Question
Under constant temperature, graph between $P$ and $1/V$ is

Answer

At constant temperature $PV =$ constant $\Rightarrow$  $P \propto \frac{1}{V}$

Need a full question paper?

Generate a complete, print-ready paper with questions like this in minutes — across 16+ boards, with answer keys.

Start Generating Free

Similar questions

A particle executes $SHM$ with amplitude of $20 \,cm$ and time period is $12\, sec$.  What is the minimum time required for it to move between two points $10\, cm$ on  either side of the mean position ..... $\sec$ ?
A breaker contains water up to a height $h_{1}$ and kerosene of height $h _{2}$ above water so that the total height of (water $+$ kerosene) is $\left( h _{1}+ h _{2}\right.$ ) Refractive index of water is $\mu_{1}$ and that of kerosene is $\mu_{2}$. The apparent shift in the position of the bottom of the breaker when viewed from above is
The position$(x)$ of a particle at any time$(t)$ is given by $x(t) = 4t^3 -3t^2 + 2$ The acceleration and velocity of the particle at any time $t = 2\, sec$ are respectively
Two identical thin plano-convex glass lenses (refractive index $1.5$) each having radius of curvature of $20\,\, cm$ are placed with their convex surfaces in contact at the centre. The intervening space is filled with oil of refractive index $1. 7$ .  The focal length of the combination is.......$cm$
What is the pressure on a swimmer $20 \,m$ below the surface of water ........ $atm$
A light beam is travelling from Region $I$ to Region $IV$ (Refer Figure). The refractive index in Regions $I$, $II$, $III$ and $IV$ are $n_0, \frac{n_0}{2}, \frac{n_0}{6}$ and $\frac{n_0}{8}$, respectively. The angle of incidence $\theta$ for which the beam just misses entering Region $IV$ is Figure: $Image$
In the Young's double slit experiment, the intensity of light at a point on the screen where the path difference $\lambda$ is $K,$ ($\lambda$ being the wavelength of light used). The intensity at a point where the path difference is $\lambda /4$ will be
One quarter sector is cut from a uniform circular disc of radius $R$. This sector has mass $M$. It is made to rotate about a line perpendicular to its plane and passing through the centre of the original disc. Its moment of inertia about the axis of rotation is
A body of mass $0.25 \,kg$ is projected with muzzle velocity $100\,m{s^{ - 1}}$ from a tank of mass $100\, kg$. What is the recoil velocity of the tank ........ $ms^{-1}$
A ball is thrown from ground at an angle $\theta$ with horizontal and with an initial speed $u_0$. For the resulting projectile motion, the magnitude of average velocity of the ball up to the point when it hits the ground for the first time is $V _1$. After hitting the ground, ball rebounds at the same angle $\theta$ but with a reduced speed of $u_0 / \alpha$. Its motion continues for a long time as shown in figure. If the magnitude of average velocity of the ball for entire duration of motion is $0.8 V _1$, the value of $\alpha$ is. . . . . .