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1. Logic of  Hypothesis Testing: Introduction

1. Logic of Hypothesis Testing: Introduction

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3. Effect Size:  Variance Explained

3. Effect Size: Variance Explained

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2. Effect Size: Two  Means

2. Effect Size: Two Means

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1. Effect Size:  Proportions

1. Effect Size: Proportions

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3. Chi Square:  Contingency Tables

3. Chi Square: Contingency Tables

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2. Chi Square:  One-Way Tables

2. Chi Square: One-Way Tables

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1. Chi Square: Chi  Square Distribution

1. Chi Square: Chi Square Distribution

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2. Transformations:  Tukey's Ladder of Powers

2. Transformations: Tukey's Ladder of Powers

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1. Transformations:  Log Transformations

1. Transformations: Log Transformations

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9. Estimation:  Confidence Interval on a Proportion

9. Estimation: Confidence Interval on a Proportion

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8. Estimation:  Confidence Interval on a Correlation

8. Estimation: Confidence Interval on a Correlation

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7. Estimation:  Confidence Interval on the Difference Between Two Means

7. Estimation: Confidence Interval on the Difference Between Two Means

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6. Estimation: The  t distribution

6. Estimation: The t distribution

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5. Estimation:  Confidence Interval for the Mean

5. Estimation: Confidence Interval for the Mean

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4. Estimation:  Confidence Intervals

4. Estimation: Confidence Intervals

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3. Estimation:  Characteristics of Estimators

3. Estimation: Characteristics of Estimators

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2. Estimation:  Degrees of Freedom

2. Estimation: Degrees of Freedom

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1. Estimation:  Introduction

1. Estimation: Introduction

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5. Sampling  Distributions: proportion

5. Sampling Distributions: proportion

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4. Sampling  Distributions: Pearson's r

4. Sampling Distributions: Pearson's r

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3. Sampling  Distributions: Difference Between Means

3. Sampling Distributions: Difference Between Means

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1. Sampling  Distributions: Introduction

1. Sampling Distributions: Introduction

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5. Normal  Distributions: Normal Approximation to the Binomial

5. Normal Distributions: Normal Approximation to the Binomial

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4. Normal  Distributions: Standard Normal Distribution

4. Normal Distributions: Standard Normal Distribution

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3. Normal  Distributions: Areas of Normal Distributions

3. Normal Distributions: Areas of Normal Distributions

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2. Normal  Distributions: The History of the Discovery of Normal Distributions

2. Normal Distributions: The History of the Discovery of Normal Distributions

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1. Normal  Distributions: Introduction

1. Normal Distributions: Introduction

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1. Research Design

1. Research Design

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7. Probability:  Base Rates

7. Probability: Base Rates

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6. Probability:  Hypergeometric Distribution

6. Probability: Hypergeometric Distribution

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5. Probability:  Poisson Distribution

5. Probability: Poisson Distribution

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4. Probability:  Binomial Distribution

4. Probability: Binomial Distribution

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3. Probability:  Permutations

3. Probability: Permutations

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2. Probability:  Basic Concepts

2. Probability: Basic Concepts

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1. Probability:  Introduction

1. Probability: Introduction

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4. Describing  Bivariate Data: Computing Pearson's r

4. Describing Bivariate Data: Computing Pearson's r

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3. Describing  Bivariate Data: Properties of Pearson's Correlation

3. Describing Bivariate Data: Properties of Pearson's Correlation

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2. Describing  Bivariate Data: Pearson's Correlation

2. Describing Bivariate Data: Pearson's Correlation

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1. Describing  Bivariate Distributions: Introduction

1. Describing Bivariate Distributions: Introduction

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8. Summarizing  Distributions: Measures of Central Tendency

8. Summarizing Distributions: Measures of Central Tendency

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7. Summarizing  Distributions: Shape

7. Summarizing Distributions: Shape

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6. Summarizing  Distributions: Measures of Variability

6. Summarizing Distributions: Measures of Variability

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5. Summarizing  Distributions: Comparing Measures of Central Tendency

5. Summarizing Distributions: Comparing Measures of Central Tendency

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4. Summarizing  Distributions: Additional Measures of Central Tendency

4. Summarizing Distributions: Additional Measures of Central Tendency

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3. Summarizing  Distributions: Mean and Median

3. Summarizing Distributions: Mean and Median

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2. Summarizing  Distributions: Measures of Central Tendency

2. Summarizing Distributions: Measures of Central Tendency

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1. Summarizing  Distributions: What is Central Tendency

1. Summarizing Distributions: What is Central Tendency

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5. Graphing  Distributions: Box Plots

5. Graphing Distributions: Box Plots

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4. Graphing  Distributions: Histograms

4. Graphing Distributions: Histograms

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3. Graphing  Distributions: Stem and Leaf Displays

3. Graphing Distributions: Stem and Leaf Displays

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2. Graphing  Distributions: Graphing Qualitative Data

2. Graphing Distributions: Graphing Qualitative Data

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1. Describing  Bivariate Distributions: Introduction

1. Describing Bivariate Distributions: Introduction

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9. Introduction to  Statistics: Levels of Measurement

9. Introduction to Statistics: Levels of Measurement

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8. Introduction to  Statistics: Percentiles

8. Introduction to Statistics: Percentiles

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7. Introduction to  Statistics: Linear Transformations

7. Introduction to Statistics: Linear Transformations

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6. Introduction to  Statistics: Inferential Statistics

6. Introduction to Statistics: Inferential Statistics

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5. Introduction to  Descriptive Statistics

5. Introduction to Descriptive Statistics

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4. Introduction to  Statistics: Summation Notation

4. Introduction to Statistics: Summation Notation

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3. Introduction to  Statistics: Variables

3. Introduction to Statistics: Variables

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2. Introduction to  Statistics: What are statistics?

2. Introduction to Statistics: What are statistics?

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1. Introduction to  Statistics: Importance of Statistics

1. Introduction to Statistics: Importance of Statistics

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Ex: Find the Inverse Laplace Transform of the Convolution of Two Functions<

Ex: Find the Inverse Laplace Transform of the Convolution of Two Functions<

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Ex: Find the Laplace Transform of  the Convolution Integral

Ex: Find the Laplace Transform of the Convolution Integral

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Ex:  Find the Convolution of Two Exponential Functions

Ex: Find the Convolution of Two Exponential Functions

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Ex: Find the Laplace Transform of a f(t) Times a Unit Step Function

Ex: Find the Laplace Transform of a f(t) Times a Unit Step Function

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Ex: Find the Laplace Transform of a Piecewise Defined Function (Ramp)

Ex: Find the Laplace Transform of a Piecewise Defined Function (Ramp)

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Ex: Find the Laplace Transform of a Step Function (method #2)

Ex: Find the Laplace Transform of a Step Function (method #2)

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Ex: Find the Laplace Transform of a Step Function (method #1)

Ex: Find the Laplace Transform of a Step Function (method #1)

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Ex: Write a Ramp Function Using the Unit Step Function

Ex: Write a Ramp Function Using the Unit Step Function

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Ex 2: Write a Step Function Using the Unit Step Function

Ex 2: Write a Step Function Using the Unit Step Function

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Ex 1: Write a Step Function Using the Unit Step Function

Ex 1: Write a Step Function Using the Unit Step Function

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Ex 2:  Solve a Homogeneous DE IVP Using Laplace Transforms

Ex 2: Solve a Homogeneous DE IVP Using Laplace Transforms

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Ex 1:  Solve a Homogeneous DE IVP Using Laplace Transforms

Ex 1: Solve a Homogeneous DE IVP Using Laplace Transforms

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Ex 2: Find the Inverse Laplace Transform of Y(s) Using Partial Fractions

Ex 2: Find the Inverse Laplace Transform of Y(s) Using Partial Fractions

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Ex 1: Find the Inverse Laplace Transform of Y(s) Using Partial Fractions

Ex 1: Find the Inverse Laplace Transform of Y(s) Using Partial Fractions

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Find Inverse Laplace Transforms:  sinh(at) and e^(at)

Find Inverse Laplace Transforms: sinh(at) and e^(at)

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Find Inverse Laplace Transforms:  sin(at) and cos(at)

Find Inverse Laplace Transforms: sin(at) and cos(at)

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Find Inverse Laplace Transforms:  e^(at) and t^n

Find Inverse Laplace Transforms: e^(at) and t^n

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Find Basic Inverse Laplace Transforms of the Form t^n

Find Basic Inverse Laplace Transforms of the Form t^n

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Laplace Transform:  Find Y(s)=L(y) Given a Nonhomogeneous Differential Equation

Laplace Transform: Find Y(s)=L(y) Given a Nonhomogeneous Differential Equation

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Laplace Transform:  Find Y(s)=L(y) Given a Homogeneous Differential Equation

Laplace Transform: Find Y(s)=L(y) Given a Homogeneous Differential Equation

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Ex: Find the Laplace Transform of f(t)=sin(6t) Using Definition

Ex: Find the Laplace Transform of f(t)=sin(6t) Using Definition

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Ex: Find the Laplace Transform of f(t)=t^3  Using Definition

Ex: Find the Laplace Transform of f(t)=t^3 Using Definition

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Ex: Find the Laplace Transform of f(t)=e^(2t) Using Definition

Ex: Find the Laplace Transform of f(t)=e^(2t) Using Definition

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Ex: Find the Laplace Transform of f(t)=3 Using Definition

Ex: Find the Laplace Transform of f(t)=3 Using Definition

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Introduction to Laplace Transforms

Introduction to Laplace Transforms

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Ex: Determine a Dampening Force For An Critically Damped System (Free Damped Vibration)

Ex: Determine a Dampening Force For An Critically Damped System (Free Damped Vibration)

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Ex: Determine a Dampening Force For An Overdamped System (Free Damped Vibration)

Ex: Determine a Dampening Force For An Overdamped System (Free Damped Vibration)

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Ex: Model Free Damped Vibration and Find Displacement Function

Ex: Model Free Damped Vibration and Find Displacement Function

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Ex 3: Free Undamped Motion IVP Problem (Spring System)

Ex 3: Free Undamped Motion IVP Problem (Spring System)

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Ex 2: Free Undamped Motion IVP Problem (Spring System)

Ex 2: Free Undamped Motion IVP Problem (Spring System)

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Ex 1: Free Undamped Motion IVP Problem (Spring System)

Ex 1: Free Undamped Motion IVP Problem (Spring System)

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Introduction to Free Undamped Motion (Spring System)

Introduction to Free Undamped Motion (Spring System)

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Find a Particular Solution to a Nonhomgeneous DE Using Variation of Parameters

Find a Particular Solution to a Nonhomgeneous DE Using Variation of Parameters

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Determine a Particular Solution of a Second Order DE using Variation of Parameters

Determine a Particular Solution of a Second Order DE using Variation of Parameters

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Ex 3: General Solution to a Second Order DE Using Variation of Parameters (trig)

Ex 3: General Solution to a Second Order DE Using Variation of Parameters (trig)

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Ex 2: General Solution to a Second Order DE Using Variation of Parameters

Ex 2: General Solution to a Second Order DE Using Variation of Parameters

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Ex 1: General Solution to a Second Order DE Using Variation of Parameters

Ex 1: General Solution to a Second Order DE Using Variation of Parameters

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