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Alg-2-Final-Review-1-2014Name-1
Alg-2-Final-Review-1-2014Name-1

... 7. 5(4b + 5) < 10 + 20b 8. 21 + 6b  3(2b + 1) Solve the compound inequality. Graph the solution set. 9. 4x + 12  8 and 8x – 10  30 10. 5x – 3 < –18 or 7x + 4 > 11 11. Graph the equation 4x + y = 12. Find the slope of the line through the pair of points. 12. (9, 12) and (–9, 8) 13. A cannery proce ...
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... 2 x(3x  2)  x( x 2  x  3) 6. Solve  3(2 x  1)  7 x  4 7. Find x-intercept and y-intercept of the equation 7x + 5y = 20. 8. What is the slope of the line which pass through points (7, 3) and (9,2)? 9. Convert 5x – 7y = 44 to slope-intercept form. What is the slope and y-intercept of this line ...
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Partial differential equation



In mathematics, a partial differential equation (PDE) is a differential equation that contains unknown multivariable functions and their partial derivatives. (A special case are ordinary differential equations (ODEs), which deal with functions of a single variable and their derivatives.) PDEs are used to formulate problems involving functions of several variables, and are either solved by hand, or used to create a relevant computer model.PDEs can be used to describe a wide variety of phenomena such as sound, heat, electrostatics, electrodynamics, fluid flow, elasticity, or quantum mechanics. These seemingly distinct physical phenomena can be formalised similarly in terms of PDEs. Just as ordinary differential equations often model one-dimensional dynamical systems, partial differential equations often model multidimensional systems. PDEs find their generalisation in stochastic partial differential equations.
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