BREAKING NEWS

Breaking News - Career Updates
📢 Latest Job & Exam Updates — CareerInformationPortal.in 🔥 Punjab PSPCL JE Electrical Admit Card 2026 Out | July 31, 2026 🔗 Check Full Details     |     🏛️ Patna High Court Assistant Recruitment 2026: Online Form Started | Last Date: 27th August 2026 🔗 Apply / Check Details     |     🔬 UPSSSC Forensic Science Laboratory Recruitment 2026: Online Form | Last Date: 17th August 2026 🔗 Apply / Check Details     |     🏦 PNB Bank Local Bank Officer (LBO) Recruitment 2026: Online Form | Last Date: 9th August 2026 🔗 Apply / Check Details     |     📚 RSSB CET 12th Level Online Form 2026 Started: Apply Now | Last Date: 23rd July 2026 🔗 Apply / Check Details     |     ✨ Stay Updated – Bookmark for Daily Sarkari Naukri Alerts. 🙏 🔗 https://www.careerinformationportal.in/

Website Search

SELF STUDY

SELF STUDY
SELF STUDY

CAREER JOB

JOB CAREER HUB
For ALL GOVT& PRIVATE JOBS

APNA CAREER

Translate

Sunday, August 16, 2026

Determine the molarity of a solution prepared by dissolving 5.0 g of NaOH in 450 mL of solution.

1. Determine the molarity of a solution prepared by dissolving 5.0 g of NaOH in 450 mL of solution. 1. 450 mL विलयन में 5.0 g NaOH घोलकर बनाए गए विलयन की मोलरता ज्ञात कीजिए। +
Given Data
Mass of NaOH = 5.0 g
Volume of solution = 450 mL
Molar mass of NaOH = 40 g mol−1
Formula
M = n / V
Where:

M = Molarity
n = Number of moles of solute
V = Volume of solution in litres
Step 1: Calculate Moles of NaOH
Number of moles:

n = Mass / Molar Mass

n = 5.0 / 40

n = 0.125 mol
Step 2: Convert Volume into Litres
Given volume = 450 mL

Since:
1000 mL = 1 L

Therefore:

V = 450 / 1000

V = 0.450 L
Step 3: Calculate Molarity
Using:

M = n / V

M = 0.125 / 0.450

M = 0.2778 mol L−1
Final Answer
The molarity of the NaOH solution is approximately 0.278 M.
Quick Method
M = (Mass × 1000) / (Molar Mass × Volume in mL)
Substituting:

M = (5.0 × 1000) / (40 × 450)

M = 0.278 M
Concept
Molarity is the number of moles of solute present in one litre of solution. Therefore, the volume must always be converted from mL to L before using the formula M = n/V.
दिया गया है
NaOH का द्रव्यमान = 5.0 g
विलयन का आयतन = 450 mL
NaOH का मोलर द्रव्यमान = 40 g mol−1
सूत्र
M = n / V
जहाँ:

M = मोलरता
n = विलेय के मोलों की संख्या
V = विलयन का आयतन लीटर में
चरण 1: NaOH के मोल ज्ञात कीजिए
मोलों की संख्या:

n = द्रव्यमान / मोलर द्रव्यमान

n = 5.0 / 40

n = 0.125 mol
चरण 2: आयतन को लीटर में बदलें
दिया गया आयतन = 450 mL

हम जानते हैं:
1000 mL = 1 L

इसलिए:

V = 450 / 1000

V = 0.450 L
चरण 3: मोलरता ज्ञात कीजिए
सूत्र:

M = n / V

M = 0.125 / 0.450

M = 0.2778 mol L−1
अंतिम उत्तर
NaOH विलयन की मोलरता लगभग 0.278 M है।
सीधी विधि
M = (द्रव्यमान × 1000) / (मोलर द्रव्यमान × आयतन mL में)
मान रखने पर:

M = (5.0 × 1000) / (40 × 450)

M = 0.278 M
Concept
मोलरता वह संख्या है जो बताती है कि एक लीटर विलयन में विलेय के कितने मोल उपस्थित हैं। इसलिए M = n/V सूत्र में आयतन को लीटर में लेना आवश्यक है।
Advertisement
30 Related MCQs 30 संबंधित MCQs
1. The molar mass of NaOH is:
A. 23 g mol−1
B. 40 g mol−1
C. 58.5 g mol−1
D. 18 g mol−1
Answer: B. 40 g mol−1
2. The number of moles present in 5.0 g NaOH is:
A. 0.025 mol
B. 0.125 mol
C. 0.25 mol
D. 1.25 mol
Answer: B. 0.125 mol
3. 450 mL is equal to:
A. 4.50 L
B. 0.045 L
C. 0.450 L
D. 45.0 L
Answer: C. 0.450 L
4. The formula for molarity is:
A. M = V/n
B. M = n/V
C. M = n × V
D. M = V × mass
Answer: B. M = n/V
5. The molarity of the given NaOH solution is approximately:
A. 0.028 M
B. 0.278 M
C. 2.78 M
D. 27.8 M
Answer: B. 0.278 M
6. Molarity is expressed in:
A. mol kg−1
B. mol L−1
C. g L−1 only
D. kg mol−1
Answer: B. mol L−1
7. Before calculating molarity, 450 mL should be converted into:
A. kg
B. g
C. L
D. mol
Answer: C. L
8. One mole of NaOH has a mass of:
A. 20 g
B. 30 g
C. 40 g
D. 80 g
Answer: C. 40 g
9. The atomic mass of sodium is approximately:
A. 12
B. 23
C. 35.5
D. 40
Answer: B. 23
10. The molecular mass contribution of oxygen in NaOH is:
A. 1
B. 16
C. 23
D. 40
Answer: B. 16
11. The mass contribution of hydrogen in NaOH is:
A. 1
B. 8
C. 16
D. 23
Answer: A. 1
12. If the volume of a solution increases while moles remain constant, molarity:
A. Increases
B. Decreases
C. Becomes zero immediately
D. Remains necessarily constant
Answer: B. Decreases
13. If the amount of solute increases while volume remains constant, molarity:
A. Increases
B. Decreases
C. Remains unchanged
D. Becomes zero
Answer: A. Increases
14. Which quantity is used in the numerator of the molarity formula?
A. Volume
B. Moles
C. Density
D. Temperature
Answer: B. Moles
15. Which quantity is used in the denominator of M = n/V?
A. Mass
B. Moles
C. Volume in litres
D. Molar mass
Answer: C. Volume in litres
16. 1 L is equal to:
A. 10 mL
B. 100 mL
C. 500 mL
D. 1000 mL
Answer: D. 1000 mL
17. If 0.125 mol NaOH is present in 0.450 L solution, its molarity is:
A. 0.0278 M
B. 0.278 M
C. 2.78 M
D. 27.8 M
Answer: B. 0.278 M
18. Molarity is based on the volume of:
A. Solvent only
B. Solution
C. Solute only
D. Container
Answer: B. Solution
19. The unit mol L−1 can also be written as:
A. M
B. m
C. N only
D. kg
Answer: A. M
20. A 1 M solution contains:
A. 1 mole solute per litre solution
B. 1 gram solute per litre
C. 1 mole solvent per litre
D. 1 kg solute per litre
Answer: A. 1 mole solute per litre solution
21. Which formula can directly calculate molarity from mass?
A. M = mass × molar mass / volume
B. M = mass / (molar mass × volume in L)
C. M = volume / mass
D. M = molar mass / mass
Answer: B. M = mass / (molar mass × volume in L)
22. The given solution contains 0.125 mol NaOH. This quantity represents:
A. Mass
B. Number of moles
C. Volume
D. Density
Answer: B. Number of moles
23. If the same 5 g NaOH were dissolved to make 1 L solution, the molarity would be:
A. 0.0125 M
B. 0.125 M
C. 1.25 M
D. 12.5 M
Answer: B. 0.125 M
24. If the same 5 g NaOH were dissolved to make 0.225 L solution, the molarity would be:
A. 0.278 M
B. 0.556 M
C. 1.11 M
D. 2.22 M
Answer: B. 0.556 M
25. Molarity changes with temperature mainly because:
A. Number of atoms changes
B. Volume of solution may change
C. Molar mass changes
D. Atomic number changes
Answer: B. Volume of solution may change
26. Which is NOT needed directly to calculate molarity from mass?
A. Mass of solute
B. Molar mass
C. Volume of solution
D. Atomic number of solvent
Answer: D. Atomic number of solvent
27. The molarity calculated for the given solution to three significant figures is:
A. 0.278 M
B. 0.28 M
C. 2.78 M
D. 27.8 M
Answer: A. 0.278 M
28. In a dilution process, if moles remain constant and volume increases, concentration:
A. Increases
B. Decreases
C. Becomes infinite
D. Always remains unchanged
Answer: B. Decreases
29. The value 0.278 M means approximately:
A. 0.278 mol NaOH per litre solution
B. 0.278 g NaOH per litre
C. 2.78 mol NaOH per litre
D. 278 mol NaOH per litre
Answer: A. 0.278 mol NaOH per litre solution
30. The correct final answer for the given problem is:
A. 0.0278 M
B. 0.278 M
C. 2.78 M
D. 27.8 M
Answer: B. 0.278 M
Advertisement

How does the Henry’s Law constant (KH​) relate to the solubility of a gas in a liquid?

1. How does the Henry’s Law constant (KH) relate to the solubility of a gas in a liquid? 1. हेनरी के नियम नियतांक (KH) का किसी द्रव में गैस की विलेयता से क्या संबंध है? +
Detailed Answer
The Henry’s Law constant (KH) expresses the relationship between the partial pressure of a gas above a liquid and the amount of that gas dissolved in the liquid at a particular temperature.
P = KHx
Where:

P = partial pressure of the gas
KH = Henry’s Law constant
x = mole fraction of the dissolved gas
Relation with Solubility
From the equation:

P = KHx

we get:
x = P / KH
At constant pressure, the solubility of the gas is inversely proportional to KH.

Therefore:

Higher KH → Lower solubility
Lower KH → Higher solubility
KH ↑ → Solubility ↓

KH ↓ → Solubility ↑
Why?
If KH is large, a greater gas pressure is required to maintain the same dissolved concentration. Hence, the gas has a lower tendency to remain dissolved in the liquid.

If KH is small, a relatively small pressure can maintain a larger amount of dissolved gas. Thus, the gas is more soluble.
Example
Consider two gases at the same temperature:

Gas A: KH = 20 atm
Gas B: KH = 50 atm

At the same pressure, Gas A will have greater solubility because its KH value is smaller.
Effect of Temperature
For most gases, solubility decreases as temperature increases. In the convention P = KHx, KH generally increases with temperature.
Temperature ↑ → KH ↑ → Solubility ↓
Important Note
Different textbooks may use different definitions of Henry’s Law constant. For example, if the equation is written as:

C = kP

then a larger value of k means greater solubility. Therefore, always check the equation used to define the constant before interpreting its numerical value.
Final Answer
For the convention P = KHx, Henry’s Law constant is inversely related to the solubility of a gas. At constant pressure, x = P/KH. Therefore, a higher KH means lower gas solubility, while a lower KH means higher gas solubility.
विस्तृत उत्तर
Henry’s Law constant (KH) गैस के आंशिक दाब और द्रव में घुली हुई गैस की मात्रा के बीच संबंध बताता है। यह संबंध एक निश्चित तापमान पर लागू होता है।
P = KHx
जहाँ:

P = गैस का आंशिक दाब
KH = Henry’s Law constant
x = द्रव में घुली गैस का mole fraction
विलेयता से संबंध
समीकरण:

P = KHx

से:
x = P / KH
स्थिर दाब पर गैस की विलेयता KH के व्युत्क्रमानुपाती होती है।

अर्थात:

अधिक KH → कम विलेयता
कम KH → अधिक विलेयता
KH ↑ → विलेयता ↓

KH ↓ → विलेयता ↑
ऐसा क्यों होता है?
यदि KH का मान अधिक है, तो समान मात्रा में गैस को द्रव में घुलाए रखने के लिए अधिक गैस दाब की आवश्यकता होती है। इसलिए गैस की द्रव में विलेयता कम होती है।

यदि KH का मान कम है, तो कम दाब पर भी अधिक गैस द्रव में घुली रह सकती है। इसलिए गैस अधिक soluble होती है।
उदाहरण
समान तापमान पर:

Gas A: KH = 20 atm
Gas B: KH = 50 atm

समान pressure पर Gas A की विलेयता अधिक होगी क्योंकि उसका KH कम है।
तापमान का प्रभाव
अधिकांश गैसों की विलेयता तापमान बढ़ने पर कम होती है। P = KHx वाले convention में तापमान बढ़ने पर सामान्यतः KH बढ़ता है।
तापमान ↑ → KH ↑ → गैस की विलेयता ↓
महत्वपूर्ण नोट
अलग-अलग पुस्तकों में Henry’s Law constant को अलग-अलग तरीके से define किया जा सकता है।

उदाहरण:

C = kP

इस convention में k का अधिक मान अधिक gas solubility को दर्शाता है। इसलिए numerical question में पहले यह देखना आवश्यक है कि KH किस equation द्वारा define किया गया है।
अंतिम उत्तर
P = KHx वाले convention में Henry’s Law constant गैस की विलेयता के व्युत्क्रमानुपाती होता है। स्थिर दाब पर x = P/KH होता है। इसलिए अधिक KH का अर्थ कम गैस विलेयता तथा कम KH का अर्थ अधिक गैस विलेयता है।
Advertisement
30 Related MCQs 30 संबंधित MCQs
1. Henry’s Law constant is represented by:
A. KH
B. Ka
C. Kb
D. Kw
Answer: A. KH
2. In P = KHx, x represents:
A. Pressure
B. Mole fraction of dissolved gas
C. Temperature
D. Volume
Answer: B. Mole fraction of dissolved gas
3. From P = KHx, x is:
A. P/KH
B. PKH
C. KH/P
D. P + KH
Answer: A. P/KH
4. At constant pressure, increasing KH causes solubility to:
A. Increase
B. Decrease
C. Remain constant
D. Become infinite
Answer: B. Decrease
5. At constant pressure, decreasing KH causes solubility to:
A. Increase
B. Decrease
C. Become zero
D. Remain unchanged
Answer: A. Increase
6. In P = KHx, KH and solubility are:
A. Directly related
B. Inversely related
C. Always equal
D. Unrelated
Answer: B. Inversely related
7. A gas with lower KH is generally:
A. More soluble
B. Less soluble
C. Insoluble
D. Solid
Answer: A. More soluble
8. A gas with higher KH requires what for the same dissolved concentration?
A. Higher pressure
B. Lower pressure
C. Zero pressure
D. No pressure
Answer: A. Higher pressure
9. Henry’s Law connects gas solubility with:
A. Partial pressure
B. Atomic radius
C. Ionisation energy
D. Electronegativity
Answer: A. Partial pressure
10. The solubility of most gases with increasing temperature:
A. Increases
B. Decreases
C. Remains unchanged
D. Becomes infinite
Answer: B. Decreases
11. In P = KHx convention, temperature increase generally causes KH to:
A. Increase
B. Decrease
C. Become zero
D. Become independent of temperature
Answer: A. Increase
12. Which gas is commonly used as an example in carbonated drinks?
A. CO2
B. NaCl
C. CaO
D. Fe
Answer: A. CO2
13. If P is doubled and KH remains constant, x will:
A. Double
B. Halve
C. Become zero
D. Remain unchanged
Answer: A. Double
14. If KH is doubled at constant P, x will:
A. Double
B. Become half
C. Become four times
D. Remain unchanged
Answer: B. Become half
15. Henry’s Law is generally considered at:
A. Constant temperature
B. Constant atomic number
C. Constant neutron number
D. Zero pressure
Answer: A. Constant temperature
16. Which equation is the mole-fraction form of Henry’s Law?
A. P = KHx
B. P = x/KH
C. x = PKH
D. P = x²
Answer: A. P = KHx
17. At constant pressure, x is proportional to:
A. KH
B. 1/KH
C. KH²
D. Zero
Answer: B. 1/KH
18. Henry’s Law constant depends on:
A. Temperature
B. Nature of gas
C. Nature of solvent
D. All of these
Answer: D. All of these
19. A lower KH generally indicates:
A. Greater gas solubility
B. Lower gas solubility
C. No dissolution
D. Gas solidification
Answer: A. Greater gas solubility
20. In P = KHx, P represents:
A. Partial pressure
B. Mole fraction
C. Temperature
D. Mass
Answer: A. Partial pressure
21. If Gas A has KH = 10 and Gas B has KH = 40, which is more soluble?
A. Gas A
B. Gas B
C. Both equally
D. Cannot ever dissolve
Answer: A. Gas A
22. Which change generally increases gas solubility?
A. Increase pressure
B. Increase temperature
C. Decrease pressure
D. Boil the solution
Answer: A. Increase pressure
23. In the convention P = KHx, KH is best described as:
A. Pressure required per unit mole fraction
B. Temperature per mole
C. Mass per volume
D. Density constant
Answer: A. Pressure required per unit mole fraction
24. Which statement is correct?
A. Higher KH means higher solubility in every convention
B. The equation defining KH must be checked
C. KH is always dimensionless
D. KH is independent of temperature
Answer: B. The equation defining KH must be checked
25. In C = kP convention, a larger k means:
A. Higher solubility
B. Lower solubility
C. No solubility
D. Zero concentration
Answer: A. Higher solubility
26. Gas solubility is generally higher when temperature is:
A. Lower
B. Higher
C. Infinite
D. Always irrelevant
Answer: A. Lower
27. A high KH gas has:
A. Greater tendency to dissolve
B. Lower solubility under P = KHx convention
C. Infinite solubility
D. No pressure requirement
Answer: B. Lower solubility under P = KHx convention
28. Which statement follows from x = P/KH?
A. Increasing pressure increases solubility
B. Increasing KH increases solubility
C. Pressure has no effect
D. KH is equal to x
Answer: A. Increasing pressure increases solubility
29. The value of KH can change when:
A. Temperature changes
B. The gas changes
C. The solvent changes
D. All of these
Answer: D. All of these
30. For P = KHx, the correct relationship is:
A. KH ↑ → Solubility ↑
B. KH ↑ → Solubility ↓
C. KH has no effect
D. Solubility is always zero
Answer: B. KH ↑ → Solubility ↓
Advertisement

How does the Henry’s Law constant (KH​) relate to the solubility of a gas in a liquid?

1. How does the Henry’s Law constant (KH) relate to the solubility of a gas in a liquid? 1. हेनरी के नियम नियतांक (KH) का किसी द्रव में गैस की विलेयता से क्या संबंध है? +
Detailed Explanation
The Henry’s Law constant (KH) is a constant that relates the partial pressure of a gas above a liquid to the concentration or solubility of that gas dissolved in the liquid at a particular temperature. For the commonly used form of Henry’s Law:
P = KH × x
Where:

P = partial pressure of the gas above the solution
KH = Henry’s Law constant
x = mole fraction of the dissolved gas

Therefore:
KH = P / x
Relation Between KH and Solubility
For the above convention of Henry’s Law, the relationship is:

Higher KH → Lower solubility of the gas

Lower KH → Higher solubility of the gas

Thus, Henry’s Law constant is inversely related to gas solubility when the equation P = KHx is used.
KH ↑ → Solubility ↓

KH ↓ → Solubility ↑
Why Does Higher KH Mean Lower Solubility?
From:
P = KHx

we can rearrange:
x = P / KH

At a fixed pressure, if KH increases, x decreases. Since x represents the amount of gas dissolved in the liquid, a smaller x means lower solubility.
Example
Suppose two gases have the following Henry’s Law constants at the same temperature:

Gas A: KH = 20 atm
Gas B: KH = 50 atm

At the same partial pressure, Gas A will have greater solubility because its KH value is lower.
Lower KH → More gas dissolves
Higher KH → Less gas dissolves
Important Note About Different Conventions
Henry’s Law is written in different forms in different textbooks and scientific sources. For example:

P = KHx

uses KH as a pressure/mole-fraction constant, for which a higher KH means lower solubility.

Another convention may define the constant as the ratio of dissolved concentration to pressure:

C = kP

In that convention, a larger k means greater solubility.

Therefore, always check the exact equation used to define the Henry’s Law constant before comparing numerical values.
Connection with Temperature
For most gases, increasing temperature decreases their solubility. Therefore, under the convention:

P = KHx

the Henry’s Law constant generally increases with increasing temperature. Thus:
Temperature ↑
→ KH
→ Gas Solubility ↓
Final Answer
For the commonly used form P = KHx, the Henry’s Law constant is inversely related to the solubility of a gas. At a given pressure, x = P/KH. Therefore, a larger KH means lower solubility, whereas a smaller KH means higher solubility. The exact meaning depends on the convention used to define KH.
विस्तृत व्याख्या
Henry’s Law Constant (KH) वह नियतांक है जो किसी द्रव में घुली गैस की मात्रा तथा द्रव के ऊपर उपस्थित गैस के आंशिक दाब के बीच संबंध बताता है। Henry’s Law का एक सामान्य रूप है:
P = KH × x
जहाँ:

P = गैस का आंशिक दाब
KH = Henry’s Law constant
x = द्रव में घुली गैस का mole fraction

इससे:
KH = P / x
KH और गैस की विलेयता का संबंध
ऊपर दिए गए Henry’s Law के convention में:

अधिक KH → कम विलेयता

कम KH → अधिक विलेयता

अर्थात P = KHx वाले convention में Henry’s Law constant गैस की विलेयता के व्युत्क्रमानुपाती होता है।
KH ↑ → विलेयता ↓

KH ↓ → विलेयता ↑
अधिक KH का अर्थ कम विलेयता क्यों?
Henry’s Law:

P = KHx

को rearrange करने पर:

x = P / KH

स्थिर दाब पर यदि KH बढ़ता है, तो x का मान कम हो जाता है। चूँकि x द्रव में घुली गैस की मात्रा को दर्शाता है, इसलिए x का कम होना गैस की कम विलेयता को दर्शाता है।
उदाहरण
मान लीजिए समान तापमान पर दो गैसों के Henry’s Law constants हैं:

Gas A: KH = 20 atm
Gas B: KH = 50 atm

समान partial pressure पर Gas A की विलेयता अधिक होगी क्योंकि उसका KH कम है।
कम KH → अधिक गैस घुलेगी
अधिक KH → कम गैस घुलेगी
महत्वपूर्ण नोट: अलग-अलग Convention
अलग-अलग Chemistry textbooks और scientific sources में Henry’s Law को अलग-अलग रूपों में लिखा जा सकता है।

एक रूप:

P = KHx

इसमें KH अधिक होने का अर्थ सामान्यतः गैस की कम विलेयता है।

दूसरा रूप:

C = kP

इस convention में k अधिक होने का अर्थ गैस की अधिक विलेयता है।

इसलिए numerical question हल करते समय यह देखना बहुत जरूरी है कि Henry’s Law constant को किस equation द्वारा define किया गया है।
तापमान से संबंध
अधिकांश गैसों की विलेयता तापमान बढ़ने पर कम होती है। इसलिए यदि:

P = KHx

वाला convention इस्तेमाल किया जाए, तो सामान्यतः तापमान बढ़ने पर KH बढ़ता है।
तापमान ↑
→ KH
→ गैस की विलेयता ↓
अंतिम उत्तर
P = KHx वाले सामान्य convention में Henry’s Law constant गैस की विलेयता के व्युत्क्रमानुपाती होता है। स्थिर दाब पर x = P/KH होता है। इसलिए अधिक KH का अर्थ कम गैस की विलेयता और कम KH का अर्थ अधिक गैस की विलेयता है। हालांकि KH की परिभाषा अलग convention में अलग हो सकती है, इसलिए equation को देखकर ही इसका संबंध तय करना चाहिए।
Advertisement
30 Related MCQs 30 संबंधित बहुविकल्पीय प्रश्न
1. Henry’s Law relates gas solubility mainly to:
A. Atomic number
B. Partial pressure
C. Neutron number
D. Density only
Answer: B. Partial pressure
2. In P = KHx, KH represents:
A. Gas concentration
B. Henry’s Law constant
C. Solvent mass
D. Temperature
Answer: B. Henry’s Law constant
3. In P = KHx, x represents:
A. Pressure
B. Mole fraction of dissolved gas
C. Temperature
D. Volume
Answer: B. Mole fraction of dissolved gas
4. From P = KHx, x is equal to:
A. P × KH
B. P/KH
C. KH/P
D. P + KH
Answer: B. P/KH
5. At constant pressure, if KH increases, solubility:
A. Increases
B. Decreases
C. Remains unchanged
D. Becomes infinite
Answer: B. Decreases
6. A gas having a smaller KH value in P = KHx form is:
A. More soluble
B. Less soluble
C. Completely insoluble
D. Always solid
Answer: A. More soluble
7. The relation between KH and x at constant P is:
A. Direct
B. Inverse
C. Exponential
D. Constant
Answer: B. Inverse
8. If KH is doubled at constant pressure, x becomes:
A. Double
B. Half
C. Four times
D. Unchanged
Answer: B. Half
9. Which gas is commonly discussed using Henry’s Law in soft drinks?
A. CO2
B. NaCl
C. CaCO3
D. HCl solid
Answer: A. CO2
10. In the convention P = KHx, high KH indicates:
A. High solubility
B. Low solubility
C. No relation
D. Infinite solubility
Answer: B. Low solubility
11. The Henry’s Law constant depends on:
A. Nature of gas and solvent
B. Temperature
C. Both A and B
D. Atomic number only
Answer: C. Both A and B
12. For most gases, increasing temperature generally:
A. Increases solubility
B. Decreases solubility
C. Has no effect
D. Converts gas to metal
Answer: B. Decreases solubility
13. Under P = KHx convention, increasing temperature generally causes KH to:
A. Increase
B. Decrease
C. Become zero
D. Remain universally constant
Answer: A. Increase
14. Henry’s Law is generally applied at:
A. Constant temperature
B. Constant atomic number
C. Constant neutron number
D. Zero pressure
Answer: A. Constant temperature
15. If KH is small, gas solubility in P = KHx form is:
A. Relatively high
B. Relatively low
C. Zero
D. Impossible to determine
Answer: A. Relatively high
16. Which equation correctly represents the commonly used mole-fraction form?
A. P = KHx
B. P = x/KH
C. x = PKH
D. P = x²
Answer: A. P = KHx
17. If P remains constant and KH decreases, x:
A. Increases
B. Decreases
C. Becomes zero
D. Remains unchanged
Answer: A. Increases
18. Which statement is correct for P = KHx?
A. KH is directly proportional to solubility
B. KH is inversely related to solubility
C. KH has no relation to solubility
D. KH is always zero
Answer: B. KH is inversely related to solubility
19. Which factor increases gas solubility at constant temperature?
A. Decreasing partial pressure
B. Increasing partial pressure
C. Increasing KH only
D. Heating always
Answer: B. Increasing partial pressure
20. The unit of KH in P = KHx depends on:
A. The pressure unit used
B. Atomic number
C. Neutron number
D. Colour of solution
Answer: A. The pressure unit used
21. Henry’s Law constant is a property of:
A. Gas-solvent system
B. Solute only
C. Container only
D. Thermometer only
Answer: A. Gas-solvent system
22. In P = KHx, if x increases at constant KH, P:
A. Increases
B. Decreases
C. Becomes zero
D. Remains unchanged
Answer: A. Increases
23. A gas with high KH in the P = KHx convention requires:
A. Higher pressure for the same dissolved concentration
B. Lower pressure for the same concentration
C. No pressure
D. Zero temperature
Answer: A. Higher pressure for the same dissolved concentration
24. Which factor can change the value of KH?
A. Temperature
B. Nature of solvent
C. Nature of gas
D. All of these
Answer: D. All of these
25. In the equation C = kP, a larger k indicates:
A. Greater gas solubility
B. Lower gas solubility
C. Zero solubility
D. No solubility
Answer: A. Greater gas solubility
26. Why must the equation defining KH be checked before comparing values?
A. Different conventions are used
B. KH is always zero
C. Pressure has no unit
D. Temperature is irrelevant
Answer: A. Different conventions are used
27. At constant pressure, x = P/KH shows that x is:
A. Directly proportional to KH
B. Inversely proportional to KH
C. Independent of KH
D. Equal to KH
Answer: B. Inversely proportional to KH
28. If Gas A has lower KH than Gas B under the same convention and temperature, Gas A is:
A. More soluble
B. Less soluble
C. Equally soluble always
D. Insoluble
Answer: A. More soluble
29. Which statement about Henry’s Law is most accurate?
A. It relates gas pressure and dissolved gas concentration
B. It relates atomic mass and pressure
C. It applies only to solids
D. It states that all gases have identical solubility
Answer: A. It relates gas pressure and dissolved gas concentration
30. In the convention P = KHx, the correct relationship is:
A. KH ↑ → Solubility ↑
B. KH ↑ → Solubility ↓
C. KH ↑ → Pressure ↓ necessarily
D. KH has no connection with solubility
Answer: B. KH ↑ → Solubility ↓
Advertisement