Graduate
Institute of Graduate Studies
Geomatics (without thesis)
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Electrometer

Course CodeSemester Course Name LE/RC/LA Course Type Language of Instruction ECTS
İMSY 0113 Electrometer 3/0/0 DE 9
Course Goals
 To help students understand electronic instruments, systems; their measurement principles, capabilities and precisions.  
Prerequisite(s) NONE
Corequisite(s) NONE
Special Requisite(s) NONE
Instructor(s) Professor Turgut UZEL
Course Assistant(s)
Schedule Will be announced at the begining of the semester.
Office Hour(s) Will be announced at the begining of the semester.
Teaching Methods and Techniques - Lecture and discussion
Principle Sources

1. UZEL T., jeodezik Amaçlı Elektromagnetik Ölçmeler  Cilt I, 1981

2. UZEL T., jeodezik Amaçlı Elektromagnetik Ölçmeler  Cilt II, 1984

3. ÖZGEN G., DENİZ R., Elektromanyetik Dalgalarla Jeodezik Ölçme-

    ler, Elektrometri, 1986

Other Sources -RÜEGER J.M., Electronic Distance Measurement; An Introduction
Course Schedules
Week Contents Learning Methods
1. Week Electromagnetic waves and their futures
2. Week Electromagnetic waves spectrum
3. Week Modulation and modulators
4. Week Demodulation and demodulators
5. Week Principles of distance measurement by using electromagnetic waves
6. Week Measurement methods
7. Week Measurement methods
8. Week Atmospheric propagation of electromagnetic waves
9. Week Atmospheric propagation of electromagnetic waves; Horizontal model
10. Week Atmospheric propagation of electromagnetic waves; Verticalmodel
11. Week Reduction of measured distances
12. Week Electronically angle measurement
13. Week Electronic theodolites, total stations and hybrid systems, robots
14. Week Numerical levels
15. Week
16. Week
17. Week
Assessments
Evaluation tools Quantity Weight(%)
Midterm(s) 1 40
Homework / Term Projects / Presentations 1 10
Final Exam 1 50


Program Outcomes
PO-1Develop and deepen knowledge in the field of Geomatics Engineering.
PO-2Conceive the interdisciplinary interaction which the field of Geomatics Engineering is related with.
PO-3Use of theoretical and practical knowledge within the field of Geomatics Engineering at a proficiency level.
PO-4Interpret the knowledge about the field of Geomatics Engineering by integrating the information gathered from different disciplines and formulate new knowledge.
PO-5Solve the problem faced related to the field of Geomatics Engineering by using research methods.
PO-6Independently conduct studies that require proficiency in the field of Geomatics Engineering
PO-7Take responsibility and develop new strategic solutions as a team member in order to solve unexpected complex problems faced within the applications in the field of Geomatics Engineering.
PO-8Demonstrate leadership in contexts that require solving problems related to the field of Geomatics Engineering.
PO-9Evaluate knowledge and skills acquired at proficiency level in the field of Geomatics Engineering with a critical approach and direct the learning.
PO-10Communicate current developments and studies within the field of Geomatics Engineering to both professional and non-professional groups systematically using written, oral and visual techniques by supporting with quantitative and qualitative data.
PO-11Investigate, improve social connections and their conducting norms with a critical view and act to change them when necessary.
PO-12Communicate with peers by using a foreign language at least at a level of European Language Portfolio B2 General Level.
PO-13Use advanced informatics and communication technology skills with software knowledge required by the field of Geomatics Engineering.
PO-14Audit the data gathering, interpretation, implementation and announcement stages by taking into consideration the cultural, scientific, and ethical values and teach these values.
PO-15Develop strategy, policy and implementation plans on the issues related to the field and assess the findings within the frame of quality processes.
PO-16Use the knowledge, problem solving and/or implementation skills in interdisciplinary studies.
Learning Outcomes
LO-11. To teach electronic measurements and to show instruments and systems,
LO-22. to show capabilities of them and their precisions
LO-33. to formulate testing
LO-44. to calibrating instruments
LO-55. to show using instruments and systems
Course Assessment Matrix:
Program Outcomes - Learning Outcomes Matrix
 PO 1PO 2PO 3PO 4PO 5PO 6PO 7PO 8PO 9PO 10PO 11PO 12PO 13PO 14PO 15PO 16
LO 1
LO 2
LO 3
LO 4
LO 5