Home
Class 11
CHEMISTRY
The mathematical from of Chart.s law is ...

The mathematical from of Chart.s law is given under `V_(t)=V_(0)((273.15+t^(@)C)/(273^(@)C))`, From this equation explain `V to T` in Kelvin.

Text Solution

Verified by Experts

`V_(t)=V_(0)((273.15+t)/(273.15)) " "` ….(Eq. -i)
`therefore V_(t)=(V_(0)(273))/(273)+(V_(0)t^(@)C)/(273)`
`therefore V_(t)=V_(0)+((t^(@)C)/(273))V_(0) " "` …..(Eq. -ii)
As per equation `Y=C+mx`
`therefore` The graph of volume `(V) to` Temperature in Kelvin.
Where, slope `= tan theta = (V_(0))/(273)`, Intercept `= V_(0)`
Upward graph is straight.
Promotional Banner

Topper's Solved these Questions

  • STATES OF MATTER

    KUMAR PRAKASHAN|Exercise SECTION - A QUESTIONS (Sub Question)|3 Videos
  • STATES OF MATTER

    KUMAR PRAKASHAN|Exercise SECTION - A QUESTIONS (TRY YOUR SELF)|47 Videos
  • SOME BASIC CONCEPTS OF CHEMISTRY

    KUMAR PRAKASHAN|Exercise Section - D (Solutions of NCERT Exemplar Problems) (Long Answer Type Questions)|4 Videos
  • STRUCTURE OF ATOM

    KUMAR PRAKASHAN|Exercise QUESTINS PAPER FROM MODULE (SECTION -D)|2 Videos

Similar Questions

Explore conceptually related problems

Block B has a downward velocity in m//s and given by v_(B)=t^(2)/2+t^(3)/6 , where t is in s. Acceleration of A at t=2 second is

The position of a particle at time t is given by the relation x(t)=(v_(0)/alpha)(1-e^(-alphat)) where v_(0) is a constant and alpha gt 0 . Find the dimensions of v_(0) and alpha

The XI^(th) class students of ALLEN designed a rocket. The rocket was launched from cycle stand of ALLEN straight up into the air. At t = 0 , the rocket is at y = 0 with V_(y) (t = 0) = 0 . The velocity of the rocket is given by: V_(y) = (24t - 3t^(2))m//s for 0 le t le t_(b) where t_(b) is the time at which fuel burns out. vertically upward direction is taken as positive. (g = 10m//s^(2)) The expression for the acceleration a_(y)(t) valid at all times in the interval 0 lt t lt t_(b) is

The XI^(th) class students of ALLEN designed a rocket. The rocket was launched from cycle stand of ALLEN straight up into the air. At t = 0 , the rocket is at y = 0 with V_(y) (t = 0) = 0 . The velocity of the rocket is given by: V_(y) = (24t - 3t^(2))m//s for 0 le t le t_(b) where t_(b) is the time at which fuel burns out. vertically upward direction is taken as positive. (g = 10m//s^(2)) The displacement of the rocket till the fuel burns out (t = t_(b)) is

From the following V-T diagram we can conclude:-

The XI^(th) class students of ALLEN designed a rocket. The rocket was launched from cycle stand of ALLEN straight up into the air. At t = 0 , the rocket is at y = 0 with V_(y) (t = 0) = 0 . The velocity of the rocket is given by: V_(y) = (24t - 3t^(2))m//s for 0 le t le t_(b) where t_(b) is the time at which fuel burns out. vertically upward direction is taken as positive. (g = 10m//s^(2)) The time taken for rocket to reach its maximum height is

If the velocity of a paraticle moving along x-axis is given as v=(4t^(2)+3t=1)m//s then acceleration of the particle at t=1sec is :

The velocity of a particle is given by v=(2t^(2)-4t+3)m//s where t is time in seconds. Find its acceleration at t=2 second.

The velocity of a particle is given by v=(5t^(2)-6t+5)m//s where t is time in seconds. Find its acceleration at t=4 second.

The velocity of a particle is given by v=(5t^(2)-2t+9)m//s where t is time in seconds. Find its acceleration at t=4 second.