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Find the integral surface of the partial differential equation:(x–y) y^2 p+(y–x)x^2 q=(x^2 +y^2)z through the curve xz=a^2, y=0
Find the integral surface of the partial differential equation:(x–y) y^2 p+(y–x)x^2 q=(x^2 +y^2)z through the curve xz=a^2, y=0
Find the integral curves of the following equations:dx/(x^2–y^2–yz) = dy/(x^2–y^2–zx) = dz/[z(x–y)]
Apply the method of variations of parameters to solve the following differential equations: y" +a^2y=cosec ax
(x^2)d^2y/dx^2 –dy/dx –4x^3y =8x^3 sinx^2 ,x>0
Apply the method of variations of parameters to solve the following differential equations:x^2y" +xy'-y=x^2e^x
Solve the differential equation y''=1+(y')^2
xy^2 − x^2)dx + (3x^2 y^2 + x^2 y − 2x^3+ y^2) dy=0
To solve the initial value problem using the method of Laplace transforms:
y''+16y=8cos4t; y(0)=0; y'(0)=8
(y^2 +yz+ z^2)dx +(z^2 +zx+ x^2)dy + (x^2 +xy+ y^2)dz = 0
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