Ghana curriculum lesson note

SHS 2 Biomedical Science 2nd Semester Week 16 Lesson Plan

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Weekly Learning Plan
SubjectBiomedical ScienceWeek16
Duration60 minutesFormSHS 2
StrandBIOMEDICAL INNOVATIONSub-StrandRESEARCH AND DESIGN IN BIOMEDICAL SCIENCE
Learning Outcome(s)2.4.1.LO.1 - Use scientific literature and statistics to design experiments and analyse results
Content Standard2.4.1.CS.1
Learning Indicator(s)2.4.1.LI.2 - Apply knowledge of specified statistical analysis methods to analyse the results of experimental studies. Structured Talk for Learning: Engage in a discussion on the explanation and identification of dependent and independent variables of a sample biomedical study. Discuss statistical measures and the effect of sample size on the representation of a population. Activity-Based Learning: Using data from the study, learners calculate measures of central tendency (mean, median, and mode) and measures of variability (range, variance and standard deviation). On scatter plots or histograms, learners are tasked to change scales on the y-axis (ordinate) for the plot of the same data and observe how changes in scale may exaggerate or diminish an outcome
Lesson FocusApply knowledge of specified statistical analysis methods to analyse the results of experimental studies.
Previous KnowledgeLearners recall related ideas, vocabulary or experiences from earlier lessons and everyday contexts.
Lesson Objective(s)Describe the key idea in: Apply knowledge of specified statistical analysis methods to analyse the results of experimental studies. Apply the idea through guided and independent learning activities. Demonstrate understanding through oral responses, written work or practical performance.
Essential Question(s)What biomedical principle, process, risk or intervention is central to Apply knowledge of specified statistical analysis methods to analyse the results of experimental studies. Structured Talk for Learning: Engage in a discussion on the explanation and identification of dependent and independent variables of a sample biomedical study. Discuss statistical measures and the effect of sample size on the representation of a population. Activity-Based Learning: Using data from the study, learners calculate measures of central tendency (mean, median, and mode) and measures of variability (range, variance and standard deviation). On scatter plots or histograms, learners are tasked to change scales on the y-axis (ordinate) for the plot of the same data and observe how changes in scale may exaggerate or diminish an outcome? What evidence, observation, device output or scientific information would help us make a sound biomedical decision? How can the lesson knowledge be applied safely and ethically to improve health, diagnosis, therapy, prevention or biomedical innovation?
Pedagogical StrategiesCollaborative Learning Problem-Based Learning Case-Based Learning Critical Observation Research/Inquiry-Based Learning Digital/Information Literacy Design Thinking Project-Based Learning
Teaching & Learning ResourcesBiomedical Science reference materials Whiteboard/markers Learners' notebooks Relevant diagrams/charts/models Printed articles Internet Projector Writing boards Projector YEAR THREE
Key Notes on Differentiation
ContentUse labelled diagrams, simplified case cards, vocabulary supports, device images and stepwise prompts for learners who need additional support. Extend advanced learners with multi-factor cases, risk-benefit evaluation, source-credibility analysis, design constraints or deeper system interpretation.
ProcessUse mixed-ability and gender-balanced grouping with clear roles such as observer, recorder, risk assessor, presenter or design lead. Where access to hospitals, laboratories or biomedical devices is limited, use curriculum-aligned images, videos, simulations, case data and virtual/printed workflows without changing the learning objective.
ProductAllow appropriate evidence such as risk maps, case analyses, mind maps, system diagrams, diagnostic/therapy comparison charts, research reports, design proposals or presentations. Assess biomedical accuracy, safety awareness, evidence use, scientific reasoning, ethical judgement, communication 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 minutesPresent a diagram, specimen, data set or everyday situation connected to specified statistical analysis methods to analyse the results of experimental studies. structured and ask learners what they observe.Share prior knowledge, listen to peers and record the lesson question in their notebooks.Not provided.
Activity 115 minutesUse a labelled diagram, model, experiment, data table or safe demonstration to explain specified statistical analysis methods to analyse the results of experimental studies. structured.Observe carefully, record key terms and answer oral questions.Ask learners to identify the key feature, variable, process or relationship.
Activity 220 minutesGuide groups to observe, classify, measure, compare or explain evidence related to specified statistical analysis methods to analyse the results of experimental studies. structured.Work in groups to complete the observation, classification, measurement or explanation task.Review group responses for accurate science vocabulary and evidence.
Activity 310 minutesGive a new case, data set or observation and ask learners to predict or explain the outcome.Apply the concept to the new case and support the answer with evidence.Use an exit task that asks for a prediction, explanation or calculation.
Lesson ClosureSummarise specified statistical analysis methods to analyse the results of experimental studies. structured and correct one common misconception using learner examples. State one thing learned and complete the exit response.

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