Explanation:
because T is const so
deltaS=Q/T=nRLn(V2/V1)
=(14/28)x8.314xLn(30/10)=4,567 J/k
14.85 g of water
Explanation:
Calculate the mass of water produced when 9.56 g of butane reacts with excess oxygen.
Here we have the full oxidation of butane (C₄H₁₀) which produce carbon dioxide and water.
C₄H₁₀ + (13/2) O₂ → 4 CO₂ + 5 H₂O
number of moles = mass / molecular weight
number of moles of butane = 9.56 / 58 = 0.165 moles
Now, taking in account the chemical reaction, we devise the following reasoning:
if 1 mole of butane produces 5 moles of water
then 0.165 moles of butane produces X moles of water
X = (0.165 × 5) / 1 = 0.825 moles of water
mass = number of moles × molecular weight
mass of water = 0.825 × 18 = 14.85 g
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oxidation of hydrocarbons
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Answer:
14.85 g of water
Explanation:
Answer:
CaCl2 + H2O Ca2+(aq) + 2Cl-(aq)
Explanation:
CaCl2 + H2O Ca2+(aq) + 2Cl-(aq)
When CaCl2 is dissolved in H2O (water) it will dissociate (dissolve) into Ca+2 and Cl- ions.
The dissolution of calcium chloride is an exothermic process.
Answer:
1chemical properties
2.chrmistry
3.precipitate
4.endothermic reaction
5.matter
6.physical property
7.chemical change
8.exothermic reaction
9.physical change
A pharmaceutical percolator is a device used to extract active compounds from plants or herbs. It works by passing a solvent through the material to dissolve the desired components. The process involves maceration, percolation, and filtration.
A pharmaceutical percolator is a device used in the pharmaceutical industry to extract active compounds from plants or herbs. It works on the principle of percolation, which involves passing a solvent through a solid material to dissolve the desired components. The percolation process involves three main steps:
(b) Calculate the mass of ammonia produced when 35.0g of nitrogen reacts with hydrogen.
Answer:
a) N2 (g) + H2 = 2 NH3
b) You have to state the mass of hydrogen