CUS3701
Assignment 3 2025
Unique No: 70798
DUE 4 August 2025
, Assignment 03
Question 1
1.1
In the extract, both Mr Moeng and Mrs Lebepe are dealing with barriers to learning
specifically low learner engagement and difficulty in understanding subject content. The
chosen strategies (Problem Solving, Flipped Classroom, and Simulation) are well suited
to address these challenges by actively involving learners, catering to different learning
styles, and making content more accessible.
1. Problem Solving
Problem solving encourages learners to think critically and take responsibility for their
learning. For Mr Moeng’s science learners who struggle during practical experiments,
problem solving tasks can help break down complex experiments into manageable
steps. For example, learners can be asked to solve real-life physics scenarios before
conducting actual experiments. This enhances their reasoning and helps them
understand the purpose of each activity, reducing anxiety and confusion.
For Mrs Lebepe’s English learners, problem solving can be used in reading
comprehension exercises, where learners must deduce meaning, infer character
motives, or identify the cause and effect in stories. This method strengthens
understanding by encouraging learners to find solutions, rather than memorizing
content.
2. Flipped Classroom
In a flipped classroom, learners are introduced to content outside of class (e.g. videos,
notes, or readings), and class time is used for discussion and application. This benefits
learners who need extra time to understand new concepts — such as those with
language barriers or learning difficulties.
For example, in English, learners can watch a video explaining a poem at home and
then come to class to discuss it. This gives them time to process the material at their
, own pace and boosts confidence. In science, learners can view a pre-recorded demo of
an experiment before attempting it in class, making practical work less intimidating.
3. Simulation
Simulation provides learners with realistic, hands-on experiences in a controlled setting.
In science, Mr Moeng can use computer simulations to demonstrate chemical reactions
or physics experiments that might be dangerous, expensive, or difficult to set up. This
helps learners visualize complex processes and build understanding safely.
In English, Mrs Lebepe could use role-playing simulations where learners act out
scenes from a play or practice real-life dialogues. This improves communication skills,
vocabulary usage, and boosts learner confidence especially for those who are shy or
struggle with public speaking.
Each of these strategies addresses specific learning barriers, such as lack of
confidence, language issues, or fear of failure, by making lessons more engaging,
supportive, and learner-centered.
1.2
Problem-solving as a strategy is deeply aligned with the goals of effective curriculum
implementation. It transforms the classroom from a space of passive reception to one of
active learning and meaningful engagement. Here's how it enhances curriculum
delivery:
1. Encourages Deeper Understanding
Problem-solving requires learners to actively engage with content. Instead of simply
memorizing facts, they must apply their knowledge to solve real-world problems. This
kind of thinking promotes deeper understanding and long-term retention, which are core
aims of the curriculum.
For instance, a physical science teacher might ask learners to design a basic electrical
circuit using limited resources. This not only checks their content knowledge but also
assesses creativity and logic, pushing them to apply what they've learned in a practical
way.
Assignment 3 2025
Unique No: 70798
DUE 4 August 2025
, Assignment 03
Question 1
1.1
In the extract, both Mr Moeng and Mrs Lebepe are dealing with barriers to learning
specifically low learner engagement and difficulty in understanding subject content. The
chosen strategies (Problem Solving, Flipped Classroom, and Simulation) are well suited
to address these challenges by actively involving learners, catering to different learning
styles, and making content more accessible.
1. Problem Solving
Problem solving encourages learners to think critically and take responsibility for their
learning. For Mr Moeng’s science learners who struggle during practical experiments,
problem solving tasks can help break down complex experiments into manageable
steps. For example, learners can be asked to solve real-life physics scenarios before
conducting actual experiments. This enhances their reasoning and helps them
understand the purpose of each activity, reducing anxiety and confusion.
For Mrs Lebepe’s English learners, problem solving can be used in reading
comprehension exercises, where learners must deduce meaning, infer character
motives, or identify the cause and effect in stories. This method strengthens
understanding by encouraging learners to find solutions, rather than memorizing
content.
2. Flipped Classroom
In a flipped classroom, learners are introduced to content outside of class (e.g. videos,
notes, or readings), and class time is used for discussion and application. This benefits
learners who need extra time to understand new concepts — such as those with
language barriers or learning difficulties.
For example, in English, learners can watch a video explaining a poem at home and
then come to class to discuss it. This gives them time to process the material at their
, own pace and boosts confidence. In science, learners can view a pre-recorded demo of
an experiment before attempting it in class, making practical work less intimidating.
3. Simulation
Simulation provides learners with realistic, hands-on experiences in a controlled setting.
In science, Mr Moeng can use computer simulations to demonstrate chemical reactions
or physics experiments that might be dangerous, expensive, or difficult to set up. This
helps learners visualize complex processes and build understanding safely.
In English, Mrs Lebepe could use role-playing simulations where learners act out
scenes from a play or practice real-life dialogues. This improves communication skills,
vocabulary usage, and boosts learner confidence especially for those who are shy or
struggle with public speaking.
Each of these strategies addresses specific learning barriers, such as lack of
confidence, language issues, or fear of failure, by making lessons more engaging,
supportive, and learner-centered.
1.2
Problem-solving as a strategy is deeply aligned with the goals of effective curriculum
implementation. It transforms the classroom from a space of passive reception to one of
active learning and meaningful engagement. Here's how it enhances curriculum
delivery:
1. Encourages Deeper Understanding
Problem-solving requires learners to actively engage with content. Instead of simply
memorizing facts, they must apply their knowledge to solve real-world problems. This
kind of thinking promotes deeper understanding and long-term retention, which are core
aims of the curriculum.
For instance, a physical science teacher might ask learners to design a basic electrical
circuit using limited resources. This not only checks their content knowledge but also
assesses creativity and logic, pushing them to apply what they've learned in a practical
way.