Answer how many moles of sodium will react with 2.6l of cl2 gas at 1.15 atm

Answers

Answer 1
The chemical equation for the reaction is ,

                                      2 Na  +  Cl₂     →     2 NaCl

Before applying stoichiometry, first you will have to find the moles of Cl₂ at given conditions using Ideal gas equation.

                                        n  =  P V / R T

As, temperature is not given, so put standard Temperature i.e. 273 K, or if you are provided with it simply put its value So,

               n  =  (1.15 atm × 2.6 L) ÷ (0.0821 atm.L.mol⁻¹.K⁻¹ × 273 K)

               n  =  0.133 mol of Cl
Now,
According to Balance equation,

                          1 mole Cl₂ required  =  2 moles of Na
So,
                 0.133 mol Cl₂ will require  =  X moles of Na

Solving for X,
                             X  =  (0.133 mol × 2 mol) ÷ 1 mol

                             X  =  0.266 moles of Na

Related Questions

In an ionic bond:
A. The atoms swap electrons.
B. Both atoms share their electrons.
C. The atoms attract each other but their electrons do not interact.
D. One atom accepts electrons from another.

Answers

Correct answer is 
D. One atom accepts electrons from another.

Answer:

One atom accepts electrons from another.

Explanation:

Answer via Educere/ Founder's Education

What volume of so2 is produced at 325 k and 1.35 atm when 15.0 grams of hcl reacts with excess k2so3?

Answers

The volume of SO2 produced at 325k   is calculated as  below

calculate  the moles of SO2 produced  which  is calculated as follows

write the  reacting equation
K2SO3 +2 HCl = 2KCl +H2O+ SO2

find the   moles  of  HCl  used
=mass/molar mass = 15g/ 36.5 g/mol =0.411 moles

by  use of mole ratio between  HCl to  SO2  which is  2:1 the moles of SO2 is therefore = 0.411 /2 =0.206  moles  of SO2

use the idea  gas  equation  to calculate the volume SO2
that is V=nRT/P  
where  n=0.206  moles
          R(gas constant) = 0.082 L.atm/ mol.k
         T=325 K
          P=1.35 atm

V=(0.206 moles x  0.082 L.atm/mol.k x325 k)/1.35 atm = 4.07 L of SO2

The volume of SO₂ produced at 325k   is calculated as below

calculate the moles of SO₂ produced  which  is calculated as follows

write the  reacting equation

K₂SO₃ +2 HCl = 2KCl +H₂O+ SO₂

find the moles of HCl used=mass/molar mass = 15g/ 36.5 g/mol =0.411 moles

by use of the mole ratio between HCl to SO₂  which is 2:1 the moles of SO₂ is, therefore, = 0.411 /2 =0.206 moles of SO2

use the ideal gas equation to calculate the volume SO₂

that is V=nRT/P  

where  n=0.206  moles

R(gas constant) = 0.082 L.atm/ mol.k

T=325 K

P=1.35 atm

V=(0.206 moles x  0.082 L.atm/mol.k x325 k)/1.35 atm = 4.07 L of SO₂

What is the ph of a 0.45 m solution of aniline (c6h5nh2)? (pkb  9.40)?

Answers

Final answer:

The pH of a 0.45 M solution of aniline (C6H5NH2) is 9.4.

Explanation:

The pH of a 0.45 M solution of aniline (C6H5NH2) can be calculated using the given pKb value of 9.40.

To find the pH, we need to find the pOH first using the pKb value:

pOH = 14 - pKb = 14 - 9.40 = 4.6

Then, we can use the equation pH + pOH = 14 to find the pH:

pH = 14 - pOH = 14 - 4.6 = 9.4

Therefore, the pH of the solution is 9.4.

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Final answer:

The pH of a 0.45 M solution of aniline, given that its pKb is 9.40, is calculated to be approximately 10.99 after taking into account the equilibrium constant Kb for aniline and the concentration of OH- ions introduced on the ionization of aniline.

Explanation:

To calculate the pH of a 0.45 M solution of aniline (C6H5NH2), we need to take into account its pKb value, 9.40. Aniline is a weak base, and we can use the formula pOH = pKb - log[(base)/(acid)]. First, we have to calculate the equilibrium constant Kb for aniline which is Kw/Ka = 10^-14 / Ka. We know Ka equals 10^-5.6, hence Kb for aniline = 10^-14 / 10^-5.6 = 4.3 × 10^-10.

Next, using an approximation approach and the ICE table, we calculate the concentration of OH- introduced by aniline when it ionizes, and find it to be roughly 9.7 × 10-4 M. The pOH of the solution is then -log(9.7 × 10-4) which equals 3.01. To get the pH, we subtract this from 14 (since pH + pOH = 14), yielding a pH for the solution of approximately 10.99.

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which city would most likely be the epicenter of an earthquake : san francisco, california, st. paul, minnesota,

Answers

it would be San Francisco because it is directly on the epicenter

Which one of the following compounds is not covalent?

A. HCI
B. S2CI2
C. KCI
D. SCI2


(P.S. The answer turned out to be C. KCI)

Answers

KCI is not a covalent compound, it is an ionic compound. 
A covalent compound is one in which each of the atoms involved contribute a specific number of electrons for sharing in order to from stable compound while an ionic compound is a compound formed when one atom donates electron to the other atom in the compound, in order to attain stability.  The compounds given in options A, B and D shared electrons while in KCl, potassium donates an electron to chlorine.

Answer:

KCl

Explanation:

Hello,

Potassium chloride is well-known as an ionic compound owing to the shown-below greater-than-1.7 difference between the electronegativities of potassium and chlorine:

[tex]\Delta E=E_{Cl}-E_K=3.16-0.82\\\Delta E=2.34[/tex]

This is by cause of the fact that such compounds that have a difference in the constituent elements' electronegativities greater than 1.7 are considered as ionic.

Best regards.

Which of the following classes of organic compounds has COOH as the functional group

Alkane
Carboxylic acid
Aldehyde
Ether

Answers

-COOH as the functional group has class of carboxylic acids.

Carboxylic acid is an organic compound that has COOH as the functional group.

What are functional groups?

Functional group is defined as a substituent or group of toms or an atom which causes chemical reactions.Each functional group will react similarly regardless to the parent carbon chain to which it is attached.This helps in prediction of chemical reactions.

The reactivity of functional group can be enhanced by making modifications in the functional group .Atoms present in functional groups are linked to each other by means of covalent bonds.They are named along with organic compounds according to IUPAC nomenclature.

Functional group inter conversion is also possible by retro -synthesis.In some cases , functional groups can be charged molecules.

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How many neutrons must an 5626fe nucleus capture to generate the unstable intermediate [7326fe] according to the equation: 5626fe+ ? 10n→[7326fe]?

Answers

₂₆⁵⁶Fe has 26 as the atomic number and 56 as mass number.
Mass number = number of protons + number of neutrons.
Since, atomic number = number of protons = 26,
number of neutrons = 56 - 26 = 30

Likewise,₂₆⁷³ Fe has 26 protons and 73 mass.
Hence the number of neutrons = 73 - 26 = 47

Hence, gained neutrons = 47 - 30 = 17

Hence, the equation should be,
₂₆⁵⁶Fe + 17n → ₂₆⁷³ Fe 

What is the total charge of the thorium nucleus? (the neutral thorium atom has 90 electrons.)?

Answers

I believe it would have a positive charge of 90 then because if the atom is neutral then the protons must be the same number of electrons and neutrons are neutral so they don’t produce a charge. Therefore the nucleus would have a 90+ charge.

The total charge of the thorium nucleus is 1.44 ×  10⁻¹⁷ C.The net electric charge on an ion is similar to the number of protons in the ion less the number of electrons.

What do you mean by the total charge ?

The net electric charge on an ion is equal to the number of protons in the ion less the number of electrons. The electric charge on a proton is equal in magnitude to the charge on an electron.

When an atom has an equal amount of protons and electrons, it also has an equal number of positive and negative electric charges (the protons). The atom is referred to as neutral since its overall electric charge is zero.

Total Charge of Thorium Nucleus

= 90 × Charge of 1 electron

Q = 90 × 1.6 × 10⁻¹⁹ C

Q = 1.44 ×  10⁻¹⁷ C

Thus,  1.44 ×  10⁻¹⁷ C is the total charge of the thorium nucleus is 1.44 ×  10⁻¹⁷ C.

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What type of bond would occur between carbon (C) and nitrogen (N)?
A. Metallic bond
B. Ionic bond
C. Paired bond
D. Covalent bond

Answers

Nitrogen and carbon are nonmetals , so D. Covalent bond

The ka of hf is 6.8 x 10-4. what is the ph of a 0.35 m solution of hf?

Answers

when the reaction equation is:

HF ↔ H+   +   F-

and when the Ka expression
= concentration of products/concentration of reactions

so, Ka = [H+][F-]/[HF]

when we assume:

[H+] = [F-] = X

and [HF] = 0.35 - X

So, by substitution:

6.8 x 10^-4 = X^2 / (0.35 - X) by solving for X

∴ X = 0.015 M

∴[H+] = X = 0.015

when PH = -㏒[H+]

∴PH = -㏒0.015

        = 1.8

Calcium carbonate reacts with hydrobromic acid to form calcium bromide, carbon dioxide, and water according to the reaction below. what is the molarity of the hydrobromic acid if 250.0 ml of it reacts with 5.64 grams of calcium carbonate?

Answers

the balanced equation for the above reaction is as follows
CaCO₃ + 2HBr ---> CaBr₂ + CO₂ + H₂O
stoichiometry of CaCO₃ to HBr is 1:2
number of moles of CaCO₃ reacted - 5.64 g / 100 g/mol = 0.0564 mol 
according to molar ratio
number of HBr moles - 0.0564 mol x 2 = 0.1128 mol 
number of HBr moles in 250.0 mL - 0.1128 mol
therefore number of HBr moles in 1000 mL - 0.1128 mol / 250.0 mL x 1000 mL = 0.4512 mol 
molarity of HBr - 0.4512 M

Sodium is produced by electrolysis of molten sodium chloride. what are the products at the anode and cathode, respectively?

Answers

Answer is: chlorine and sodium.

Molten sodium chloride is separeted::
2NaCl(l) → 2Na(l) + Cl₂(g), 
but first ionic bonds in this salt are separeted because of heat: 
NaCl(l) → Na⁺(l) + Cl⁻(l).

Reaction of reduction at cathode(-): Na⁺(l) + e⁻ → Na⁰(l) /×2.

2Na⁺(l) + 2e⁻ → 2Na(l)

Reaction of oxidation at anode(+): 2Cl⁻(l) → Cl₂(g) + 2e⁻.

The anode is positive and the cathode is negative.

Final answer:

In electrolysis of molten sodium chloride, sodium metal is produced at the negatively charged cathode and chlorine gas is produced at the positively charged anode.

Explanation:

The process of producing sodium via the electrolysis of molten sodium chloride involves a Downs cell. In this setup, sodium ions migrate to the negatively charged cathode, pick up electrons, and are reduced to sodium metal. Chloride ions, meanwhile, migrate to the positively charged anode, lose electrons, and undergo oxidation to form chlorine gas. Therefore, at the cathode, the product is sodium metal and at the anode it is chlorine gas.

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How many liters of 1.2M solution can be prepared with 0.50 moles of C6H12O6

Answers

Final answer:

The volume of a 1.2M glucose solution that can be prepared with 0.50 moles of C6H12O6 is approximately 0.417 liters (417 mL).

Explanation:

To determine how many liters of a 1.2M solution can be prepared with 0.50 moles of C6H12O6 (glucose), we use the molarity equation M = n/V, where M is the molarity, n is the number of moles, and V is the volume in liters. Rearranging the equation to solve for V, we get V = n/M.

Using the given values, we calculate the volume (V) as V = 0.50 moles / 1.2 mol/L = 0.4167 liters. Therefore, you can prepare approximately 0.417 liters (417 mL) of a 1.2M glucose solution using 0.50 moles of C6H12O6.

Given the reaction that occurs in an electrochemical cell: zn(s) + cuso4(aq) znso4(aq) + cu(s) during this reaction, the oxidation number of zn changes from

Answers

0 to +2 is the answer to this question

Answer : The correct answer is oxidation number of Zn changes from 0 to +2.

Oxidation number :

It is number given to an element when it undergoes oxidation by loosing electrons . Oxidation number is equal to number of electrons donated . It is generally represented as charge .

Oxidation number of any element in a compound can be calculated as :

(Total number of positive charge) + (total number of negative charge) = total charge on compound

Where : Total positive charge = No. of atom or polyatomic molecule * positive charge on it

Total negative charge = No. of atom or polyatomic molecule * negative charge on it

Total charge on compound = Charge lying on top of compound .

Following steps can be used to find change in oxidation number of Zn :

Step 1 ) : To find oxidation number of Zn ( reactant side ) :

On reactant side Zn is present in solid state or its elemental state . It is not attached to any other atom , hence it is neutral and isolated atom. So oxidation number on Zn(s) is 0 .

Step 2: To find oxidation number of Zn in ZnSO₄ (aq)

ZnSO₄(aq) is ionic compound compound . It has two ions in it, Zn and SO₄ . Also it is a neutral compound means it has zero charge on it .

SO₄ is sulfate which has -2 charge or oxidation number on it (image attached )and there is one molecule of SO₄ ion . There is one atom of Zn which has unknown charge or oxidation number (x) .

To calculate oxidation number on Zn ion , plug values in above formula :

(No of Zn atom * charge on it ) + (No of SO₄ molecule * charge on it ) = Total charge on ZnSO₄

( 1* charge on Zn ) + ( 1* -2 ) = 0

Charge on Zn + (-2) = 0

Charge on Zn = +2

On reactant side Zn(s) has Zero charge and on product side Zn in ZnSO₄(aq) has +2 charge .

Hence the charge in oxidation number of Zn is from 0 to +2 .


An excited state of a particular atom has a mean lifetime of 6.2×10−10 s , which we may take as the uncertainty δt.

Answers

According to Heisenberg's Uncertainty Principle,
ΔE×Δt ≥  h/(4π)
where h = planck's constant = 6.63 × [tex] 10^{-34} [/tex] J.s

Hence, ΔE ≥ [tex] \frac{h}{4.pi.delta(t)} [/tex] = [tex] \frac{6.63X 10^{-34} }{4X3.142X6.2X 10^{-10}} [/tex]
∴, ΔE ≥ 8.5086 X [tex] 10^{-26} [/tex] J
 

what is the efficiency of a lawn mower's engine when the heat input is 1,000 joules and the waste heat is 750 joules

Answers

The answer would be 25%
Hope that helps

Answer:

25%

Explanation:

Efficiency of an engine is calculated by dividing the energy output over the energy input and expressing that as a percentage.  

Efficiency = [tex]\frac{energy output}{energy input}[/tex] x 100%

Given,  

Heat input = 1000 J  

Heat wasted = 750 J

Heat used = 1000 J – 750 J = 250 J  

Efficiency = [tex]\frac{250 J }{1000 J}[/tex] x 100% = 25%

How many atoms are present in 0.10mol of ptcl2 (nh3)2?

Answers

Final answer:

To find the number of atoms in 0.10 mol of PtCl₂(NH₃)₂, calculate the total atoms per molecule (11 atoms) and multiply by Avogadro's number and the moles given, resulting in 6.622 x 10²² atoms.

Explanation:

The subject of the question is determining the number of atoms in a given quantity of a compound, in this case, the compound is PtCl₂(NH₃)₂. To calculate the number of atoms in 0.10 mol of PtCl₂(NH₃)₂, we have to first identify the number of each type of atom within one molecule of the compound. There is 1 platinum (Pt) atom, 2 chlorine (Cl) atoms, and 2 ammonia (NH₃) molecules, which equates to 2 nitrogen (N) atoms and 6 hydrogen (H) atoms. In total, one molecule of the compound contains 1 + 2 + 2 + 6 = 11 atoms.

To find the total number of atoms in 0.10 mol, you multiply the number of atoms in one molecule by Avogadro's number (6.022 x 10²³ atoms/mole), which provides the number of atoms in one mole. Therefore, 0.10 mol of this compound will contain (11 atoms/molecule) x (6.022 x 10²³ atoms/mole) x 0.10 mol = 6.622 x 10²² atoms.

What is the concentration, in mass percent, of a solution prepared from 50.0 g nacl and 150.0 g of water?

Answers

concentration as a mass percentage is the percentage of mass of solute from the whole mass of the mixture
whole mass of the mixture - 50.0 g + 150.0 g = 200.0 g 
mass of solute - 50.0 g 
mass percentage = mass of NaCl / mass of total mixture x 100% 
w/w % = 50.0 g / 200.0 g x 100 % = 25 %
mass percentage of NaCl is 25 %

a waxing moon means the moon is becoming a waht

Answers

the moon at any time after new moon and before full moon, so called because its illuminated area is increasing. ... It was a cold October evening, with a waxing moon, and a wind that was rapidly bringing the dead leaves to earth.

A waxing moon means that the moon is increasing in the illuminated portion visible from Earth, growing each day from a new moon to a full moon. In contrast, the waning moon is decreasing in illumination following the full moon.

A waxing moon indicates that the moon is increasing or growing larger. This occurs during the portion of the lunar cycle from the new moon to the full moon. As the moon waxes, the lighted portion that is visible from Earth gets larger each day. For example, during the waxing gibbous phase, more than half but less than all of the moon's near side is illuminated, and it keeps growing until it is a full moon.

In contrast, a waning moon is one that is decreasing or growing smaller, which happens during the portion of the lunar cycle when the lighted portion seen from Earth gets smaller each day after the full moon. Notably, the waxing and waning periods of the lunar cycle each last about 14.8 days within the roughly 29.5-day lunar month.

the Temperature of a sample of an ideal gas in a sealed 5.0 l container is raised from 27 oC to 77oC. If the initial pressure of the gas was 3.0 atm, what is the final pressure?

Answers

Answer:
              The pressure increases to 3.5 atm.

Solution:
                According to Gay-Lussac's Law, " At constant volume and mass the pressure of gas is directly proportional to the applied temperature".

For initial and final states of a gas the equation is,

                                           P₁ / T₁  =  P₂ / T₂
Solving for P₂,
                                           P₂  =  P₁ T₂ / T₁    ----- (1)

Data Given;
                   P₁  =  3 atm

                   T₁  =  27 °C + 273  =  300 K
 
                   T₂  =  77 °C + 273  =  350 K

Putting values in eq. 1,

                                           P₂  =  (3 atm × 350 K) ÷ 300 K

                                           P₂  =  3.5 atm

Which of the following are indicators of a chemical change? Select all that apply. color change temperature change precipitate formation gas formation cutting a solid into smaller pieces

Answers

Indicators of a chemical change:
1.color change
 2.temperature change
3. precipitate formation
4.gas formation 

Answer: color change , temperature change, precipitate formation,  gas formation

Explanation:

A physical change is defined as the change in which shape, size of the atoms change. No new substance gets formed in these reactions.

Example: cutting a solid into smaller pieces

A chemical change is defined as the change in which change in chemical composition of atoms takes place. A new substance is formed in these reactions.

Characteristics of chemical reaction:

1. Change in color

2. Formation of precipitate

3. Energy is lost or absorbed

A small 23 kilogram canoe is floating downriver at a speed of 1 m/s. What is the canoe's kinetic energy?

Answers

1/2mv^2
We substitute in the equation above .
1/2•(23)•(1)^2

PLEASE HELP NOW!!!!!!!
What is the number of moles hydrogen produced when 6 moles of sodium are used?

2Na + 2H2O -> 2NaOH + H2

Answers

the  number of moles hydrogen produced when 6 moles of sodium are used is calculated  as below

2Na + 2H2O = 2NaOH  +H2

by use of mole ratio between Na to H2 which is 2:1 the moles of H2 is therefore

= 6 x1/2 = 3  moles of H2

You make a solution by putting 45.6g of iron lll carbonate into 167ml of water. What is it's molarity?

You also need 25ml of a .672M Nickel ll hydroxide solution. Explain how to make that.

Now write the balanced equation that occurs when you put these two reactants together. The molarity of the iron product will be .05 and the molarity of the nickel product will be 1.45. At equilibrium, what will be favored?

Answers

1. The molar mass of Fe2(CO3)3 is 291.72 g/mol. This means that 45.6 g is equivalent to 0.156 mol. Dividing by the 0.167 L of water gives a solution of 0.936 M.
2. Multiplying (0.672 M)(0.025 L) = 0.0168 mol. The molar mass of Ni(OH)2 is 92.71 g/mol, so multiplying by 0.0168 mol = 1.56 grams. Therefore you would need to dissolved 1.56 g of Ni(OH)2 into 25 mL of water.
3. Fe2(CO3)3 + Ni(OH)2 --> Fe(OH)3 + NiCO3Balancing: Fe2(CO3)3 + 3Ni(OH)2 --> 2Fe(OH)3 + 3NiCO3The reaction quotient is:[Fe(OH)3]^2 * [NiCO3]^3 / [Fe2(CO3)3][Ni(OH)2]^3= (0.05)^2 * (1.45)^3 / (0.936)(0.672)^3= 0.0268Since this is < 1, it implies that the reactants are favored at equilibrium.

PLZ HELP ASAP IWILL GIVE BRAINLIEST coastline on Earth experienced a high tide at 6 a.m. At what approximate time will the next low tide occur, and why?

6 p.m., because the coastline will turn 90 degrees from the moon
6 p.m., because the coastline will turn 180 degrees from the moon
12 noon, because the coastline will turn 90 degrees from the moon
12 noon, because the coastline will turn 180 degrees from the moon

Answers

When the Earth experienced a high tide at 6 a.m, the approximate time will the next low tide occur will be C. 12 noon, because the coastline will turn 90 degrees from the moon.

How to explain the tide?

It should be noted that all around the world, the water is rising and falling at a point. When, it rises, it's known a a high tide.

In this case, when it falls, it's know a a slow tide. The low tide occurs on every 12 hours which is 6 hours after the high tides. Therefore, the correct option is C.

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The next low tide will occur at 12 Noon, because the coastline will turn 90 degrees from the moon.

Explanation:

All around the world, along the coastlines, it can be noticed that everyday the water is rising at some points, and then it is retracting at some points. When the water rises it is called a high tide, while when the water is retracting it is called low tide. Both of these tides occur twice every day.

In this case, we have a high tide occurring at 6 AM, meaning that the other high tide will occur at 6 PM, when the moon circles by 180 degrees from the coastline. The low tide also occurs on every 12 hours, which occurs roughly 6 hours after the high tides, so in this case the low tides will occur at 12 Noon and at 12 Midnight. There are variations among the tides, depending on the relative position of the Earth, Moon, and Sun towards each other, some being:

Label the following as either a homogenous mixture, heterogeneous mixture. element or compound.

1. Oxygen Gas
2. Carbon dioxide gas
3. peanut butter and Jelly sandwiches
4. Chicken broth
5. Silver nitrate
6. Salt water
7. Muddy water
8. Sprite
9. Platinum
10 14 k gold

Answers

1element
2compund
3heterogenous
4homogenous
5compound
6homogenous
7heterogenous
8heterogenous
9element
10element
Hope I helped! :D brainliest? 
Final answer:

The list includes elements (Oxygen Gas, Platinum), compounds (Carbon dioxide gas, Silver nitrate), homogeneous mixtures (Chicken broth, Salt water, Sprite), and heterogeneous mixtures (Peanut butter and Jelly sandwiches, Muddy water, 14 k gold).

Explanation:

Here are the classifications for each item listed:

Oxygen Gas - ElementCarbon dioxide gas - CompoundPeanut butter and Jelly sandwiches - Heterogeneous mixtureChicken broth - Homogeneous mixtureSilver nitrate - CompoundSalt water - Homogeneous mixtureMuddy water - Heterogeneous mixtureSprite - Homogeneous mixturePlatinum - Element14 k gold - Heterogeneous mixture

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An aqueous solution of glycerol, c3h8o3, is 48.0% glycerol by mass and has a density of 1.120 g ml-1. calculate the molality of the glycerol solution.

Answers

Answer is: the molality of the glycerol solution is 10.03 m.
V(solution) = 100 mL.
m(solution) = V(solution) · d(solution).
m(solution) = 100 mL ·1.120 g/mL.
m(solution) = 112 g.
m(glycerol) = ω(glycerol) · m(solution).
m(glycerol) = 0.48 · 112 g.
m(glycerol) = 53.76 g.
m(water) = 112 g - 53.76 g.
m(water) = 58.24 g ÷ 1000 g/kg = 0.05824 kg.
n(C₃H₈O₃) = m(C₃H₈O₃) ÷ M(C₃H₈O₃).
n(C₃H₈O₃) = 53.76 g ÷ 92 g/mol.
n(C₃H₈O₃) = 0.584 mol.
b(C₃H₈O₃) = n(C₃H₈O₃) ÷ m(H₂O).
b(C₃H₈O₃) = 0.584 mol ÷ 0.05824 kg.
m(C₃H₈O₃) = 10.027 mol/kg.

To calculate the molality of a 48.0% glycerol solution, take 48.0% of a 100g sample as glycerol (48.0g), find the moles of glycerol, and then divide by the mass of water in kilograms. The resulting molality of the solution is 10.02 mol/kg.

To calculate the molality of a glycerol solution that is 48.0% glycerol by mass with a density of 1.120 g/ml, we can follow these steps:

Determine the mass of glycerol and water in a given volume of the solution.

Convert the mass of glycerol to moles using its molar mass.

Calculate the molality using the definition that molality is moles of solute per kilogram of solvent (water).

Let's assume we have 100 grams of this solution to make the calculation straightforward. Since the solution is 48.0% glycerol by mass, we have 48.0 g of glycerol and 52.0 g of water. The molar mass of glycerol, C₃H₈O₃, is approximately 92.09 g/mol. Therefore, the moles of glycerol are calculated as:

48.0 g C₃H₈O₃ / 92.09 g/mol = 0.521 moles C₃H₈O₃

The mass of water needs to be in kilograms for the molality calculation:

52.0 g water * 1 kg/1000 g = 0.052 kg water

Finally, the molality of the glycerol solution can be calculated as:

0.521 moles C₃H₈O₃ / 0.052 kg water = 10.02 m

Now, to express the molality in the standard unit of mol/kg, we use the previously calculated values. Thus, the molality of the solution would be 10.02 mol/kg.

Identify the missing daughter nucleus in the β– emission decay of 106ru below.

Answers

β emission is an emission of an electron from the parent atom while converting a neutron into a proton. Hence, the formed daughter nucleus has the same number of mass but the atomic number is higher by 1 and number of neutrons is lower by one than the parent atom.

After a β⁻ emission of ¹⁰⁶Ru, the formed daughter nucleus should have 106 as mass number but (44 + 1) = 45 as the atomic number.  

Hence the daughter nucleus is Rh (Rhodium) which has 45 protons (atomic number).

Predict whether or not a precipitate forms upon mixing 175.0 ml of a 0.0055 mkcl solution with 145.0 ml of a 0.0015 m agno3 solution. identify the precipitate, if any.

Answers

there would be no precipitate unless there is an aqueous solution (aq) or water (w) identified in the question... I think. 

a substance with a higher specific heat will take more energy to raise its temperature ?

True or False

Answers

This is true, well done.

Answer:

True

Explanation:

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