
Public learning track
Advanced Experimental Design and Instrumentation
12th Grade · Science · Open Global Science
8 lessons
Goal
Formulate theory-driven hypotheses, isolate multivariable controls, and design rigorous laboratory and simulation protocols using high-precision instrumentation.
Featured Diagrams
Developing Testable Hypotheses from Scientific Theories
8 lessons
0 of 8 done
- 1Developing Testable Hypotheses from Scientific TheoriesUp nextStart
- 2Controlling Variables in Complex Multivariable SystemsPremiumNot started yet
- 3Designing Randomized Block and Factorial ExperimentsNot started yet
- 4Designing Computational Simulation ProtocolsNot started yet
- 5Selecting and Calibrating High-Precision InstrumentsNot started yet
- 6Digital Data Acquisition and Sampling RatesNot started yet
- 7Mitigating Systematic Bias with Double-Blind ProtocolsNot started yet
- 8Developing Comprehensive Laboratory Safety and Waste ProtocolsNot started yet
Standards Covered
- OGS.13.SEP.1Open Global Science Standards 2026™ · Science · Level 13 / High School 4 (Age 17–18) · Grade 12Formulate testable, theory-driven hypotheses, identify and control multi-variable systems, design rigorous experimental and simulation protocols, and utilize appropriate high-precision instruments.
- OGS.13.SEP.3Open Global Science Standards 2026™ · Science · Level 13 / High School 4 (Age 17–18) · Grade 12Differentiate fundamentally between descriptions, explanations, empirical evidence, models, laws, theories, and hypotheses, evaluating how scientific paradigms evolve and withstand systematic skepticism.
- OGS.13.SEP.2Open Global Science Standards 2026™ · Science · Level 13 / High School 4 (Age 17–18) · Grade 12Record, process, and analyze empirical data with integrity, modeling complex relationships via mathematical functions, algebraic systems, error magnitude propagation, and multicausal correlational analyses.
Curriculum Framework
12th Grade · Science · Open Global Science
1
8 lessons
Advanced Experimental Design and Instrumentation
Formulate theory-driven hypotheses, isolate multivariable controls, and design rigorous laboratory and simulation protocols using high-precision instrumentation.
2
8 lessons
Quantitative Data Modeling and Error Analysis
Record and analyze empirical datasets with mathematical rigor, propagate measurement uncertainties, and model nonlinear physical relationships.
3
8 lessons
Epistemology, Models, and Paradigm Shifts
Differentiate scientific constructs, evaluate the boundaries of mathematical and physical models, and analyze how scientific paradigms evolve under systematic skepticism.
4
8 lessons
Scientific Discourse, Ethics, and Public Policy
Synthesize peer-reviewed literature with precise attribution, build evidence-based scientific arguments, and evaluate ethical dilemmas in emerging technologies and health choices.