Answer:
180,000 ants
Explanation:
For this problem we can create the following simple formula to solve this problem...
f(x) = 6x
where the variable x represents the number of ants that a single Anteater needs to eat per day. After a quick online search we can see that a single Anteater eats roughly 30,000 ants per day. If we use this value and plug it into the simple formula we can get the total number of ants 6 anteaters need to eat to survive.
f(x) = 6 * 30,000
f(x) = 180,000
Answer:
protons have a positive, neutrons have no charge and electrons have a negative chage
Explanation:
When new substance forms with different chemical and physical properties mostly a chemical change occurs.
hope it helps
Answer:
Yes, you can
Explanation:
When you climb Mount Everest, you need lots of energy. The higher you climb, the more your appetite goes down. You will need as much energy as you can get.
In order to determine the limiting reactant, we need to obtain the number of moles of each reactant and dividing this value with the stoichiometric coefficient of the reactant. The lowest value would pertain to the limiting reactant.
For S (32 g/mol)
number of moles of S = 5/32 = 0.15625
divide by the stoichiometric coefficient,1 = 0.15625
For H2SO4
number of moles of H2SO4 = 0.0510
divide by the stoichiometric coefficient,2 = 0.02551
Therefore the limiting reactant is H2SO4
Mass of each product when limiting reactant is fully consumed
mass of SO2 = 0.0510 mol H2SO4 * (3 mol SO2/ 2 mol H2SO4) * (64 g SO2/ 1mol SO2) = 4.896 g
mass of H2O = 0.0510 mol H2SO4 * (2 mol H2O/ 2 mol H2SO4) * (18 g H2O/ 1 mol H2O) = 0.918 g H2O