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  • John Rhodes
  • July 30, 2023
  • Geometry

Understanding the Polygon Exterior Angles Theorem | Exploring the 360-Degree Total Sum of Exterior Angles in Polygons

Polygon Exterior Angles Theorem The Polygon Exterior Angles Theorem states that the sum of the measures of the exterior angles of a polygon is always 360 degrees...
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  • John Rhodes
  • July 30, 2023
  • Geometry

Understanding the Corollary to the Polygon Interior Angles Theorem | A Formula for Calculating the Sum of Interior Angles in Convex Polygons

Corollary to the Polygon Interior Angles Theorem The Corollary to the Polygon Interior Angles Theorem states that the sum of the interior angles of any convex polygon...
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  • John Rhodes
  • July 30, 2023
  • Geometry

Unlock the Secrets of Parallelograms | Properties, Types, and Calculations

parallelogram A parallelogram is a special type of quadrilateral, which is a polygon with four sides A parallelogram is a special type of quadrilateral, which is a...
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  • John Rhodes
  • July 30, 2023
  • Calculus

Demystifying the Chain Rule | A Step-by-Step Guide to Finding the Derivative of a Composition of Functions in Calculus

d/dx[f(g(x))]=f'(g(x))g'(x) The given equation is known as the chain rule in calculus The given equation is known as the chain rule in calculus. It is used to...
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  • John Rhodes
  • July 30, 2023
  • Calculus

Understanding Partial Differentiation | The Key to Analyzing Multivariable Functions

the process used to differentiate functions using x and y together The process used to differentiate functions with respect to both x and y simultaneously is known...
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  • John Rhodes
  • July 30, 2023
  • Calculus

Understanding Exponential Growth and Decay | Exploring the Function f(x) = a^x

the function give by f(x)=a^x, where a>0 and a≠ 1 The function f(x) = a^x represents exponential growth or decay The function f(x) = a^x represents exponential...
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  • John Rhodes
  • July 30, 2023
  • Calculus

Exploring Exponential Decay | Understanding the Equation A(t) = P(1/2)^t/h

A(t)=P(1/2)^t/h In the given equation, A(t) represents the amount of a substance at time t, P is the initial amount of the substance, and h is a...
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  • John Rhodes
  • July 30, 2023
  • Calculus

Exponential Growth and Decay | Understanding the A(t) = P(1 +/- r)^t Formula

A(t)=P(1 +/- r)^t In the formula A(t) = P(1 +/- r)^t, we are looking at exponential growth or decay In the formula A(t) = P(1 +/- r)^t,...
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