Master of Engineering

at South Dakota State University USA

Overview

The Master of Engineering program is a professional degree designed to grow your capacity to manage and lead in complex technical organizations. The program is 50% advanced engineering courses, 50% management and leadership courses, and can be completed on-campus or on-line.

The Master of Engineering (M.Eng.) is a terminal or professional degree as it is coursework only – no thesis. This graduate program is tailored to meet the needs of working professionals at their own pace or for senior-level engineering students who want to earn a graduate degree while still at SDSU. Core classes include project management, operations, and management and leadership, culminating in an applied industry-based project.  Advanced engineering courses come from civil, electrical, mechanical, or agricultural engineering disciplines.

The M.Eng. program has a dedicated industrial advisory board to provide input and guidance on expected student competencies and program outcomes.

Student Learning Outcomes

At the time of graduation from the Master of Engineering program, students will have:

  • in-depth technical knowledge in engineering;
  • knowledge of contemporary leadership and management in professional practice;
  • a demonstrated ability to apply engineering, management and leadership concepts; and,
  • a demonstrated ability to effectively communicate verbally, graphically and in writing.

The Capstone course (GE 750) is used to determine whether students have met expected program outcomes. In the Capstone course, students are expected to manage and execute an industry-based project or similar complex application of technical knowledge and management analysis skills.

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30

Application Processing Days

Under Graduate

Program Level

Fact & Figures

Full Time On Campus

Study Mode

24

Duration

South Dakota State University

Location

Master of Engineering Assistant Fee

$12547

Tuition Fee

$0

Average Cost of Living

$35

Application Fee

Master of Engineering Admissions Requirements

  • Minimum Level of Education Required: To be accepted into this program, applicants must have a Bachelor's Degree.
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Work Permit USA

Optional Practical Training or OPT is a period during which students, who have completed their degrees in the USA, are permitted to work for one year on a student visa by the United States Citizenship and Immigration Services (USCIS). OPT allows students to work for up to 3 years and develop real-world skills to survive in the competitive jobs market.

It is temporary employment for a period of 12-months that is directly related to the major area of study of an F-1 student. Eligible students have the option to apply for OPT employment authorization before completing their academic studies and/or after completing their academic studies.

A student can participate in three types of Optional Practical Training (OPT):

  1. Pre-Completion OPT: This is temporary employment provided to F-1 students before completion of their course of study.
  2. Post-Completion OPT: This is temporary employment available to F-1 students after completing their course of study.
  3. 24 Month STEM Extension: Students enrolled in STEM (Science, Technology, Engineering, and Mathematics) courses can a 24-month extension after their initial Post-Completion OPT authorization. 

Detailed Program and Facts

30

Application Processing Days

Full Time On Campus

Program Intensity

Under Graduate

Program Level

24

Duration

Study Visa

English Test Requirement

6.5

Minimum Overall Score

79.0

Minimum Overall Score

Other Courses by South Dakota State University,USA

The English Major - Writing Specialization requires 45 hours of literature, linguistics and writing courses. Students receive a well-rounded background in literature, but with more intensive work in Creative and/or Professional writing. This program serves students seeking careers in creative or professional writing.

Student Learning Outcomes
The English department’s B.A. program prepares students to become innovative professionals and global citizens by teaching them to read closely and critically, write creatively and persuasively, and explore the beauty and value of diverse literatures and cultures.

  • Analyze texts closely and critically, using key literary terms and concepts to interpret how the specific elements of a text contribute to its larger meanings. (Cross-Curricular Skills: Inquiry and Analysis; Critical and Creative Thinking; Integrative Learning)
  • Identify significant texts, authors, periods, movements, genres, theories, or modes from literary history, explaining how literary texts engage with their historical, cultural, aesthetic, or ideological contexts. (Cross-Curricular Skills: Inquiry and Analysis; Integrative Learning)
  • Identify key theoretical ideas, concepts, or methodologies and apply them to the reading and writing of texts. (Cross-Curricular Skills: Critical and Creative Thinking; Integrative Learning)
  • Write argumentative, creative, and reflective texts that demonstrate focus, content, structure, evidence, style, and grammar appropriate to their rhetorical contexts. (Cross-Curricular Skills: Critical and Creative Thinking; Integrative Learning)
  • Conduct scholarly research that incorporates the use of library resources and discipline-specific databases; the evaluation and integration of secondary sources; and the documentation of primary and secondary sources using MLA style.  (Cross-Curricular Skills: Information Literacy; Inquiry and Analysis)
  • Explain how literature both reflects and enriches the diversity of human experience through its exploration of the ways in which race, ethnicity, religion, gender, sexuality, ability, or class shape identity and influence perception. (Cross-Curricular Skills: Critical and Creative Thinking; Inquiry and Analysis; Integrative Learning; Diversity, Inclusion, and Equity)

48 month

Duration

$ 12675

Tuition

Agricultural and Biosystems Engineering is the science of engineering applied to the products and processes of agriculture and related industries. Design projects solicited from industry provide students with relevant “real world” design experience.  This provides hands on learning in variety of technical areas such as natural resource management, irrigation and drainage, water resources development, machine dynamics and design, precision agriculture, agricultural power, properties and processing of biological materials, environmental control for livestock, indoor air quality, structures, control and disposal of agricultural wastes, computers, or instrumentation. To earn the Bachelor of Science Degree in Agricultural and Biosystems Engineering, students must have an average grade of “C” or better in courses taken and required in the ABE curriculum and take the Fundamentals of Engineering examination prior to graduation.

Program Educational Objectives

  • To produce engineers that become competent in methods of analysis involving use of mathematics, fundamental physical and biological sciences, engineering sciences, and the computer skills needed for the practice of agricultural and biosystems engineering.
  • To produce engineers that develop design skills, including the ability to think creatively, to formulate problem statements, to communicate effectively, to synthesize information, and to evaluate and implement problem solutions.
  • To produce engineers that become capable of addressing issues of ethics, safety, professionalism, cultural diversity, globalization, environmental impact, and social and economic impact in engineering practice.
  • To produce engineers that will contribute to agricultural profitability though the development, adaptation, and proper use of improved and safer engineering technologies, production systems, and management practices.

Student Outcomes

Graduates of the Agricultural and Biosystems Engineering program will have:

  • An ability to identify, formulate, and solve complex engineering problems by applying principles of engineering, science, and mathematics.
  • An ability to apply engineering design to produce solutions that meet specified needs with consideration of public health, safety, and welfare, as well as global, cultural, social, environmental, and economic factors.
  • An ability to communicate effectively with a range of audiences.
  • An ability to recognize ethical and professional responsibilities in engineering situations and make informed judgments, which must consider the impact of engineering solutions in global, economic, environmental, and societal contexts.
  • An ability to function effectively on a team whose members together provide leadership, create a collaborative and inclusive environment, establish goals, plan tasks, and meet objectives.
  • An ability to develop and conduct appropriate experimentation, analyze and interpret data, and use engineering judgment to draw conclusions.
  • An ability to acquire and apply new knowledge as needed, using appropriate learning strategies.

48 month

Duration

$ 12675

Tuition

This program takes advantage of the types of courses central to a liberal arts education. Although the degree is not tied to any specific career aspiration, students often use the degree as preparation for careers in musicology, composing, music librarianship, and private studio teaching. The flexibility of the curriculum is also used by students desiring a performance-based course of study and to prepare for graduate school.

Student Learning Outcomes
Music Studies students will:

  • Analyze, synthesize, and create music as a means of supporting developing careers in music education and/or performance. (Cross-curricular Skill: Inquiry and Analysis)
  • Be able to perform as soloists, ensemble members, and/or chamber musicians at appropriate levels for their concentration. (Cross-curricular Skill: Teamwork)
  • Integrative Learning (Cross-curricular Skill: Integrative Learning)
  • Demonstrate proficient knowledge of the information literacy as pertained to research method—specifically when it comes to researching and writing about music. (Cross-curricular Skill: Information Literacy)
  • SLO 5 (Diversity and Inclusion) will be assessed through learning opportunities presented in the first-year MUS 119 course, reinforced through discussion of MUEN programming, and through progress in projects associated with MUS 130, World Music. Data will be collected and analyzed every three years and stored in the Music office. Benchmark for success is that 80% of students will demonstrate proficient knowledge of the diversity of values, beliefs, practices, and ideas embodied in the discipline of music. (Cross-curricular Skill: Diversity, Inclusion and Equity)

48 month

Duration

$ 12675

Tuition

The Electronics Engineering Technology Bachelor of Science degree program blends theory with an extensive hands-on, lab-based course sequence. The program has three key components: electronics foundations, advanced electronics applications, and applied management. The goal is to prepare graduates to use be proficient in using, developing, and troubleshooting electronic devices, networks, and controls. Electronics technology courses include circuits, analog and digital systems (intro and advanced), networking, programming, microcontrollers, industrial controls and PLCs, circuit board design, power systems, and communication systems. The program also includes courses in computer programming, project management, quality systems management, and statistics.

Program Educational Outcomes
SDSU Electronics Engineering Technology graduates will become professionals who:

  • Achieve positions of increasing responsibility or leadership with employers, professional organizations, or civic organizations as an indicator of professional competence, demonstrate the ability to communicate effectively, and successfully function in team environments;
  • Apply principles of mathematics, science and management and use appropriate technology to solve current and future problems in the field of electronics technology; and,
  • Complete licensure, certification, short courses, workshops, and/or advanced degrees to be effective technical managers in the global business environment.

Student Learning Outcomes
EET graduates have:

  • An ability to apply knowledge, techniques, skills and modern tools of mathematics, science, engineering, and technology to solve broadly-defined engineering problems appropriate to the discipline; (Cross-curricular Skill: Inquiry and Analysis)
  • An ability to design systems, components, or processes meeting specified needs for broadly-defined engineering problems appropriate to the discipline; (Cross-curricular Skill: Problem Solving)
  • An ability to apply written, oral, and graphical communication in broadly-defined technical and non-technical environments; and an ability to identify and use appropriate technical literature;
  • An ability to conduct standard tests, measurements, and experiments and to analyze and interpret the results to improve processes; and
  • An ability to function effectively as a member as well as a leader on technical teams. (Cross-curricular Skill: Teamwork)

The program provides coursework on campus, in classroom, laboratory, and in field-based settings.  The EET program has three dedicated electronics labs for bench work, circuit testing, and project fabrication.

48 month

Duration

$ 12675

Tuition

The German Teaching specialization at SDSU consists of the same aims and content as the German B.A. In addition, teaching candidates are given training in the most current professional standards and methods for teaching excellence in Germanic language and cultures. Former candidates have gone on to teach in public and private schools and have gone for further training in order to teach English as a Second Language and prepare for University-level teaching.

Student Learning Outcomes
Upon the completion of the German major, students should be able to:

  • Speak, read and write German at the Intermediate-High or Advanced level, developing solid competence in the language needed for everyday life and advanced narrative skills in the past, present, and future. (Cross-curricular Skills: Intercultural Knowledge; Inquiry & Analysis; Information Literacy)
  • Demonstrate understanding of and growth in the skills required for intercultural communication and competence and life-long learning. (Cross-curricular Skill: Intercultural Knowledge; Diversity, Inclusion and Equity; Critical & Creative Thinking)
  • Identify the cultural perspectives of the German-speaking world’s civilizations and their cultural products, such as literatures, arts, institutions, pop cultures, etc. and compare the cultural frames that determine everyday life in French- speaking cultures and the U.S. (Cross-curricular Skills: Intercultural Knowledge; Critical & Creative Thinking; Inquiry & Analysis; Information Literacy)
  • Adapt behavior to a variety of cultural contexts through critical analysis of cultural frames. (Cross-curricular Skills: Intercultural Knowledge; Creative & Critical Thinking; and Diversity, Inclusion and Equity)
  • Articulate the value of their language and cultural studies and apply this knowledge in future employment. (Cross-curricular Skill: Intercultural Knowledge; Diversity, Inclusion and Equity)

48 month

Duration

$ 12675

Tuition

Sociology majors often make strong teachers because of their understanding of how people behave and interact. Students in this specialization gain mastery of sociology by studying and applying contemporary sociological theory and research to social issues such as globalization, social inequality, diversity, family, religion, or population. Additionally, students complete pedagogy courses to prepare for employment in middle school or senior high level teaching.

Student Learning Outcomes
In the Sociology major, students will:

  • Apply sociological theories to understand social phenomena. (Cross-curricular Skill: Diversity, Inclusion and Equity)
  • Critically evaluate explanations of human behavior and social phenomena. (Cross-curricular Skill: Critical and Creating Thinking)
  • Apply scientific principles to understand the social world. (Cross-curricular Skill: Ethical Reasoning)
  • Evaluate the quality of social scientific methods and data.
  • Rigorously analyze social scientific data. (Cross-curricular Skill: Inquiry and Analysis)
  • Use sociological knowledge to inform policy debates and promote public understanding. (Cross-curricular Skill: Civic Knowledge and Engagement)

48 month

Duration

$ 12675

Tuition

Agriculture, Forestry & Animal Sciences

Master of Science in Plant Science

The Agronomy, Horticulture, and Plant Science Department is an integrated department that includes programs in crop production, entomology, horticulture, plant biotechnology, plant breeding, plant pathology, precision farming, soils, water management, and weed science. The primary goals of the department are to conduct research in these areas, to transmit the results to the public, and to help prepare students for an occupation in these disciplines and to become productive members of a community. Graduate training includes classroom instruction, teaching experience, seminars designed to refine oral and written skills, and meaningful experience in laboratory and field research techniques. Departmental diversity encourages collaborations among disciplines and research programs that support this graduate training.

24 month

Duration

$ 12547

Tuition

The Bachelor of General Studies program through the College of Arts, Humanities and Social Sciences is designed for adult and returning students who have already completed significant college credit (at least 60 credits) and want to complete a baccalaureate degree. The Bachelor of General Studies offers students the flexibility to select coursework from a variety of focus areas: agriculture/natural resource management, allied health, business, education, engineering, fine arts, humanities, social science, science/mathematics, technology, and wellness.

Student Learning Outcomes
Each graduate completing the Bachelor of General Studies will:

  • Synthesize key findings from various resources, articulate a position, and draw conclusions. (Cross-curricular Skill: Inquiry and Analysis)
  • Evaluate available print and electronic resources for reliability and usefulness. (Cross-curricular Skill: Information Literacy)
  • Apply knowledge to address a problem and provide a solution or explain a new understanding of the problem. (Cross-curricular Skill: Problem Solving)
  • Evaluate the importance of lifelong learning in relation to their life and professional goals. (Cross-curricular Skill: Foundational Lifelong Learning Skills)
  • Integrate knowledge across various academic disciplines. (Cross-curricular Skill: Integrative Learning)
  • Consider the nature and diversity of individuals, organizations, cultures and societies. (Cross-curricular Skill: Diversity, Inclusion and Equity)

48 month

Duration

$ 12675

Tuition

Natural Sciences & Mathematics

Bachelor of Science, Major in Chemistry

Chemistry is often referred to as the central science because of its strong connections to the other natural sciences and mathematics. Chemistry is therefore an area of study that allows students vast opportunity to explore the unknown and to address some of society’s most pressing scientific problems. Professional chemists are employed in a number of diverse fields: governmental policymakers, pharmaceutical and industrial chemists, intellectual property attorneys, high school teachers, and physicians. The curriculum reaches both the breadth and depth of the discipline. Students take a foundational course in each of the five subdisciplines (analytical, biochemistry, inorganic, organic, and physical chemistry) and advanced courses in these subdisciplines based on the student’s individual interests and career goals. Undergraduate training in chemistry at SDSU provides students with enhanced critical-thinking skills and problem-solving abilities, attributes that are highly desired in the modern workforce. The chemistry major is also excellent preparation for professional study in medicine, dentistry, business, and law. The American Chemical Society (ACS), in recognition of the quality and rigor of the curriculum, certifies the B.S. degree in chemistry offered by the Department. In addition to completing the degree requirements listed below, students engage in independent research projects in collaboration with departmental faculty; this capstone experience affords students a means to apply the knowledge of the discipline to questions for which the answers are unknown.

Student Learning Outcomes
Upon completing a B.S. in Chemistry, graduates will:

  • Understand the basic concepts fundamental to chemistry.
  • Be properly prepared for laboratory investigations.
  • Develop in-depth knowledge of at least four of the five subdisciplines of chemistry (analytical, biochemistry, inorganic, organic, and physical).
  • Demonstrate knowledge of modern chemistry topics, which could include catalysis, environmental chemistry, green/sustainable chemistry, materials science, and toxicology.
  • Be able to design and execute experiments, analyze data, and use the chemical literature. (Cross-curricular Skill: Inquiry and Analysis)
  • Be able to synthesize the curricular knowledge and skills in a capstone (research) experience. (Cross-curricular Skill: Inquiry and Analysis; Information Literacy)
  • Understand the scientific process and develop problem-solving skills. (Cross-curricular Skill: Problem Solving)
  • Retrieve information effectively. (Cross-curricular Skill: Information Literacy)
  • Develop chemical safety skills.
  • Be able to rely on collaboration, effective teamwork, safety, and ethical practices. (Cross-curricular Skill: Teamwork; Diversity, Inclusion and Equity)
  • Learn professional ethics. (Cross-curricular Skill: Ethical Reasoning)
  • Have proficiency in essential green chemistry competencies.
  • Be able to assess, comprehend, and communicate science. (Cross-curricular Skill: Inquiry and Analysis)

48 month

Duration

$ 12675

Tuition

Agriculture, Forestry & Animal Sciences

Bachelor of Science, Major in Agronomy

The Agronomy major provides broad training in the plant and soil sciences and in crop production technology. The integrated program is designed to provide students with an understanding and knowledge base in crops, seeds, soils, weeds, entomology, plant pathology, breeding and genetics, precision agriculture, natural resource management, and the interaction of production systems. This major is recommended for students interested in cropping systems, natural/agricultural resource management, or the agribusiness areas of crops, soils, and pest management. Individuals can prepare for careers in crop consulting, crop/plant research, and with private industry managing agricultural inputs such as pesticides and fertilizers; developing improved seed traits, plant sciences, genomics, sales, and seed production; and for work with government agencies, such as the Cooperative Extension Service, Farm Service Agency, Agricultural Research Service, and Natural Resources Conservation Service.

Student Learning Outcomes

Upon completion of the Agronomy major, students will:

  • Demonstrate a fundamental understanding of basic Agronomy principles and practices.
  • Demonstrate the ability to think creatively and to apply critical thinking skills when evaluating and analyzing information. (Cross-curricular Skill: Critical and Creative Thinking)
  • Demonstrate the ability to learn, develop, and apply skills for the application of existing and emerging knowledge and technologies in Agronomy.
  • Demonstrate the ability to apply scientific principles, quantitative skills, and other problem solving skills in Agronomy. (Cross-curricular Skill: Problem Solving)
  • Demonstrate knowledge and application of ethical and sustainable practices in the agronomic fields. (Cross-curricular Skill: Ethical Reasoning)
  • Demonstrate the ability to effectively communicate (written, listening and oral) with both scientific and non-scientific audiences.

48 month

Duration

$ 12675

Tuition

View All Courses by South Dakota State University, USA

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