SEN4406 Advances in Web ProgrammingBahçeşehir UniversityDegree Programs SOFTWARE ENGINEERINGGeneral Information For StudentsDiploma SupplementErasmus Policy StatementNational QualificationsBologna Commission
SOFTWARE ENGINEERING
Bachelor TR-NQF-HE: Level 6 QF-EHEA: First Cycle EQF-LLL: Level 6

Course Introduction and Application Information

Course Code Course Name Semester Theoretical Practical Credit ECTS
SEN4406 Advances in Web Programming Fall 3 0 3 6
This catalog is for information purposes. Course status is determined by the relevant department at the beginning of semester.

Basic information

Language of instruction: English
Type of course: Departmental Elective
Course Level: Bachelor’s Degree (First Cycle)
Mode of Delivery: Face to face
Course Coordinator : Dr. Öğr. Üyesi TAMER UÇAR
Course Lecturer(s): Dr. Öğr. Üyesi TAMER UÇAR
Recommended Optional Program Components: None
Course Objectives: The course covers JSF Basics, namespaces, document type definitions, Cascading Style Sheets, JSF expressions, XML stylesheets, language transformations, JSF navigation model and component development.

Learning Outcomes

The students who have succeeded in this course;
1. Analyze JSF and request processing
2. Analyze Facelets view declaration
3. Describe managed beans and expression language
4. Describe navigation model
5. Define user interface component model
6. Analyze data conversion, validation and event model
7. Analyze custom UI component development and Ajax interactions
8. Analyze non-UI custom component development
9. Describe secure development using JSF

Course Content

The course content is composed of the basics of JavaServer Faces (JSF), the jsf request processing lifecycle, the facelets view declaration language, managed beans and the jsf expression language, the navigation model, the user interface component model, converting and validating data, the jsf event model, building custom ui components, jsf and ajax, building non-ui custom components, securing javaserver faces applications.

Weekly Detailed Course Contents

Week Subject Related Preparation
1) Introduction to JavaServer Faces (JSF) architecture.
2) Analyzing the JSF request processing lifecycle
3) Introduction to the Facelets View Declaration Language
4) Exploring Managed Beans and the JSF Expression Language.
5) Exploring the Navigation Model.
6) Analyzing the User Interface Component Model.
7) Converting and Validating Data in JSF.
8) JSF / Midterm I
9) Exploring the JSF Event Model.
10) Building custom UI components in JSF.
11) Using Ajax in JSF.
12) Using Ajax in JSF / Midterm II
13) Building non-UI custom components in JSF.
14) Securing JavaServer Faces applications.

Sources

Course Notes / Textbooks: Will be given weekly.
References:

Evaluation System

Semester Requirements Number of Activities Level of Contribution
Quizzes 5 % 10
Homework Assignments 2 % 10
Midterms 2 % 40
Final 1 % 40
Total % 100
PERCENTAGE OF SEMESTER WORK % 60
PERCENTAGE OF FINAL WORK % 40
Total % 100

ECTS / Workload Table

Activities Number of Activities Duration (Hours) Workload
Course Hours 14 3 42
Study Hours Out of Class 3 3 9
Homework Assignments 2 2 4
Quizzes 5 2 10
Midterms 2 15 30
Final 1 20 20
Total Workload 115

Contribution of Learning Outcomes to Programme Outcomes

No Effect 1 Lowest 2 Low 3 Average 4 High 5 Highest
           
Program Outcomes Level of Contribution
1) Be able to specify functional and non-functional attributes of software projects, processes and products. 4
2) Be able to design software architecture, components, interfaces and subcomponents of a system for complex engineering problems. 4
3) Be able to develop a complex software system with in terms of code development, verification, testing and debugging. 2
4) Be able to verify software by testing its program behavior through expected results for a complex engineering problem. 3
5) Be able to maintain a complex software system due to working environment changes, new user demands and software errors that occur during operation. 1
6) Be able to monitor and control changes in the complex software system, to integrate the software with other systems, and to plan and manage new releases systematically. 4
7) Be able to identify, evaluate, measure, manage and apply complex software system life cycle processes in software development by working within and interdisciplinary teams. 2
8) Be able to use various tools and methods to collect software requirements, design, develop, test and maintain software under realistic constraints and conditions in complex engineering problems. 3
9) Be able to define basic quality metrics, apply software life cycle processes, measure software quality, identify quality model characteristics, apply standards and be able to use them to analyze, design, develop, verify and test complex software system. 4
10) Be able to gain technical information about other disciplines such as sustainable development that have common boundaries with software engineering such as mathematics, science, computer engineering, industrial engineering, systems engineering, economics, management and be able to create innovative ideas in entrepreneurship activities.
11) Be able to grasp software engineering culture and concept of ethics and have the basic information of applying them in the software engineering and learn and successfully apply necessary technical skills through professional life. 3
12) Be able to write active reports using foreign languages and Turkish, understand written reports, prepare design and production reports, make effective presentations, give clear and understandable instructions. 4
13) Be able to have knowledge about the effects of engineering applications on health, environment and security in universal and societal dimensions and the problems of engineering in the era and the legal consequences of engineering solutions.