
Quality Control and Quality Assurance Course
Master the full spectrum of quality control and quality assurance — from statistical process control and root cause analysis to QMS design and internal auditing. This course gives you the practical tools and structured frameworks that quality professionals use every day to reduce defects, ensure compliance, and drive continuous improvement.
What you will learn:
You will build a solid foundation in quality management principles and learn to distinguish between quality control and quality assurance functions. You will apply statistical tools, including control charts, process capability analysis, and hypothesis testing, to make data-driven decisions. You will design and document a quality management system aligned to international standards and manage the full certification process. You will execute structured root cause analysis using proven methods and develop corrective action plans that prevent recurrence. You will also plan and conduct internal audits, manage supplier quality, and lead continuous improvement projects using Lean, Six Sigma, and Kaizen methodologies.
How you study in practice Quality Control and Quality Assurance Course
How you practice Quality Control and Quality Assurance Course
For companies that want to train their team
With Dedika for Business, the course includes exercises and examples tailored to your own business and the way your company needs.
Course content
8 Chapters • 39 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsFoundations of Quality Management
Foundations of Quality Management
Lesson 1 • History and Evolution of Quality
Traces quality management from inspection-based models to modern systems thinking. Contextualizes why current practices exist and how they developed.
Lesson 2 • Key Quality Management Principles
Introduces universally accepted principles such as customer focus, process approach, and evidence-based decision making. Anchors all later technical content to these principles.
Lesson 3 • Defining Quality in Industry
Explores multiple definitions of quality from customer, producer, and regulatory perspectives. Provides the conceptual baseline for all quality management activities.
Lesson 4 • QC vs. QA: Key Distinctions
Differentiates reactive quality control from proactive quality assurance activities. Clarifies how both functions interact within an integrated quality system.
Chapter 2HideHide detailsSee detailsQuality Management Systems and Standards
Quality Management Systems and Standards
Lesson 1 • QMS Documentation and Records
Teaches creation and control of policies, procedures, work instructions, and quality records. Demonstrates how documentation supports auditability and process consistency.
Lesson 2 • Certification and Surveillance Processes
Explains third-party certification cycles, surveillance audits, and recertification requirements. Prepares students to manage ongoing compliance obligations.
Lesson 3 • Implementing and Maintaining a QMS
Guides gap analysis, implementation planning, and continual improvement of a QMS. Bridges theoretical standards knowledge to practical organizational deployment.
Lesson 4 • Introduction to QMS Frameworks
Covers the structure and purpose of a quality management system as an integrated set of processes. Connects QMS design to the foundational principles introduced in Chapter 1.
Lesson 5 • International Quality Standards Overview
Surveys globally recognized quality standards across manufacturing, service, and regulated industries. Enables students to select appropriate standards for their organizational context.
Chapter 3HideHide detailsSee detailsStatistical Foundations for Quality
Statistical Foundations for Quality
Lesson 1 • Descriptive Statistics for Quality Data
Covers measures of central tendency, dispersion, and distribution shape applied to quality measurements. Provides the statistical language used throughout all quantitative quality tools.
Lesson 2 • Probability Concepts in Quality
Introduces probability distributions relevant to defect occurrence and process behavior. Supports understanding of sampling plans and control chart theory.
Lesson 3 • Measurement System Analysis
Evaluates the accuracy, repeatability, and reproducibility of measurement systems using Gage R&R studies. Ensures data collected for quality decisions is reliable.
Lesson 4 • Sampling Theory and Plans
Explains acceptance sampling logic, operating characteristic curves, and sampling plan selection. Connects statistical theory to practical inspection decisions.
Lesson 5 • Hypothesis Testing for Quality
Applies t-tests, chi-square, and ANOVA to compare processes and validate quality improvements. Enables evidence-based conclusions from quality experiments.
Chapter 4HideHide detailsSee detailsStatistical Process Control
Statistical Process Control
Lesson 1 • Variation and Process Stability
Distinguishes common cause from special cause variation and defines process stability. Establishes the conceptual basis for all control chart interpretation rules.
Lesson 2 • Process Capability Analysis
Calculates Cp, Cpk, Pp, and Ppk indices to quantify process performance against specifications. Links capability results to customer requirements and improvement priorities.
Lesson 3 • Control Charts for Attributes
Builds p, np, c, and u charts for defect and defective unit data. Selects the appropriate attribute chart based on subgroup size and defect type.
Lesson 4 • SPC Implementation and Sustainment
Addresses operator training, reaction plans, and SPC system maintenance in production environments. Ensures control charts drive action rather than serve as passive records.
Lesson 5 • Control Charts for Variables
Constructs and interprets X-bar, R, and individuals charts for continuous measurement data. Applies Western Electric rules to identify out-of-control signals.
Chapter 5HideHide detailsSee detailsQuality Control Tools and Techniques
Quality Control Tools and Techniques
Lesson 1 • Nonconformance Management
Establishes processes for identifying, segregating, dispositioning, and recording nonconforming product. Prevents defective output from reaching customers and feeds corrective action systems.
Lesson 2 • The Seven Basic Quality Tools
Introduces check sheets, Pareto charts, cause-and-effect diagrams, scatter plots, and stratification. Builds the foundational toolkit for data collection and visual analysis.
Lesson 3 • Inspection Planning and Techniques
Designs incoming, in-process, and final inspection plans aligned to product risk and customer requirements. Establishes systematic detection controls within the production flow.
Lesson 4 • The Seven Management and Planning Tools
Covers affinity diagrams, tree diagrams, matrix diagrams, and interrelationship digraphs for complex planning. Extends quality analysis to strategic and cross-functional problems.
Lesson 5 • Failure Mode and Effects Analysis
Teaches design and process FMEA methodology including risk priority number calculation and action tracking. Connects risk identification to preventive quality control actions.
Chapter 6HideHide detailsSee detailsRoot Cause Analysis and Corrective Action
Root Cause Analysis and Corrective Action
Lesson 1 • Problem Definition and Scoping
Applies problem statement writing, IS/IS-NOT analysis, and boundary setting to focus investigations. Prevents wasted effort on symptoms rather than true root causes.
Lesson 2 • Root Cause Analysis Methods
Compares 5-Why, fishbone, fault tree, and Apollo methods for identifying physical, human, and systemic causes. Selects the appropriate method based on problem complexity.
Lesson 3 • Verification and Effectiveness Checks
Validates that implemented corrective actions eliminate the root cause and prevent recurrence. Uses data and process observation to confirm sustained effectiveness.
Lesson 4 • Corrective Action Planning
Develops corrective action plans with verified root cause linkage, ownership, and measurable success criteria. Ensures actions address causes rather than symptoms.
Lesson 5 • 8D Problem-Solving Process
Applies the eight-discipline structured problem-solving methodology from team formation through lessons learned. Integrates all RCA and corrective action skills into a single workflow.
Chapter 7HideHide detailsSee detailsQuality Assurance Planning and Auditing
Quality Assurance Planning and Auditing
Lesson 1 • Quality Assurance Planning Fundamentals
Develops quality plans that define controls, responsibilities, and acceptance criteria for products and projects. Aligns QA planning with customer requirements and QMS obligations.
Lesson 2 • Audit Planning and Preparation
Creates audit programs, schedules, checklists, and sampling strategies for effective audit execution. Ensures audits are risk-based and cover all critical system elements.
Lesson 3 • Audit Follow-Up and Program Review
Tracks corrective actions from audit findings and evaluates overall audit program performance. Closes the assurance loop and improves future audit effectiveness.
Lesson 4 • Conducting and Reporting Audits
Executes opening meetings, evidence collection, interviews, and closing meetings with professional objectivity. Produces clear audit reports with graded findings and observations.
Lesson 5 • Audit Types and Purposes
Distinguishes first-, second-, and third-party audits and their respective objectives and scopes. Positions internal auditing as a proactive assurance tool rather than a compliance exercise.
Chapter 8HideHide detailsSee detailsContinuous Improvement Strategies
Continuous Improvement Strategies
Lesson 1 • Lean Principles and Waste Elimination
Applies the eight wastes framework and value stream mapping to identify and eliminate non-value-added activities. Reduces process lead time and defect opportunity simultaneously.
Lesson 2 • Continuous Improvement Philosophy
Contrasts breakthrough improvement with incremental Kaizen and positions both within a quality culture. Establishes the mindset and organizational conditions for sustained improvement.
Lesson 3 • Six Sigma DMAIC Methodology
Executes the Define, Measure, Analyze, Improve, and Control roadmap for data-driven quality improvement. Integrates statistical tools from earlier chapters into a structured project framework.
Lesson 4 • Improvement Project Management
Manages improvement projects through charter development, stakeholder alignment, milestone tracking, and benefit realization. Ensures improvement efforts deliver measurable business results.
Lesson 5 • PDCA and PDSA Improvement Cycles
Applies Plan-Do-Check-Act and Plan-Do-Study-Act cycles to rapid, iterative process improvement. Provides a lightweight alternative to full DMAIC for smaller-scale improvements.
Your valid completion certificate
This course is for you:
Production supervisor: ready to formalize quality responsibilities already handled informally.
Quality technician: seeking structured knowledge to advance into an engineering role.
Operations coordinator: transitioning into a dedicated quality assurance position.
Engineering graduate: building applied quality skills before entering the workforce.
Compliance officer: expanding technical quality competencies beyond regulatory documentation.
Small business owner: establishing quality systems to meet customer or supplier requirements.
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