(a) Interpretation: The total number of atoms in the given species needs to be calculated. Concept introduction: According to Avogadro’s law , in 1 mol of a substance there are 6.023 × 10 23 atoms. Thus, from number of moles and Avogadro’s number , the number of atoms of an element can be calculated as follows: N = n × N A Here, n is number of moles and N A is Avogadro’s number with a constant value of 6.023 × 10 23 .
(a) Interpretation: The total number of atoms in the given species needs to be calculated. Concept introduction: According to Avogadro’s law , in 1 mol of a substance there are 6.023 × 10 23 atoms. Thus, from number of moles and Avogadro’s number , the number of atoms of an element can be calculated as follows: N = n × N A Here, n is number of moles and N A is Avogadro’s number with a constant value of 6.023 × 10 23 .
Solution Summary: The author explains how Avogadro's law calculates the total number of atoms in a given species.
Definition Definition Number of atoms/molecules present in one mole of any substance. Avogadro's number is a constant. Its value is 6.02214076 × 10 23 per mole.
Chapter 2, Problem 55E
Interpretation Introduction
(a)
Interpretation:
The total number of atoms in the given species needs to be calculated.
Concept introduction:
According to Avogadro’s law, in 1 mol of a substance there are 6.023×1023 atoms. Thus, from number of moles and Avogadro’s number, the number of atoms of an element can be calculated as follows:
N=n×NA
Here, n is number of moles and NA is Avogadro’s number with a constant value of 6.023×1023.
Interpretation Introduction
(b)
Interpretation:
The total number of atoms in the given species needs to be calculated.
Concept introduction:
According to Avogadro’s law, in 1 mol of a substance there are 6.023×1023 atoms. Thus, from number of moles and Avogadro’s number, the number of atoms of an element can be calculated as follows:
N=n×NA
Here, n is number of moles and NA is Avogadro’s number with a constant value of 6.023×1023.
Interpretation Introduction
(c)
Interpretation:
The total number of atoms in the given species needs to be calculated.
Concept introduction:
According to Avogadro’s law, in 1 mol of a substance there are 6.023×1023 atoms. Thus, from number of moles and Avogadro’s number, the number of atoms of an element can be calculated as follows:
N=n×NA
Here, n is number of moles and NA is Avogadro’s number with a constant value of 6.023×1023.
Add substituents to draw the conformer below (sighting down
the indicated bond), then rotate the back carbon to provide the
anti staggered conformer.
+
H3C
H
Ph
H
Problem 25 of 30
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what temperature does a 50% (mole
fraction) of ammonia/water liquid
mixture boil at 1 atm
1) Suppose 0.1 kg ice at 0°C (273K) is in 0.5kg water at 20°C (293K). What is the change in entropy of the ice as it melts at 0°?
To produce the original "water gas" mixture, carbon (in a combustible form known as coke) is reacted with steam: 131.4 kJ + H20(g) + C(s) → CO(g) + H2(g) From this information and the equations in the previous problem, calculate the enthalpy for the combustion or carbon to form carbon dioxide.
kindly show me how to solve both parts of the same long problem. Thanks
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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