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XReadyLab VR Physics: Thermodynamics Lab所有人
更新日期2026.02.05
分类应用
游戏模式单人
类型教育
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简介
Students interact with heat, energy, and physical systems in real time—observing temperature changes, energy transfer, and phase transitions inside a safe, immersive virtual environment. The lab transforms abstract thermodynamic concepts into observable processes, enabling clear conceptual understanding through direct interaction.
Designed primarily for High School physics education, the lab can also be used in Middle School as an advanced or enrichment tool, as well as for independent home learning.
What students do in VR
Manipulate virtual systems to add or remove heat
Observe real-time temperature changes and energy transfer
Trigger and analyze phase transitions (solid, liquid, gas)
Compare different thermodynamic processes under controlled conditions
Use virtual measurement tools to collect and interpret data
What students learn
Heat, temperature, and thermal equilibrium
Energy transfer and conservation of energy
Phase transitions and latent heat
First and Second Laws of Thermodynamics
Relationship between microscopic motion and macroscopic properties
Experimental analysis and measurement precision
For Schools
Aligned with IB, NGSS, TEKS, College Board (AP), Cambridge, CBSE, and other national and international curricula
Includes ready-to-use Lesson Plans and Engagement Playbooks, covering:
Curriculum alignment and learning objectives
Instructions before, during, and after the VR simulation
Student group organization and classroom workflows
Reflection questions, analytical tasks, and practical assignments
Assessment guidance and learning outcomes
Troubleshooting checklist for technical issues
Designed for classroom use, VR labs, blended learning, and homework extension
Age range and level
Physics — Grades 8–11
Designed primarily for High School, suitable for advanced Middle School use
Trust and scientific credibility
Built by winners and coaches of international science Olympiads
Developed in collaboration with scientists from MIT, Harvard, and EPFL
Based on standard physics laboratory methodology and evidence-based educational design
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