Answer:
57
Explanation:
57 it's a good thing I didn't get a chance
Answer:
<u>Potential energy is</u> the stored energy in an object or thing, while <u>kinetic energy is</u> the energy which an object contains because of a particular motion.
Explanation:
<u>Answer:</u>
<u>For 1:</u> The amount of potassium iodate that were titrated is
moles
<u>For 2:</u> The amount of sodium thiosulfate required is
moles
<u>Explanation:</u>
To calculate the number of moles for given molarity, we use the equation:

Molarity of
solution = 0.0100 M
Volume of solution = 25 mL
Putting values in above equation, we get:

Hence, the amount of potassium iodate that were titrated is
moles
The chemical equation for the reaction of potassium iodate and sodium thiosulfate follows:

By Stoichiometry of the reaction:
2 moles of potassium iodate reacts with 1 mole of sodium thiosulfate
So, 0.00025 moles of potassium iodate will react with =
of sodium thiosulfate
Hence, the amount of sodium thiosulfate required is
moles
Molar mass of C: 12.011 g/mol
The equation says C20, which means there are 20 carbon atoms in each molecule of Vitamin A. So, we multiply 12.011 by 20 to get 240.22 g/mol carbon.
Molar mass of H: 1.0079 g/mol
The equation says C30, which means there are 30 hydrogen atoms in each molecule of Vitamin A. So, we multiply 1.0079 by 30 to get 30.237 g/mol hydrogen.
Molar mass of O: 15.999 g/mol
The equation says O without a number, which means there is only one oxygen atom in each molecule of Vitamin A. So, we leave O at 15.999 g/mol.
Then, just add it up:
240.22 g/mol C + 30.237 g/mol H + 15.999 g/mol O = 286.456 g/mol C20H30O
So, the molar mass of Vitamin A, C20H30O, is approximately 286.5 g/mol.