Classify each differential equation as an ordinary differential equation (ODE) or a partial differential equation (PDE), give the order, and indicate the independent and dependent variables. If the...


Classify each differential equation as an ordinary differential equation (ODE) or a partial differential equation<br>(PDE), give the order, and indicate the independent and dependent variables. If the equation is an ODE,<br>indicate whether the equation is linear or nonlinear.<br>d.r<br>- et = 4t – 2<br>dt<br>ODE or PDE:<br>Order:<br>Independent variable(s):<br>Dependent variable:<br>Linear or nonlinear:<br>du<br>du<br>(b)<br>ODE or PDE:<br>Order:<br>Independent variable(s):<br>Dependent variable:<br>Linear or nonlinear:<br>1 d³y<br>sin(x)y = x²y<br>I dr3<br>ODE or PDE:<br>Order:<br>Independent variable(s):<br>Dependent variable:<br>Linear or nonlinear:<br>

Extracted text: Classify each differential equation as an ordinary differential equation (ODE) or a partial differential equation (PDE), give the order, and indicate the independent and dependent variables. If the equation is an ODE, indicate whether the equation is linear or nonlinear. d.r - et = 4t – 2 dt ODE or PDE: Order: Independent variable(s): Dependent variable: Linear or nonlinear: du du (b) ODE or PDE: Order: Independent variable(s): Dependent variable: Linear or nonlinear: 1 d³y sin(x)y = x²y I dr3 ODE or PDE: Order: Independent variable(s): Dependent variable: Linear or nonlinear:

Jun 05, 2022
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