Week
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Topics
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Study Metarials
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1
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Errors in quantitative analysis, Types of error, and Handling systematic errors
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R1-Page 1
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2
|
Statistics of Repeated Measurements
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R1-Page 7
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3
|
Significance Tests
|
R1-Page 20
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4
|
The Quality of Analytical Measurements
|
R1-Page 32
|
5
|
Export/import , equations and formulas
|
R2-Page 1
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6
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Linear and non linear cure fit
|
R2-Page 17
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7
|
Excel and Minitap applications
|
R2-Page 29
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8
|
Chemdraw software and applications
|
R2-Page 35
|
9
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Basic principles of Microcal Origin software
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R1-Page 51
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10
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Nonlinear data analysis with Origin software
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R1-Page 79
|
11
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Applications of Sigma Plot software
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SR1-Page 10
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12
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Quantitative error analysis with Sigma Plot
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R2-Page 45
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13
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Use of origin and Peakfit programs for spectral band separation
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R2-Page 60
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14
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Data Interpretation
|
SR1-Page 41
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Prerequisites
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-
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Language of Instruction
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Turkish
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Responsible
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Asst.Prof.Dr İlker KARA
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Instructors
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1-)Doçent Dr. İlker Kara
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Assistants
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Physics Department Research Assistants
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Resources
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R1. Uyanık, A. (2012). Analitik Kimyacılar için İstatistik ve Kemometri, Pegem Akademi.
R2. Köseoğlu, K. (2004). Programcılık mantığı. Pusula.
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Supplementary Book
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SR1. Reiter, G., & Matthäus, W. G. (2015). Marktforschung und Datenanalyse mit EXCEL: Moderne Software zur professionellen Datenanalyse Mit praxisbezogenen Beispielen und zahlreichen Übungsaufgaben. Walter de Gruyter GmbH & Co KG.
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Goals
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The aim is to have basic and advanced basic knowledge about data description methods with the help of computer, statistical presentation of results, data analysis, presentation of numerical results using graphic drawing programs.
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Content
|
Errors in quantitative analysis,
Types of error, and Handling systematic errors,
Statistics of Repeated Measurements, Significance Tests,
The Quality of Analytical Measurements,
Export/import , equations and formulas,
Excel and Minitap applications,
Basic principles of Microcal Origin software,
Nonlinear cure fit analyses by Microcal Origin,
Application of Table Curve software,
Using of Origin and SigmaPlot programs for the deconvolution of spectrums,
Chemdraw and applications
|
|
Program Learning Outcomes |
Level of Contribution |
1
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To be able to use undergraduate information efficiently at the graduate level.
|
3
|
2
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To be able to search the literature related to the field of study.
|
3
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3
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To have the ability to read, understand and interpret the sources in the literature.
|
3
|
4
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To be able to apply the knowledge of physics to the problems encountered in studies related to the field.
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4
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5
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To be able to use experimental systems related to the study area and to design when necessary.
|
4
|
6
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To be able to work within and between disciplines.
|
-
|
7
|
To be able to use computer programs related to the work area and to make program software when necessary.
|
-
|
8
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Being able to write articles about her/his work and present it in scientific meetings
|
-
|
9
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To know a foreign language at a level to communicate and exchange ideas with international scientists.
|
-
|
10
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To have professional and scientific ethical awareness.
|
-
|
11
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To have the ability to work individually, to take initiative when necessary.
|
-
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