Answer:
To instill a high degree of personal honor, self-reliance, and confidence in each cadet by presenting a military environment in which cadets will be forced to rely upon themselves and their shipmates to study, work, and learn.
B. has little solvent
C. it has a lot of solvent
D. has maximum solute
b. 52.9 mm Hg
c. 211 mm Hg
d. 2590 mm Hg
Answer:
D
Explanation:
P1 x V1 = P2 x V2
7.00(740) = x(2.00)
2590 mm Hg
took me a while because i dont know this, hope its right good luck
Express your answer as a chemical formula.
1 mol Al; 1 mol O2
4 mol Al; 2.5 mol O2
12 mol Al; 10 mol O2
15.4 mol Al; 10.7 mol O2
Answer:
1 mol Al; 1 mol O2
Explanation:ol Al; 10 mol O2
15.4 mol Al; 10.7 mol O2
or the reaction shown, find the limiting reactant for each of the initial quantities of reactants.
4Al(s) + 302(g) —> 2Al2O3(s)
Express your answer aor the reaction shown, find the limiting reactant for each of the initial quantities of reactants.
4Al(s) + 302(g) —> 2Al2O3(s)
Express your answer as a chemical formula.
1 mol Al; 1 mol O2
4 mol Al; 2.5 mol O2
12 mol Al; 10 mol O2
15.4 mol Al; 10.7 mol O2
Hold on, our servers are swamped. Wait for your answer to fully load.s a chemical formula.
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Equivalent weight of the compound
caco3
Answer:
CaCO3,which is Calcium Carbonate. It’s equivalent mass is 50 g. Explanation:-. Mass of CaCO3=Mass of 1 atom of Calcium (Ca)+Mass of 1 atom of Carbon (C)+Mass of 3 atoms of Oxygen (O). Mass of 1 atom of Calcium=1×40g=40g. Mass of 1 atom of Carbon=1×12g=12g. Mass of 3 atoms of Oxygen=3×16g=48g.
Explanation: Hope this helps :)
Answer: Option (d) is the correct answer.
Explanation:
According to Le Chaltelier's principle, when there occurs any change in an equilibrium reaction then the equilibrium will shift in a direction that will oppose the change.
This means that when pressure is applied on reactant side with more number of moles then the equilibrium will shift on product side that has less number of moles.
For example,
Since here, there are same number of moles on both reactant and product side. So, when volume is decreased at a constant temperature in this system then there will occur no change in the equilibrium state.
Thus, we can conclude that in the given when volume of the system is decreased at constant temperature, then no shift will occur.