Russian V (RUS401) Course Detail

Course Name Course Code Season Lecture Hours Application Hours Lab Hours Credit ECTS
Russian V RUS401 General Elective 3 0 0 3 4
Pre-requisite Course(s)
N/A
Course Language Russian
Course Type Elective Courses
Course Level Bachelor’s Degree (First Cycle)
Mode of Delivery Face To Face
Learning and Teaching Strategies Lecture, Demonstration, Discussion, Question and Answer, Problem Solving, Team/Group, Brain Storming, Role Play, Project Design/Management.
Course Coordinator
Course Lecturer(s)
  • Instructor MDB Diğer Diller Öğr.Gör.
Course Assistants
Course Objectives The general aim of this course is to help students gain the necessary Russian language skills in order to communicate in level A2+* (Basic User) as stated in Common European Framework of Reference as the continuation of RUS301 & RUS302.
Course Learning Outcomes The students who succeeded in this course;
  • Reading • Can read and understand texts related to personal presentation, business life, education and science, written in the language frequently encountered in daily life.
  • Speaking • Can talk about science and new technologies, • Can participate in a conversation that is familiar or of personal interest or about everyday life (e.g. family, leisure activities, work, travel and current events) without preparation, • Can tell a story or explain the subject and content of the book or movie,
  • Listening • Understand announcements and news on TV and radio (e.g. traffic information, accidents, warnings), • Can understand the outlines of issues related to professional or personal interests.
  • Writing: • Can write simple, self-contained texts on familiar or personally relevant topics, • Can write texts containing own experiences and impressions.
  • Technology Use: Take responsibility by carrying out the necessary technological activities on their own time.
Course Content Vocabulary, structure and communicative skills at pre-intermediate level; up to date topics on newspapers, magazines, and books.

Weekly Subjects and Releated Preparation Studies

Week Subjects Preparation
1 Course Memo
2 Unit 1: Active/Passive Clauses Travel page 5
3 Unit 1: Verbs with suffixes Talking about education and job Page 20
4 Unit 1: Active Participles Page 28
5 Unit 2: Past Participles Page 39
6 Unit 2: Passive Particples Page 46
7 Unit 2: Reading and Translation Practice Page 48
8 MIDTERM EXAM
9 Unit 3: Past Tense Active Adjectives Page 66
10 Unit 3: Past Tense Verbs, Affiirmative Page 70
11 Unit 3: Adjectives (long and short) Page 76
12 Unit 3: Reading Practice and Translation Page 80
13 Unit 3: Reading and Translation Practice Page 81
14 Unit 3: Reading and Translation Practice Page 89
15 REVISION
16 FINAL EXAM

Sources

Course Book 1. V.Antonova, M.Nahabina, A.Tolstıh. (2004) Doroga v Rossiyu 3 , Zlatoust Yayınları, Moskova,
2. Tsentr’’Zlatoust’’197101, Russia, St. Petersburg Kamennoostrovskij pr., 24b, off.1-H

Evaluation System

Requirements Number Percentage of Grade
Attendance/Participation - -
Laboratory - -
Application - -
Field Work - -
Special Course Internship - -
Quizzes/Studio Critics - -
Homework Assignments 2 30
Presentation - -
Project - -
Report - -
Seminar - -
Midterms Exams/Midterms Jury 1 30
Final Exam/Final Jury 1 40
Toplam 4 100
Percentage of Semester Work
Percentage of Final Work 100
Total 100

Course Category

Core Courses X
Major Area Courses
Supportive Courses
Media and Managment Skills Courses
Transferable Skill Courses

The Relation Between Course Learning Competencies and Program Qualifications

# Program Qualifications / Competencies Level of Contribution
1 2 3 4 5
1 Engineering Knowledge: Knowledge of mathematics, science, fundamental engineering, computational sciences, and related engineering disciplines; the ability to apply this knowledge to solve complex engineering problems.
2 Problem Analysis: The ability to identify, formulate, and analyze complex engineering problems using fundamental scientific, mathematical, and engineering knowledge, considering the relevant UN Sustainable Development Goals.
3 Engineering Design: The ability to design creative solutions to complex engineering problems; the ability to design complex systems, processes, devices, or products to meet current and future requirements, considering realistic constraints and conditions.
4 Techniques and Tool Usage: The ability to select and use appropriate techniques, resources, and modern engineering and computing tools, including estimation and modeling, for the analysis and solution of complex engineering problems, while being aware of their limitations.
5 Research and Investigation: The ability to use research methods, including literature review, designing experiments, conducting experiments, collecting data, analyzing and interpreting results, to investigate complex engineering problems.
6 Global Impact of Engineering Applications: Information about the impacts of engineering applications on society, health and safety, the economy, sustainability and the environment within the framework of the UN Sustainable Development Goals; awareness of the legal consequences of engineering solutions.
7 Engineering Ethics: Knowledge of ethical responsibility and adherence to engineering professional principles; awareness of impartiality, lack of discrimination, and inclusivity.
8 Individual and Teamwork: The ability to work effectively individually and as a team member or leader in interdisciplinary and multidisciplinary teams (face-to-face, on-line, or hybrid).
9 Oral and Written Communication: The ability to communicate effectively orally and in writing on technical topics, considering the diverse differences of the target audience (education, language, profession, etc.). X
10 Project Management: Knowledge of business practices such as project management and economic feasibility analysis; awareness of entrepreneurship and innovation.
11 Lifelong Learning: The ability to learn independently and continuously, adapt to new and emerging technologies, and think critically about technological change.

ECTS/Workload Table

Activities Number Duration (Hours) Total Workload
Course Hours (Including Exam Week: 16 x Total Hours) 16 3 48
Laboratory
Application
Special Course Internship
Field Work
Study Hours Out of Class 16 2 32
Presentation/Seminar Prepration
Project
Report
Homework Assignments 2 5 10
Quizzes/Studio Critics
Prepration of Midterm Exams/Midterm Jury 1 5 5
Prepration of Final Exams/Final Jury 1 5 5
Total Workload 100