![Isotope Relative Abundance (%) Atomic Mass (amu) 12 98.892 1.108 13.00335 2 x10-10 14.00317 From the above data, the average atomic mass of carbon will come out to be: (0.98892) (12 u) + (0.01108) (13.00335 u) + (2 x 10-12 (14.00317 u) = 12.011 u Isotope Relative Abundance (%) Atomic Mass (amu) 12 98.892 1.108 13.00335 2 x10-10 14.00317 From the above data, the average atomic mass of carbon will come out to be: (0.98892) (12 u) + (0.01108) (13.00335 u) + (2 x 10-12 (14.00317 u) = 12.011 u](https://toppr-doubts-media.s3.amazonaws.com/images/12579427/6c6f709c-69dc-45d7-8e5a-68defe4b9dd4.jpg)
Isotope Relative Abundance (%) Atomic Mass (amu) 12 98.892 1.108 13.00335 2 x10-10 14.00317 From the above data, the average atomic mass of carbon will come out to be: (0.98892) (12 u) + (0.01108) (13.00335 u) + (2 x 10-12 (14.00317 u) = 12.011 u
![Atomic Mass Standard mass unit is derived from carbon 12 Atomic mass unit – the mass equal to 1/12 the mass of one Carbon 12 atom. - ppt download Atomic Mass Standard mass unit is derived from carbon 12 Atomic mass unit – the mass equal to 1/12 the mass of one Carbon 12 atom. - ppt download](https://images.slideplayer.com/16/5098550/slides/slide_4.jpg)
Atomic Mass Standard mass unit is derived from carbon 12 Atomic mass unit – the mass equal to 1/12 the mass of one Carbon 12 atom. - ppt download
![The Mole Calculating Formula/Molar Mass Calculate the molar mass of carbon dioxide, CO g + 2(16.00 g) = g One mole of CO 2 (6.02 x ppt download The Mole Calculating Formula/Molar Mass Calculate the molar mass of carbon dioxide, CO g + 2(16.00 g) = g One mole of CO 2 (6.02 x ppt download](https://images.slideplayer.com/25/8120199/slides/slide_2.jpg)