Home
Class 12
MATHS
If u, v and w are functions of x, then s...

If u, v and w are functions of x, then show that
`(d)/(dx)(u.v.w) = (du)/(dx) v.w+u. (dv)/(dx).w+u.v(dw)/(dx)`
in two ways-first by repeated application of product rule, second by logarithmic differentiation.

Promotional Banner

Topper's Solved these Questions

  • CONTINUITY AND DIFFERENTIABILITY

    NCERT BANGLISH|Exercise EXERCISE 5.6|11 Videos
  • CONTINUITY AND DIFFERENTIABILITY

    NCERT BANGLISH|Exercise EXERCISE 5.7|17 Videos
  • CONTINUITY AND DIFFERENTIABILITY

    NCERT BANGLISH|Exercise EXERCISE 5.4|10 Videos
  • APPLICATION OF INTEGRALS

    NCERT BANGLISH|Exercise Miscellaneous Exercise|19 Videos
  • DETERMINANTS

    NCERT BANGLISH|Exercise Miscellaneous Exercises on Chapter 4|18 Videos

Similar Questions

Explore conceptually related problems

If u and v are two differentiable functions of x show that, (d)/(dx)("tan"^(-1)(u)/(v))=(v (du)/(dx)-u(dv)/(dx))/(u^(2)+v^(2)) .

If y = e^u and u = f(x), show that, (d^2y)/(dx^2) = e^u [(d^2u)/(dx^2) + ((du)/(dx))^2] .

If y=e^u and u=f(x) , show that, (d^2y)/(dx^2)=e^u[(d^2u)/(dx^2)+((du)/dx)^2]

Find the differentiation of sinu w.r.t.x.

The function u=e^xsinx and v=e^xcosx . The value of v(du)/(dx)-u(dv)/(dx) is-

If u and v are two differentiable functions of x and y = uv , prove that , (y')/(y)=(u')/(u)+(v')/(v) where dash (') denotes derivative w.r.t.x.

If u and v are two differentiable functions of x and int uv dx=phi(x)-int[(du)/(dx)intv dx]dx , then the value of phi(x) is-

If (u^2+v^2) prop (x^2 +y^2 ) and uv prop xy then show that (u+v) prop (x+y) when u/v+v/u=x/y +y/x .

FInd the differentiation of x.sinx w.r.t. x .

The function u=e^xsinx and v=e^xcosx . The value of (d^2u)/(dx^2) is-

NCERT BANGLISH-CONTINUITY AND DIFFERENTIABILITY-EXERCISE 5.5
  1. Differentiate the functions given in Exercises 1 to 11 w.r.t. x. cos...

    Text Solution

    |

  2. Differentiate the functions given in Exercises 1 to 11 w.r.t. x. sqr...

    Text Solution

    |

  3. Differentiate the functions given in Exercises 1 to 11 w.r.t. x. ( x...

    Text Solution

    |

  4. Differentiate the functions given in Exercises 1 to 11 w.r.t. x. 2^(...

    Text Solution

    |

  5. Differentiate the functions given in Exercises 1 to 11 w.r.t. x. (x+...

    Text Solution

    |

  6. Differentiate the functions given in Exercises 1 to 11 w.r.t. x. (x+...

    Text Solution

    |

  7. Differentiate the functions given in Exercises 1 to 11 w.r.t. x. (lo...

    Text Solution

    |

  8. Differentiate the functions given in Exercises 1 to 11 w.r.t. x. (si...

    Text Solution

    |

  9. Differentiate the functions given in Exercises 1 to 11 w.r.t. x. x^(...

    Text Solution

    |

  10. Differentiate the functions given in Exercises 1 to 11 w.r.t. x. x^(...

    Text Solution

    |

  11. Differentiate the functions given in Exercises 1 to 11 w.r.t. x. (x ...

    Text Solution

    |

  12. Find (dy)/(dx) of the functions given in Exercises 12 to 15. x^(y)=1...

    Text Solution

    |

  13. Find (dy)/(dx) of the functions given in Exercises 12 to 15. y^(x)= ...

    Text Solution

    |

  14. Find (dy)/(dx) of the functions given in Exercises 12 to 15. (cos x)...

    Text Solution

    |

  15. Find (dy)/(dx) of the functions given in Exercises 12 to 15. xy= e^(...

    Text Solution

    |

  16. Find the derivative of the functions given by f(x)= (1+x)(1+x^(2))(1+x...

    Text Solution

    |

  17. Differentiate (5x+8)(x^(3)+7x+9) in the way mentioned below : by ex...

    Text Solution

    |

  18. If u, v and w are functions of x, then show that (d)/(dx)(u.v.w) = (...

    Text Solution

    |