CHEMISTRY MOLECULAR NATURE OF MATTER AND
CHEMISTRY MOLECULAR NATURE OF MATTER AND
9th Edition
ISBN: 9781266568718
Author: SILBERBERG
Publisher: MCG
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Chapter 24, Problem 24.24P
Interpretation Introduction

Interpretation:

Reason for why most stable isotope of chromium is 2452Cr has to be explained.

Concept Introduction:

Nuclear stability means that the nucleus is stable meaning that it does not spontaneously emit any kind of radioactivity.

Nuclear stability can be explained based on neutron to proton ratio (N/Z) in the nucleus.

For a stable atoms having low atomic number, n/p ratio is close to 1. When atomic number increases N/Z becomes greater than 1.

For a stable nucleus N/P ratio is one and which lies in the belt of stability of graph of number of protons to number neutrons.

When an isotope is above the belt of stability, N/P ratio is high and there exists a beta emission to decrease the stability.

General rules for predicting the nuclear stability is given below,

  • If the nucleus contains 2, 8,20, 28, 50,82 or 126 protons or neutrons, then they are generally considered as stable than the nuclei that do not possess these numbers.
  • If the nuclei has even number of both protons and neutrons, then they are considered as stable as those with odd number of these particles.
  • All isotopes of elements with atomic number higher than 83 are radioactive.

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Students have asked these similar questions
1. Answer the questions about the following reaction: (a) Draw in the arrows that can be used make this reaction occur and draw in the product of substitution in this reaction. Be sure to include any relevant stereochemistry in the product structure. + SK F Br + (b) In which solvent would this reaction proceed the fastest (Circle one) Methanol Acetone (c) Imagine that you are working for a chemical company and it was your job to perform a similar reaction to the one above, with the exception of the S atom in this reaction being replaced by an O atom. During the reaction, you observe the formation of three separate molecules instead of the single molecule obtained above. What is the likeliest other products that are formed? Draw them in the box provided.
3. For the reactions below, draw the arrows corresponding to the transformations and draw in the boxes the reactants or products as indicated. Note: Part A should have arrows drawn going from the reactants to the middle structure and the arrows on the middle structure that would yield the final structure. For part B, you will need to draw in the reactant before being able to draw the arrows corresponding to product formation. A. B. Rearrangement ΘΗ
2. Draw the arrows required to make the following reactions occur. Please ensure your arrows point from exactly where you want to exactly where you want. If it is unclear from where arrows start or where they end, only partial credit will be given. Note: You may need to draw in lone pairs before drawing the arrows. A. B. H-Br 人 C Θ CI H Cl Θ + Br O

Chapter 24 Solutions

CHEMISTRY MOLECULAR NATURE OF MATTER AND

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