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  Course Description
Course Name : Calculus I

Course Code : FZ 117

Course Type : Compulsory

Level of Course : Second Cycle

Year of Study : 1

Course Semester : Fall (16 Weeks)

ECTS : 6

Name of Lecturer(s) : Prof.Dr. HAMİDE KAVAK
Prof.Dr. AYSEL KAYIŞ TOPAKSU

Learning Outcomes of the Course : recognize and classify numbers and functions.
define and express limit and derivative
Associate the derivative with its applications and calculate the application problems.
find the extremum values of functions
draw the graphics of the functions
recognize Taylor Formula and their applications.
apply L’Hospital’s Rule where it is appropriate
learn the natural logarithma and exponantial functions

Mode of Delivery : Face-to-Face

Prerequisites and Co-Prerequisites : None

Recommended Optional Programme Components : None

Aim(s) of Course : Learning of basic mathematics for pyhsicist

Course Contents : Functions, The rate of change of a function; limits; derivative of algebraic functions; applications of derivative, transcendantal functions; hyperbolic functions; introduction to integration

Language of Instruction : Turkish

Work Place : Lecture Halls of Art and Science Faculty


  Course Outline /Schedule (Weekly) Planned Learning Activities
Week Subject Student's Preliminary Work Learning Activities and Teaching Methods
1 Basic Concepts, Real Numbers, Number Axis, Intervals, Inequalities Read the related chapter in the book Lecture and Discussion
2 Functions, Composition, Functions Inverse Functions and Graphs Read the related chapter in the book Lecture and Discussion
3 trigonometric Functions Read the related chapter in the book Lecture and Discussion
4 Definition and Calculation Limit, Limit theorems, Infinite Limits, Uncertainties Read the related chapter in the book Lecture and Discussion
5 Continuity, discontinuity, and Types Read the related chapter in the book Lecture and Discussion
6 Derivatives and Derivative Rules Read the related chapter in the book Lecture and Discussion
7 Derivatives of Trigonometric Functions Read the related chapter in the book Lecture and Discussion
9 Enhancements and Differentials Read the related chapter in the book Lecture and Discussion
10 Extreme Values ??of Functions Read the related chapter in the book Lecture and Discussion
11 Rolle´s Theorem, Mean Value Theorem Read the related chapter in the book Lecture and Discussion
12 Ambiguous Figures and Hopital´s Rule, Taylor Remainder Theorem and Applications Read the related chapter in the book Lecture and Discussion
13 Inverse Functions and Their Derivatives Read the related chapter in the book Lecture and Discussion
14 Natural Logarithms, Exponential Functions and Their Derivatives Read the related chapter in the book Lecture and Discussion
15 Natural Logarithms, Exponential Functions and Their Derivatives Read the related chapter in the book Lecture and Discussion
16/17 Final exam Study for the exam exam


  Required Course Resources
Resource Type Resource Name
Recommended Course Material(s)  1. Thomas Calculus 1, Beta, 2009, Çeviran: Recep Korkmaz
  2. Calculus, Robert Ellis, Denny Gulick, Harcourt Brace Jovanovich, Inc., 1982
 3. College Mathematics, Ayres Frank, McGraw Hill, Newyork, 2001
Required Course Material(s)


  Assessment Methods and Assessment Criteria
Semester/Year Assessments Number Contribution Percentage
    Mid-term Exams (Written, Oral, etc.) 1 100
    Homeworks/Projects/Others 0 0
Total 100
Rate of Semester/Year Assessments to Success 40
 
Final Assessments 100
Rate of Final Assessments to Success 60
Total 100

  Contribution of the Course to Key Learning Outcomes
# Key Learning Outcome Contribution*
1 Have knowledge of a foreign language at least monitoring developments in the field of physics. 2
2 Know the importance of individual development. 3
3 Monitor the developments in the field of physics, learn and evaluate in terms of social ethics. 3
4 Design experiments in the field of physics. 2
5 Explain the basic concepts and principles in the field of physics. 3
6 Evaluate the developmets in the field of Physics by using scientific methods and techniques. 3
7 Combine the knowledge in the field of physics with the other scientific area. 4
8 Identify problems in the field of physics and for the solutions apply the analytical and simulative methods. 5
9 Explain the methods of producing scientific knowledge in the field of physics. 2
10 Reach the Information in the field of physics, for the purpose of classification, and uses. 2
11 Use the advanced theoretical and practical knowledge acquired in the field of physics. 3
12 Inform the specialist or non-specialist groups, orally or in writing on issues related to physics. 3
13 Use the information technologies in Physics area for their purpose. 2
14 Take responsibility as a team or alone to overcome the problems encountered in the field of physics . 3
15 Plan and manage the activities for the professional developments of emplyees under his/her responsibilities. 2
16 Classify, use and critically evaluate the knowledg taken by his/her efforts. 2
17 Know that learning process is life-long and acts accordingly. 3
18 Both with colleagues, as well as off the field of builds relationships ethically use information, communication technologies. Define necessities in learning in scientific, social, cultural and artistic areas and improve himself/herself accordingly. 3
* Contribution levels are between 0 (not) and 5 (maximum).

  Student Workload - ECTS
Works Number Time (Hour) Total Workload (Hour)
Course Related Works
    Class Time (Exam weeks are excluded) 14 6 84
    Out of Class Study (Preliminary Work, Practice) 14 4 56
Assesment Related Works
    Homeworks, Projects, Others 0 0 0
    Mid-term Exams (Written, Oral, etc.) 1 10 10
    Final Exam 1 10 10
Total Workload: 160
Total Workload / 25 (h): 6.4
ECTS Credit: 6