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siniylev [52]
3 years ago
10

A container holds a sample of hydrogen at 300 K with a pressure of 10 ATM when the temperature decreased to 100k and Volume rema

ined constant.
A. 3000 atm
B. 3.3 atm
C. 0.1 atm
D. 0.3 atm
Please help me out
Will Mark Brainlest
Chemistry
2 answers:
andre [41]3 years ago
6 0
Correct answers are D, A, A, B, A 

<span>1) V1/T1=V2/T2 --> V2 = V1x(T2/T1) = 300cm³ x (333K/303K) = 330cm³ (assuming constant P) </span>

<span>2) V1/T1=V2/T2 -->V1=V2x(T1/T2) = 1.0Lx(300K/100K) = 3.0L </span>

<span>3) you have 2x as many moles of antacid ---> 2x as many moles of gas...V1/n1 = V2/n2 ---> V2 = V1 x (n2/n1).. double the moles, double the volume... so gas from 4 tablets > gas from 2 tablets. </span>

<span>4) P1/T1=P2/T2 ---> P2=P1x(T2/T1)..if T was left in °C, P2=100kPax(10°C/60°C) = 17kPa. T MUST be in absolute temperature. either K or R. never °F nor °C. units of P do not matter. </span>

<span>5).. constant T,n = boyles, constant P,n = charles, constant V,n = Gay-Lussac's</span>
Butoxors [25]3 years ago
4 0
.3<span> m 3. 2. In an isothermal process, a mass of gas has its </span>volume reduced<span> from 50 cm3 to 32 cm3 . If the initial </span>pressure<span> of the gas is 80 kPa, determine its final .... </span>300<span>. = 141 kPa. 2. A </span>pressure<span> vessel is subjected to a gas </span>pressure<span> of 8 </span>atmospheres<span> at a </span>temperature<span> of 15ºC. The vessel </span>can<span> withstand a maximum </span>pressure<span> of</span>
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<span>                       2 NaHCO</span>₂<span> </span> →<span>  Na</span>₂<span>CO</span>₃<span> (s)  </span>+ <span> CO</span>₂<span> (g)  +  H</span>₂<span>O (g)
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