BIOMEDICAL 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
SEN3004 Web Programming Spring 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: Non-Departmental Elective
Course Level: Bachelor’s Degree (First Cycle)
Mode of Delivery: Hybrid
Course Coordinator : Dr. Öğr. Üyesi TAMER UÇAR
Course Lecturer(s): Dr. Öğr. Üyesi TAMER UÇAR
Recommended Optional Program Components: None.
Course Objectives: The students will have the ability to develop database-driven web applications using Java-based web development technologies and frameworks.

Learning Outcomes

The students who have succeeded in this course;
1. Analyze web application development processes;
2. Define server and client interactions;
3. Integrate database operations in web application development;
4. Analyze REST architectural style;
5. Construct page templates;
6. Develop dynamic web applications;
7. Describe Spring Boot framework;

Course Content

The course content covers the development of web applications with technologies such as Spring Boot, Thymeleaf, JDBC, and JPA.

Weekly Detailed Course Contents

Week Subject Related Preparation
1) Introduction to Web Programming
2) HTML and CSS Basics
3) Spring Boot, Maven, and Spring Tool Suite
4) Developing Controller Classes
5) Thymeleaf Template Engine and Form Elements
6) Data Validation and Exception Handling
7) Case Study
8) Data Access with JDBC and H2
9) Data Access with Java Persistence API
10) Data Access with Java Persistence API
11) Internationalization (I18N)
12) Developing RESTful Web Services
13) Security with Spring Boot
14) Security with Spring Boot

Sources

Course Notes / Textbooks: Learning Spring Boot 3.0 (Third Ed.), Greg L. Turnquist
ISBN-13: 978-1803233307

HTML5 and CSS3, Illustrated Complete (Second Edition), Sasha Vodnik
ISBN-13: 978-1305394049
References: -

Evaluation System

Semester Requirements Number of Activities Level of Contribution
Project 1 % 20
Midterms 1 % 35
Final 1 % 45
Total % 100
PERCENTAGE OF SEMESTER WORK % 35
PERCENTAGE OF FINAL WORK % 65
Total % 100

ECTS / Workload Table

Activities Number of Activities Workload
Midterms 1 2
Total Workload 2

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) Adequate knowledge of subjects specific to mathematics (analysis, linear, algebra, differential equations, statistics), science (physics, chemistry, biology) and related engineering discipline, and the ability to use theoretical and applied knowledge in these fields in complex engineering problems.
2) Identify, formulate, and solve complex Biomedical Engineering problems; select and apply proper modeling and analysis methods for this purpose
3) Design complex Biomedical systems, processes, devices or products under realistic constraints and conditions, in such a way as to meet the desired result; apply modern design methods for this purpose.
4) Devise, select, and use modern techniques and tools needed for solving complex problems in Biomedical Engineering practice; employ information technologies effectively.
5) Design and conduct numerical or physical experiments, collect data, analyze and interpret results for investigating the complex problems specific to Biomedical Engineering.
6) Cooperate efficiently in intra-disciplinary and multi-disciplinary teams; and show self-reliance when working on Biomedical Engineering-related problems.
7) Ability to communicate effectively in Turkish, oral and written, to have gained the level of English language knowledge (European Language Portfolio B1 general level) to follow the innovations in the field of Biomedical Engineering; gain the ability to write and understand written reports effectively, to prepare design and production reports, to make effective presentations, to give and receive clear and understandable instructions.
8) Recognize the need for life-long learning; show ability to access information, to follow developments in science and technology, and to continuously educate oneself.
9) Having knowledge for the importance of acting in accordance with the ethical principles of biomedical engineering and the awareness of professional responsibility and ethical responsibility and the standards used in biomedical engineering applications
10) Learn about business life practices such as project management, risk management, and change management; develop an awareness of entrepreneurship, innovation, and sustainable development.
11) Acquire knowledge about the effects of practices of Biomedical Engineering on health, environment, security in universal and social scope, and the contemporary problems of Biomedical Engineering; is aware of the legal consequences of Mechatronics engineering solutions.