
Public learning track
Cell Ultrastructure, Microscopy, and Endosymbiosis
9th Grade · Science · Open Global Science
6 lessons
Goal
Compare prokaryotic and eukaryotic cellular ultrastructures, explain the endosymbiotic theory of organelle evolution, and apply microscopy techniques to analyze specimen dimensions.
Featured Diagrams
Cell Structure: Eukaryotic vs Prokaryotic Cells
6 lessons
0 of 6 done
- 1Cell Structure: Eukaryotic vs Prokaryotic CellsUp nextStart
- 2Eukaryotic Organelle Ultrastructure and FunctionsPremiumNot started yet
- 3Preparing and Staining Temporary Microscope MountsNot started yet
- 4Calculating Magnification, Image Size, and Actual SizeNot started yet
- 5Comparing Light and Electron Microscopy ResolutionNot started yet
- 6The Endosymbiotic Origin of Mitochondria and ChloroplastsNot started yet
Curriculum Framework
9th Grade · Science · Open Global Science
1
6 lessons
Cell Ultrastructure, Microscopy, and Endosymbiosis
Compare prokaryotic and eukaryotic cellular ultrastructures, explain the endosymbiotic theory of organelle evolution, and apply microscopy techniques to analyze specimen dimensions.
2
7 lessons
Biomolecules and Biochemical Testing Methods
Analyze the molecular structures, monomeric subunits, and physiological functions of carbohydrates, lipids, proteins, and nucleic acids, and execute biochemical identification assays.
3
8 lessons
Membrane Transport and Surface Area Scaling
Explain fluid mosaic membrane architecture, investigate passive and active transport mechanisms, and quantify diffusion limitations using surface-area-to-volume calculations.
4
7 lessons
Enzymes, Kinetics, and Catalytic Mechanisms
Explain enzyme tertiary specificity, active site catalytic mechanisms, and quantitatively evaluate how environmental factors and inhibitors alter reaction kinetics.
5
7 lessons
Cellular Respiration and Energy Transfer
Analyze cellular respiration as an exothermic catabolic pathway, comparing the biochemical stages of aerobic respiration with anaerobic fermentation.
6
6 lessons
Photosynthesis and Light Energy Conversion
Describe photosynthesis as an endothermic anabolic process, analyze light-dependent and Calvin cycle stages, and evaluate limiting factors using mathematical laws.
7
8 lessons
Cell Cycle, Mitosis, Differentiation, and Cancer
Describe eukaryotic cell cycle phases, semiconservative DNA replication, and mitotic division, explain stem cell differentiation, and analyze oncogenic checkpoint failures.