Ghana curriculum lesson note

SHS 2 Aviation and Aerospace Engineering 1st Semester Week 12 Lesson Plan

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Weekly Learning Plan
SubjectAviation and Aerospace EngineeringWeek12
Duration60 minutesFormSHS 2
StrandCORE CONCEPTS IN AEROSPACE ENGINEERINGSub-StrandAERODYNAMICS AND PROPULSION
Learning Outcome(s)2.1.2.LO.1 - Explain the importance of weather in flight Problem-Solving Skills/ 2.1.2.LO.2 - Identify the forces acting on an aerospace vehicle in flight. Problem-Solving Skills: Through this lesson, students learn to apply the principles they have learned to solve real-life problems 2.1.2.LO.3 - Compute the thrust generated by the propulsion system of an aerospace vehicle
Content Standard2.1.2.CS.1 2.1.2.CS.2 2.1.2.CS.3
Learning Indicator(s)2.1.2.LI.2 - Calculate the lift, drag and weight of an aircraft
Lesson FocusCalculate the lift, drag and weight of an aircraft
Previous KnowledgeLearners recall related ideas, vocabulary or experiences from earlier lessons and everyday contexts.
Lesson Objective(s)Describe the key idea in: Calculate the lift, drag and weight of an aircraft Apply the idea through guided and independent learning activities. Demonstrate understanding through oral responses, written work or practical performance.
Essential Question(s)What engineering, operational or safety principle is central to Calculate the lift, drag and weight of an aircraft? How can evidence from models, diagrams, measurements, systems or real aviation examples help explain the concept? How can this knowledge be applied to make a safe, efficient or technically sound aviation/aerospace decision?
Pedagogical StrategiesCollaborative Learning Experiential Learning Problem-Based Learning Talk for Learning Model/Diagram-Based Learning Investigation and Simulation
Teaching & Learning ResourcesAviation/Aerospace reference materials Whiteboard/markers Learners' notebooks Relevant diagrams/charts/models Paper/card model materials Simple airflow/flight demonstration materials where available
Key Notes on Differentiation
ContentUse labelled diagrams, simplified system maps, physical/paper models, vocabulary prompts and worked examples for learners who need support. Extend advanced learners with design trade-offs, calculations, fault analysis, mission planning or deeper system comparisons.
ProcessUse mixed-ability groups with rotating engineering roles such as observer, recorder, modeller, presenter or safety checker. Where specialist aviation equipment is unavailable, use curriculum-aligned diagrams, simulations, videos, paper models and locally available materials.
ProductAllow appropriate evidence such as labelled diagrams, timelines, flowcharts, calculations, experiment records, model aircraft/UAV concepts, safety plans or presentations. Assess technical accuracy, safety awareness, engineering reasoning, communication, teamwork and ability to justify decisions.
Success CriteriaLearners use correct subject vocabulary. Learners complete the main task with reasonable accuracy. Learners explain or demonstrate how the concept applies in a new situation.
HomeworkComplete a short application task connected to the week's learning indicator.
Lesson Activities
StageTeacher ActivityLearner ActivityAssessment / DoK
Starter10 minutesShow a tool, drawing, system, product or workplace scenario linked to aerodynamics and propulsion and ask learners to identify the task or problem.Share prior knowledge, listen to peers and record the lesson question in their notebooks.Not provided.
Activity 115 minutesDemonstrate aerodynamics and propulsion using a diagram, tool, material sample, process chart or safe practical example.Observe the demonstration, identify tools or steps and record safety points.Ask learners to identify the correct tool, process, safety rule or design feature.
Activity 220 minutesGuide learners to plan, measure, assemble, test, troubleshoot or evaluate a task related to aerodynamics and propulsion.Complete the guided practical or analysis task while checking accuracy and safety.Check the task for accuracy, safe procedure and clear explanation.
Activity 310 minutesGive a technical problem and ask learners to select a suitable method, tool or design choice.Apply the method to the new problem and justify the technical choice.Use a short exit task on choosing the right process or tool for another technical task.
Lesson ClosureSummarise aerodynamics and propulsion and correct one common misconception using learner examples. State one thing learned and complete the exit response.

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