?

Answers

Answer:

Campher freezes are in winter

Camper freezes are in the winter

you have a 100.0-mL graduated cylinder containing 50.0 mL of water. You carefully place a 140-g piece of brass (density = 8.56 g/mL) into the water. What is the final volume reading in the graduated cylinder?

Answers

There is 100.0-mL graduated cylinder containing 50.0 mL of water. The final volume reading in the graduated cylinder is 62.7 mL.

What is volume?

Volume is the space occupied by the three-dimensional object.

Given,

Density of liquid = 8.56 g/mL

Mass of substance = 109 g

The initial level of the water in the graduated cylinder = 50 .0 ml

To calculate the volume of a substance,

Density = mass / volume

8.56  = 109  / volume

volume = 109 / 8.56

V = 12.7 ml

The final volume reading in the graduated cylinder

50 ml + 12.7 mL = 62.7 mL

Thus, the final volume will be 62.7 mL

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Which two are examples of mechanical weathering mentioned in the article? 5 points
freeze thaw, salt wedging
freeze thaw, river erosion
freeze thaw, acid rain
river erosion, salt wedging

Answers

Answer:

Freeze thaw, salt wedging

Explanation:

Freeze-thaw weathering occurs when rocks are porous (has holes) or permeable (allows water to pass through). It is an example of Mechanical Weathering.

Another type of mechanical weathering is called salt wedging.

A ball has a density of 0.5 g/cm³ and a volume of 2g. Calculate the mass of the ball.

Answers

D = m/v
m = D•v
m = 0.5•2 = 1
The mass of the ball is 1g

At 25 °C, the vapor pressure of pure benzene (C6H6) and pure toluene (C7H8) are 95.1 and 28.4 mmHg, respectively. A solution is prepared that has equal masses of C6H6 and C7H8. Determine the total vapor pressure above this solution.

Answers

The total pressure of the solution is 123.5 mmHg

What is the  total vapor pressure above this solution?

We know that the total pressure of a system is the sum of the individual partial pressures of the components of the mixture. This is the postulation of the Daltons law of partial pressure.

Having said that, the total vapor pressure above this solution is the sum of the vapor pressures of pure benzene and pure toluene. If this is established, it now follows that;

Total pressure = pressure of pure benzene + pressure of pure toluene

= 95.1 + 28.4 mmHg = 123.5 mmHg

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A mixture of N2(g) and H2(g) reacts in a closed container to form ammonia, NH3(g). The reaction ceases before either reactant has been totally consumed. At this stage 1.0 mol N2, 1.0 mol H2, and 1.0 mol NH3 are present.
How many moles of N2 and H2 were present originally?

Answers

The moles of [tex]N_2[/tex] and [tex]H_2[/tex] that were present originally in the reaction will be 1.5 moles and 2.5 moles respectively.

Mole ratios in reactions

The two reactants,  [tex]N_2[/tex] and [tex]H_2[/tex], react in a closed container to form [tex]NH_3[/tex]. The normal stoichiometric ratio of the reaction is according to the following equation:

[tex]N_2 (g) + 3H_2 (g) --- > 2NH_3 (g)[/tex]

The stoichiometric ratio of  [tex]N_2[/tex], [tex]H_2[/tex], and [tex]NH_3[/tex] is 1:3:2.

This means for every 1 mole of ammonia formed, 0.5 moles of [tex]N_2[/tex] and 1.5 moles of [tex]H_2[/tex] is required.

However, 1 mole of [tex]N_2[/tex] and 1 moles of [tex]H_2[/tex] remained after the reaction has ceased.

Thus, total amount of  [tex]N_2[/tex] present originally = 1 + 0.5

                                                                           = 1.5 moles

Total amount of  [tex]H_2[/tex] present originally = 1 + 1.5

                                                               = 2.5 moles

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HELP PLEASE!! What happens to the average kinetic energy of a gas when the particles of the gas collide against each other at a constant temperature and volume?

The average kinetic energy remains constant.
The average kinetic energy drastically increases.
The average kinetic energy drastically decreases.
The average kinetic energy gets added to the potential energy.

Answers

At constant temperature and volume, the average kinetic energy of the particles remains constant. The correct option is A.

What is kinetic energy?

An object's kinetic energy is the energy it has as a result of its motion. It is characterized by the amount of work needed to propel a body of a given mass from rest to a given velocity.

The body retains its kinetic energy after gaining it during acceleration unless its speed changes.

The average kinetic energy of a gas when its particles collide against each other at constant temperature and volume. This is valid as long as as the temperature stays the same.

Thus, the correct option is A.

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In films, familiar tunes may be associated with particular characters and moods.
A. False, familiar tunes may not be associated with either characters or moods.
B. False, familiar may be associated with characters only
C. False, familiar may be associated with moods only
D. True

Answers

Answer:D

Explanation:it is true

A cake recipe calls for 170.0 mL of buttermilk. How many cups is this?
(1.0567 quart = 1
L and 4 cups =
1
quart

Answers

A cup is 240 ml and the cake recipe calls for 170.0 ml of milk. It's 2/4 of a cup.

How many mls are in a cup of tea?

the cups have a standard measure of 240ml, that is, if you buy one of these good quality utensils, even if in different places, the measure of 1 cup must always be equivalent to 240ml.

With this information, we can conclude that Ml is the abbreviation milliliter, the smallest unit of measurement for liquids. We start with the liter as the base unit, we must go down to one tenth of a liter, which is deciliter, then 100 tenths of a liter than the centiliter and we go up to one thousand tenths of a liter, which is milliliter. One liter contains one thousand milliliters.

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Question 5 of 10
What experiment did J. J. Thomson do?
A. He hit metal plates with light.
B. He shot alpha particles through gold foil.
C. He suspended charged oil drops in a chamber.
OD. He sent a cathode ray between electrically charged metal plates.

Answers

J.J. Thomson sent a cathode ray between electrically charged metal plate. The aim of the experiment was to find the nature of the particles. The correct option is option D

What precisely was JJ Thomson evaluating?

He lighted the metal plates. A gold foil was subjected to an alpha radiation beam by B. C. In a chamber, he suspended charged oil drops. OD. He produced a cathode ray discharge between two electrically charged metal plates. All atoms include tiny, negatively charged subatomic particles that mimic electrons, as demonstrated by J.J. Thomson's cathode ray tube studies. In Thomson's "plum pudding" atom model, a negatively charged "electon" encircled a positively charged "soup."

What was the purpose of JJ Thomson's experiment?

He made the decision to attempt to identify the particle's makeup. He sought to calculate their mass and charge by measuring how much they were bent by electrical currents of various intensities because they were too small to have their mass or charge directly ascertained.

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write c or p to indicate weather each of the following is a chemical or physical property

Answers

Answer:

I think it's c

Explanation:

c seems like the best answer

Answer:

C since that has to be correct.

There are × 10 grains of sand on the beaches.

Answers

How many sand grains make up each beach on the planet Earth?

The Earth has approximately (and we're speaking very roughly here) 7.5 x 1018 grains of sand, or seven quintillions, five hundred quadrillion grains, if you assume a grain of sand has an average size, calculate how many grains are in a teaspoon, and then multiply by all the beaches and deserts in the world.

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It's safe to suppose that after walking for around 30 seconds on a beach, you would have likely passed trillions of sand grains.

Assume a beach has medium-sized sand that is typically 0.3mm in diameter. Of course, the majority of beach sand contains some space because the grains are primarily spherical. So, for the time being, let's suppose a 23% porosity. Accordingly, a beach that is 1 square meter in size and 3 meters deep should be able to accommodate around 163 billion grains of sand. It's possible that the porosity will be as high as about 48%, but don't take my word for it; there's a mathematical maximum that I can't quite recall. The depth of sand at the beach can very much be anything up to maybe even 15-20m, and the sand grain size can vary widely. It's safe to suppose that after walking for around 30 seconds on a beach, you would have likely passed trillions of sand grains.

The complete question is -How many grains of sand are there in a given stretch of an average beach?

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Suppose 1.50 g of Cu(s) reacts completely with 5.95 g of HNO3(aq). The reaction produces 4.43 g of Cu(NO3)2(aq), 0.85 g of H2O(l), and an unknown amount of NO2(g). If the reaction obeys the law of conservation of mass, how many grams of NO2(g) are produced?

Answers

The mass in grams of NO₂ produced from the reaction, given the data is 2.17 g

What is a chemical equation?

Chemical equations are representations of chemical reactions using symbols and formula of the reactants and products.

The reactants are located on the left side while the products are located on the right side.

Reactants —> Products

The balancing of chemical equations follows the law of conservation of matter which states that matter can neither be created nor destroyed during a chemical reaction but can be transferred from one form to another.

How to determine the mass of NO₂ produced

The mass of NO₂ produced can be obtained as follow:

Mass of Cu = 1.5 gMass of HNO₃ = 5.95 gMass of Cu(NO₃)₂ = 4.43 gMass of H₂O = 0.85 gMass of NO₂ =?

Balanced equation:

Cu + 4HNO₃ --> Cu(NO₃)₂ + 2H₂O + 2NO₂

1.5 + 5.95 = 4.43 + 0.85 + Mass of NO₂

7.45 = 5.28 + Mass of NO₂

Collect like term

Mass of NO₂ = 7.45 - 5.28

Mass of NO₂ = 2.17 g

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Multiplying by which conversion factor would allow you to convert 35 liters to milliliters?

Answers

Answer:  The "conversion factor" is:
___________________

"   1000 mL "  
       1 L    
___________________  

Explanation:
Note the exact values:  1 L = 1000 mL

                           and:  1000 mL = 1 L .

{Note:  " L = liter(s) " ;  and:  " mL = millileter(s) ".}.

________________________

35 L * 1000 mL  
            1 L           ;

We cancel out the 2 (two):  " L " ["Liters"] ; since:  [" L ÷ L = 1 "].

Then we can convert the value—into units of "mL" ;

 →  35 * (1000 mL) = (35 * 1000) mL =  35,000 mL.

________________________
Note that the question asks for the:

"conversion value needed to convert [35 L into mL] ;

By using the technique shown above; known as "dimensional analysis, we use that particular conversion faction—of a manner in which one multiplies by a "fraction";  so that:  
  1) the correct units for the particular value one is seeking that can be obtained—and in which the values, or more relevantly, the units —that are "not needed" can be "canceled out" ; and:
 2) The problem can be solved.
________________________
Note:  The above information is just information that provides an explanation of the concepts surrounding the "actual answer"—of this very question."

The actual answer to this Brainly question:
 As shown above:
_____________

The 'conversion factor is:
"  
1000 mL "  
       1 L      

 __________
Hope this lengthy explanation—and answer—are helpful.
Best wishes!

Answer:

1000/1

Question 5 options:

Multiplying by which conversion factor would allow you to co

Explanation:

A boy eating a banana and riding his bike exhibits which energy transformation?

Answers

The rider's muscular energy is converted to heat energy and the bicycle's kinetic energy while riding a bicycle.
The rider's body is heated by heat energy. The bicycle is propelled in a circular motion by kinetic energy.


What is the formula of trinitrogen heptoxide?
Select an answer and submit. For keyboard navigation, use the up/down arrow keys to select an answer.
a
b
C
d
U3VD Question 2
Homework Unanswered
NO
N3O
N₂O₁
Resue
NOT

Answers

The molecular formula of trinitrogen heptoxide is written as [tex]N_3O_7[/tex].

How to calculate the molecular formula of Trinitrogen heptoxide:

Tri means three and hept means seven. Therefore,

Trinitrogen means 3 atoms of Nitrogen, thus it is denoted as [tex]N_3[/tex].

Heptoxide means 7 atoms of Oxygen, thus it is denoted as [tex]O_7[/tex].

Consequently, the molecular formula of Trinitrogen heptoxide is [tex]N_3O_7[/tex].

The type and number of each element's atoms in a molecular compound are indicated by the substance's molecular formula. The molecular formula is frequently the same as the empirical formula. Methane's empirical formula is [tex]CH_4[/tex], which is also its molecular formula because it only has one carbon atom.

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How many grams of AlCl3 are there in 205 grams of an aqueous solution that is 13.8 % by weight AlCl3.

_____ G AlCl3

Answers

28.9  grams of AlCl3 are present in 205 grams of an aqueous solution that is 13.8 % by weight AlCl3.

What is an aqueous solution?

Aqueous is a word used to describe a water-based system. The term aqueous can also refer to a solution or combination in which water serves as the solvent. The type of a substance's chemical bonding determines whether or not it forms an aqueous solution.

When a material dissolves in water, the symbol (aq) is appended to its chemical name. Many ionic chemicals and hydrophilic (water-loving) entities dissolve in water.

Table salt, for example, is dissolved in water and diffuses into ions to generate Na+(aq) and Cl- (aq). Hydrophobic, or water-averse, substances do not dissolve in water or produce aqueous solutions. There will be no dissociation if oil and water are mixed.

The weight of the aqueous solution = is 205 grams.

Percentage of  AlCl₃  = 13.8%

Therefore, the weight of  AlCl₃  by gram =

13.8% of the solution

= 13.8 % × 205

= 28.9g

Therefore the weight of  AlCl₃  in the aqueous solution will be 28.9g

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You are conducting the Air Bag Lab with a snack sized ziplock bag (325mL). How many moles of gas would be needed to fill the bag?

Answers

0.1329 moles

Air Bag Lab with a snack sized ziplock bag (325mL),  moles of gas would be needed to fill the bag

From the above statement, we have got

volume = 325ml

now at STP

Temp = 298 kelvin

pressure = 1 atm

Gas constant R = 0.082057L/mol kelvin

n is the number of moles

now, according to ideal gs equation

PV=nRT

n = PV RT

now put all the numbers in equation

n = 1 ×0.325 ÷0.082× 298

n = 0.1329 moles

One mole is defined as the quantity of a material that equals the number of ions, atoms, molecules, etc. that are present in exactly 12 grams of the C-12 (C = carbon) isotope.The quantity that is equal to Avogadro's number is the mole. To count items at the minute level, we employ the mole notion. The mole was suggested as the seventh basic unit for the quantity of a material in the SI system.

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How many electrons can fill all the p orbits from n = 1 through n = 3?
O 18
O12
0 3
0 6

Answers

Answer:6

Explanation: a p orbital can hold 6 electrons

For an Na+ - Cl- ion pair, attractive and repulsive energies EA and ER, respectively,
depend on the distance between the ions r, according to

=−1.436


=7.32×10−6
8

For these expressions, energies are expressed in electron volts per Na+ - Cl- pair, and r
is the distance in nanometers. The net energy EN is just the sum of the preceding two
expressions.

a. Superimpose on a single plot EN, ER, and EA versus r up to 1.0 nm (Use an Excel
worksheet).
b. On the basis of this plot, determine (i) the equilibrium spacing r0 between the Na+
and Cl- ions, and (ii) the magnitude of the bonding energy E0 between the two
ions.

Answers

The equilibrium spacing between the ions is 0.24 nm and the bonding energy is 5.3 eV.

The amount of energy required to separate the atoms forming a molecular bond into free atoms is known as bond energy, and it serves as a gauge of the strength of a chemical connection.

For Na⁺ and Cl⁻ ion pair, the attractive and repulsive energies are E(A) and E(R). The energies depend on the distance between the ions r.

We have,

E(A) = ( -1.436 / r )

E(R) = ( 7.32 × 10⁻⁶ / r⁸ )

(a) The plot for E(N), E(R), and E(A) versus r up to 1 nm is attached below.

(b) From the plot,

r(0) = 0.24 nm

E(0) = 5.3 eV

Hence, the equilibrium spacing r(0) between Na⁺ and Cl⁻ ions is 0.24 nm and the bonding energy is 5.3 eV.

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Can anyone help with these ionic equations? Many thanks

Answers

The ionic equations of the given reactions are as follows:

Ionic equation: Na⁺ OH⁻ + Fe³⁺ 3NO₃⁻ →  Fe(OH)₃(s) + 3Na⁺ 3NO₃⁻Ionic equation: 2Ag⁺ 2NO₃⁻ + Mg → Mg²⁺ 2NO⁻ + 2 Ag (s)Ionic equation: 2H⁺ SO₄²⁻ + 2K⁺ 2OH⁻ → 2K⁺ SO₄²⁻ + 2H₂O (l)

What are ionic equations?

Ionic equations are equations which shows the ions involved in a given redox reaction as they react to form products.

The ionic equations of the given reactions are as follows:

a) precipitation of iron(III) hydroxide when solutions of sodium hydroxide and iron(III) nitrate are mixed

Molecular equation: NaOH + Fe(NO₃)₃ → Fe(OH)₃(s) + NaNO₃

Ionic equation: Na⁺ OH⁻ + Fe³⁺ 3NO₃⁻ →  Fe(OH)₃(s) + 3Na⁺ 3NO₃⁻

b) redox reaction between solution of silver(1) nitrate and magnesium metal

Molecular equation: 2 AgNO₃ + Mg → Mg(NO₃)₂ + 2 Ag (s)

Ionic equation: 2Ag⁺ 2NO₃⁻ + Mg → Mg²⁺ 2NO⁻ + 2 Ag (s)

c) acid-base reaction between sulfuric acid and potassium hydroxide

Molecular equation: H₂SO₄ + 2KOH → K₂SO₄ + 2H₂O

Ionic equation: 2H⁺ SO₄²⁻ + 2K⁺ 2OH⁻ → 2K⁺ SO₄²⁻ + 2H₂O (l)

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What are two short-term and two long-term storages (aka reservoirs) in the carbon cycle?

Answers

Answer:

What are often called carbon sinks like tropical forests only store carbon temporarily. The only real carbon sinks operate by the long term ...

Explanation:

the oceans and atmosphere, and dissolved organic matter is carried in solution by rivers from soils to the sea. This all constitutes the short-term carbon cycle. The word "short-term" is used because the characteristic times for transferring carbon between reservoirs range from days to tens of thousands of years.

In the short-term reservoir, carbon is stored in the atmosphere, oceans and biosphere with the ocean containing the largest amount of carbon. It takes months to centuries to recycle carbon dioxide through the short-term reservoir.

Carbon is stored in four main reservoirs -- oceans (the largest reservoir), geological reserves of fossil fuels, the terrestrial surface (plants and soil, mainly), and the atmosphere.

Sodium-24 has a half-life of 14.8 hours. How much of a 152.0 mg sodium-24 sample will remain after 3.7 days?

Answers

The mass of sodium that remains is 2.38 g

What is the remaining sodium?

We know that radioactivity refers to the spontaneous disintegration of the sample leading to the emission of radiation. The half life is the time taken for only half of the number of atoms in the sample to remain.

We know that;

No = amount of sodium initially present

N = amount of sodium after time t

t1/2 = half life of sodium

t = time taken for t amount remain

No = 152.0 mg

N = ??

t1/2 = 14.8 hours

t = 3.7 days or 88.8 hours

Using

N/No = (1/2) ^t/t1/2

N/152 =  (1/2) ^88.8/14.8

N =  (1/2) ^88.8/14.8 * 152

N = 2.38 g

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Pls helpi dont understand how did she get all of this number whoever explains to me good i will mark the brainlist

Answers

Explanation:

basically first you have to understand these definitions

*mass number ( e.g. where it says oxygen 16 or 17 - it's basically that number at the top)

mass number is the 'number of protons + number of neutrons'

now this will help you do the first question

if you do 16 -8 = 8 ( that's how she got 8 neutrons)

another thing you need to know is that all the time the number of protons = the number of electrons ( they are the same)

this will help you answer table 2

for fluorine it says there are 9 electrons, you automatically have to think 9 electrons means 9 protons too, ( I think she has got that wrong, it's supposed to be 9 protons not 19)

if you have 9 protons and the given 10 neutrons and add them together you will get the mass number which is supposed to be 19

then if you try out the same rules for argon you will see they work - the number of electrons and protons are same and when you find out the protons, you can just take that away from the mass number ( which is number of protons + neutrons) to get just the number of neutrons.

Hope this helps you :)

i need help with this pls i don’t understand it

Answers

Answer:

Inner core - A

Outer core - B

Mantle - C

Asthenosphere - F

Lithosphere - E

Crust - D

How many grams of Oxygen are in 4 moles of C2H4O2? Show work.

Answers

The mass of oxygen in 4 moles of C2H4O2 is 128g.

How to calculate mass?

The mass of a substance can be calculated by multiplying the number of moles of the substance by its molar mass.

Molar mass of C2H4O2 = 12(2) + 1(4) + 16(2) = 60g/mol

mass of C2H4O2 = 60g/mol × 4 moles = 240grams

However, the mass of oxygen in the compound can be calculated as follows:

molar mass of oxygen/molar mass of compound × 240 grams

32g/mol ÷ 60g/mol × 240g

= 128g

Therefore, the mass of oxygen in 4 moles of C2H4O2 is 128g.

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If 0.459 g of an unknown sugar is dissolved in 100.0 mL of water its osmotic pressure is found to be 0.0824 atm.. If the temperature of the solution was 298 K, what is the molar mass of the sugar (in g/mol)? Give your answer to three sig figs

Answers

The molar mass of the sugar is 1350 g/mol.

What is the osmotic pressure?

We define the osmotic pressure as the pressure that needs to be applied to  effect the movement of the solvent across a semi permeable membrane.

Number of moles of the sugar solution = 0.459 g/MM

Where MM = molar mass

We know that the osmotic pressure is obtained from;

π = icRT

i = Van't Hoff factor

c = concentration

R = molar gas constant

T = temperature

Let us obtain the concentration;

c = π/iRT

c =  0.0824 atm/ 1 * 0.082 * 298

c = 0.0034 M

Now;

Concentration = Number of moles/volume

Volume = 100.0 mL or 0.1 L

0.0034 = 0.459/MM/0.1

0.0034 = 0.459/0.1MM

0.0034 * 0.1MM = 0.459

MM = 0.459/ 0.0034 * 0.1

MM = 1350 g/mol

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A beaker of water has an initial mass of 455.2 g. After it has been left uncovered
for several days, some of the water has evaporated. The new mass of the beaker
is found to be 422.55 g using a more precise balance. Choose that value that
expresses the mass of the evaporated water using the correct number of
significant figures.
A) 32.65 g
B) 32.7 g
C) 33 g
D) 32.650 g

Answers

The mass of water evaporated is 32.7 g.

What is evaporation?

The term evaporation is the movement of the molecules of water from the surface of the water into the atmosphere. The molecules that move are the more energetic molecules that are able to break away from the attractive field of the surface of the water.

We have the original mass of the water as 455.2 g and the mass of the water after evaporation as 422.55 g. The difference between the two according to the right number of significant figures is 455.2 g - 422.55 g = 32.7 g

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A small particle has a mass of 62.0 ng. In a container, you find 3.11 x 1010 kg of the particles. Determine the
number of moles of the particles in the container. Assume that all the particles are identical and has the same
mass.
(Please note: The mass of 3.11 × 10¹0 kg in this question does not include the mass of the container.)
1.20 x 10³ moles
1.20 x 10 moles
1.16 x 1000 males
8.33 x 10³ moles
8.33 x 10 moles

Answers

The number of moles of the particles in the container is  8.4 * 10⁻⁴ moles.

What is the number of moles of particles of  the particle in the container?

The number of moles of particles of  the particle in the container is found as follows:

Mass of one atom of the particle = 62.0 ng

Mass of one atom of the particle in g =  6.2 × 10⁻⁸ g

Mass of one atom of the particle in kg = 6.2 × 10⁻¹¹ kg

Number of particles in 1 mole = 6.02 * 10²³

Mass of 1 mole of the particle = 6.02 × 10²³ × 6.2 × 10⁻¹¹ kg

Mass of 1 mole of the particle = 3.7 × 10¹³ kg

Number of moles in 3.11 * 10¹⁰ kg = 3.11 * 10¹⁰ kg/3.7 × 10¹³ kg/mol

Number of moles in 3.11 * 10¹⁰ kg = 8.4 * 10⁻⁴ moles

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How are the separation methods for homogeneous and heterogeneous mixtures compared?
1. A homogeneous mixture could be separated through distillation, while a heterogeneous mixture could be separated through filtration.
2. A homogeneous mixture could be separated through filtration, while a heterogeneous mixture could be separated through distillation.
3. A homogeneous mixture can be separated physically, while a heterogeneous mixture can be separated chemically.
4. A homogeneous mixture can be separated chemically, while a heterogeneous mixture can be separated physically.

Answers

The separation methods for homogeneous and heterogeneous mixtures compared are A homogeneous mixture could be separated through distillation, while a heterogeneous mixture could be separated through filtration. The correct option is 1.

What is a homogeneous mixture?

A homogeneous mixture is a mixture that contains a substance that remains homogeneous throughout the solution. The solution of salt and water is a homogeneous mixture.

Thus, the correct option is 1. Distillation can be used to separate homogeneous mixtures, while filtering can be used to separate heterogeneous mixtures.

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