Given : Atomic mass of B = 10.01 amu , % = 19.9 let it be A Atomic mass of B = 11.01 amu , % = 80.1 Solution : A and B are approximately in the ratio 1:4. Isotopic mass = [(proportion of A X at. mass of A) + (proportion of B X at. mass of B)] / 4 = [(1 X 10.01) + (4 X 11.01)] / 4 = (10.01 + 44.04) / 4 = 54.05 / 4 Isotopic atomic mass = 13.512 amu ---- Therefore, isotopic atomic mass of B is = 13.512 amu.
It is a simple ratio charge/mass or e/m .
To convert a mass ratio for 5.0 ml to a mass ratio for 100 ml, you need to multiply by a factor of 20. So, if the mass ratio for 5.0 ml is x:y, the mass ratio for 100 ml would be 20x:20y. This maintains the proportion of the mass in the original ratio when scaling up to 100 ml.
The neutron has no charge, therefore the charge to mass ratio for the neutron is zero.
Experimental mass ratio refers to the ratio of the mass of a compound's empirical formula to the mass of its molecular formula. It is determined in the laboratory through experimental data, such as measurements of molar masses or molecular weights. This ratio can help identify the correct molecular formula of a compound based on its empirical formula.
wat is the ratio of a and b
The ratio of kinetic energy is 9:1. Kinetic energy is directly proportional to mass and speed squared, so if ball A has triple the mass and speed of ball B, the kinetic energy of ball A will be 9 times that of ball B.
Mass% is the ratio of elements in a given quantity. if you mix 20 parts of A with 30 parts of B you will have a solution with 50 parts AB so take the quantity of A (20) and divide it by the total volume (50) and multiply by 100. This means you have 40% of A in your solution. likewise with B (30/50) x 100 = 60% by mass before not to confuse %mass with mole ratio as this is significantly different
The ratio between mass and volume is density.
DensityThe ratio of mass to volume is density.
A specific mass ratio is the amount of gravity pulling on an object.
A specific mass ratio is the amount of gravity pulling on an object.
The golden ratio, or golden mean, or phi, is about 1.618033989. The golden ratio is the ratio of two quantities such that the ratio of the sum to the larger is the same as the ratio of the larger to the smaller. If the two quantities are a and b, their ratio is golden if a > b and (a+b)/a = a/b. This ratio is known as phi, with a value of about 1.618033989. Exactly, the ratio is (1 + square root(5))/2.
Given two quantities, when the ratio of the larger quantity to the smaller one is equal to the ratio of the sum of the quantities to the larger one, then the ratio is said to be the golden (or divine) ratio. Said another way, given two quantities (a and b), a is to b as a plus b is to a. Expressed symbolically: a : b :: a + b : a Expressed algebraically, it looks like this: a/b = (a + b)/a, where a > b. The golden ratio is approximately 1.6180339887.
Given : Atomic mass of B = 10.01 amu , % = 19.9 let it be A Atomic mass of B = 11.01 amu , % = 80.1 Solution : A and B are approximately in the ratio 1:4. Isotopic mass = [(proportion of A X at. mass of A) + (proportion of B X at. mass of B)] / 4 = [(1 X 10.01) + (4 X 11.01)] / 4 = (10.01 + 44.04) / 4 = 54.05 / 4 Isotopic atomic mass = 13.512 amu ---- Therefore, isotopic atomic mass of B is = 13.512 amu.
It is a simple ratio charge/mass or e/m .
Density is the ratio of mass to volume.