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Showing videos from
**Eddie Woo**
with a total of **3,959** videos

07:59 The Ball & Stone (2 of 2: Determining Restriction on V)

4y10m ago

15:12 The Ball & Stone (1 of 2: Finding Time of Collision)

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13:57 Acceleration in terms of Velocity (2 of 2: Derivation & Example)

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06:19 Acceleration in terms of Velocity (1 of 2: Review)

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13:59 Introductory Guide to Describing Motion

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09:48 Velocity as a Function of Displacement

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03:13 Solving Equations with Expanding Brackets

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05:02 Solving Equations by Collecting Like Terms (2 of 2)

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10:16 Solving Equations by Collecting Like Terms (1 of 2)

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08:51 Volumes by Slicing: Volume Generated by Rotation About y = 6

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08:31 Volumes by Slicing: Understanding the Annulus

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11:18 Introduction to Volumes by Slicing

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05:27 Translating Words into Algebra

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12:15 Review: Commutative, Associative & Distributive Laws

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13:20 Simple Harmonic Motion Example Question: The Spring

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09:29 Physical Models and their Differential Equations

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03:31 Key Illustration for Understanding Simple Harmonic Motion

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12:16 Understanding SHM by examining its graphs

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08:44 Introduction to Simple Harmonic Motion: Time Equations

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07:05 Solving Equations: What happens when the pronumeral has a square root (√a)?

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10:42 Solving Equations: What happens when the pronumeral is squared (a²)?

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07:34 Solving Equations with Mixed Numerals

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06:47 Differentiating the fourth root of x (by first principles)

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09:24 "Practice makes perfect", and other lies we believe about learning

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09:29 Discussion: Different Approaches to Solving One Equation

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08:20 1-Step & 2-Step Equations

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04:24 Introduction to Solving Equations

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05:20 Integrating Motion Equations: The Tennis Ball (3 of 3)

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12:15 Integrating Motion Equations: The Tennis Ball (2 of 3)

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12:32 Integrating Motion Equations: The Tennis Ball (1 of 3)

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17:16 Calculating Interest for Different Compounding Periods

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13:48 Interpreting Displacement-Time Graphs

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08:56 3 Definite Integrals Evaluated by Trigonometric Substitution

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04:19 Integrating √[(1+x)/(1-x)] by Trigonometric Substitution

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06:09 Integrating √(16-x²)/x² by Trigonometric Substitution

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06:42 How to read and use Compound Interest Tables

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13:30 Comparing Interest Over Time

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03:26 Proving Properties of Definite Integrals (2 of 2)

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11:49 Proving Properties of Definite Integrals (1 of 2)

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12:06 Evaluating Recurrence Relations

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08:05 Straight Line Motion: introductory example question

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18:03 Investigating the Tennis Ball with Calculus

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05:31 Introduction to Straight Line Motion: The Tennis Ball

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12:17 Language for Describing Straight Line Motion

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04:44 Overview of All HSC Motion Topics

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06:31 Multiplying Mixed Numerals

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03:51 Correction of Wrong Solution from Fitzpatrick (integration question)

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14:27 Tricky Recurrence Relation with Unexpected Algebraic Manipulation

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09:05 Integrating √[x/(1-x)] by Trigonometric Substitution

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05:09 Year 10 Test Review: Geometry & Measurement

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05:12 Year 10 Test Review: Data & Statistics

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12:02 Year 10 Test Review: Probability

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09:45 Year 10 Test Review: Algebra

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11:22 "Growth Rate" as a Negative Percentage

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12:27 Exponential Growth Example: Insect Population

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11:47 A more sophisticated model for Exponential Growth & Decay with constraints

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01:51 How to use the Compound Interest Formula (easy example question)

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11:08 Developing the Compound Interest Formula

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08:54 The difference between Simple and Compound Interest

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03:24 Why is it useful to express quantities as percentages?

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05:24 Decimals on a Calculator: An Important Warning!

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05:10 Percentages of Quantities & Quantities as Percentages

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05:09 Why do logarithmic functions have absolute value signs after integration?

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05:24 Integrating with t-results (3 of 3): Further example

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09:57 Integrating with t-results (2 of 3): Changing the variable of integration

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03:51 Integrating with t-results (1 of 3): Example integral through identities

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09:32 Growth & Decay with Constraints (2 of 2): Expression for Rate of Change

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11:16 Growth & Decay with Constraints (1 of 2): Expression for Population

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07:03 Introduction to Growth & Decay with Constraints

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03:27 Recurrence Relations without IBP (2 of 2): (x^n)/(x+1)

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04:33 Recurrence Relations without IBP (1 of 2): (tan x)^n

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05:02 Sometimes integration by parts is a bad idea...

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