(a) Interpretation: The grams present in 1 unified atomic mass unit should be determined. Concept introduction: Atomic weight of the element represents weighted average of mass of isotopes that naturally occurs in nature. For example, carbon has two major naturally occurring isotopes 6 12 C and 6 13 C . Therefore, the atomic weight can be represent as follows: Atomic weight of C = ( ( Mass of 6 12 C ) ( Abundance of 6 12 C ) + ( Mass of 6 13 C ) ( Abundance of 6 13 C ) )
(a) Interpretation: The grams present in 1 unified atomic mass unit should be determined. Concept introduction: Atomic weight of the element represents weighted average of mass of isotopes that naturally occurs in nature. For example, carbon has two major naturally occurring isotopes 6 12 C and 6 13 C . Therefore, the atomic weight can be represent as follows: Atomic weight of C = ( ( Mass of 6 12 C ) ( Abundance of 6 12 C ) + ( Mass of 6 13 C ) ( Abundance of 6 13 C ) )
Solution Summary: The author explains that atomic weight of the element represents weighted average of mass of isotopes that naturally occur in nature.
The grams present in 1 unified atomic mass unit should be determined.
Concept introduction:
Atomic weight of the element represents weighted average of mass of isotopes that naturally occurs in nature. For example, carbon has two major naturally occurring isotopes 612C and 613C. Therefore, the atomic weight can be represent as follows:
Atomic weight of C=((Mass of 612C)(Abundance of 612C)+(Mass of 613C)(Abundance of 613C))
Interpretation Introduction
(b)
Interpretation:
Total number of atoms equivalent to a mole should be determined.
Concept introduction:
Periodic table represents a systematic arrangement according to element’s physical as well as chemical properties. Here, elements are represented as a two-letter symbol and are arranged in increasing order of atomic number. First letter of symbol is always represented in capital letters and second letter is always represented as small letter.
When propionic aldehyde in vapor form at 200 mmHg and 30°C is irradiated with radiation of wavelength 302 nm, the quantum yield with respect to the formation of CO is 0.54. If the intensity of the incident radiation is 1.5x10-3 W, find the rate of formation of CO.
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, chemistry and related others by exploring similar questions and additional content below.
Step by Step Stoichiometry Practice Problems | How to Pass ChemistryMole Conversions Made Easy: How to Convert Between Grams and Moles; Author: Ketzbook;https://www.youtube.com/watch?v=b2raanVWU6c;License: Standard YouTube License, CC-BY