
Public learning track
Plant Anatomy, Physiology, and Life Cycles
6th Grade · Science · Open Global Science
9 lessons
Goal
Investigate plant structures, vascular transport, photosynthesis, transpiration, and compare plant and animal life cycles.
Featured Diagrams
Plant Organs: Roots, Stems, and Leaves
9 lessons
0 of 9 done
- 1Plant Organs: Roots, Stems, and LeavesUp nextStart
- 2Seed Structure and Germination ConditionsPremiumNot started yet
- 3Vascular Transport: Xylem and Phloem FunctionNot started yet
- 4Transpiration and Stomata RegulationNot started yet
- 5Photosynthesis Process and Chemical EquationNot started yet
- 6Testing Leaves for Starch ProductionNot started yet
- 7Flower Anatomy, Pollination, and FertilizationNot started yet
- 8Comparing Plant and Animal Reproductive ProcessesNot started yet
- 9Comparing Plant and Animal Life CyclesNot started yet
Curriculum Framework
6th Grade · Science · Open Global Science
1
11 lessons
Cell Theory, Microscopy, and Membrane Transport
Explain cell theory, identify organelles under a microscope, and model passive and active transport across cell membranes.
2
9 lessons
Hierarchical Organization and Human Body Systems
Analyze how cells, tissues, organs, and organ systems work together to sustain life in animals and humans.
3
9 lessons
Human Growth, Puberty, and Health Science
Evaluate physical maturation, endocrine regulation, disease prevention, and the physiological effects of lifestyle decisions.
4
9 lessons
Plant Anatomy, Physiology, and Life Cycles
Investigate plant structures, vascular transport, photosynthesis, transpiration, and compare plant and animal life cycles.
5
9 lessons
Cellular Division, Reproduction, and Genetics
Compare modes of reproduction and cell division, and apply Mendelian principles to predict inheritance patterns.
6
9 lessons
Evolutionary Theories, Natural Selection, and Adaptations
Compare evolutionary mechanisms, explain how natural selection acts on genetic variation, and examine reasons for extinction.
7
11 lessons
Ecosystems, Biogeochemical Cycles, and Conservation
Model ecological energy transfer, biogeochemical cycling, food web interactions, and the critical importance of conservation units.