Consider the linear variable coefficient second-order ODE y" () + (x)y (+) +q()/()=0, z>0, where p, q are given functions of the independent variable Two solutions of the ODE are y1 = ln(6 x) and y2 HIHET sin (1) The Wronskian of yi and y2 for the differential equation is O sin(x) In(61) cos(2) C cos(.) sin(
Consider the linear variable coefficient second-order ODE y" () + (x)y (+) +q()/()=0, z>0, where p, q are given function
-
answerhappygod
- Site Admin
- Posts: 899604
- Joined: Mon Aug 02, 2021 8:13 am
Consider the linear variable coefficient second-order ODE y" () + (x)y (+) +q()/()=0, z>0, where p, q are given function
just the answer will suffice no need for a full workout thank you
Consider the linear variable coefficient second-order ODE y" () + (x)y (+) +q()/()=0, z>0, where p, q are given functions of the independent variable Two solutions of the ODE are y1 = ln(6 x) and y2 HIHET sin (1) The Wronskian of yi and y2 for the differential equation is O sin(x) In(61) cos(2) C cos(.) sin(
In(60) + 42" O cos(1) In(60) + sin(a) 20 O cos(1) ln(62) sin(2) HC
Consider the linear variable coefficient second-order ODE y" () + (x)y (+) +q()/()=0, z>0, where p, q are given functions of the independent variable Two solutions of the ODE are y1 = ln(6 x) and y2 HIHET sin (1) The Wronskian of yi and y2 for the differential equation is O sin(x) In(61) cos(2) C cos(.) sin(
Join a community of subject matter experts. Register for FREE to view solutions, replies, and use search function. Request answer by replying!