Difference between revisions of "Geochemical Analysis N Lab"

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(Created page with "{{#Customtitle:지구화학및 실험 Geochemistry & Lab}} <br/> == 개요 Outlines == This course is to help students understand geological processes and phenomena with the...")
 
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== 개요 Outlines ==
 
== 개요 Outlines ==
  
This course is to help students understand geological processes and phenomena with the principles of chemistry.  The knowledge from this class will certainly be the basis of learning almost all fields of geology, and thus it is one of the essential courses which geology and other neighbour major students should take.
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Will learn the basic theories of chemical analysis in a classroom and practice the actual geochemical analyses in a laboratory.
 
      
 
      
  
 
== 일반 과목 정보 Gneral course information ==
 
== 일반 과목 정보 Gneral course information ==
  
* Course code: 330016
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* Course code: 330053
* Credit-Lecture-Lab work: 3-2-2
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* Credit-Lecture-Lab work: 3-2-3
 
* Grading: With Midterm Exam (30%) + Final Exam (30%) + Lab work (30%) + Attendance (10%)
 
* Grading: With Midterm Exam (30%) + Final Exam (30%) + Lab work (30%) + Attendance (10%)
 
* Type of class: Lecture + Discussion + Lab work (probably solving the problems)
 
* Type of class: Lecture + Discussion + Lab work (probably solving the problems)
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== 교재 및 참고서 Text & references ==
 
== 교재 및 참고서 Text & references ==
  
* Text: Principles and Applications of Inorganic Chemistry (G. Faure, 1991, Macmillan)
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* Text: None
* References: Any inorganic geochemistry text (eg. Principles of Geochemistry by M. Moor in 1982, John Wiley)
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* References: Any analytical chemistry or chemical analysis book will be helpful.
  
  
 
== 수강 조건 Prerequisites ==
 
== 수강 조건 Prerequisites ==
  
Geology and chemistry knowledge should help
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Background in chemical analysis is highly favorable, but not "must-have".
  
  
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| align=center style="border:1px #222222 solid; border-collapse:collapse"| 1
| align=left style="border:1px #000000 solid; border-collapse:collapse"| Definition of Geochemistry, Various Fields of Study in Geochemistry
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| align=left style="border:1px #000000 solid; border-collapse:collapse"| What is Geochemical Analysis?
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Introduction of the course and lecture plan
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| align=left style="border:1px #000000 solid; border-collapse:collapse"| Student grouping (2-3 students a group)
 
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| align=left style="border:1px #000000 solid; border-collapse:collapse"| [[file:Chapter01_WM_White.pdf‎]]
 
 
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| align=center style="border:1px #222222 solid; border-collapse:collapse"| 2
| align=left style="border:1px #000000 solid; border-collapse:collapse"| Solar system and elemental distribution
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| align=left style="border:1px #000000 solid; border-collapse:collapse"| Classification of chemical analysis
| align=left style="border:1px #000000 solid; border-collapse:collapse"| Thinking of how the elements distributes as they do now
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| align=left style="border:1px #000000 solid; border-collapse:collapse"| Preliminary survey on the sampling area
 
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| align=left style="border:1px #000000 solid; border-collapse:collapse"| Thermodynamics for geochemistry, Part 1
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| align=left style="border:1px #000000 solid; border-collapse:collapse"| Errors in a chemical analysis
| align=left style="border:1px #000000 solid; border-collapse:collapse"| Surveying the characteristics of the Moon
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| align=left style="border:1px #000000 solid; border-collapse:collapse"| Preparation for the sampling
 
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| align=left style="border:1px #000000 solid; border-collapse:collapse"| Thermodynamics for geochemistry, Part 2
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| align=left style="border:1px #000000 solid; border-collapse:collapse"| Sample collection and treatments
| align=left style="border:1px #000000 solid; border-collapse:collapse"| What is chemical equilibrium?
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| align=left style="border:1px #000000 solid; border-collapse:collapse"| Statistical estimation of the analytical errors
 
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| align=left style="border:1px #000000 solid; border-collapse:collapse"| Structure of atoms; how the electron configuration controls the properties of the elements
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| align=left style="border:1px #000000 solid; border-collapse:collapse"| On-site measurements on water samples: pH, Eh, K(25), T, etc
| align=left style="border:1px #000000 solid; border-collapse:collapse"| Calculation of the Gibbs free energy change as a function of temperature and pressure
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| align=left style="border:1px #000000 solid; border-collapse:collapse"| Sampling design (Reporting the sampling design for one's own graduation thesis area)
 
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| align=left style="border:1px #000000 solid; border-collapse:collapse"| Chemical bondings and crystal chemistry of minerals
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| align=left style="border:1px #000000 solid; border-collapse:collapse"| Analyses of water samples:  Acidity & alkalinity, IC, UV-VIS
| align=left style="border:1px #000000 solid; border-collapse:collapse"| Calculation of ionicities of bondings in various silicates
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| align=left style="border:1px #000000 solid; border-collapse:collapse"| * Sample collection/treatment and on-site measurements * Reading the manuals of all the instruments for the measurements
 
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Revision as of 14:55, 18 February 2012

{{#Customtitle:지구화학및 실험 Geochemistry & Lab}}

개요 Outlines

Will learn the basic theories of chemical analysis in a classroom and practice the actual geochemical analyses in a laboratory.


일반 과목 정보 Gneral course information

  • Course code: 330053
  • Credit-Lecture-Lab work: 3-2-3
  • Grading: With Midterm Exam (30%) + Final Exam (30%) + Lab work (30%) + Attendance (10%)
  • Type of class: Lecture + Discussion + Lab work (probably solving the problems)


교재 및 참고서 Text & references

  • Text: None
  • References: Any analytical chemistry or chemical analysis book will be helpful.


수강 조건 Prerequisites

Background in chemical analysis is highly favorable, but not "must-have".


강의 계획 Lecture schedule

Week # Lecture title Assignments Lecture note Reading Materials
& Others
1 What is Geochemical Analysis?

Introduction of the course and lecture plan

Student grouping (2-3 students a group)
2 Classification of chemical analysis Preliminary survey on the sampling area
3 Errors in a chemical analysis Preparation for the sampling
4 Sample collection and treatments Statistical estimation of the analytical errors
5 On-site measurements on water samples: pH, Eh, K(25), T, etc Sampling design (Reporting the sampling design for one's own graduation thesis area)
6 Analyses of water samples: Acidity & alkalinity, IC, UV-VIS * Sample collection/treatment and on-site measurements * Reading the manuals of all the instruments for the measurements
7 Radiogenic isotopes, Part 1; principles of radioactive decay and age dating Caculation of Radius ratio range for a given coordination number
8 Radiogenic isotopes, Part 2; utilization of radiogenic isotopes in various geologic fields Determination of absolute age
9 Stable isotopes, Part 1; isotope fractionation
10 Stable isotopes, Part 2; Utilization of stable isotopes in various geological fields Calculation of isotope fractionation
11 Igeneous geochemistry, Part 1: Major element distribution Extraction for stable isotope analysis
12 Igneous geochemistry, Part 2: Minor elelment distribution Interpretation of stability diagrams
13 Low T aqueous geochemistry, Part 1; types of reactions and equilibrium Analysis of REE patterns
14 Low T aqueous geochemistry, Part 2; Phase equilibria Calculation of solubilities
15 Low T aqueous geochemistry, Part 3; Redox reactions Eh-pH diagram

유용한 링크 Helpful links

KorEArtH Geochemistry Lecture