Differential Equations - NCERT
ncert.nic.in › textbook › pdfA differential equation involving derivatives of the dependent variable with respect to only one independent variable is called an ordinary differential equation, e.g., 2 3 2 2 d y dy dx dx + = 0 is an ordinary differential equation .... (5) Of course, there are differential equations involving derivatives with respect to
Differential Equations - NCERT
https://www.ncert.nic.in/ncerts/l/lemh203.pdfA differential equation involving derivatives of the dependent variable with respect to only one independent variable is called an ordinary differential equation, e.g., 2 3 2 2 dy dy dx dx ⎛⎞ +⎜⎟ ⎝⎠ = 0 is an ordinary differential equation .... (5) Of course, there are differential equations involving derivatives with respect to
Differential Equations - NCERT
https://ncert.nic.in/textbook/pdf/lemh203.pdfA differential equation involving derivatives of the dependent variable with respect to only one independent variable is called an ordinary differential equation, e.g., 2 3 2 2 d y dy dx dx + = 0 is an ordinary differential equation .... (5) Of course, there are differential equations involving derivatives with respect to
Differential Equations - NCERT
www.ncert.nic.in › ncerts › lIn contrast to the first two equations, the solution of this differential equation is a function φ that will satisfy it i.e., when the function φ is substituted for the unknown y (dependent variable) in the given differential equation, L.H.S. becomes equal to R.H.S..
Chapter 9 Differential Equations
cdn.aglasem.com › schools › cbseThis is the required differential equation of the given curve. Question 6: Form the differential equation of the family of circles touching the y-axis at the origin. Answer The centre of the circle touching the y-axis at origin lies on the x-axis. Let (a, 0) be the centre of the circle. Since it touches the y-axis at origin, its radius is a.