Through the Explore phase, students developed a foundational understanding of phylogeny and the evolutionary Tree of Life. In the Execute phase, they applied this knowledge by analyzing traits and building evolutionary relationships. The Enhance phase demonstrated how Augmented Reality transforms abstract evolutionary models into interactive learning experiences. Together, these phases highlight how bio-inspired thinking helps explain the organization of life and encourages further exploration of evolutionary science.

Phase Description
Explore

- Research and Discovery: Students explore the concept of the evolutionary Tree of Life and phylogeny by examining how scientists identify evolutionary relationships between organisms. Through guided reading, visual examples, and multimedia resources, learners investigate common ancestry, branching patterns, and the types of evidence used to reconstruct evolutionary histories.

- Content Development: Content is developed around key phylogenetic concepts, including common ancestors, homologous and analogous traits, and the interpretation of phylogenetic trees. The learning materials emphasize evolution as a branching, evidence-based process rather than a linear progression, preparing students for practical application in later stages.

- Needs Analysis: This phase addresses students’ common difficulties in understanding abstract evolutionary diagrams, interpreting branching relationships, and distinguishing between similarity and relatedness. Visual and interactive approaches are identified as necessary to support comprehension, reduce misconceptions, and prepare learners for constructing their own phylogenetic models.

Execute


- Curriculum Implementation: The unit is implemented through inquiry-based biology lessons aligned with secondary-level curricula on evolution, biodiversity, and classification. Students apply theoretical knowledge by analyzing traits and evolutionary evidence, reinforcing curriculum goals related to scientific reasoning and systems thinking.

- Interactive Exercises: Students participate in hands-on AR-supported activities where they individually or collaboratively analyze organisms and construct a shared phylogenetic tree. Using 3D models and interactive elements, learners compare traits, determine branching points, and justify evolutionary relationships based on evidence.

- Feedback Collection: Feedback is gathered through teacher observation, peer discussion, and short reflective tasks. Students receive formative feedback during the construction of phylogenetic trees, allowing them to revise their reasoning and improve their understanding through dialogue and iteration.

Enhance

- AR Integration: Augmented Reality is integrated to visualize phylogenetic trees as three-dimensional, interactive structures. AR enables students to manipulate branches, explore common ancestors, and spatially organize organisms, making abstract evolutionary relationships tangible and easier to understand.

- Interactive Learning: Through AR interaction, students actively explore, test, and modify phylogenetic models. This supports inquiry-based learning, encourages hypothesis testing, and deepens conceptual understanding by allowing learners to engage directly with evolutionary data and relationships.

Gamified Content:

  • Points and Badges: Students earn points for correctly placing organisms, identifying shared traits, and justifying evolutionary relationships. Badges such as “Phylogeny Explorer” or “Tree of Life Architect” recognize achievement and progress.
  • Leaderboards: Optional classroom leaderboards display individual or group progress, encouraging friendly competition and sustained engagement without emphasizing ranking over learning.
  • Quests and Levels: Learning activities are structured as evolutionary quests, where students progress through levels representing increasing complexity—from identifying simple traits to constructing complete phylogenetic trees.
  • Rewards for Exploration: Hidden AR hotspots, bonus information panels, or additional points reward students who explore models in greater depth or provide well-supported explanations, fostering curiosity and deeper inquiry.
  • Collaborative Gamified Tasks: Students work in small teams to solve challenges such as resolving conflicting evidence or refining a shared phylogenetic tree. Collaboration supports communication, collective reasoning, and shared problem-solving.

AR-Based Assessments:  Students are assessed through AR-based tasks that require them to construct, interpret, and explain phylogenetic trees. Assessment focuses on the accuracy of relationships, the quality of evidence-based reasoning, and the ability to reflect on evolutionary processes. These assessments support both formative and summative evaluation within an interactive learning environment.