Description
The Waldorf Approach
In a chemistry workshop in Larna, Sweden the importance of the Waldorf approach in teaching chemistry was discussed in great detail. A teacher at the conference summed the message up as this, “It is quite different whether one is involved with chemistry as a science or technology or else as a pedagogical tool for life. As technology chemistry is a tool for controlling and utilizing the world for our purposes. But this “objective” approach contains a danger: acting separately from nature, our lack of intimate knowledge or appreciation has already resulted in serious damage to the natural world. For the developmental aims of Waldorf pedagogy, the goal is to live into a wonderful world of spiritual, soul experiences (a German word for this is “schliessen,” making connections), to get “caught up” in nature and put yourself experientially right into the process.”
BLOCK CONTENT
Planner Block: Eighth Grade World War I Block and Organic Chemistry Block
Video: WWI & WWII Main Lesson Block: Introduction: Scenes from the War
PDF: Eighth Grade Woodworking: Three-Legged Stool Carpentry Project Guide
Video: Eighth Grade Woodworking: Three-Legged Stool Carpentry Project Video
PDF: Eighth Grade Woodworking: Hinged Box Guide
Video: Eighth Grade Woodworking: Hinged Box Video Lesson
Subject Block: Eighth Grade Science Main Lesson Block: Lesson One: Organic Chemistry
The videos listed above are not Living Lesson videos. They are teacher support videos intended to assist you with this block. If you would like additional assistance for this class, you can upgrade to the Organic Chemistry Block with Living Lessons.
World War I and organic chemistry are intrinsically linked because the conflict is often referred to as “The Chemists’ War”. The massive industrial and academic machinery required to sustain organic chemical synthesis was redirected to drive global warfare, introducing technologies that shaped both combat and the modern scientific industry.
Organic chemists were directly responsible for synthesizing the lethal and incapacitating agents used on the battlefield. This included carbon-based compounds such as phosgene, mustard gas, and, later, Lewisite. The production of synthetic ammonia (which allowed for the continuous production of nitrates needed for artillery shells and explosives) relied heavily on organic chemistry. This was made possible by the Haber-Bosch process.
Interestingly, the devastation of chemical weapons later birthed modern oncology. Autopsies of soldiers exposed to nitrogen mustards during WWI showed depleted white blood cells, which led directly to the development of the first chemotherapy drugs. The war forced nations to innovate in synthetic organic chemistry to bypass naval blockades. For example, chemist Chaim Weizmann developed an organic fermentation process for producing acetone, which was vital for manufacturing cordite—a propellant used by British artillery.

















