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Bachelor of Science in Mechanical Engineering Technology (STEM)

Bachelor of Science in Mechanical Engineering Technology (STEM)

at Kent State University USA

Overview

The Bachelor of Science degree in Mechanical Engineering Technology teaches design, operation, installation, maintenance and analysis of machinery. The program prepares students to become highly technical professionals in current and emerging fields using mechanical and computer-aided engineering. Students learn to develop innovative solutions to problems encountered in manufacturing.

Program Learning Outcomes

Graduates of this program will be able to:

  • Use the techniques, skill and modern engineering tools necessary for engineering practice.
  • Apply knowledge of mathematics, science and engineering.
  • Design a system, component or process to meet desired needs within realistic constraints, such as economic, environmental, social, political, ethical, health and safety, manufacturability and sustainability.
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30

Application Processing Days

Under Graduate

Program Level

Fact & Figures

Full Time On Campus

Study Mode

48

Duration

Kent State University

Location

Bachelor of Science in Mechanical Engineering Technology (STEM) Assistant Fee

$20613

Tuition Fee

$0

Average Cost of Living

$70

Application Fee

Bachelor of Science in Mechanical Engineering Technology (STEM) Admissions Requirements

  • Minimum Level of Education Required: To be accepted into this program, applicants must have Grade 12 / High School Diploma.
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Where would you like to study*

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

48

Duration

Study Visa

English Test Requirement

6.0

Minimum Overall Score

71.0

Minimum Overall Score

48.0

Minimum Overall Score

Other Courses by Kent State University,USA

The Bachelor of Science degree in Applied Mathematics emphasizes the tools most useful in science, engineering and technology applications: mathematical modeling, scientific computing and probability and statistics.

The Applied Mathematics major comprises the following concentrations:

  • The Probability and Statistics concentration emphasizes the mathematics underlying processes that involve randomness and the mathematical tools used in the analysis of data.

48 month

Duration

$ 20613

Tuition

The Bachelor of Science degree in Cybersecurity Engineering prepares future professional engineers in the broad field of cybersecurity. The program provides students with a working knowledge of analysis and evaluation of components and systems with respect to security and to maintaining operations in the presence of risks and threats, with an emphasis on engineered systems. Students gain the understanding and skills necessary to address security issues pertaining to stakeholder needs and requirements (from a system engineering perspective) considering the lifecycle of the system from the outset. Design and development of systems, their components and associated networks to increase trustworthiness is a driving concern.

Program Learning Outcomes

Graduates of this program will be able to:

  • Identify, formulate and solve complex engineering problems by applying principles of engineering, science and mathematics
  • 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.
  • Communicate effectively with a range of audiences
  • Recognize ethical and professional responsibilities in engineering situations and make informed judgments, which must consider the impact of engineering solutions in a global, economic, environmental and societal context.
  • Function effectively on a team whose members together provide leadership, create a collaborative and inclusive environment, establish goals, plan tasks and meet objectives.
  • Develop and conduct appropriate experimentation, analyze and interpret data and use engineering judgment to draw conclusions.
  • Acquire and apply new knowledge as needed, using appropriate learning strategies.

48 month

Duration

$ 20613

Tuition

Natural Sciences & Mathematics

Bachelor of Science in Physics (STEM)

The Bachelor of Science degree in Physics is a professionally oriented program that serves as preparation either for graduate work in physics or for entrance into positions in a variety of industries or government service.

The Physics major comprises the following concentrations:

  • The Applied Physics concentration prepares students for immediate entry into careers in industry. Course requirements include electronics, introduction to computer programming, and data analysis and computational physics techniques. While rooted in the basic principles of physics, this program is optimized for students concerned with the application of physics in practical devices and systems.
  • The Biological Sciences concentration is interdisciplinary and for students with a strong interest in both physics and biology, who may wish to prepare for graduate study in biophysics or for work in a biotechnology company.
  • The Chemistry concentration is interdisciplinary and designed for students with a strong interest in both physics and chemistry, who may wish to prepare for graduate study in chemical physics or for work in a high-technology materials-related research and development laboratory.
  • The Computer Science concentration is interdisciplinary and provides a foundation in physics while emphasizing the use of computer software in scientific applications. Graduates are prepared for computer-related careers that require an understanding of the underlying science as well as knowledge of relevant computer applications.
  • The Entrepreneurship concentration is interdisciplinary and designed to prepare physics majors for various aspects of starting or managing a scientific business.
  • The Mathematical Physics concentration is interdisciplinary and provides students with a strong understanding of applied physical theory, its applications and the underlying mathematics. This training, valuable for start-up positions with a number of industries, may also serve as preparation for graduate work in either physics or mathematics.
  • The Pre-Medicine/Pre-Osteopathy/Pre-Podiatry concentration is interdisciplinary and designed to prepare physics majors for further study leading to careers in medicine.
  • The Research concentration prepares majors for further study at the graduate level. This program trains students in logical thinking and problem solving using both analytical and computational methods. It also furnishes students with a comprehensive understanding of the basic laws and principles that govern the physical world. Academic assessment and GRE scores keep the program up-to-date via curricular revisions. This program is a popular stepping stone to graduate degrees not only in physics, but also in engineering, astronomy/astrophysics and materials science.

48 month

Duration

$ 20613

Tuition

The Bachelor of Arts degree in Geography emphasizes a growing field that offers a wide range of career options. Geographers study both natural science and social science. Natural science topics include spatial patterns of rocks, soils, animals, plants, climate and weather. Social science topics include spatial patterns of culture, policy, conflict, demographics, economics, resources and waste, with an emphasis on investigating the intersection of human activity and environmental processes. Geographers use a variety of geospatial technologies to map the world in different ways from the global to the local.

Geographers use data (environmental and social statistics, interviews, textual and landscape analysis and archival documents) to describe natural and social patterns. They then apply their knowledge of human and environmental processes to analyze why these patterns exist. Geographers work at the intersection of multiple disciplines—geology, ecology, climate science, urban planning, economics, sociology, computer science and the humanities—using this knowledge to examine spatial processes. Geographers use GIS software and remote sensing for spatial analysis and cartography.

Geography offers a unique way of seeing and understanding the world, combined with the ability to communicate this understanding to others.

The Geography major comprises the following concentrations:

  • The Environmental Geography concentration prepares students to work as conservation or parks managers, surveyors, remote sensing technicians, ecologists, hydrologists, water resource managers, national park rangers, climatologists, meteorologists, hazards analysts, epidemiologists and climate change analysts.
  • The Geographic Information Science concentration prepares students to work as analysts for the federal, state and local government, for businesses and non-profits. Geographic Information scientists also serve as GIS developers, remote sensors, instructors, web developers and cartographers.
  • The Social Geography concentration prepares students to work as city engineers, urban planners, foreign affairs officers, preservationists, non-profit directors, demographers, cultural resources managers, lobbyists, congressional staffers, emergency management specialists, educators, journalists, community development directors, lawyers and market analysts.

48 month

Duration

$ 20613

Tuition

Health Sciences, Nursing and Emergency Services

Bachelor of Science in Sports Medicine

The B.S. degree in Sports Medicine will focus on the knowledge and skills that are required for sports medicine and athletic training professionals with specific coursework in anatomy, physiology, kinesiology, biomechanics, chemistry, physics, basics of sports medicine, strength and conditioning, first aid, pathologies of injury and illness, pathologies of general medical conditions, pharmacology, therapeutic intervention in health care (including modality application and rehabilitation), healthcare organization and management, emergency medical skills, documentation and record keeping in health care and psychology.

Students completing this program will gain experience in direct patient care and patient care skills, preparing them for their specific career path. Direct patient care skills taught and evaluated include, but are not limited to, first aid and CPR, assessment of biomechanics, gait analysis, goniometry, manual muscle testing, postural assessment, palpation, auscultation, emergency management, and obtaining medical and family histories through patient encounters.

Program Learning Outcomes

Graduates of this program will be able to:

  • Develop foundational knowledge for admission to advanced studies in graduate athletic training programs or employment in associated sports medicine fields
  • Demonstrate sound decision-making through analysis and application in the prevention, management, and resolution of health-related issues associated with sports medicine issues
  • Engage in comprehensive sports medicine care while integrating disciplined-specific, synthesized, creative, respectful and ethical elements
  • Develop confidence and competence to successfully transition into practice and/or higher education programs in sports medicine

48 month

Duration

$ 20613

Tuition

Natural Sciences & Mathematics

Bachelor of Science in Neuroscience (STEM)

The Bachelor of Science degree in Neuroscience offers a broad-based study of the mechanisms of brain function from the cell and molecular level through cognition and behavior. This major is for students interested in medicine, other health professions, research and graduate studies in biology, neuroscience and psychology. The major will also prepare students for careers in industries, including biotechnology, pharmaceuticals, research administration and policy, science communication, teaching and other science-related businesses.

Program Learning Outcomes

Graduates of this program will be able to:

  • Demonstrate an understanding of fundamental principles of neuroscience.
  • Acquire fundamental skills necessary for laboratory investigations into central nervous system function.
  • Demonstrate an understanding of proper experimental design, data analysis and communication of research results.
  • Demonstrate a greater knowledge and appreciation of the role neuroscience plays in societal issues, such as those related to neurological disorders, mental health, medicine and human and animal behavior.

48 month

Duration

$ 20613

Tuition

Natural Sciences & Mathematics

Bachelor of Science in Biotechnology (STEM)

The Bachelor of Science degree in Biotechnology is an interdisciplinary program that provides a strong academic foundation in biological sciences and chemistry, practical training in the various biotechnologies and a solid understanding of their application in industry and biomedicine. The science of biotechnology extends across many areas of biology and chemistry and provides cutting-edge technology tools for modern biology and biomedical research. The curriculum includes a research experience at Kent State and/or an internship at a biotechnology company.

Biotechnology graduates have employment opportunities in biomedical research and in the rapidly growing biotechnology and pharmaceutical industries.

Program Learning Outcomes

Graduates of this program will be able to:

  • Apply knowledge and information to complex issues in biotechnology
  • Use problem-solving and data-gathering skills to comprehend issues in biotechnology.
  • Develop inductive reasoning and technical communications skills in the context of working in a complex group environment.
  • Analyze scientific papers and expand skills for listening to and critiquing scientific seminars based on the literature or current research.
  • Effectively communicate scientific information.
  • Develop collaborative working relationships with research mentors and laboratory members.

48 month

Duration

$ 20613

Tuition

Natural Sciences & Mathematics

Bachelor of Science in Mathematics

The Bachelor of Science degree in Mathematics comprises core areas in algebra (number systems, equations, discrete structures), analysis (functions, limits, continuous processes), geometry (space, shape, form) and associated generalizations and abstractions.

The B.S. degree program is recommended for students interested in a flexible option of careers or graduate study in mathematics. Coupled with the Education minor, the program can lead to Ohio teacher licensure.

Students may apply early to the M.S.in Pure Mathematics program and double count 9 credit hours of graduate courses toward both degree programs. See the Combined Bachelor's/Master's Degree Program policy in the University Catalog for more information.

Program Learning Outcomes

Graduates of this program will be able to:

  • Reason in mathematical arguments at a level appropriate to the discipline, including using precise definitions, articulating assumptions and reasoning logically to conclusions.
  • Engage effectively in problem solving, including exploring examples, devising and testing conjectures and assessing the correctness of solutions.
  • Approach mathematical problems creatively, including trying multiple approaches and modifying problems when necessary to make them more tractable.
  • Communicate mathematics clearly both orally and in writing.
  • Understand and appreciate connections among different subdisciplines of mathematics.
  • Understand and appreciate connections between mathematics and other disciplines.
  • Be aware of and understand a broad range of mathematical subdisciplines.

48 month

Duration

$ 20613

Tuition

The Master of Science degree in Construction Management offers students a deep understanding of leading dynamic construction projects and organizations in the built environment. The program also offers a thesis or project option for those interested in a research and/or a future higher education role. Graduates of the program are prepared to lead at both the project and corporate level.

Program Learning Outcomes
Graduates of this program will be able to:

  • Exhibit the planning, organization, execution and contract skills of a construction manager.
  • Apply ethical and sustainability perspectives to construction management knowledge.
  • Demonstrate the financial, managerial and risk management of a leader in the construction industry.
  • Analyze how issues of cost, safety, quality, schedule and design impact project development and implementation.
  • Evaluate the procurement and logistics processes of underlying construction systems and devise strategies to mitigate these complexities.
  • Compare construction management technologies, innovations and processes, and how they relate to cross-disciplinary teams.

24 month

Duration

$ 21500

Tuition

Health Sciences, Nursing and Emergency Services

Master of Public Health

The Master of Public Health degree in Public Health is designed to help students develop real-world knowledge and skills needed to pursue success in the public health industry.

The Public Health major comprises the following concentrations:

  • The Biostatistics concentration prepares students in the quantitative science of health data collection, storage, retrieval, analysis and interpretation. Graduates are equipped to use statistical methods to design and analyze health-related surveys and experiments for improving health. The college’s faculty research interests include applying biostatistical analysis to understand critical health problems. Graduates in biostatistics are in demand at hospitals, pharmaceutical companies, state and local health departments, federal health agencies and biotechnology companies to analyze the effectiveness of new drugs and interventions, identify risk factors for disease and develop effective prevention strategies.
  • The Epidemiology concentration prepares students to analyze the distribution and determinants of disease, disabilities and death in populations. Graduates are able to apply quantitative and qualitative methods to investigate disease outbreaks, determine causal relationships between environmental and biological factors, and conduct studies to project health trends in populations. Students benefit from public health faculty research agendas in bio-preparedness, public health surveillance systems, chronic disease, cancer and infectious disease epidemiology. Career opportunities for graduates include research positions in universities, medical schools and pharmaceutical companies; disease prevention specialists in hospitals; and surveillance managers in state and local health departments.
  • The Health Policy and Management concentration prepares students to address public health risks and develop effective health services delivery models. This concentration incorporates health services research, health policy analysis and health care planning and management. Given the active research of the college’s faculty in identifying service gaps and in developing evidence-based practices and policy analysis, students emerge with strong skills in health services management, alternative models of service financing and strategies for improving services. Career opportunities for graduates include administrative and management positions in hospitals, clinics, state and local health departments, nursing homes and mental health facilities; policy analyst positions in health planning organizations and governmental agencies; and planning and management positions in health maintenance organizations and health insurance companies.
  • The Social and Behavioral Sciences concentration provides students with an interdisciplinary approach to improve health in populations across the life course. Students learn to apply theoretical principles to design, implement and evaluate effective programs that include behavioral and environmental approaches. Graduates are able to design and evaluate public health interventions intended to improve health for families, workplaces, communities and other settings. The active research of the college’s faculty—particularly in the areas of childhood obesity, violence and injury prevention, substance abuse prevention and chronic disease prevention—provides students the opportunity to work on large-scale externally funded prevention research. Students are prepared for careers in health promotion; program design and evaluation; and prevention program development for state and local health departments, workplace health promotion programs, hospitals, international health agencies, mental health centers and non-profit organizations.

Program Learning Outcomes
Graduates of this program will be able to:

  • Explain public health history, philosophy and values
  • Identify the core functions of public health and the 10 Essential Services
  • Explain the role of quantitative and qualitative methods and sciences in describing and assessing a population’s health
  • List major causes and trends of morbidity and mortality in the US or other community relevant to the school or program
  • Discuss the science of primary, secondary and tertiary prevention in population health, including health promotion, screening, etc.
  • Explain the critical importance of evidence in advancing public health knowledge
  • Explain effects of environmental factors on a population’s health
  • Explain biological and genetic factors that affect a population’s health
  • Explain behavioral and psychological factors that affect a population’s health
  • Explain the social, political and economic determinants of health and how they contribute to population health and health inequities
  • Explain how globalization affects global burdens of disease
  • Explain an ecological perspective on the connections among human health, animal health and ecosystem health (eg, One Health)
  • Apply epidemiological methods to the breadth of settings and situations in public health practice
  • Select quantitative and qualitative data collection methods appropriate for a given public health context
  • Analyze quantitative and qualitative data using biostatistics, informatics, computer-based programming and software, as appropriate
  • Interpret results of data analysis for public health research, policy or practice
  • Compare the organization, structure and function of health care, public health and regulatory systems across national and international settings
  • Discuss the means by which structural bias, social inequities and racism undermine health and create challenges to achieving health equity at organizational, community and societal levels
  • Assess population needs, assets and capacities that affect communities’ health
  • Apply awareness of cultural values and practices to the design or implementation of public health policies or programs
  • Design a population-based policy, program, project or intervention
  • Explain basic principles and tools of budget and resource management
  • Select methods to evaluate public health programs
  • Discuss multiple dimensions of the policy-making process, including the roles of ethics and evidence
  • Propose strategies to identify stakeholders and build coalitions and partnerships for influencing public health outcomes
  • Advocate for political, social or economic policies and programs that will improve health in diverse populations
  • Evaluate policies for their impact on public health and health equity
  • Apply principles of leadership, governance and management, which include creating a vision, empowering others, fostering collaboration and guiding decision making
  • Apply negotiation and mediation skills to address organizational or community challenges
  • Select communication strategies for different audiences and sectors
  • Communicate audience-appropriate public health content, both in writing and through oral presentation
  • Describe the importance of cultural competence in communicating public health content
  • Perform effectively on interprofessional teams
  • Apply systems thinking tools to a public health issue

24 month

Duration

$ 21500

Tuition

View All Courses by Kent State University, USA

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