Information
| Unit | FACULTY OF ENGINEERING |
| GEOLOGY ENGINEERING PR. | |
| Code | JZ413 |
| Name | Remote Sensing in Geology |
| Term | 2021-2022 Academic Year |
| Semester | 7. Semester |
| Duration (T+A) | 2-1 (T-A) (17 Week) |
| ECTS | 5 ECTS |
| National Credit | 2 National Credit |
| Teaching Language | Türkçe |
| Level | Lisans Dersi |
| Type | Normal |
| Label | C Compulsory |
| Mode of study | Yüz Yüze Öğretim |
| Catalog Information Coordinator | Prof. Dr. TOLGA ÇAN |
| Course Instructor |
Prof. Dr. TOLGA ÇAN
(Güz)
(A Group)
(Ins. in Charge)
|
Course Goal / Objective
To become familiar with the possible usage and practice of the analog and digital remote sensing data in geology.
Course Content
To become familiar with the possible usage and practice of the analog and digital remote sensing data in geology.
Course Precondition
Resources
Notes
Course Learning Outcomes
| Order | Course Learning Outcomes |
|---|---|
| LO01 | Available aerial photography and satellite imagery and remote sensing techniques. |
| LO02 | Selection of the appropriate sattelite image for specific purposes |
| LO03 | Can make classification process using different methods. |
Relation with Program Learning Outcome
| Order | Type | Program Learning Outcomes | Level |
|---|---|---|---|
| PLO01 | - | Uses Fundamental Geological information, having necessary information in Mathematical and Natural sciences and employs theoretical and applied information in these areas in engineering solutions. Identifies, formulizes and solves geological problems. Realizes the social effects of identified solutions for geological problems. Identifies, defines, formulizes and solves engineering problems. Chooses and applies the appropriate analytical and modelling techniques for this purpose. | 1 |
| PLO02 | - | Uses necessary techniques and instruments for geological applications Identifies rock types, draws geological maps and cross sections. Investigates and reports all kinds of natural resources and geological hazards | 1 |
| PLO03 | - | Thinks, interprets, analyzes and synthesizes geological events in 3D. Chooses and applies necessary methods and instruments for engineering applications. Uses the information technology effectively. | 1 |
| PLO04 | - | Designs and performs experiments, collects data and interprets the results. | 1 |
| PLO05 | - | Works and undertakes responsibility in solving geological problems both individually and in multidiciplinary working groups | 1 |
| PLO06 | - | Investigates to obtain scientific information, and uses data bases and other data sources actively. Has an awareness of life long learning; follows developments in science and technology to keep up to date | 1 |
| PLO07 | - | Initiates effective interactions in Turkish both orally and in written form, and speaks at least one foreign language. Defines necessities in learning in scientific, social, cultural and artistic areas and improves himself/herself continuously. | 1 |
| PLO08 | - | Knows job related and ethical responsibilities, project management, office applications and safety, and realizes juridical responsibilities of engineering applications. Knows the universal and societal effects of engineering solutions and applications. Has an awareness of entrepreneuring and innovative subjects; knows and finds solutions for the new century. | 1 |
Week Plan
| Week | Topic | Preparation | Methods |
|---|---|---|---|
| 1 | Introduction to remote sensing. The history and development of remote sensing | Reading | |
| 2 | Aerial photographs and satellite imagery specifications. Mobile stereoskopu a three-dimensional image acquisition and interpretation of images | Reading | |
| 3 | Technical information on aerial photography, aerial photographs definition, types, film types. Mirror stereoscope with a three-dimensional image acquisition | Reading | |
| 4 | Aerial photographs of the flight plan and geometric disorders. On the interpretation of aerial photographs, face shapes. | Reading | |
| 5 | Aerial photographs of geological features reviews and mainly used for geological review. | Reading | |
| 6 | Sample menus and functions of the software and the use of remote sensing technologies | Reading | |
| 7 | Satellite images of the sensor systems, Systems of camera and scanner | Reading | |
| 8 | Mid-Term Exam | Preparing formid-term exam | |
| 9 | Electromagnetic emission of electromagnetic spectrum and properties, prevents remote sensing factors, characteristics and factors affecting the images. | Reading | |
| 10 | Uncontrolled remote sensing classification | Reading | |
| 11 | Supervised classification in remote sensing | Reading | |
| 12 | Band oranlamları geological review. | Reading | |
| 13 | Expected of three-dimensional images and digital elevation model creation | Reading | |
| 14 | Change detection on satellite images | Reading | |
| 15 | Examples of the applications made by remote sensing techniques. | Reading | |
| 16 | Term Exams | Preparing formid-term exam | |
| 17 | Term Exams | Preparing formid-term exam |
Assessment (Exam) Methods and Criteria
| Assessment Type | Midterm / Year Impact | End of Term / End of Year Impact |
|---|---|---|
| 1. Midterm Exam | 100 | 40 |
| General Assessment | ||
| Midterm / Year Total | 100 | 40 |
| 1. Final Exam | - | 60 |
| Grand Total | - | 100 |
Student Workload - ECTS
| Works | Number | Time (Hour) | Workload (Hour) |
|---|---|---|---|
| Course Related Works | |||
| Class Time (Exam weeks are excluded) | 14 | 3 | 42 |
| Out of Class Study (Preliminary Work, Practice) | 14 | 3 | 42 |
| Assesment Related Works | |||
| Homeworks, Projects, Others | 1 | 2 | 2 |
| Mid-term Exams (Written, Oral, etc.) | 1 | 12 | 12 |
| Final Exam | 1 | 18 | 18 |
| Total Workload (Hour) | 116 | ||
| Total Workload / 25 (h) | 4,64 | ||
| ECTS | 5 ECTS | ||