how many atoms are in 0.340 moles of sodium

Answers

Answer 1

The number of atoms that are in 0.340 moles of sodium is 2.047×10²³ atoms.

What is Avogadro's number?

Avogadro's number is equal to 6.022×10²³ which gives idea about the number of atoms present in one mole of any substance.

i.e. In 1 mole = 6.022×10²³ atoms

Given moles of sodium = 0.34 mol

Number of atoms of sodium in given moles will be calculated as:

No. of Na atoms = 0.34mol × 6.022×10²³ atoms/mol = 2.047×10²³ atoms

Hence required number of atoms are 2.047×10²³ atoms.

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Related Questions

I need help with my worksheet


Balance the equation

__Nal +__ F = ___NaF + __l
2 2

Answers

Answer:

2NaI + F₂    →     2NaF + I₂

Explanation:

Chemical equation:

NaI + F₂    →     NaF + I₂

Balanced chemical equation:

2NaI + F₂    →     2NaF + I₂

The given reaction is single replacement reaction.

Step 1:

NaI + F₂    →     NaF + I₂

left hand side                    Right hand side

Na = 1                            Na = 1

I = I                                 I  = 2

F = 2                               F = 1

Step 2:

2NaI + F₂    →     NaF + I₂

left hand side                    Right hand side

Na = 2                                Na = 1

I = 2                                   I  = 2

F = 2                                  F = 1

Step 3:

2NaI + F₂    →     2NaF + I₂

left hand side                    Right hand side

Na = 2                                Na = 2

I = 2                                    I  = 2

F = 2                                   F = 2

what mass of carbon dioxide is produced from combustion of 100.0 grams of propane (C^3H^8)

Answers

Answer:

Mass of CO₂ produced = 299.64 g  

Explanation:

Given data:

Mass of CO₂ produced = ?

Mass of propane (C₃H₈) = 100.0 g

Solution:

Chemical equation:

C₃H₈ + 5O₂     →        3CO₂ + 4H₂O

Number of moles of propane:

Number of moles = mass/molar mass

Number of moles = 100.0 g/  44.1 g/mol

Number of moles = 2.27 mol

Now we will compare the moles of propane and carbon dioxide.

                 C₃H₈          :          CO₂

                    1              :            3

                  2.27          :           3/1×2.27  = 6.81 mol

Mass of CO₂:

Mass = number of moles × molar mass

Mass = 6.81 mol × 44 g/mol

Mass = 299.64 g  

WHICH OF THE FOUR COMPOUNDS HAS BONDS WITH THE GREATEST DEGREE OF POLARITY (MOST POLAR)?

Answers

Answer:

I NEED TO KNOW THIS TOO

Explanation:

IVE BEEN LOOKING FOR THE ANSWER

True/False: We always see the same side of the moon when we look at it in the sky

Answers

Answer:

im pretty sure the answer to your question is false sorry if its wrong.

Explanation:

Give two limitations of law of Constant Composition​

Answers

Answer:

1.The law does not hold true if the different isotopes of the element are involved in making chemical compound.

2.The law is not applicable when elements combine in the same ratio but different compounds are formed.

What type of circuit is seen in the picture?

3 light bulbs and a battery connected with one loop of wire

Question 1 options:

series


AC


parallel


open

Answers

Answer:

C!!!!!!!!!!!!!!!!!!!!

Explanation:

Hope this helps!!!!!!!!!

I'm pretty sure it's a series circuit because all components are connected end-to-end, forming a single path for current flow.

In which highlighted section of the periodic table in the diagram provided above are the elements whose atoms have 1 valence electron located?

A) a
B) b
C) c
D) d

Answers

Answer:

B.

Explanation:

How many molecules are found in 60 grams of KOH?

Explain step by step please

Answers

Answer:

6.624× 10²³ molecules      

Explanation:

Given data:

Mass of KOH = 60 g

Number of molecules = ?

Solution:

First of all we will calculate the number of moles.

Number of moles = mass/molar mass

Number of moles = 60 g/ 56.1 g/mol

Number of moles = 1.1 mol

Now number of molecules are determine by using Avogadro number.  

1 mole = 6.022 × 10²³ molecules

1.1 mol × 6.022 × 10²³ molecules / 1mol

6.624× 10²³ molecules        

Avogadro number:

It is the number of atoms , ions and molecules in one gram atom of element, one gram molecules of compound and one gram ions of a substance.

The number 6.022 × 10²³ is called Avogadro number.

For example,

18 g of water = 1 mole = 6.022 × 10²³ molecules of water

1.008 g of hydrogen = 1 mole = 6.022 × 10²³ atoms of hydrogen

(60 points + brain list)
Which is the configuration of an atom in the ground state?
A)
2-8-2
B)
2-6-1
C)
2-7-2
D)
2-7-3

Answers

Answer:

Ground state means when n = 1

and here the electronic configuration is 2:8:2

How do you determine the charge of an ion?

Answers

Answer:

Subtract the number of electrons from the number of protons in an atom as a basic way of calculating the charge of the ion.

Explanation:

For example, if a sodium atom loses one electron, work out 11 - 10 = 1.

Although the order of elements is based on atomic number, vertical families share similar chemical properties.

Question 12 options:
True
False WHAT IS IT

Answers

Answer:

It's true

Explanation:

Uhhh, the internet! lol.

Answer:

It's true, ExplanationVVV

Explanation: Because the order of elements is based on atomic number, vertical families share similar chemical properties.

What is the proper value for F in the above table? A. 28 B. 30 C. 2+ D. 2-

Answers

Explanation:

charge = proton - electron

charge = 65-63

charge = +2

Answer:here is ur answer....

Explanation:

C) 2+

Which element has 7 valence electrons and 3 electron shells

Answers

Answer:

Halogens i think. hope this help

Explanation:

Select the correct answer from each drop-down menu.

Researchers stationed at different areas on a mountain and in a tunnel midway through the mountain boiled water at the same time. Even though the water at every station was at the same temperature, the pot at the top of the mountain started boiling before the others. Why?

Water boils when the vapor pressure is
the atmospheric pressure. The atmospheric pressure
at the top of the mountain.

Answers

Water boils when the vapour pressure is least the atmospheric pressure.

The atmospheric pressure is equal at the top of the mountain.

What is atmospheric pressure?

The air around you has weight, and it presses against everything it touches. That pressure is called atmospheric pressure, or air pressure. It is the force exerted on a surface by the air above it as gravity pulls it to Earth.

As we go up in altitude the air pressure becomes less. When the pressure decreases, it takes less energy to get the water molecules to escape the surface. So the temperature is less than it would be at sea level.

Air pressure is higher or greater at the bottom of a mountain. This is because the height of the air above that level is thicker than at the top.

Pressure is given by the equation, P=rho*g*h, where rho is the air density, g is the gravity value and h is the thickness of the air layer on top of the level where we are considering the pressure.

Therefore, as we can see, at the bottom of the mountain, the thickness h of air is greater, and so is the pressure.

Hence, water boils when the vapour pressure is least the atmospheric pressure and the atmospheric pressure is equal at the top of the mountain.

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which element is unreactive and has a greater atomic radius than 1​

Answers

Answer:

Atomic radii vary in a predictable way across the periodic table. As can be seen in the figures below, the atomic radius increases from top to bottom in a group, and decreases from left to right across a period. Thus, helium is the smallest element, and francium is the largest.

A student mixes 20.0g of white KCl crystals with distilled water in a beaker. After the mixture was stirred, no crystals are visible and the solution is clear. After several days, all of the water evaporates and white crystals are found in the beaker. Which of following pieces of experimental evidence would best help the student to confirm that a new compound had not been made and that only a physical change occurred?

Answers

Answer:

After the water has evaporated, the white crystals in the beaker have a mass of 20.0g.

The pieces of experimental evidence would best help the student to confirm that a new compound had not been made and that only a physical change occurred is of 20.0 g of white KCl crystals.

What are physical changes?

Physical changes are defined as a modification to a sample of material when some of the substance's attributes change but the composition of the sample remains the same. The digestion of food, combustion, osmosis, and phase transitions are just a few examples of how these changes play a crucial role in our daily lives.

Crystals are defined as a solid substance whose elements such as atoms, molecules, or ions are grouped in a highly organized microscopic structure to create an all-pervasive crystal lattice. Crystals are formed when molecules in a liquid group together to stabilize when it starts to cool and solidify.

Thus, the pieces of experimental evidence would best help the student to confirm that a new compound had not been made and that only a physical change occurred is of 20.0 g of white KCl crystals.

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Which statement describes a physical property to the particles that make up a material

Answers

Answer:

Gold is a relatively dense metal because its atoms have more

protons than atoms of many other metals.

Explanation:

Which of the following halogens has the weakest attraction for electrons?


I


F


Br


Cl

Answers

Answer:

I

Explanation:

Among the halogens given in this problem, iodine has the lowest attraction for electrons.

This property is known as electronegativity.

Electronegativity is expressed as the relative tendency with which the atoms of the element attracts valence electrons in a chemical bond.

As you go down the periodic group the electronegativity decreases. The most electronegative element on the periodic table is fluorine. Down the group, iodine is the least electronegativeThis is due to the large size of its atom.

Fill in the question mark area of the dimensional analysis set up with the correct conversion 3.25 x 10-3 molecules H2O x 1 mole moles​ PLEASSSS HELPPPP

Answers

B

6.02 x 10^23 molecules

A sample of gas has a volume of 20.0 mL at STP. What will the volume be if the temperature is changed to 546 K and the pressure is changed to 2.0 atm.? (show work plz)

Answers

The volume did not change, it remained at 20 ml

Further explanation

Given

20 ml a sample gas at STP(273 K, 1 atm)

T₂=546 K

P₂=2 atm

Required

The volume

Solution

Combined gas Law :

[tex]\tt \dfrac{P_1.V_1}{T_1}=\dfrac{P_2.V_2}{T_2}[/tex]

Input the value :

[tex]\tt \dfrac{1\times 20}{273}=\dfrac{2\times V_2}{546}\\\\V_2=\dfrac{1\times 20\times 546}{273\times 2}\\\\V_2=20~ml[/tex]

The volume does not change because the pressure and temperature are increased by the same ratio as the initial conditions (to 2x)

What is the volume of a balloon that contains a 1.00 mol sample of oxygen with a pressure of 2.00 atm at 300.0 K?

Answers

Answer:

12.3

Explanation:

Trust

Ideal gas law is valid only for ideal gas not for vanderwaal gas. Therefore, 12.3L is the volume of a balloon that contains a 1.00 mol sample of oxygen with a pressure of 2.00 atm at 300.0 K.

What is ideal gas equation?

Ideal gas equation is the mathematical expression that relates pressure volume and temperature. There is no force of attraction between the particles.

Mathematically the relation between Pressure, volume and temperature can be given as

PV=nRT

where,

P = pressure of oxygen gas= 2.00 atm

V= volume of oxygen gas =?

n =number of moles of oxygen gas=1.00 mol

T =temperature of oxygen gas =300.0 K

R = Gas constant = 0.0821 L.atm/K.mol

Substituting all the given values, we get

2.00×V=1× 0.0821×300.0

On calculation we get

Volume=12.3L

Therefore, the volume of oxygen is 12.3L.

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Explain why you might feel ill after a vaccine

Answers

Answer:

Possibly a bad reaction as some people's immune systems are weaker than others

Explanation:

what is a relative motion

Answers

Answer:

The relative velocity is the velocity of an object or observer B in the rest frame of another object or observer A.

Answer:

Relative motion is defined as the calculation of the motion of an object with regard to some other moving or static object. Thus, the motion is not calculated with reference to the earth, but is the velocity of the object in reference to the other moving object as if it were in a static state.

Explanation:

3. How many moles of H20 are in 15.2 grams of pure ice?

Answers

Answer:

18.01528 grams.

Explanation:

Ther are 0.84 moles of [tex]H_{2}O[/tex] in 15.2 g of pure ice.

The molar mass of [tex]H_{2}O[/tex] is 18g.

To calculate the number of moles of a substance in a given mass of the sample, we divide the given mass by the molar mass of the sample,

Number of moles = given mass / molar mass

It is given that we have 15.2g of pure ice. Then the number of moles of [tex]H_{2}O[/tex] will be:

n = 15.2/18

n = 0.84 moles.

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I really need your guys help, I need to pass.​

Answers

Answer:

Question 4 is 291.0346

Explanation:

Please actually help me.
Thank you!

Answers

Answer: I believe -3

Explanation:

PLEASE HELP When I combine Sprite with a sour candy, it starts to bubble a lot. Is this a physical or chemical change?
A. Physical Change
B. Chemical Change

Answers

Answer:

B. chemical

Explanation:

Chemical change cannot go back to its original form

Answer:

B

Explanation:

bubbles is a form of chemical change :)

name two reactions which are endothermic in nature..

Answers

Melting ice cubes. Melting solid salts. Evaporating liquid water

Answer:

ham nahi jante hai be happy

Explain in a short sentence how you can tell if a reaction is a combustion reaction.

Answers

The reactants react with oxygen and there is energy formed.

whats the difference between a bonding electron domain and a nonbonding electron domain?​

Answers

Answer:  lone pair of electrons

Explanation: A bonding electron domain is a pair of electrons shared between two atoms and a nonbonding is a lone pair of electrons

The difference between the bonding electron domain and a nonbonding electron domain should be explained below.

Difference between bonding and non-bonding electron domain:

A bonding electron domain refers to the region that lies between the two bonded atoms that comprise one or more pairs where the electrons should be bonded.

While on the other hand, the non-bonded electron contains on the single-atom also comprise of one pair of lone pair.

In this way, it should be differentiated.

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