FACULTY OF ARTS AND SCIENCES
Department of Mathematics
GENS 201 | Course Introduction and Application Information
Course Name |
Fundemantals of Natural Sciences
|
Code
|
Semester
|
Theory
(hour/week) |
Application/Lab
(hour/week) |
Local Credits
|
ECTS
|
GENS 201
|
Fall/Spring
|
3
|
0
|
3
|
6
|
Prerequisites |
None
|
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Course Language |
English
|
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Course Type |
Service Course
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Course Level |
First Cycle
|
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Mode of Delivery | - | |||||
Teaching Methods and Techniques of the Course | - | |||||
Course Coordinator | ||||||
Course Lecturer(s) | ||||||
Assistant(s) | - |
Course Objectives | This course aims to teach the students to solve the encountered problems in natural sciences with scientific thinking |
Learning Outcomes |
The students who succeeded in this course;
|
Course Description | This course comprises the scientific thinking approach to the encountered problems and the fundamental principles of natural sciences and of life. |
|
Core Courses | |
Major Area Courses | ||
Supportive Courses | ||
Media and Management Skills Courses | ||
Transferable Skill Courses |
WEEKLY SUBJECTS AND RELATED PREPARATION STUDIES
Week | Subjects | Related Preparation |
1 | Introduction to the course | Examination of the posted HIM 103 syllabus Prepare how to introduce yourself (write on a piece of paper for your own) (Name, High School, Hobby, and What you expect from this course in one sentence) |
2 | Introduction to Science | Student should read: The Nature of Scientific Thinking (Harvard Graduate School of Education)- the related chapters of the reference material (pages 4-12). https://www.youtube.com/watch?v=E_PKQ_M7AtU&t=41s |
3 | Identifying & Describing Problems | Student should read: Miniature Guide to Critical Thinking – Concepts and Tools” (Dr. Richard Paul and Dr. Linda Elder)- the related chapters of the reference material. Student should prepare a short list of daily problems he/she encounters Examination of provided cases and presentations http://www.studygs.net/problem/problemsolvingv1.htm https://www.youtube.com/watch?v=8B271L3NtAw |
4 | Scientific Methodology | Student should read “A Miniature Guide to Scientific Thinking” (by Dr. Richard Paul and Dr. Linda Elder) pages 2-14 and Instructors' Notes https://www.youtube.com/watch?v=tUP8rFWzVt4 |
5 | Database Searching and Presenting Scientific Information 1. Accessing information and testing its accuracy: Google Scholar -Pubmed 2.How to Prepare an oral presentation? 3.How to prepare a poster presentation? | |
6 | Scientific Persona (Student Oral Presentations) | Preparation of presentations on topics previously selected |
7 | Introduction to Natural Sciences | Instructors’ Notes http://learn.genetics.utah.edu/content/selection/recipe/ http://learn.genetics.utah.edu/content/selection/misconceptions/ |
8 | MIDTERM | Contents of weeks 1-7 |
9 | Basic Principles of Earth Sciences | Instructors’ Notes https://www.youtube.com/watch?v=JGXi_9A__Vc |
10 | Basic Principles of Life I Cell & Homeostasis | Instructors’ Notes Reading basic concepts from Campbell Biology, 10th Edition (Reece, et al.) https://www.youtube.com/watch?v=URUJD5NEXC8 |
11 | Basic Principles of Life II Biomolecules Energy for life Introduction to Metabolism | Insructors’ Notes Basic Medical Biochemistry-A Clinical Approach, 3rd Edition (Liebermann and Marks) (Pages 341-347) |
12 | Basic Principles of Life III Basic Structure & Function of Human Body | Instructors’ Notes |
13 | Students’ Oral Presentations Evaluation of a Poster presentation Feedback for the whole course | 1) Student should prepare a summary (slide presentation) of the Project Homework with his/her group, according to “oral presentation guidelines”. The slide presentation (max. 2 slides) should include: Topic of Project-Scientific Question-Hypothesis-Aim and Objectives 2) Student should prepare some questions and also some feedback on the whole course (One good point and one bad point) |
14 | Students’ Poster presentations (Project on Natural Sciences) | Student should prepare his/her poster according to the poster presentation guidelines and hang them on the Poster Area (Block A first floor) before 10:00 in the morning, 17.05.2017. Students should be presenting their posters between 10:00 and 12:50. A review committee will ask questions and review and evaluate the posters. |
15 | FINAL | Weeks 1-15 |
16 | Review of the Semester |
Course Notes/Textbooks |
|
|
Suggested Readings/Materials |
EVALUATION SYSTEM
Semester Activities | Number | Weigthing |
Participation |
1
|
10
|
Laboratory / Application | ||
Field Work | ||
Quizzes / Studio Critiques |
3
|
15
|
Portfolio | ||
Homework / Assignments |
1
|
10
|
Presentation / Jury | ||
Project | ||
Seminar / Workshop | ||
Oral Exams | ||
Midterm |
1
|
25
|
Final Exam |
1
|
40
|
Total |
Weighting of Semester Activities on the Final Grade |
5
|
60
|
Weighting of End-of-Semester Activities on the Final Grade |
1
|
40
|
Total |
ECTS / WORKLOAD TABLE
Semester Activities | Number | Duration (Hours) | Workload |
---|---|---|---|
Theoretical Course Hours (Including exam week: 16 x total hours) |
16
|
3
|
48
|
Laboratory / Application Hours (Including exam week: '.16.' x total hours) |
16
|
0
|
|
Study Hours Out of Class |
14
|
3
|
42
|
Field Work |
0
|
||
Quizzes / Studio Critiques |
3
|
5
|
15
|
Portfolio |
0
|
||
Homework / Assignments |
1
|
30
|
30
|
Presentation / Jury |
15
|
0
|
|
Project |
0
|
||
Seminar / Workshop |
0
|
||
Oral Exam |
0
|
||
Midterms |
1
|
10
|
10
|
Final Exam |
1
|
15
|
15
|
Total |
160
|
COURSE LEARNING OUTCOMES AND PROGRAM QUALIFICATIONS RELATIONSHIP
#
|
Program Competencies/Outcomes |
* Contribution Level
|
||||
1
|
2
|
3
|
4
|
5
|
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1 | To be able to have a grasp of basic mathematics, applied mathematics or theories and applications of statistics. |
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2 | To be able to use advanced theoretical and applied knowledge, interpret and evaluate data, define and analyze problems, develop solutions based on research and proofs by using acquired advanced knowledge and skills within the fields of mathematics or statistics. |
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3 | To be able to apply mathematics or statistics in real life phenomena with interdisciplinary approach and discover their potentials. |
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4 | To be able to evaluate the knowledge and skills acquired at an advanced level in the field with a critical approach and develop positive attitude towards lifelong learning. |
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5 | To be able to share the ideas and solution proposals to problems on issues in the field with professionals, non-professionals. |
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6 | To be able to take responsibility both as a team member or individual in order to solve unexpected complex problems faced within the implementations in the field, planning and managing activities towards the development of subordinates in the framework of a project. |
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7 | To be able to use informatics and communication technologies with at least a minimum level of European Computer Driving License Advanced Level software knowledge. |
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8 | To be able to act in accordance with social, scientific, cultural and ethical values on the stages of gathering, implementation and release of the results of data related to the field. |
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9 | To be able to possess sufficient consciousness about the issues of universality of social rights, social justice, quality, cultural values and also environmental protection, worker's health and security. |
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10 | To be able to connect concrete events and transfer solutions, collect data, analyze and interpret results using scientific methods and having a way of abstract thinking. |
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11 | To be able to collect data in the areas of Mathematics or Statistics and communicate with colleagues in a foreign language. |
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12 | To be able to speak a second foreign language at a medium level of fluency efficiently. |
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13 | To be able to relate the knowledge accumulated throughout the human history to their field of expertise. |
*1 Lowest, 2 Low, 3 Average, 4 High, 5 Highest
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