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 Postgraduate Course: MIGSAA Pure Analysis 1: Measure and Integration (MATH11166)
Course Outline
| School | School of Mathematics | College | College of Science and Engineering |  
| Credit level (Normal year taken) | SCQF Level 11 (Postgraduate) | Availability | Not available to visiting students |  
| SCQF Credits | 15 | ECTS Credits | 7.5 |  
 
| Summary | This course covers Measure Theory and Lebesgue Integration. As such it provides a solid and broad foundation to the more pure aspects of mathematical analysis and places many of the techniques of applied analysis on a firm footing. Applications to fractals are included. |  
| Course description | This course covers Measure Theory and Lebesgue Integration. As such it provides a solid and broad foundation to the more pure aspects of mathematical analysis and places many of the techniques of applied analysis on a firm footing. Applications to fractals are included. |  
Entry Requirements (not applicable to Visiting Students)
| Pre-requisites |  | Co-requisites |  |  
| Prohibited Combinations |  | Other requirements | None |  
Course Delivery Information
|  |  
| Academic year 2019/20, Not available to visiting students (SS1) | Quota:  None |  | Course Start | Semester 1 |  Timetable | Timetable | 
| Learning and Teaching activities (Further Info) | Total Hours:
150
(
 Lecture Hours 20,
 Programme Level Learning and Teaching Hours 3,
Directed Learning and Independent Learning Hours
127 ) |  
| Assessment (Further Info) | Written Exam
0 %,
Coursework
100 %,
Practical Exam
0 % |  
 
| Additional Information (Assessment) | Coursework: 100% |  
| Feedback | Not entered |  
| No Exam Information |  
Learning Outcomes 
| On completion of this course, the student will be able to: 
        Thoroughly understand measure theory and theorems of convergence: Monotone and Dominated Convergence Theorems, Radon Nikodym theorem, L^p spaces, product measures, Riesz representation theorems, differentiation of measures.Appreciate applications of abstract theory of measure to fractal sets and Hausdorff dimensions. |  
Additional Information
| Graduate Attributes and Skills | Not entered |  
| Special Arrangements | *Only students of the MIGSAA CDT may take this course* |  
| Keywords | Not entered |  
Contacts 
| Course organiser | Prof A Carbery Tel: (0131 6)50 5993
 Email:
 | Course secretary | Ms Isabelle Hanlon Tel: (0131 6)50 5955
 Email:
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