Chemistry
Chemistry
4th Edition
ISBN: 9780393919370
Author: Thomas R. Gilbert
Publisher: NORTON
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Chapter 21, Problem 21.28QP

(a)

Interpretation Introduction

Interpretation: The mode of radioactive decay for the given isotopes is to be identified.

Concept introduction: The nuclide that lies above the green belt in the graph of belt of stability, are nuclear rich and those that lie below the green region is nuclear poor. Green nuclide represents stable nuclides and orange nuclide represents unstable nuclide.

The isotopes that are nuclear rich undergo beta emission.

The isotopes that are nuclear poor undergo positron emission or electron capture.

To determine: The mode of radioactive decay of 24Ne .

(b)

Interpretation Introduction

To determine: The mode of radioactive decay of 38K .

(c)

Interpretation Introduction

To determine: The mode of radioactive decay of 45Ti .

(d)

Interpretation Introduction

To determine: The mode of radioactive decay of 237Np .

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A small artisanal cheesemaker is testing the acidity of their milk before it coagulates. During fermentation, bacteria produce lactic acid (K₁ = 1.4 x 104), a weak acid that helps to curdle the milk and develop flavor. The cheesemaker has measured that the developing mixture contains lactic acid at an initial concentration of 0.025 M. Your task is to calculate the pH of this mixture and determine whether it meets the required acidity for proper cheese development. To achieve the best flavor, texture and reduce/control microbial growth, the pH range needs to be between pH 4.6 and 5.0. Assumptions: Lactic acid is a monoprotic acid H H :0:0: H-C-C H :0: O-H Figure 1: Lewis Structure for Lactic Acid For simplicity, you can use the generic formula HA to represent the acid You can assume lactic acid dissociation is in water as milk is mostly water. Temperature is 25°C 1. Write the K, expression for the dissociation of lactic acid in the space provided. Do not forget to include state symbols.…

Chapter 21 Solutions

Chemistry

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