मराठी

Match the following : A B (i) Adiabatic process (a) Heat (ii) Isolated system (b) At constant volume (iii) Isothermal change (c) First law of thermodynamics (iv) Path function (d) No exchang - Chemistry

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प्रश्न

Match the following :

A B
(i) Adiabatic process (a) Heat
(ii) Isolated system (b) At constant volume
(iii) Isothermal change (c) First law of thermodynamics
(iv) Path function (d) No exchange of energy and matter
(v) State function (e) No transfer of heat
(vi) ΔU = q (f) Constant temperature
(vii) Law of conservation of energy (g) Internal energy
(viii) Reversible process (h) Pext = o
(ix) Free expansion (i) At constant pressure
(x) ΔH = q (j) Infinitely slow process which proceeds through a series of equilibrium states.
(xi) Intensive property (k) Entropy
(xii) Extensive property (l) Pressure
  (m) Specific heat
जोड्या लावा/जोड्या जुळवा

उत्तर

A B
(i) Adiabatic process (e) No transfer of heat
(ii) Isolated system (d) No exchange of energy and matter
(iii) Isothermal change (f) Constant temperature
(iv) Path function (a) Heat
(v) State function (g) Internal energy
(vi) ΔU = q (b) At constant volume
(vii) Law of conservation of energy (c) First law of thermodynamics
(viii) Reversible process (j) Infinitely slow process which proceeds through a series of equilibrium states.
(ix) Free expansion (h) Pext = o
(x) ΔH = q (i) At constant pressure
(xi) Intensive property (m) Specific heat
(xii) Extensive property (k) Entropy
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Thermodynamics Applications - Work
  या प्रश्नात किंवा उत्तरात काही त्रुटी आहे का?
पाठ 6: Thermodynamics - Multiple Choice Questions (Type - I) [पृष्ठ ७५]

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एनसीईआरटी एक्झांप्लर Chemistry [English] Class 11
पाठ 6 Thermodynamics
Multiple Choice Questions (Type - I) | Q 51 | पृष्ठ ७५

संबंधित प्रश्‍न

For an ideal gas, the work of reversible expansion under isothermal condition can be calculated by using the expression w = `- nRT` In `V_f/V_i`. A sample containing 1.0 mol of an ideal gas is expanded isothermally and reversibly to ten times of its original volume, in two separate experiments. The expansion is carried out at 300 K and at 600 K respectively.

(i) Work done at 600 K is 20 times the work done at 300 K.

(ii) Work done at 300 K is twice the work done at 600 K.

(iii) Work done at 600 K is twice the work done at 300 K.

(iv) ∆U = 0 in both cases.


A sample of 1.0 mol of a monoatomic ideal gas is taken through a cyclic process of expansion and compression as shown in figure 6.1. What will be the value of ∆H for the cycle as a whole?


Expansion of a gas in vacuum is called free expansion. Calculate the work done and the change in internal energy when 1 litre of ideal gas expands isothermally into vacuum until its total volume is 5 litre?


Represent the potential energy/enthalpy change in the following processes graphically.

(a) Throwing a stone from the ground to roof.

(b) \[\ce{1/2 H2(g) + 1/2 Cl2 (g) ⇌ HCl (g) Δ_rH^Θ = - 92.32 kJ mol^{-1}}\]

In which of the processes potential energy/enthalpy change is contributing factor to the spontaneity?


1.0 mol of a monoatomic ideal gas is expanded from state (1) to state (2) as shown in figure. Calculate the work done for the expansion of gas from state (1) to state (2) at 298 K.


Graphically show the total work done in an expansion when the state of an ideal gas is changed reversibly and isothermally from \[\ce{(p_i, V_i)}\] to \[\ce{(p_f , V_f )}\]. With the help of a pV plot compare the work done in the above case with that carried out against a constant external pressure \[\ce{p_f}\].


For silver Cp (J K-1 mol-1) = 23 + 0.01 T. If the temperature (T) of 3 moles of silver is raised from 300 K to 1000 K at 1 atom pressure, the value of ΔH will be close to ______.


Calculate the work involved when 1 mol of an ideal gas is compressed reversibly from 1.00 bar to 5.00 bar at a constant temperature of 300 K ______.


1 mole of an ideal monoatomic gas initially at 1 atm and 300 K experiences a process by which pressure is doubled. The nature of the process is unspecified but 6. ΔU = 900 cal. The final volume will be ______ l.

[Given : R = 0.08 atm lit. I mol/K = 2 Cal/K/mol J]


Find the work done when 2 moles of hydrogen expand isothermally from 15 to 50 litres against a constant pressure of 1 atm at 25°C.


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