Main Page     Information on the Institution     Degree Programs     General Information for Students     Türkçe  

 DEGREE PROGRAMS


 Associate's Degree (Short Cycle)


 Bachelor’s Degree (First Cycle)


 Master’s Degree (Second Cycle)

  Course Description
Course Name : Mathematics

Course Code : P 137

Course Type : Compulsory

Level of Course : First Cycle

Year of Study : 1

Course Semester : Fall (16 Weeks)

ECTS : 3

Name of Lecturer(s) : Asst.Prof.Dr. ELA AYDIN

Learning Outcomes of the Course : Can rank numbers
Can solve the a first or second degree equation
Can solve the first or second degree inequalities
Can do functional operations and some trigonometric calculations
Can calculate the limit of functions
Can take the derivative of a function and apply it to the maximum-minimum problems.
Can easily draw the graph functions.

Mode of Delivery : Face-to-Face

Prerequisites and Co-Prerequisites : None

Recommended Optional Programme Components : None

Aim(s) of Course : To acquire the basic principles and knowledge of engineering and basic sciences and in case of need, to adapt these skills and knowledge to their own version of the field.

Course Contents : Grasping the basic properties of function, limit, continuity and derivative, and use them in drawing the graphs of these functions, making approximate calculations, and solving problems. In addition, training students to think analytically and to teach solution methods to the models to be constructed in the future in order to solve the problems about the subjects on their area of interests. Analysis considered as one of the greatest achievements of the human mind is an exciting topic. Our hope is that students will discover analysis not only with its usage but also with its inner beauty.

Language of Instruction : Turkish

Work Place : Classroom


  Course Outline /Schedule (Weekly) Planned Learning Activities
Week Subject Student's Preliminary Work Learning Activities and Teaching Methods
1 Numbers and ranking features Reading the relevant parts of the textbook and recommended texts Lecture and discussion
2 Factorization methods Reading the relevant parts of the textbook and recommended texts Lecture and discussion
3 First and second degree equations Reading the relevant parts of the textbook and recommended texts Lecture and discussion
4 Solving the first or second degree inequalities Reading the relevant parts of the textbook and recommended texts Lecture and discussion
5 Absolute value and absolute value equations and inequalities solution Reading the relevant parts of the textbook and recommended texts Lecture and discussion
6 Function and into the parenthesis of finding a set of definitions and images Reading the relevant parts of the textbook and recommended texts Lecture and discussion
7 Some particular types of functions, and composite functions tamdeğer function Reading the relevant parts of the textbook and recommended texts Lecture and discussion
8 Mid-term Exam and Problem Solving Reading the relevant parts of the textbook and recommended texts Written Exam
9 Covering one-on-one with the trigonometric functions and the inverse function Reading the relevant parts of the textbook and recommended texts Lecture and discussion
10 Calculate the some special types of limits rules Reading the relevant parts of the textbook and recommended texts Lecture and discussion
11 Some types of continuity and discontinuity Reading the relevant parts of the textbook and recommended texts Lecture and discussion
12 Derivatives and the chain with the basic rules of differentiation rule Reading the relevant parts of the textbook and recommended texts Lecture and discussion
13 The implementation of the minimum and maximum of the derivative problems Reading the relevant parts of the textbook and recommended texts Lecture and discussion
14 Graph drawing Reading the relevant parts of the textbook and recommended texts Lecture and discussion
15 Graph drawing Reading the relevant parts of the textbook and recommended texts Lecture and discussion
16/17 Final-exam Reading the relevant parts of the textbook and recommended texts Written Exam


  Required Course Resources
Resource Type Resource Name
Recommended Course Material(s)  
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 • Acquiring and perceiving the required information regarding the fundamental principles, processes and tools of Landscape Architecture. Perceiving the landscape as the original or artificial elements of natural system and these resources in a sustainable planning approach while meeting human needs. Acquiring the knowledge and competency of reflecting the philosophy, item, principles and tools of Landscape Design in detailed landscape design process. 0
2 • Acquring the knowledge regarding nature, natural processes, characteristics and performances of some organic items, by receiving this knowledge getting the ability to reflect these in landscapes design, protection, treatment and management studies. Acquring knowledge in the field of landscape desing, landscape treatment, landscape protection and the development of landscapes by comprehending the knowledge for details of the plant material which is the one of fundamental elements of landscape architecture in a systematic classification. 0
3 • Acquring information about landscape work in humanities and social fields related to research philosophy and techniques. 0
4 • Analysing a system, one of system components or process and ability to desing the requested requirements under limited circumstances; accordingly the ability to implement modern design methods. 3
5 • Ability to select and use the modern techniques and tools necessary for engineering practice; the ability to use information technologies effectively, gathering data, analyse and interpellation 4
6 • Gaining the ability to evaluate and resolve several landscape items through research and critical interpretation of alternative considerations. 0
7 • Gaining the visual, verbal and written ability to improve and explain the ideas of Landscape Architecture by utilizing the contemporary communication methods. 0
8 • Competence to work independently and taking on responsibility: Ability to work effectively as an individual and multi-disciplinary teams, confidence to take responsibility 1
9 • Understanding the required physical biological indicators for the identification and classification of landscapes, having the ability to use them. Acquiring the competence in offering the desing and plan alternatives. 0
10 • Defining the financial and legal fundamental terms and principle 5
11 • Having the infrastructure capacity regarding the fundamental principles, process and tools of Landscape Architecture; utilize the theoretical and practical knowledge in this field in conjunction with the professional field solutions. 0
12 • Perceiving the landscape as the original or artificial elements of natural system and utilizing these resources in a sustainable planning approach while meeting human needs. 0
13 • Reflecting the philosophy, item, principles and tools of Landscape Design in detailed landscape design process, using knowledge and competence as well. Gaining essential basis to be capable to reflect knowledge into the areas regarding nature, natural processes, characteristics and performances of some organic items in landscapes design, protection, maintenance and management studies. 1
14 • Utilizing the accumulation of knowledge in the field of landscape desing, landscape treatment, landscape protection and the development of landscape comprehending the knowledge within systematic classification regarding plant materail which is one of the fundamental elements of landscape architecture. 0
15 • The ability of detecting, defining, formulating and resolving the engineering problems; the selection and application of appropriate analytical methods and modeling techniques. Know and comprehend of the functions of landscape ecology and principles and practics of ecological planning/ desingning and in landscape architecture implements. 5
16 • Utilizing the information related to research philosophy and techniques gained in humanities and social fields regarding landscape work. 1
17 • Know and comprehend the functions of landscape ecology and principles and practics of ecological planning/ desingning and in landscape architecture implementations. 0
18 Ability to access information and resources to do research and use databases and other information resources and lifelong learning with the awareness of the need to follow developments in science and technology and continuous self-renewal ability. 0
19 Ability to communicate effectively in written and spoken Turkish and know at least one foreign language. 0
20 Project management with professional and ethical responsibility, workplace practices, employee health services, awareness of business environment and job security, legal implications of engineering applications and practices of engineering solutions in the global and societal context, the effects of entrepreneurship and innovation, and inform about the issues and problems of today. 0
* 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) 13 2 26
    Out of Class Study (Preliminary Work, Practice) 13 2 26
Assesment Related Works
    Homeworks, Projects, Others 0 0 0
    Mid-term Exams (Written, Oral, etc.) 1 10 10
    Final Exam 1 15 15
Total Workload: 77
Total Workload / 25 (h): 3.08
ECTS Credit: 3