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This Concept Map, created with IHMC CmapTools, has information related to: Periodic Motion, <math xmlns="http://www.w3.org/1998/Math/MathML"> <mrow> <mtext> T = 2 ∗ π </mtext> <msqrt> <mfrac> <mtext> m </mtext> <mtext> k </mtext> </mfrac> </msqrt> </mrow> </math> the m has the unit of kg, F = (-k)(x) variables are x, Newton's Laws (Apologia Physics Module 6) can be expanded and applied to Applications of Newton's Second Law (Apologia Physics, Module 7), motion that repeats itself regularly has amplitude, Mass/Spring System has Potential Energy, Physics has several branches of study such as Mechanics, Dynamics are combined in Work and Energy (Apologia Physics Module 9), F = (-k)(x) which is a linear equation, <math xmlns="http://www.w3.org/1998/Math/MathML"> <mrow> <mtext> θ = </mtext> <mfrac> <mtext> x </mtext> <mtext> l </mtext> </mfrac> </mrow> </math> where l, angle of displacement is found with <math xmlns="http://www.w3.org/1998/Math/MathML"> <mrow> <mtext> θ = </mtext> <mfrac> <mtext> x </mtext> <mtext> l </mtext> </mfrac> </mrow> </math>, period can be calculated <math xmlns="http://www.w3.org/1998/Math/MathML"> <mrow> <mtext> T = 2 ∗ π </mtext> <msqrt> <mfrac> <mtext> m </mtext> <mtext> k </mtext> </mfrac> </msqrt> </mrow> </math>, k is always negative, LECTURE 3 Pendulums when angle of displacement, Statics deals with Forces in the absence of changes in motion or energy, Physics has several branches of study such as Heat and Energy, when mass is given instead of the sping constant using w = m * g, Force due to the weight of the object being hung by the spring remember that when you are given mass instead of force, you can use weight = (mass)(gravity) w = (m)(g), <math xmlns="http://www.w3.org/1998/Math/MathML"> <mrow> <mtext> θ = </mtext> <mfrac> <mtext> x </mtext> <mtext> l </mtext> </mfrac> </mrow> </math> where x, LECTURE 2 Simple Harmonic Motion such as LECTURE 3 Pendulums, called Restoring Force when it is linearly proportional to the displacement away from equilibrium