Copper reacts with silver nitrate to produce silver and
copper(ll) nitrate. In this reaction 40.7 g of silver is produced.
g
Calculate number of moles of each reactant.

Answers

Answer 1

Answer:

0.188 moles of copper and 0.376 moles of silver nitrate

Explanation:

hope this helps

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Answer 2

Let's see

[tex]\\ \rm\rightarrowtail Cu+AgNO_3\longrightarrow Cu(NO_3)_2+Ag[/tex]

Moles of silver :-

40.7/108=0.38mol

1 mol copper produces 1 mol Ag0.38 mol Cu produces 0.38 mol Ag0.38 mol AgNO_3 produces 0.38 mol Ag

Related Questions

Assuming a 4.00 litre of a sample gas at 1.00 atm compressed to 0.800 litre at constant temperature. Calculate the final presure of the gas.

Answers

At constant temperature, the final pressure of the compressed gas is 5.0atm.

Given the data in the question;

Initial volume of the gas; [tex]V_1 = 4L[/tex]Initial Pressure; [tex]P_1 = 1.0atm[/tex]Final volume; [tex]V_2 = 0.800L[/tex]

Final pressure; [tex]P_2 = \ ?[/tex]

Boyle's law

Boyle's law states that the volume V of a given quantity of gas is inversely proportional to its pressure P at constant temperature.

It is expressed as;

[tex]P_1V_1 = P_2V_2[/tex]

Where [tex]P_1[/tex] is Initial Pressure, [tex]V_1[/tex] Initial volume, [tex]P_2[/tex] is Final Pressure and [tex]V_2[/tex] is Final volume.

To determine the final pressure of the gas, we substitute our given values into the expression above.

[tex]P_1V_1 = P_2V_2\\\\P_2 = \frac{P_1V_1}{V_2} \\\\P_2 = \frac{1.0atm \ *\ 4L}{0.800L}\\ \\P_2 = \frac{1.0atm \ *\ 4}{0.800}\\\\P_2 = \frac{4.0atm}{0.800}\\\\P_2 = 5.0atm[/tex]

Therefore, at constant temperature, the final pressure of the compressed gas is 5.0atm

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Use Dot and cross method to show the bonding of the atoms and state the number of atoms of each element present
a. Magnesium and Fluorine
b. Sodium and Fluorine
c. Sodium and Oxygen
d. Aluminum and Iodine

Answers

Answer:

Check the attached one..I only draw the Dot method of Magnesium and Fluorine.. since i love chemistry ..Hope this helps you...Balance you have to do it yourself..If you didn't get the answer let me know in the comments..But you have try okay..

Electron Identify the type of charge of the following particles in an
atom
Electron
Neutron
Proton

Answers

Answer:

Electron charge: -1

Neutron charge: 0

Proton charge: +1

How are infrared visible light and ultraviolet Ray's related.

Answers

Answer:

Infrared radiation has longer waves than red light, and thus oscillates at a lower frequency and carries less energy. Ultraviolet radiation has shorter waves than blue or violet light, and thus oscillates more rapidly and carries more energy per photon than visible light does.

Explanation:

A patient cholesterol level and blood measures 149 mg/dL. What is the patients cholesterol level in grams per liter?

Answers

Answer:

fasting blood work

Explanation:

edge 2022

The pretend element, knoxium, Kx, has the following composition:
164Kx, 164.08 amu (60.44%)
165Kx, 165.11 amu (13.55%)
169Kx, 168.92 amu (??????%)
What is the average atomic mass of the "knoxium"?

164.08amu
165.48amu
166.04 amu

Answers

Answer:

165.48 amu

Explanation:

First, you need to find the last percentage.

100% = 60.44% + 13.55% + x

100% = 73.99% + x

x = 26.01%

Now, multiply each mass by the respective percentage.

164.08 × 0.6044 = 99.17

165.11 × 0.1355 = 22.37

168.92 × 0.2601 = 43.94

Lastly, add the products together to find the average atomic mass.

99.17 + 22.37 + 43.94 = 165.48

The average atomic mass of "knoxium" is 165.48 amu

after vacuum filtration 9.84 grams of potassium alum product was obtained. This means that the actual yield of potassium alum is 6.98 grams. Calculate the percent yield of this process using your theoretical yield from #7​

Answers

Answer:

70.9% or 71% yield

Explanation:

actual yield/theoretical yield * 100% = % yield

6.98/9.84 * 100 = 70.9

how many grams of water are needed to react with 71.0g CaN2?

Answers

Answer:

1

Explanation:

Mass of

C

a

C

N

2

= 75.0 g

From the equation,

C

a

C

N

2

(

s

)

+

3

H

2

O

(

l

)

C

a

C

O

3

(

s

)

+

2

N

H

3

(

g

)

1 mol of

C

a

C

N

2

reacts with 3 moles of water to give calcium carbonate and ammonia.

Number of moles of

C

a

C

N

2

,

n

=

G

i

v

e

n

m

a

s

s

M

o

l

a

r

m

a

s

s

Molar mass of

C

a

C

N

2

= 92.11 g/mol

Therefore,

n

C

a

C

N

2

=

75

g

92

.11

g

/

m

o

l

=

0

.814

m

o

l

Moles of water =Therefore,

n

C

a

C

N

2

=

75

g

92

.11

g

/

m

o

l

=

0

.814

m

o

l

Moles of water =

3

×

0

.814

m

o

l

e

s

=

2

.442

m

o

l

e

s

Mass of water needed;

=

m

o

l

e

s

o

f

w

a

t

e

r

×

m

o

l

a

r

m

a

s

s

o

f

w

a

t

e

r

=

2

.442

m

o

l

×

18

g

/

m

o

l

=

43

.956

g

Thus, 43.96 g of water is needed to react with 75 g of

C

a

C

N

2

.

The molar mass of the hydrated sodium sulfate is 322.1 g/mole. What is the formula of the hydrate salt?

Answers

Answer:

Na₂SO₄·10H₂O.

Explanation:

Hello.

In this case, since the anhydrous sodium sulfate is:

[tex]Na_2SO_4[/tex]

Whose molar mass is:

[tex]M=23+32+16*4=142 g/mol[/tex]

But the total hydrate's molar mass is 322.1 g/mol, we can compute the mass of water:

[tex]m_{water}=322.1-142=180.1g/mol[/tex]

Thus, the molecules of water are found by diving the total mass of water by the mass of one mole of water:

[tex]#water=\frac{180.1}{18}=10[/tex]

It means, that the formula is Na₂SO₄·10H₂O.

Best regards.

Which element would react most like calcium (Ca)?
A. O
B. Ti
C. C
D. Mg

Answers

Answer:

B/Ti

Explanation:

Answer:mg D

Explanation:A P E X

1. How many moles are in 3.01 x 1023 atoms of calcium?

Answers

Answer:

.5 moles of calcium

Explanation:

We want to find the number of moles in 3.01 x 10^23 atoms of calcium

To convert atoms to moles, we simply divide the given number of atoms by Avogadro's number , 6.022 x 10^23

Given number of atoms : 3.01 x 10^23

Number of moles : 3.01 x 10^23 / 6.022 x 10^23 = .5 moles of calcium ( rounded )

A class does a science experiment. They rub a balloon with a piece of wool. They put the balloon close to a penny and pleces of tissue paper.
They find that the tissue paper moved toward the balloon and the penny did not
What caused the tissue paper to move towards the balloon?

Answers

Answer:

D. Electrical charge

Explanation:

What actually caused the tissue paper to move towards the balloon is "electrical charge".

When they rubbed the balloon with a piece of wool, the wool looses electrons which gives it a positive charge while the balloon gains electrons which gives it a negative charge.

The pieces of tissue paper is able to move toward (i.e attracted) the balloon because the negatively charged balloon is attracted to the positively charged tissue paper which was neutral.

Answer:

D

Explanation:

Phosphine (PH3) can be prepared by the reaction of calcium phosphide , Ca3P2: based on this equation : Ca3P2 + 6H2O —-> 3 Ca(OH)2 + 2 PH3
Based on this equation , which of the following statements are correct?
(a) one mole of Ca3P2 produces 2 mol of PH3
(b) one gram of Ca3P2 produces 2g of PH3
(c) Three moles of Ca(OH)2 are produced for each 2 mol of PH3 produced
(d) the mole ratio between phosphine and calcium phosphide is 2 mol PH3 over 1 mol Ca3P2

Answers

Taking into account the reaction stoichiometry, you can observe that:

one mole of Ca₃P₂ produces 2 mol of PH₃.the mole ratio between phosphine and calcium phosphide is 2 mol PH₃ over 1 mol Ca₃P₂.

Reaction stoichiometry

In first place, the balanced reaction is:

Ca₃P₂ + 6 H₂O  → 3 Ca(OH)₂ + 2 PH₃

By reaction stoichiometry (that is, the relationship between the amount of reagents and products in a chemical reaction), the following amounts of moles of each compound participate in the reaction:

Ca₃P₂:1 mole H₂O: 6 molesCa(OH)₂: 3 molesPH₃: 2 moles

The molar mass of the compounds is:

Ca₃P₂: 182 g/mole H₂O: 18 g/moleCa(OH)₂: 74 g/molePH₃: 34 g/mole

Then, by reaction stoichiometry, the following mass quantities of each compound participate in the reaction:

Ca₃P₂: 1 mole ×182 g/mole= 182 grams H₂O: 6 moles× 18 g/mole= 108 gramsCa(OH)₂: 3 moles ×74 g/mole= 222 gramsPH₃: 2 moles ×34 g/mole= 68 grams

Correct statements

Then, by reaction stoichiometry, you can observe that:

one mole of Ca₃P₂ produces 2 mol of PH₃.the mole ratio between phosphine and calcium phosphide is 2 mol PH₃ over 1 mol Ca₃P₂.

Learn more about the reaction stoichiometry:

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Determine the molarity of the bromide ions in solution formed by dissolving 53.79 g of MgBrz in 393.6 ml water?

Answers

Answer:

Explanation:

Given data:

Molarity is used to describe the concentration of solution. It tells how many moles are dissolve in per litter of solution.

Formula:

Molarity = number of moles of solute / L of solution

HBr + Al(OH)3 = H2O + AlBr3, how do I balance this equation?​

Answers

Answer:   This is an acid-base reaction (neutralization): Al(OH) 3 is a base, HBr is an acid. ; Colorless gas with a sharp, irritating odor.

...

Search by products (AlBr 3, H 2O)

1 HBr + Al(OH)3 → H2O + AlBr3

2 Al2O3 + HBr → H2O + AlBr3

Explanation:

Plant A gets no fertilizer, plnt B-5mg/day, and plnt C-10mg/day. Which is the control group?

Answers

Answer:

Plant A

Explanation:

This is because Plant A is what you will compare to the other plants. Because it has no fertilizer is is the independent variable.

Sue dissolved a certain amount of salt in 400 grams of water to obtain 405 grams of salt solution. What was the mass of the salt used to make the solution? 5 grams 10 grams 400 grams 405 grams

Answers

Explanation:

Sue added salt to water in order to make a salt solution

the original amount of water is 400 grams

In order for Sue to obtain 405 grams of salt solution using 400 grams of water, 5 grams of salt must be added.

Answer: (D) 5 grams

Explanation: the reason I would chose this is because if you do the simple math of 405-400 you get 5 so if he has 400 in the beginning he would have to add something to make it 405 grams and that something would have to be 5 grams of salt. hoped this helped no need for brainiest just happy to help.:)

and please tell me if I am wrong.

what would lead to a higher final temperature of water, a metal with a low heat capacity of a high heat capacity

Answers

A hot metal with a low heat capacity will raise the final temperature of water more than a hot metal with high heat capacity.

Heat capacity

It is the amount of heat required to change the temperature of a substance by just a unit.

Substances that heat up quickly are said to have low heat capacities while those that take time to heat up are said to have high heat capacities.

Substances with low heat capacity also release their thermal energy quicker than those with high heat capacity.

Thus, a hot metal with low heat capacity will readily transfer its thermal energy to water than a hot metal with high heat capacity.

More on heat capacities can be found here: https://brainly.com/question/11194034

Hello this question only for JungKookLuver and jguzman577! What my name?

Answers

Answer: ThankYou So much your name is Jacob!

Explanation: Hello

Answer: Thanks for the Free Points Brother!

Explanation: Yay! :D

how do water molecules disslove in salt

Answers

Because the positive part of water molecules attracts negative chloride ions and the negative part of water molecules attracts positive sodium ions, water may dissolve salt. The solubility of a material is the quantity of that substance that can dissolve in a liquid (at a given temperature).

Enter an equation for the formation of Al2O3(s) from its
elements in their standard states.
Express your answer as a chemical equation including
phases.

Answers

The compound, solid Al2O3, is formed from solid aluminum and oxygen gas under certain conditions.

Formation of Al2O3

Solid aluminium oxide, Al2O3, is formed from its components elements as follows:

2Al (s) + 3O2 (g) ----------> 2Al2O3 (s)

The state of the aluminum element is solid, that of oxygen is gas, and that of the product, Al2O3, is solid.

More on Al2O3 can be found here: https://brainly.com/question/25873251

state the bond angle and the molecular shape of NH3 and H2O.​

Answers

Answer:

H2O forms a bent structure due to the presence of 2 lone pairs over O Atom. This makes the bond angle 104.5° NH3 forms a pyramidal structure due to presence of 1 lone pair. This makes the bond angle 107°

Match the terms and the definitions Lesson 3.04 Question 6 options:
1.
The earth is in a position so that the North Pole is tilted most directly toward the sun.

2.
The tilt and revolution of the earth as it moves around the sun cause

3.
This is the day of the year with the least amount of daylight, which is due to the tilt of the earth's axis.

4.
Days and nights are equal length, and the noon sun is directly overhead.




Equinoxes


Winter Solstice


Summer Solstice

seasons

Answers

1. Summer Solstice

What is Summer Solstice?

Summer Solstice is an astronomical event that marks the longest day of the year and the official beginning of summer in the Northern Hemisphere. It takes place when the sun reaches its highest point in the sky, directly over the Tropic of Cancer. During this time, the days have the most hours of sunlight and the nights have the least hours of darkness. This is due to the Earth's tilt in relation to the Sun. On the day of the Summer Solstice, the sun rises earliest and sets latest. This event is celebrated around the world, with many cultures creating rituals to honor the season. In the U.S., some people celebrate by gathering together for festivals, bonfires and fireworks. Others mark the day by practicing yoga, meditating or spending time outdoors in nature. Summer Solstice is a time of renewal and celebration, a reminder of the power of light, and of the beauty of the changing seasons.

2. seasons

3. Winter Solstice

4. Equinoxes

To learn more about  Summer Solstice

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The mass and volume of a body are 4.
4.237kg and
2.5cm 3
respectively. What is the density

Answers

Explanation:

p=mv

=(4.237)(2.5x10^-2)^3

=6.6x10^-5 kgm-3

a sample of sodium reacts completely with 0.142 kg chlorine, forming 234 g of sodium chloride. What mass of sodium reacted

Answers

Use the mass of sodium to calculate moles as it is the limiting reagent :)

Methane and Sulfur react to produce carbon disulfide and hydrogen sulfide. what is the balanced equation?​

Answers

Answer:

CH₄ +2S₂ → CS₂ +2H₂S

Explanation:

HURRY
Show step-by-step
Pure copper may be produced by the reaction of copper (I) sulfide with oxygen gas:

Cu2S (s) + O2 (g) --> 2Cu (s) + SO2 (g)

If 3-kg of copper (I) sulfide reacts with excess oxygen, what mass of copper metal may be produced??

Answers

If 3-kg of copper (I) sulfide reacts with excess oxygen, 3.9 kg of copper metal may be produced.

Let's consider the following balanced equation for the obtaining of pure copper.

Cu₂S(s) + O₂(g) ⇒ 2 Cu(s) + SO₂(g)

The molar mass of Cu₂S is 95.61 g/mol. The moles corresponding to 3 kg (3000 g) of Cu₂S are:

[tex]3000 g \times \frac{1mol}{95.61g} = 31 mol[/tex]

The molar ratio of Cu₂S to Cu is 1:2. The moles of Cu obtained from 31 moles of Cu₂S are:

[tex]31 mol Cu_2S \times \frac{2molCu}{1molCu_2S} =62 mol Cu[/tex]

The molar mass of Cu is 63.55 g/mol. The mass corresponding to 62 moles of Cu is:

[tex]62 mol \times \frac{63.55g}{mol} = 3.9 \times 10^{3} g = 3.9 kg[/tex]

If 3-kg of copper (I) sulfide reacts with excess oxygen, 3.9 kg of copper metal may be produced.

You can learn more about stoichiometry here: https://brainly.com/question/22288091

What can be used to determine the absolute age of two rocks? *

Answers

Answer:Ithink erosion cuz if we can tell how long ago it eroded we can see how old it is

Explanation:

A sample of 0.500 moles of nitrogen occupies 1.000 L. Under the same conditions, what number of moles occupies 1.200 L

Answers

Answer:

I think

0.6 moles of nitrogen


Why atoms in our body don’t

eject electrons?​

Answers

Answer:

When there are too many protons, some of the outer protons are loosely bound and more free to react with the electron. But most atoms do not have too many protons, so there is nothing for the electron to interact with. As a result, each electron in a stable atom remains in its spread-out wavefunction shape.

In an atom, there is a nucleus made up of neutral charged, neutrons, and positively charged protons. The reason why electrons which are negatively charged, don't fly off is due to its stronger attraction to the protons. ... This, however, still allows the electrons to move around the nucleus of an atom.

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