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  1. Boyles Law. Boyles law states the relation between volume and pressure at constant temperature and mass. Robert Boyle conducted an experiment on gases to study the deviation of its behaviour in changed physical conditions. It states that under a constant temperature when the pressure on a gas increases its volume decreases.

  2. Answer. Boyles law describes how pressure and volume are related. It claims that, at a constant temperature, the volume and pressure of a given quantity of gas are inversely related. The law can be demonstrated empirically. The study offers an experimental strategy for legislation verification based on syringes.

  3. Boyles Law Formula. Boyles Law Formula is as follows: PV = k. where P is pressure. V is volume. k may be a constant. The law can also be used to find the pressure or volume of a system when the temperature is held constant: P1V1=P2V2. Where P1= First Pressure. P2= Second Pressure.

  4. Solution. Verified by Toppr. Boyle's law may be expressed as either. V ∝ 1/P or. (dP /dV)T = −K/V 2. According to this law, volume (V) of a given mass of a gas varies inversely as its pressure (P) at constant temperature. Was this answer helpful? 3.

  5. State and explain Boyle's law. B o y l e ′ s l a w states that at constant temperature, the volume of a given mass of an ideal gas is inversely proportional to its pressure. Let the volume of the gas be ' V ' and pressure ' P ' and temperature T . Then , according to Boyle's law :

  6. Click here👆to get an answer to your question ️ which of the following graph represents the correct boyles law

  7. According to Boyle's law at constant temperature pressure & volume of gas are related as P V = Constant According to kinetic theory, pressure of gas is P = 1 3 r V 2

  8. Boyles Law. Boyles Law states that ‘The absolute pressure exerted by a given mass of an ideal gas is inversely proportional to the volume it occupies if both the temperature and amount of gas remain unchanged’. In mathematical terms this law is given as: P \( \propto \) 1/V or that PV = K

  9. i) All adiabatic process must be fast. ii) All reversible process must be slow. iii) For adiabatic process, dq =0. iv) For an adiabatic process, work is a path function. v) Absolute value of internal energy can not be determined. vi) H =E +P V is applicable only for ideal gases. ix) Expansion of an ideal gas not always represent an increase in ...

  10. The combined gas law is an amalgamation of the three previously known laws which are- Boyles law PV = K, Charles law V/T = K, and Gay-Lussac’s law P/T = K. Therefore, the formula of combined gas law is PV/T = K, Where P = pressure, T = temperature, V = volume, K is constant. One can adjust the formula for the combined gas law so as to ...

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