Is the following chemical equation balanced?

AgNO3 + NaCl 4AgCl + NaNO3

yes
no

Answers

Answer 1
No. Reactants: 1 silver, 1 chlorine; products: 4 silver, 4 chlorine. Therefore, not balanced.

Related Questions

Equivalent weight of h2co3

Answers

Answer: 62.02478 g/mol

Explanation:

Answer:

31 grams per equivalent.

Explanation:

The valence of carbonic acid (H2CO3) is two (there are two replaceable hydrogen ions). The molecular weight of H2CO3 is: 2*1 + 12 + 3*16 = 62 g/mol. Therefore, the equivalent weight is: 62/2 = 31 grams per equivalent.

Neutral atoms of argon, atomic number 18, have the same number of electrons as each of the following items except: Cl- S -2 K+ Ca +2 Ne

Answers

Answer:

Ne.

Explanation:

Neutral argon, atomic number 18, has 18 electrons.

Cl⁻:

Neutral atom of Cl, atomic number 17, has 17 electrons.

When it gains electron and be Cl⁻, then it has 18 electrons a neutral Ar.

S²⁻:

Neutral atom of S, atomic number 16, has 16 electrons.

When it gains 2 electrons and be S²⁻, then it has 18 electrons a neutral Ar.

K⁺:

Neutral atom of K, atomic number 19, has 19 electrons.

When it losses electron and be K⁺, then it has 18 electrons a neutral Ar.

Ca²⁺:

Neutral atom of Ca, atomic number 20, has 20 electrons.

When it losses 2 electrons and be Ca²⁺, then it has 18 electrons a neutral Ar.

Ne:

It is a noble gas that has 10 electrons.

So, the right choice is: Ne.

the answer is ne

Explanation:

How many moles of H are in 0.9 mol C21H23NO5? Enter your answer to 1 decimal place.

Answers

Answer:

Explanation:

I mol of C21H23NO5 Contains 23 moles of H

0.9 mol of C21H23NO5 contains 23*0.9 mols of H

mols of H = 20.7

lons are defined as ____
a) atoms that have lost or gained an electron and have a charge.
b)atoms that are bonded to other atoms of the same element
c)neutral atoms
d)nuclear atoms​

Answers

Answer:A

Explanation: ion

an atom or molecule with a net electric charge due to the loss or gain of one or more electrons.

Answer:

Option A) Atoms have lost or gained an electron and have a charge

Explanation:

The result of a loss or gained electron can cause a large or lesser number of protons than the electrons, which causes a charge imbalance because protons have a positive charge and electrons have a negative charge.  If the number of protons or the number of electrons is unequal, then it means that the atom has a charge, and is an ion.  It is a cation if it lost an electron such that it has a positive charge and it is an anion if it gained an electron such that it has a negative charge.

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Calculate the number of molecules present in 2.25 mol H2SO4. 2.25 x 1023 molecules 1.35 x 1024 molecules 3.53 x 1023 molecules

Answers

Answer:1.35 x 10^24

Explanation:

No. of molecules= mole x avogadro's constant

2.25 x 6.02 x 10^23

=1.35 x 10^23

Answer: The number of molecules in given amount of sulfuric acid is [tex]1.35\times 10^{24}[/tex]

Explanation:

According to the mole concept:

1 mole of a compound contains [tex]6.022\times 10^{23}[/tex] number of molecules.

We are given:

Moles of sulfuric acid = 2.25 mole

So, the number of molecules that will be present in 2.25 moles of sulfuric acid will be [tex]2.25\times 6.022\times 10^{23}=1.35\times 10^{24}[/tex] number of atoms.

Hence, the number of molecules in given amount of sulfuric acid is [tex]1.35\times 10^{24}[/tex]

How many grams of Na2O are produced when 70.7 g of Na reacts?
4Na(s)+O2(g)→2Na2O(s)

Answers

Answer:

95.3 grams.

Explanation:

Relative atomic mass data from a modern periodic table:

Na: 22.990;O: 15.999.

How many moles of Na are consumed?

[tex]M(\mathrm{Na}) = \rm 22.990\; g\cdot mol^{-1}[/tex].

[tex]\displaystyle n(\mathrm{Na}) = \frac{m(\mathrm{Na})}{M(\mathrm{Na})} = \rm \frac{70.7\; g}{22.990\;g\cdot mol^{-1}}=3.07525\;mol[/tex].

How many moles of [tex]\mathrm{Na_2 O}[/tex] formula units will be produced?

Consider the ratio between the coefficient of [tex]\mathrm{Na_2 O}[/tex] and that of [tex]\mathrm{Na}[/tex] in the equation:

[tex]\displaystyle \frac{n(\mathrm{Na_2 O})}{n(\mathrm{Na})} = \frac{2}{4} = \frac{1}{2}[/tex].

As a result,

[tex]\displaystyle n(\mathrm{Na_2 O}) = n(\mathrm{Na}) \cdot \frac{n(\mathrm{Na_2 O})}{n(\mathrm{Na})} = \rm \frac{1}{2}\times 3.07525\;mol = 1.53763\; mol[/tex].

What will be the mass of that many [tex]\mathrm{Na_2 O}[/tex]?

Formula mass of [tex]\mathrm{Na_2 O}[/tex]:

[tex]M(\mathrm{Na_2 O}) = \rm 2\times 22.990 + 15.999 = 61.979\; g\cdot mol^{-1}[/tex].

[tex]m(\mathrm{Na_2 O}) = n(\mathrm{Na_2 O})\cdot M(\mathrm{Na_2 O}) = \rm 1.53763\; mol\times 61.979\; g\cdot mol^{-1} \approx 95.3\; g[/tex].

Answer: 95,3 g. would be produced, if the mass of Na = 70,7 g.

which of these energy resources does not pollute when used

Answers

Answer:

Solar power: solar power converts the sun's energy into energy we can use.Nuclear power: heat is used to generate steam that drives a steam turbine connected to a generator that produces electricity.Hydroelectric energy: hydroelectric power plants use a dam on a river to store water in a reservoir. Water released from the reservoir flows through a turbine, spinning it, which in turn activates a generator to produce electricity.Wave energy: wave energy proves itself to be a valuable contributor to alternative energy fuel sources with wave energy converters.Biofuels: biofuels make use of animal and plant life to create energy.Natural gas: emits greenhouse gases, but the amount is lower than with fossil fuels.Geothermal power: geothermal power is about extracting energy from the ground Wind energy: it uses wind as energy and it makes use of a renewable source and generates no waste.Biomass energy: biomass energy comes in a number of forms. For example, burning wood has been used for thousands of years to create heat, but more recent advancements have also seen waste, such as that in landfills, and alcohol products used for similar purposes.Tidal energy: tidal energy uses the power of water to generate energyHydrogen gas: hydrogen is a completely clean burning fuel. Once produced, hydrogen gas cells emit only water vapor and warm air.

How many liters of water can be produced from 5.0
liters of butane gas at STP, assuming excess oxygen?
C4H10(g) + 02(g) → CO2 (e) + H2O (g)​

Answers

you first have to balance out the equation
The coefficients would be 2,13,8,10

So for each mole of butane u have 5 moles of Water.(or for each liter because it’s in STP). Thus 5 liters would give u 25 liters of water. I attached the pic of the more detailed solution. Hope it helps:)

Describe how you would prepare 500.0mL of an aqueous solution that is 30.0% isopropyl alcohol by volume

Answers

Answer:

The solution can be prepared by adding 150.0 mL of isopropyl alcohol to 350.0 mL of water to make 30.0% isopropyl alcohol aqueous solution.

Explanation:

∵ The volume% of a solution = [(volume of the solute(isopropy)/(volume of the solution)] x 100.

The volume % = 30.0%, volume of the solution = 500.0 mL.

∴ Volume of the solute = (the volume% of a solution)(volume of the solution)/100 = (30.0%)(500.0 mL)/100 = 150.0 mL.

∵ The volume of solution = volume of the solute + volume of water

∴ Volume of water = volume of the solution - volume of the solute = (500.0 mL) - (350.0 mL) = 150.0 mL.

So, the solution can be prepared by adding 150.0 mL of isopropyl alcohol to 350.0 mL of water to make 30.0% isopropyl alcohol aqueous solution.

Final answer:

To prepare a 500.0mL solution of 30.0% isopropyl alcohol by volume, measure 150.0 mL of pure isopropyl alcohol, add it to a 500 mL volumetric flask, fill the flask to the mark with distilled water, and mix well.

Explanation:

To prepare 500.0mL of a 30.0% isopropyl alcohol by volume aqueous solution, you'll need to calculate the volume of pure isopropyl alcohol required and then make up the rest of the volume with water. Here is a step-by-step procedure:

Calculate the volume of isopropyl alcohol needed: Since the solution needs to be 30.0% isopropyl alcohol by volume, this means 30.0% of the final solution's volume should be pure isopropyl alcohol. For 500.0 mL of solution, 30.0% of 500.0 mL is 150.0 mL. Therefore, you need 150.0 mL of isopropyl alcohol.Measure 150.0 mL of pure isopropyl alcohol using a graduated cylinder and transfer it into a 500 mL volumetric flask.Fill the volumetric flask with distilled water up to the 500 mL mark. This step ensures that the final volume of the solution is exactly 500.0 mL, making the solution 30.0% isopropyl alcohol by volume.Cap the flask and invert it several times to mix the solution thoroughly.

By following these steps, you will have successfully prepared a 500.0mL solution of 30.0% isopropyl alcohol by volume.

What is the most striking part of the Rutherford scattering stimulation?

Answers

Answer:

bye

Explanation:

Given: K = °C + 273.15

What is the temperature of the flame in degrees Celsius?

You measure the flame of a candle and get a reading of 1,376.06 K. This value is equal to

Answers

Answer:

Tk=TC+273.15

so

1376.06=Tc+273.15

TC=1376.06-273.15

TC= =1,102.91

Answer: 1102.91 ºC

Explanation: To solve this problem, we only need to isolate the temperature in Celsius from the given equation:

TK=TºC+273.15

TºC=TK-273.15

now, replacing the temperature of the flame in K:

TºC=1376.06-273.15

TºC=1102.91 ºC

What does the oxidizing agent do in a redox reaction?

A. Oxidizes another atom

B. Gets oxidized

C. Donates electrons

D. Reduces another atom

Answers

The oxidizing agent do in a redox reaction is "donates electrons".

What is oxidizing agent?

A material that obtains electrons and would be reduced, which results in a drop in oxidation state, would be an oxidizing agent. The other substance oxidized to form due to it.

What are electrons?

The smallest elemental component of an atom, the electron has a negative charge. In a neutral atom, there are an equal number of protons as well as electrons.

Therefore, the oxidizing agent do in a redox reaction is "donates electrons".

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Answer:

A. Oxidizes another atom

Explanation:

Just did the quiz and guessed B, but got it wrong, and showed me that A is correct.

The elements in group 17 of the periodic table are all called halogens. All halogens have the same

atomic number.

atomic mass.

number of possible isotopes.

number of valence electrons.

Answers

Answer:

They have the same number of valence electrons

Explanation:

The groups on the periodic table are the vertical lines of groups. In group 18 the elements are known as noble gases. They have all 8 valence electrons. As you go to the left the groups have one less valence electron. Group 17 has 7 valence electrons.

The elements in group 17 of the periodic table are called halogens. All halogens have the same number of valence electrons.

What are Halogens?

Elements that have 7 electrons in their last subshell and belong to group 17 are known as Halogens. Names of different halogens are:

FluorineChlorineBromineIodine

All the elements of Group 17 contain 7  valence electrons.

Fluorine is the most electronegative element in the periodic table. Fluorine is a highly toxic gas and breathing the fluorine can be lethal for human beings. People when exposed to fluorine gas can experience arthritis.

Chlorine gas is also a toxic gas for human beings.

Bromine is less toxic than chlorine and fluorine. Bromide has a lethal dose of 30 mg.

Iodine is also somewhat less toxic. Iodine is also used as a Tincture of Iodine. Exposure to Iodine can lead to irritation in the eyes and lungs.

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How are magnets made? What raw materials are required?

Answers

Hello There!

Image Attached Below

Answer:

The most common magnetic metals are iron, nickel, and cobalt. Alloys that contain one or more of those elements are usually ferromagnets, meaning that the magnetic orientations of nearby atoms line up with each other on their own to make little magnetic domains

A medium of free floating positive and negative charges are called ?

Answers

Answer:

Plasma

Explanation:

Mostly this occurs at very high temperatures that cause atoms to lose electrons. Plasma is therefore a gas but of ions. Plasma can conduct electricity and can be influenced by magnetic fields. Plasma occurs mostly in stars where it is the dominant state of matter.  

Answer:

Plasma

Explanation:

Answer via Founder's Education/ Educere. Plasma fits the definition of the answer because it contains both positive and negitive free-flowing charges.

What type of particle is emitted by each type of radioactive decay?


A. alpha = nucleus of a helium atom

beta = photon

gamma = electron


B. alpha = electron

beta = nucleus of a helium atom

gamma = photon


C. alpha = nucleus of a helium atom

beta = electron

gamma = photon


D. alpha = electron

beta = photon

gamma = nucleus of a helium atom

Answers

C. alpha = nucleus of a helium atom

beta = electron

gamma = photon

Answer : The correct option is, (C) alpha = nucleus of a helium atom, beta = electron,  gamma = photon

Explanation :

Alpha particle : It is also known as alpha radiation or alpha ray that consists of 2 protons and 2 neutrons that are bound together into a particle that is identical to the helium nucleus. It is produced in the process of alpha decay.

Beta particle : It is also known as beta radiation or beta ray. During the beta decay process, a high energy and speed electron or positron are emitted by the radioactive decay of atomic nucleus.

Gamma particle : It is also a gamma radiation or gamma ray that is arising from the radioactive decay of atomic nuclei. It has shortest wavelength waves and imparts high photon energy can pass through most forms of matters because they have no mass.

Hence, the correct option is, (C) alpha = nucleus of a helium atom, beta = electron,  gamma = photon

What is a chemical reaction?

Answers

Hello There!

A chemical reaction is when one or more molecules combine and rearrange to create one or more molecules or substances.

A chemical reaction is when a reaction occurs that changes the make-up (basically what makes something that thing. For example you have chemical make-up that makes you you. If that make up changed then you wouldn't be you anymore) making what ever was reacted into a NEW product

For example digestion is a chemical reaction. Let's say that you eat a carrot. When digestion (the chemical reaction) is complete the carrot is no longer how it was when your first put it in your mouth. It has been broken down and the acid in your belly changed the chemical make up so that your body can use the carrot for energy

Now let's say that you shred a piece of paper. This is NOT a chemical reaction, because the shredded paper is still the paper it was before it was shredded

Hope this helped!

~Just a girl in love with Shawn Mendes

If you doubled the volume of a sample of gas and
then doubled the volume again without changing
its pressure, how would the absolute temperature
of the gas be affected?
a
What pressure must be applied to keep a gas at
750 torr and 300 K at a constant volume of 200
mL if the temperature is raised to 450 K?​

Answers

Answer:

1125mL

Explanation:

this can be done using general gas law

Answer:

The absolute temperature  of the gas will be affected by a fourfold increase.

The pressure must be applied at 450 K should be 1,125 torr.

Explanation:

Charles's Law consists in the relationship between the volume and temperature of a certain amount of ideal gas, which is maintained at a constant pressure, by means of a constant of proportionality that is applied directly. For a given sum of gas at a constant pressure, as the temperature increases, the volume of the gas increases and when the temperature decreases, the volume of the gas decreases because the temperature is directly related to the energy of the movement of the gas molecules .

In summary, Charles's law is a law that says that when the amount of gas and pressure remain constant, the ratio between volume and temperature will always have the same value:

[tex]\frac{V}{T} =k (constant)[/tex]

If you double the volume of a gas sample and  then doubled the volume again, then the volume was increased four times. To comply with Charles's Law and maintain the relationship between volume and constant temperature, the temperature must increase four times, in the same way as volume.

So the absolute temperature  of the gas will be affected by a fourfold increase.

Gay-Lussac's law can be expressed mathematically as follows:

[tex]\frac{P}{T} =k[/tex]

Where P = pressure, T = temperature, K = Constant

This law indicates that the ratio between pressure and temperature is constant.

This law indicates that, as long as the volume of the container containing the gas is constant, as the temperature increases, the gas molecules move faster. Then the number of shocks against the walls increases, that is, the pressure increases. That is, the gas pressure is directly proportional to its temperature.

In short, when there is a constant volume, as the temperature increases, the gas pressure increases. And when the temperature decreases, gas pressure decreases.

When studying two different states of a gas, you have a gas that is at a pressure P1 and at a temperature T1 at the beginning of the experiment. When the temperature varies to a new T2 value, then the pressure will change to P2. This is true:

[tex]\frac{P1}{T1} =\frac{P2}{T2}[/tex]

So in this case, as the volume is constant, Gay-Lussac's law can be applied as follows:

[tex]\frac{750 torr}{300 K} =\frac{P2}{450 K}[/tex]

Then

[tex]P2=\frac{750 torr}{300 K} *450 K\\[/tex]

P2=1,125 torr

The pressure must be applied at 450 K should be 1,125 torr.

what is the best describtion of the side of the moon that faces earth?

Answers

It would be answer c it would change

Answer:

It would change

Explanation:

what type of circuit is illustrated

a) series circuit

b) short circuit

c) open circuit

d) parallel circuit

Answers


The type of circuit depicted above is an example of a parallel circuit. Parallel circuits are circuits that have several pathways for current to flow; the easiest way to see this is by drawing a condensed diagram. If one of the bulbs were removed (that particular pathway was opened so electricity couldn’t flow), the current could simply go through another pathway using another lightbulb and the circuit would still be complete. Series circuits only have one pathway that the current can flow through, which this can’t be since it has multiple. The circuit isn’t shorted since the lightbulb reduces the voltage to zero, and the circuit is closed since the lightbulbs are on.

Hope this helps!

how many electrons does silver have to give up in order to achieve a sido noble gas electron configuration

Answers

Answer:

Silver has to give up one electron.

Explanation:

Silver is a transition element and has a partially filled 4d- orbital having 9 electrons and a 5s orbital having 2 electrons in it. In order to achieve stability, silver must have completely filled d-orbital having a maximum number of 10 electrons in it.

Therefore, one electron from 5s orbital jumps to 4d orbital to make it stable. Now, 5s orbital has only one electron, and it will be easy for silver to lose this electron to attain a stable electronic configuration.

(WILL GIVE BRAINLIEST ANSWER) A runner burns 10 kilocalories per minute. If the runner completes a race in 1 hour and ten minutes, how many kilocalories does he burn during the entire race? How many grams of pasta would provide him with this much energy? (1 gram of pasta gives 4.06 kilocalories of energy)

Answers

60 minutes in an hour so. 60 times 10=600+10 more minutes

He burns 610 kilocalories

Then 610 / 4.06

150.25

Answer:

700 kilo calories was burnt during the entire race.

172.41 grams of pasta would provide him with 700 kcal energy.

Explanation:

Rate of burning calories = R = 10 kcal/min

Number of calories burnt in 1 hour and 10 minutes = x

Duration of race = t =  1 hour + 10 min

1 hour = 60 minutes

t = 60 min + 10 min = 70 min

[tex]x=R\times t=10 kcal/min\times 70 min=700 kcal[/tex]

700 kilo calories was burnt during the entire race.

Number of calories in 1 gram of pasta = 4.06 kcal/g

Amount of pasta with 700 kcal = m

[tex]m\times 4.06 kcal/g=700 kcal [/tex]

[tex]m=\frac{700 kcal}{4.06 kcal/g}=172.41 g[/tex]

172.41 grams of pasta would provide him with 700 kcal energy.

How many electrons are represented by a dash (-) in a lewis dot structure compound

Answers

Answer:

nstead of using two dots to indicate the two electrons that comprise the covalent bond, a line is substituted for the two dots that represent the two electrons. Below is shown the Lewis structure for water. Two hydrogens (H) are separately covalently bonded to the central oxygen (O) atom.

Explanation:

The total number of electrons that are represented by a dash (-) in a Lewis dot structure compound is 2(Two).

What is the Lewis dot structure compound?Lewis structures, also known as Lewis dot formulas, Lewis dot structures, electron dot structures, or Lewis electron dot structures, are diagrams that show the bonding between atoms of a molecule, as well as the lone pairs of electrons that may exist in the molecule.A single dot represents one electron. A dash typically represents 2 electrons, and typically represents a covalent bond, i.e. shared electron density between two positively charged atomic nuclei. Most of the time we represent the valence electrons only.

So, the total number of electrons that are represented by a dash (-) in a Lewis dot structure compound is 2(Two).

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A sample of an unknown volatile liquid was injected into a Dumas flask (mass of flask=
27.0928 g. Volume of the flask is 0.1040L) and heated until no visible traces of the
liquid could be found. The flask and its contents were then rapidly cooled and
reweighed (mass of flask + vapor = 27.4593 g). The atmospheric pressure and
temperature during the experiment were 0.976 atm and 18.0°C, respectively. The
unknown volatile liquid was_ (make sure you use the proper name for this
organic compound)

Answers

Final answer:

The unknown volatile liquid in your Dumas flask is most likely water due to its molar mass of approximately 18 g/mol

Explanation:

The identity of the unknown volatile liquid in your Dumas flask can be determined using the ideal gas law equation PV=nRT, where P is pressure, V is volume, n is the number of moles, R is the ideal gas constant, and T is the temperature in kelvins. By rearranging this equation to n=m/M, we can find the molar mass (M). With your provided figures (change in mass = 27.4593 g - 27.0928 g, V=0.104L, P=0.976 atm, T=18°C + 273=291K), we find M=~18 g/mol. This molar mass is most closely correlated to the organic compound known as Water (H2O).

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What is the total mass of copper consumed when 16.0 moles of water are produced?


3Cu + 8HNO3 → 3Cu(NO3)2 + 2NO + 4H2O

Answers

Answer:

762.55 g.

Explanation:

For the balanced reaction:

3Cu + 8HNO₃ → 3Cu(NO₃)₂ + 2NO + 4H₂O.

It is clear that 3 mol of Cu reacts with 8 mol of HNO₃ to produce 3 mol of Cu(NO₃)₂, 2 mol of NO, and 4 mol of H₂O.

We need to calculate the no. of moles of copper consumed when 16.0 moles of water are produced:

Using cross multiplication:

3 mol of Cu produce → 4 mol of H₂O, from stichiometry.

??? mol of Cu produce → 16 mol of H₂O.

∴ no. of moles of Cu needed = (3 mol)(16 mol)/(4 mol) = 12 mol.

Now, we can get the mass of Cu needed:

∴ mass of Cu = (no. of moles)(atomic mass of Cu) = (12 mol)(63.546 g/mol) = 762.55 g.

Select all that apply to temperature and the kelvin scale.

-Scientists have been able to cool substance to absolute zero.
-0 K is equal to -273 degrees Celsius.
-Gas can have a volume of 0.
-The term “degree” is not used with the Kelvin scale.
-Cryogenics is the study of very low temperatures and their effects.

Answers

Number one, two, theee and five

Answer: Option (2), (4) and (5)

Explanation:

Absolute zero refers to the temperature from which there occurs no cooling. Scientists have not been able to cool any substance upto its absolute zero temperature. A temperature close to the absolute zero temperature is attained but it never exactly reaches the absolute temperature.

For the conversion from celsius scale to kelvin or from kelvin to celsius scale, it is universally taken to be 0 K= -273°C.

Gas can never be zero volume because gas is a matter and certain composition and thus has its own volume.

In Kelvin scale, k is used whereas in celsius scale, degree (°) is used.

Cryosphere refers to the study of the materials and their characteristics at a relatively very low temperature.

Thus, the correct answers are option (2), (4) and (5).

Calcium hydride (CaH2) reacts with water to form hydrogen gas: CaH2(s) + 2H2O(l) → Ca(OH)2(aq) + 2H2(g) How many grams of CaH2 are needed to generate 45.0 L of H2 gas at a pressure of 0.995 atm and a temperature of 32 °C?

Answers

Answer:

37.67 g.

Explanation:

For the balanced reaction:

CaH₂(s) + 2H₂O(l) → Ca(OH)₂(aq) + 2H₂(g).

It is clear that 1 mol of CaH₂(s) reacts with 2 mol of H₂O(l) to produce 1 mol of Ca(OH)₂(aq) and 2 mol of H₂(g).

We need to calculate the no. of moles of generated 45.0 L of H2 gas at a pressure of 0.995 atm and a temperature of 32 °C:

We can use the general law of ideal gas: PV = nRT.

where, P is the pressure of the gas in atm (P = 0.995 atm).

V is the volume of the gas in L (V = 45.0 L).

n is the no. of moles of the gas in mol (n = ??? mol).

is the general gas constant (R = 0.0821 L.atm/mol.K).

T is the temperature of the gas in K (T = 32.0° + 273 = 305.0 K).

∴ n = PV/RT = (0.0995 atm)(45.0 L)/(0.0821 L.atm/mol.K)(305.0 K) = 1.79 mol.

Using cross multiplication:

1 mol of CaH₂(s) produces → 2 mol of H₂(g), from stichiometry.

??? mol of CaH₂(s) produces → 1.79 mol of H₂(g).

∴ no. of moles of CaH₂(s) needed = (1 mol)(1.79 mol)/(2 mol) = 0.895 mol.

Now, we can get the mass of CaH₂ are needed:

∴ mass of CaH₂ = (no. of moles)(molar mass of CaH₂) = (0.895 mol)(42.094 g/mol) = 37.67 g.

Final answer:

Approximately 37.5 grams of Calcium Hydride (CaH2) are needed to produce 45.0 L of Hydrogen gas at a pressure of 0.995 atm and a temperature of 32 °C.

Explanation:

The subject of this question is the calculation of the mass of Calcium Hydride (CaH2) required to generate a specific volume of Hydrogen gas (H2) under certain conditions. According to the ideal gas law, PV = nRT, we can find the number of moles of hydrogen (n) needed. Given P=0.995 atm, V=45.0 L, R=0.0821 (the ideal gas constant in terms of atm, L, mol, K), and T = 32°C = 305.15 K, n = (P*V)/(R*T) which gives approximately 1.78 moles of hydrogen.

From the balanced chemical equation, we know that 1 mole of CaH2 produces 2 moles of H2. Therefore, we need 0.89 moles of CaH2 to produce 1.78 moles of H2. Knowing that the molar mass of CaH2 is approximately 42.1 g/mole, the mass needed can be calculated as: mass = moles * molar mass = 0.89 moles * 42.1 g/mole = approx. 37.5 g. Hence, approx. 37.5 grams of CaH2 are needed to generate 45.0 L of H2 at a pressure of 0.995 atm and a temperature of 32 °C.

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If you have 35.0g of Na and 100.0g of Cl2, what is the maximum amount of NaCl that you can produce?


2Na + Cl2 → 2NaCl

57.7 g

165 g

75.8g

89.0 g
HELPP PLEASE

Answers

Answer:

89.0 g.

Explanation:

The balanced chemical equation between CuO and HCl is:

2Na + Cl₂ → 2NaCl,

It is clear that 2 mol of Na react with 1 mol of Cl₂ to produce 2 mol of NaCl.

Firstly, we need to calculate the no. of moles of (35.0 g of Na) and (100.0 g Cl₂):

no. of moles of Na = mass/molar mass = (35.0 g)/(22.989 g/mol) = 1.522 mol.

no. of moles of Cl₂ = mass/molar mass = (100.0 g)/(70.906 g/mol) = 1.41 mol.

From the balanced equation: Na reacts with Cl₂ with (2: 1) molar ratio.

∴ 1.522 mol of Na "limiting reactant" reacts completely with 0.761 mol of Cl₂ "excess reactant".

To calculate the mass of the produced salt (CuCl₂):

2 mol of Na produces → 2 mol of NaCl, from stichiometry.

∴ 1.522 mol of Na produces → 1.522 mol of NaCl.

∴ The mass of the produced salt (NaCl) = (no. of moles)(molar mass) = (1.522 mol)(58.44 g/mol) = 88.95 g ≅ 89.0 g.

Final answer:

To find the maximum amount of NaCl produced from 35.0g of Na and 100.0g of Cl2, determine the limiting reactant and calculate the moles to find the answer of 75.8g.

Explanation:

To determine the maximum amount of NaCl that can be produced from 35.0g of Na and 100.0g of Cl2, you need to identify the limiting reactant in the reaction.

The molar mass of NaCl is 58.44g/mol, so we can calculate the moles of Na and Cl2 to see which one will run out first, limiting the amount of NaCl produced.

The maximum amount of NaCl that can be produced is 75.8g.

__________ is the most widely used method of formally measuring public opinion.
A. Face-to-face interviewing
B. Polling
C. The census
D. Democratic elections

Answers

Answer:

B. Polling is the most widely used method of formally measuring public opinion.

Answer:

B. Polling

Explanation:

The most widely sued method to obtain data without any time lag or any sort of problem and the privacy of the respondents are considered accordingly. The public opinion cannot take face to face thus this method is most suitable for large masses. It helps to gather data quickly is cost-effective and does not allow much biasness. Polling can be done on any subject any topic.

what is 2 million divided by 8

Answers

Answer:

use a calculator please

Answer:

250,000

Explanation:

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