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Lilit [14]
2 years ago
14

6. Calculate the pH of the 0.20 M NH3/0.20 M NH4Cl buffer. What is the pH of the buffer after the addition of 10.0 mL of 0.10 M

HCl to 65.0 mL of the buffer
Chemistry
2 answers:
Step2247 [10]2 years ago
4 0

Answer:

Check explanation

Explanation:

The addition of hydrochloric acid, HCl(a strong acid) to the buffer will cause a decease in pH. Although, this changes in PH will not be significant since the role of a buffer is to resist significant changes in pH that result from the addition of strong acid or strong bases.

Step one:

HCl + NH3 --------------> NH4^+ + Cl^- --------------------------------------------(1).

From the equation (1) of reaction above we can reduce that The reaction uses one mole of hydrochloric acid and one mole of ammonia.

10mL × 0.1M HCl= 1 mmols HCl.

65.0mL × 0.20 M= 13 mmols of NH3.

65.0mL × 0.20 M = 13 mmols NH4^+1

Hence, pH= pka + log(13/14).

pH= -6.3 + log 0.93.

pH= -6.3+ (-0.032).

pH= -6.332.

vredina [299]2 years ago
4 0

Answer:

The pH before adding HCl is 9.25

The pH after adding HCl is 9.18

Explanation:

Step 1: Data given

Molarity of NH3 = 0.20 M

Molarity of NH4Cl = 0.20

Step 2: Calculate pH of the buffer

pH = pKa + log ([NH3]/[NH4+])

pH = 9.25 + log (0.20/0.20)

pH = 9.25

What is the pH of the buffer after the addition of 10.0 mL of 0.10 M HCl to 65.0 mL of the buffer

Step 1: Calculate moles of HCl added

Moles HCl = 0.01 L * 0.10 M = 0.001 moles

Step 2: Calculate initial moles of NH3

moles of NH3  = 0.2 M * 0.065L = 0.013  moles

 Step 3: The balanced equation

HCl + NH3 → NH4Cl

Step 4: Calculate moles after addition of HCl

moles NH3 after HCl = 0.013 - 0.001 = 0.012 moles NH3

moles NH4 initially present = 0.2mol/L * 0.065L = 0.013 moles

moles NH4 after HCl = 0.013 + 0.001 = 0.014 moles NH4Cl

Step 5: Calculate molarity

Final volume = 10 ml + 65 ml = 75 ml = 0.075 L

Final [NH3] = 0.012 mol/0.075L = 0.16 M  

Final [NH4Cl] = 0.014mol/0.075L = 0.187 M

Step 6: Calculate pH

pH = pKa + log [NH3]/[NH4+] = 9.25 + log 0.16/0.187

pH = 9.18

The pH of the new solution is 9.18

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Nataliya [291]

Answer:

pH reducing agent for acidic soils

Explanation:

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3 0
2 years ago
What is the name of the functional group that is attached to this hydrocarbon? The first and last of a chain of three carbons ar
disa [49]

Answer:

Ketone

Explanation:

As you are stating here, we have a carbonated chain of three carbons, and the first and last has 3 Hydrogens, then this means that we have CH₃ . The center carbon is a carbon double bonded to oxygen.

In general terms this belongs to the carbonyl group. However, this alone does not represent a functional group, but when it's in a chain with other radycals or chains, it becomes a functional group.

In this case, the molecule you are talking here is the following:

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This molecule is known as the Acetone, and has the general form of:

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4 0
2 years ago
A 85.2 g copper bar was heated to 221.32 degrees Celsius and placed in a coffee cup calorimeter containing 4250 mL of water at 2
VLD [36.1K]

Answer:- 64015 J

Solution: There is 4250 mL of water in the calorimeter at 22.55 degree C.

density of water is 1 g per mL.

So, the mass of water = 4250mL(\frac{1g}{1mL})  = 4250 g

Final temperature of water after adding the hot copper bar to it is 26.15 degree C.

So, \Delta T for water = 26.15 - 22.55 = 3.60 degree C

Specific heat for water is 4.184 \frac{J}{g.^0C}

The heat gained by water is calculated by using the formula:

q=mc\Delta T

where, q is the heat energy, m is mass and c is specific heat.

Let's plug in the values in the formula and do the calculations:

q=4250g*\frac{4.184J}{g.^0C}*3.60^0C

q = 64015 J

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5 0
2 years ago
The standard free energy ( Δ G ∘ ′ ) (ΔG∘′) of the creatine kinase reaction is − 12.6 kJ ⋅ mol − 1 . −12.6 kJ⋅mol−1. The Δ G ΔG
Dmitrij [34]

Answer:

The concentration of [ADP] = 21.896*10^-6 μM

Explanation:

Given Data:

creatine + ATP -----------> ADP + creatine phosphate    

ΔG∘   = -12.6 KJ/mole  = -12600 J/mole

ΔG = -0.1 KJ/mole  =  -100 J/mole

[Creatine phosphate]  = 25 mM = 25*10^-3 M

[Creatine] = 17 mM    = 17*10^-3 M

[ATP]   =5mM = 5*10^-3M

Calculating the concentration of [ADP] using the formula;

ΔG = ΔG∘ + RTlnQc

Substituting, we have

-12600   = -100 + 8.314*298lnQc

-12600+100 = 8.314*298lnQc

-12500   = 2477.57lnQc

lnQc = -12500/2477.57

lnQc = -5.045

Qc = e^ -5.045

Qc   = 6.44*10^-3

But,

Qc    = [Creatine phosphate]*[ADP]/[creatine]*[ATP]

6.44*10^-3   = 25*10^-3*[ADP]/ (17*10^-3* 5*10^-3)

6.44*10^-3 = 25*10^-3[ADP]/8.5*10^-5

6.44*10^-3 * 8.5*10^-5 = 25*10^-3[ADP]

5.474*10^-7 = 25*10^-3[ADP]

[ADP] = 5.474*10^-7 /25*10^-3

          = 2.1896 *10^-5 M

          = 21.896*10^-6 μM

Therefore, the concentration of [ADP] = 21.896*10^-6 μM

3 0
2 years ago
The Lewis structure for CO2 has a central The Lewis structure for C O 2 has a central blank atom attached to blank atoms.
kirza4 [7]

Answer:

See the explanation

Explanation:

1) The Lewis structure for  CO_2 has a central Carbon<em> </em>atom attached to Oxygen atoms.

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2) These atoms are held together by <u>double bonds.</u>

<u></u>

Again in the structure of CO_2: O=C=O we only have double bonds.

3. Carbon dioxide has a Carbon dioxide has a <u>Linear</u> electron geometry.

Due to the double bonds we have to have a linear structure because in this geometry the atoms will be further apart from each other.

4. The carbon atom is <u>Sp</u> hybridized.

We will have for carbon 2 pi bonds, so we will have an <u>Sp</u> hybridization.

5. Carbon dioxide has two Carbon dioxide has two C(p) - O(p) π bonds and two C(sp) - O(Sp2) σ bonds.

(See figures)

Figure 1: Carbon hybridization

Figure 2: Oxygen hybridization

6 0
2 years ago
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