Order and Degree of Differential Equation
Differential Equation

87151 The degree of the differential equation
\(\frac{d^{2} y}{d x^{2}}=\frac{5 y+\frac{d y}{d x}}{\sqrt{\frac{d^{2} y}{d x^{2}}}}\) is equal to

1 2
2 3
3 4
4 \(5 / 2\)
Differential Equation

87162 The order and degree of the differential equation of the family of circles of fixed radius \(r\) with centres on the \(\mathbf{y}\)-axis are respectively

1 2,2
2 2,3
3 1,1
4 3,1
5 1,2
Differential Equation

87163 The order and degree of the differential equation \(\left(\frac{d^{3} y}{d x^{3}}\right)^{\frac{1}{3}}=2 \frac{d^{2} y}{d x^{2}}+\sqrt[3]{\cos ^{2} x}\) are respectively

1 3 and 1
2 3 and 3
3 1 and 3
4 3 and 2
5 2 and 2
Differential Equation

87164 The degree and order of the differential equation \(\mathbf{y}=\mathbf{p x}+\mathbf{x} \sqrt[3]{\mathbf{a}^{2} \mathbf{p}^{2}+\mathbf{b}^{2}}\), where \(p=\frac{\mathbf{d y}}{\mathbf{d x}}\), are respectively

1 3,1
2 1,3
3 1,1
4 3,3
5 3,2
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Differential Equation

87151 The degree of the differential equation
\(\frac{d^{2} y}{d x^{2}}=\frac{5 y+\frac{d y}{d x}}{\sqrt{\frac{d^{2} y}{d x^{2}}}}\) is equal to

1 2
2 3
3 4
4 \(5 / 2\)
Differential Equation

87162 The order and degree of the differential equation of the family of circles of fixed radius \(r\) with centres on the \(\mathbf{y}\)-axis are respectively

1 2,2
2 2,3
3 1,1
4 3,1
5 1,2
Differential Equation

87163 The order and degree of the differential equation \(\left(\frac{d^{3} y}{d x^{3}}\right)^{\frac{1}{3}}=2 \frac{d^{2} y}{d x^{2}}+\sqrt[3]{\cos ^{2} x}\) are respectively

1 3 and 1
2 3 and 3
3 1 and 3
4 3 and 2
5 2 and 2
Differential Equation

87164 The degree and order of the differential equation \(\mathbf{y}=\mathbf{p x}+\mathbf{x} \sqrt[3]{\mathbf{a}^{2} \mathbf{p}^{2}+\mathbf{b}^{2}}\), where \(p=\frac{\mathbf{d y}}{\mathbf{d x}}\), are respectively

1 3,1
2 1,3
3 1,1
4 3,3
5 3,2
Differential Equation

87151 The degree of the differential equation
\(\frac{d^{2} y}{d x^{2}}=\frac{5 y+\frac{d y}{d x}}{\sqrt{\frac{d^{2} y}{d x^{2}}}}\) is equal to

1 2
2 3
3 4
4 \(5 / 2\)
Differential Equation

87162 The order and degree of the differential equation of the family of circles of fixed radius \(r\) with centres on the \(\mathbf{y}\)-axis are respectively

1 2,2
2 2,3
3 1,1
4 3,1
5 1,2
Differential Equation

87163 The order and degree of the differential equation \(\left(\frac{d^{3} y}{d x^{3}}\right)^{\frac{1}{3}}=2 \frac{d^{2} y}{d x^{2}}+\sqrt[3]{\cos ^{2} x}\) are respectively

1 3 and 1
2 3 and 3
3 1 and 3
4 3 and 2
5 2 and 2
Differential Equation

87164 The degree and order of the differential equation \(\mathbf{y}=\mathbf{p x}+\mathbf{x} \sqrt[3]{\mathbf{a}^{2} \mathbf{p}^{2}+\mathbf{b}^{2}}\), where \(p=\frac{\mathbf{d y}}{\mathbf{d x}}\), are respectively

1 3,1
2 1,3
3 1,1
4 3,3
5 3,2
Differential Equation

87151 The degree of the differential equation
\(\frac{d^{2} y}{d x^{2}}=\frac{5 y+\frac{d y}{d x}}{\sqrt{\frac{d^{2} y}{d x^{2}}}}\) is equal to

1 2
2 3
3 4
4 \(5 / 2\)
Differential Equation

87162 The order and degree of the differential equation of the family of circles of fixed radius \(r\) with centres on the \(\mathbf{y}\)-axis are respectively

1 2,2
2 2,3
3 1,1
4 3,1
5 1,2
Differential Equation

87163 The order and degree of the differential equation \(\left(\frac{d^{3} y}{d x^{3}}\right)^{\frac{1}{3}}=2 \frac{d^{2} y}{d x^{2}}+\sqrt[3]{\cos ^{2} x}\) are respectively

1 3 and 1
2 3 and 3
3 1 and 3
4 3 and 2
5 2 and 2
Differential Equation

87164 The degree and order of the differential equation \(\mathbf{y}=\mathbf{p x}+\mathbf{x} \sqrt[3]{\mathbf{a}^{2} \mathbf{p}^{2}+\mathbf{b}^{2}}\), where \(p=\frac{\mathbf{d y}}{\mathbf{d x}}\), are respectively

1 3,1
2 1,3
3 1,1
4 3,3
5 3,2