Calculus
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Master Newton's Law of Cooling with a bite sized video explanation from Patrick Ford
Solve the differential equation in Exercises 9–22.
11. (dy/dx) = e^(x-y)
13. (dy/dx) = √y cos²√y
17. (dy/dx) = 2x(y - 1), y > 1
In Exercises 125–128 solve the differential equation.
127. yy' = sec(y²)sec²(x)
In Exercises 1–22, solve the differential equation.
sec x dy + x cos² y dx = 0