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  • Introduction to Algebra

    Course Description: This course is designed to introduce participants to the basics of algebra and provide them with the skills necessary to solve simple equations. Through this course, participants will gain an understanding of linear equations, ratios, quadratic equations, special factorizations, polynomials, and more. By the end of this course, participants will be able to confidently tackle algebraic problems and have a better grasp of how to use algebra in their everyday lives. Learning Objectives:
    • Understand basic algebraic concepts such as linear equations, ratios, quadratic equations, and special factorizations
    • Learn how to solve simple equations using algebraic techniques
    • Develop an understanding of polynomials and how they are used in algebraic problems
    • Become familiar with different types of problems and how to approach them using algebraic methods
    • Recognize patterns in expressions and learn how to manipulate them for solving problems
    • Learn about equivalent expressions and how they can be used in problem-solving scenarios
    • Understand the structure of expressions and how they can help when solving complex problems
    • Develop an understanding of linear inequalities and how they are used in problem-solving scenarios
    • Learn about common types of problems related to algebra and develop strategies for tackling them effectively
    • Gain confidence in solving various types of algebraic problems by practicing regularly throughout the course duration
  • Introduction to Statistics

    Course Description: This course provides an introduction to the fundamentals of statistics. It covers topics such as data collection, analysis, and interpretation of data. Participants will learn how to use statistical methods to draw meaningful insights from data and communicate those insights effectively. Learning Objectives:
    • Understand the fundamentals of statistics and its applications in real-world scenarios
    • Learn how to design experiments for collecting data and choose the right analysis method for interpreting it
    • Develop skills in visualizing data with bar graphs or scatter plots
    • Become familiar with descriptive and inferential statistics
    • Learn how to apply probability theory in everyday life situations
    • Understand the concept of hypothesis testing and its importance in making decisions based on data analysis results
    • Develop an understanding of correlation, regression, sampling, and other statistical techniques used for analyzing data sets accurately
    • Gain knowledge about different types of distributions such as normal, binomial, Poisson, and their applications in various fields like finance, and economics
    • Learn how to use software tools such as Excel or SPSS for analyzing large datasets quickly and efficiently
    • Acquire the skills necessary for communicating findings from statistical analyses effectively through reports or presentations
  • Introduction to Biology

    Course Description: Introduction to Biology is an introductory course that explores the fundamentals of life. In this course, we will explore the cellular basis of living things, the energy metabolism that underlies the activities of life, and how organisms interact with their environment. We will also learn about the history and concepts of biology, its branches, and its vital processes. By the end of this course, you will have a better understanding of biology and be able to apply it in your everyday life. Learning Objectives:
    • Understand the basics of biochemistry and genetics
    • Learn about molecular biology and biotechnology
    • Explore cell structure and function
    • Analyze energy metabolism in living organisms
    • Examine how organisms interact with their environment
    • Develop an understanding of evolutionary theory
    • Analyze biological macromolecules such as proteins, carbohydrates, lipids, and nucleic acids
    • Understand the principles behind rational medicine
    • Recognize how humans are affected by their environment
    • Appreciate the importance of biology in our lives
  • Introduction to Phycology

    Course Description: This course provides an introduction to the scientific study of human behavior and mental processes. We will explore topics such as perceptual organization, information processing, cognitive development, relationships between sensory analysis, perception, memory, evolution, genetics, research methods in behavioral neuroscience, and lifespan development. By the end of this course, participants will have a comprehensive understanding of phycology and its applications. Learning Objectives:
    • Understand the fundamentals of phycology
    • Analyze the relationship between sensory analysis and perception
    • Examine how memory is affected by phycological processes
    • Explore evolutionary and genetic influences on behavior
    • Learn about research methods in behavioral neuroscience
    • Evaluate cognitive development across the lifespan
    • Develop an understanding of the perceptual organization
    • Analyze information processing within phycological contexts
    • Demonstrate knowledge of how phycology applies to everyday life scenarios
    • Synthesize all concepts learned throughout the course into a comprehensive understanding of phycology
  • Introduction to Chemistry

    Course Description: This course provides an introduction to the fundamentals of chemistry, including the structure, composition, properties, and reactive characteristics of matter. We will explore topics such as the three main states of matter (solids, liquids, and gases), chemical reactions and ratios, and the history and branches of chemistry. By the end of this course, you will have a better understanding of how chemistry manifests in everyday life. Learning Objectives:
    • Understand the basics of chemistry including structure, composition, properties, and reactive characteristics of matter
    • Identify the three main states of matter (solids, liquids, and gases)
    • Describe chemical reactions and ratios
    • Explain how atoms interact with each other to form elements and compounds
    • Compare the physical and chemical properties of a compound to its elements
    • Analyze how chemistry is present in everyday life
    • Recognize various branches of chemistry such as organic chemistry or biochemistry
    • Learn about the history of chemistry from ancient times to modern-day applications in research or industry settings
    • Utilize resources such as textbooks or online courses for further study in specific areas within chemistry
    • Develop problem-solving skills related to chemical equations or calculations involving moles or concentrations
     
  • Introduction to Anatomy

    Course Description: This course is designed to provide an introduction to the study of anatomy, including its history, definitions, and branches. Participants will gain an understanding of the structure and function of the human body and how it relates to other fields of science. Learning Objectives:
    • Distinguish between anatomy and physiology
    • Identify several branches of anatomy and physiology
    • Describe the morphology of the body
    • Explain the functions of various organs in the body
    • Understand how anatomy relates to other fields such as biology and medicine
    • Analyze data related to anatomical structures using dissection techniques
    • Examine images related to anatomical structures using microscopy techniques
    • Interpret diagrams related to anatomical structures using visualization techniques
    • Explain how gross anatomy is used in medical practice and research settings
    • Demonstrate a basic understanding of human anatomy through written assignments or laboratory activities
  • Course Description: The online Culinary Arts Course explores the fundamentals of food preparation and cooking techniques. This course provides an introduction to the principles of nutrition, safety, sanitation, and organization for professional cookery. Students will gain knowledge on a variety of ingredients used in traditional recipes from around the world as well as how to properly use them when creating dishes. Course Objectives: 1) Understand the basics of food science, including flavor combinations, texture modifications, and plate presentation; 2) Learn safe handling practices and kitchen safety protocols; 3) Manage time effectively while preparing multiple dishes; 4) Recognize common methods of food preservation; 5) Selection of appropriate tools required for tasks completed in a commercial setting; 6) Create both classical and modern dishes that reflect global cuisines; 7) Plan balanced meals based on nutritional needs or dietary restrictions.
  • Advanced Manufacturing and Machinery Mechanics Syllabus

    Course Description: This online Advanced Manufacturing and Machinery Mechanics course will provide students with an in-depth understanding of the mechanics and operations involved in manufacturing. It covers topics such as mechanical engineering principles, metallurgy, machine tools, production systems and processes, numerical control automation systems, safety hazards, and preventive measures. Course Objectives:
    • Understand fundamental concepts of machinery mechanics including basic science principles related to force, work energy transfer techniques involving machines used for mass production
    • Understand the use of mathematics to calculate dimensions related to precision machining
    • Review a range of materials that are commonly found in manufacturing settings
    • Analyze performance issues arising from production process design decisions
    • Gain experience troubleshooting common machine malfunctions by simulating possible solutions before implementation on live equipment
    • Develop competency with various pieces of industrial machinery through hands-on class activities or virtual simulations
    • Demonstrate proficiency using Computer Aided Design/Computer Aided Manufacturing (CAD/CAM)
  • Renewable Energy Syllabus

    Course Description: This online course is designed to help participants understand the basics of renewable energy and its applications in our daily lives. This course will cover topics such as different types of renewable energy, processes for implementing them into daily life, current trends in technology, and economic considerations when planning for future energy needs. Upon successful completion of this course, students should be able to: Course Objectives: 1. How renewable sources can affect individual lifestyle choices as well as policy decisions 2. Identify viable alternatives to non-renewable energy sources 3. Analyze the cost benefits associated with investing in renewable energy technologies 4. Understand the various regulatory policies that govern different forms of renewable energies 5. Explain how technological advances have enabled a wider range of options for utilizing sustainable resources
  • Engineering Design Course Syllabus

    Course Description: This online Engineering course is designed to provide participants with a comprehensive understanding of the practical application of engineering concepts in everyday work. Participants will learn how to analyze, design and implement processes that are used by professionals in the field. By mastering problem-solving skills and computer-aided design tools, participants will be able to develop innovative solutions for real-life applications. Course Objectives: 1. Develop a strong understanding of basic engineering principles like vectors, forces, and stress calculations 2. Analyze different types of systems using mathematical modeling techniques like linear equations or matrix algebra 3. Understand engineering materials used in daily operations 4. Demonstrate proficiency in Computer Aided Design (CAD) software such as AutoCAD or Solidworks 5. Construct virtual models that can be tested through simulations based on user input variables 6. Generate data analysis reports on experimental results from multiple sources 7. Interpret graphical representation tools such as bar charts or histograms when analyzing data sets 8. Create detailed product plans utilizing parts lists and specifications sheets 9. Examine safety standards related to designing structures and machines 10. Use 3D printing technologies to build solid prototypes from a digital model

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