The correct mass percentage is 50.0061% if chlorine in DDT C14H9CL5.
The percentage of chlorine in DDT is 49,716 %.
The correct unit of mass is pounds. _______________________________ The correct unit of mass per the SI units is kilogram
Mass of ammonia is 17. Mass of Hydrogen in it is 3. So the percentage of hydrogen by mass is 17.64%
Chlorine is a non meta element. Atomic mass of it is 35.
Yes, the concentration of a liquid dissolved in a liquid can be expressed as a percentage by mass. This is commonly calculated by dividing the mass of the solute by the total mass of the solution and then multiplying by 100 to get a percentage.
The percentage of chlorine in DDT is 49,716 %.
35.4527
percentage error= experimental value-accepted value/ accepted value x 100 (percentage error is negative only if the accepted value is larger than the experimental value) percentage error= 9.67-9.82/9.82 x 100 percentage error= -1.6
The correct unit of mass is pounds. _______________________________ The correct unit of mass per the SI units is kilogram
the percentage mass of the oceans in our world is about 71%
The percentage composition of molar mass in a compound is the percentage of each element's mass contribution to the total molar mass of the compound.
Mass of ammonia is 17. Mass of Hydrogen in it is 3. So the percentage of hydrogen by mass is 17.64%
The percentage of oxygen by mass in water is approximately 88.8%.
Mass percentage calculations determine the percentage of an element based on mass in a compound. This can then be used to determine the percentage in a compound of each individual element.
No, the mass of an electron is a fundamental constant in physics, and it cannot be doubled. The mass of an electron is approximately 9.11 x 10^-31 kilograms and remains consistent regardless of external influences.
It is zero. The number 02 is a number. It is a concept and no physical existence and no mass. So the mass percentage is zero.
The mass percentage of nitrogen in ammonia (NH3) is 82.35%. This is calculated by dividing the mass of nitrogen in one mole of ammonia by the molar mass of ammonia, and then multiplying by 100 to get the percentage.