The given substance combusts following the reaction:
C2H2 + (5/2)O2 -> 2CO2 + H2O
Assume C2H2 is an ideal gas. At STP, 1 mol of an ideal gas occupies 22.4 L. Given 100.50 mL of C2H2, this means that there is 4.4866 x 10^(-3) mol. Combusting 1 mol of C2H2 consumes (5/2) mol of O2, then combusting the given amount of C2H2 consumes 0.01121 mol of O2. At STP, this amount of O2 occupies 251.25 mL.
Answer: 251.25 ml
Explanation:
According to Avogadro's law, 1 mole of every gas occupies 22.4 L at Standard temperature and pressure (STP).
2 moles of occupy =
5 moles of occupy =
Thus 44800 ml of reacts with 112000 ml of at STP
100.50 ml of reacts with = of at STP.
The process melts an ore to separate useful metals from the rest of the elements in the ore is called smelting. The ore is heated beyond its melting point to extract the metal with the help of oxidizing agents such as air or reducing agents such as coke.
Answer:
It is used to represent whole numbers
Explanation:
Answer:
i think its 6 bru
Explanation:
Answer:
its 6
Explanation:
got it right on engenuity
a. True
b. False
Magma from Earth's interior oozes from the cracks at mid-ocean ridges.
true is the right one
The answer is: endothermic reaction.
This reaction is endothermic (enthalpy is higher than zero), which means that heat is added.
According to Le Chatelier's principle when the reaction is endothermic heat is included as a reactant and when the temperature increased, the heat of the system increase, so the system consume some of that heat by shifting the equilibrium to the right, producing more products.