Gerald Makumba Author Documents

Found 20 documents

MOTION UNDER GRAVITY PART 2

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Nov 11, 2025
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USING THE EQUATIONS OF MOTION FOR BODIES MOVING …

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Nov 11, 2025
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LINEAR MOTION-MECHANICS

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Nov 11, 2025
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HOW TO USE TRAPEZIUM RULE

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Nov 11, 2025
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FINDING ACCELERATION AND AN INITIAL VELOCITY OF A …

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DISTANCE TRAVELLED IN THE nth SECOND

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Nov 11, 2025
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HOW TO FIND THE INITIAL VELOCITIES AND ACCELERATIONS …

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MOTION UNDER GRAVITY PART 1

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Nov 11, 2025
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HOW TO DERIVE EQUATIONS OF MOTION

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Nov 11, 2025
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GEOMETRICAL CONSTRUCTION

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HOW TO CREATE CLASS BOUNDARIES AND OTHER TYPES …

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FINDING MEAN, MODE, AND MEDIAN FOR DATA WITH …

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Nov 11, 2025
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This collection comprises educational resources authored by Gerald Makumba. It offers a focused compilation of materials designed to support learning in specific areas of mathematics and physics. The documents provide clear explanations and methodologies for various academic topics. The resources primarily cover fundamental concepts in mechanics, a branch of physics, and descriptive statistics, a core area of mathematics.

These materials are structured to guide users through essential principles and problem-solving techniques. They serve as valuable aids for students seeking to understand complex subjects. A significant portion of the collection is dedicated to linear motion and mechanics.

These documents delve into the principles governing the movement of bodies in a straight line. Users can find detailed explanations regarding velocity, acceleration, and displacement. Within the mechanics category, specific topics include the derivation and application of equations of motion.

Resources also address motion under gravity, providing insights into how gravitational forces affect moving objects. Practical examples and step-by-step solutions are often presented. Another major focus of Gerald Makumba's contributions is descriptive statistics.

This section introduces users to methods for summarizing and organizing data. It covers foundational statistical concepts essential for data analysis. Key statistical topics explored include measures of central tendency, such as the mean, mode, and median.

The documents explain how to calculate these measures for various data sets, including those with and without decimal places. Guidance on finding quartiles is also provided. Further statistical content encompasses the creation of frequency distribution tables and the calculation of variance and standard deviation.

These resources detail the processes for organizing raw data into meaningful distributions and quantifying data spread. Concepts like class boundaries are also explained. Beyond mechanics and descriptive statistics, the collection includes resources on other mathematical subjects.

Examples include geometrical construction techniques and the application of numerical methods like the trapezium rule. These documents broaden the scope of mathematical instruction available. The documents are presented as instructional guides, offering step-by-step approaches to solving problems and understanding theoretical concepts.

They are designed to be accessible and practical, aiding students in mastering specific skills. The content is suitable for self-study or as supplementary material for coursework. These resources are typically presented as concise tutorials or explanatory notes, often illustrating mathematical and scientific principles.

They are ideal for students, educators, and researchers seeking clear, direct explanations of core concepts in physics and mathematics. The materials aim to enhance comprehension and application of these subjects. educational materials, study guides, academic tutorials, physics and math resources, instructional notes

This, collection, comprises