This section includes 7 InterviewSolutions, each offering curated multiple-choice questions to sharpen your Current Affairs knowledge and support exam preparation. Choose a topic below to get started.
| 1. |
The gas produced by the passage of air over hot coke is |
| Answer» Answer :C | |
| 2. |
The gas phase reaction shown is endothermic as written. Which, change(s) will increase the quantity of CH_(3)CH=CH_(2) at equilibrium? (P) Increasing the temperature (Q) Increasing the pressure H_(3)C-CH=CH_(2)hArr |
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Answer» <P>P only |
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| 3. |
The gas molecules randomly move in all directions and collide with each other and with the wall of the container. If is difficult to determine the speed of an individual molecule but it had become passible to work out the distribution of molecules among different molecular speeds. This is known as Maxwell Boltzmann distribution consider the following graph about Maxwell's distribution of speed at two different temperature T_(1) " and " T_(2) The curve has which of the following characteristics ? (i) It has symmetrical distribution of molecules against molecular velocity (ii) The area under the curve gives the total number of molecules. (iii) The maxima of teh curve shifts towards right as the temperature is raised. (iv) The area under the curve is independent of temperature Select the correct statements from the codes given below: |
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Answer» (i), (II) |
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| 4. |
The gas molecules randomly move in all directions and collide with each other and with the wall of the container. If is difficult to determine the speed of an individual molecule but it had become passible to work out the distribution of molecules among different molecular speeds. This is known as Maxwell Boltzmann distribution consider the following graph about Maxwell's distribution of speed at two different temperature T_(1) " and " T_(2) Select the correct statement (s): |
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Answer» Most PROBABLE speed increases with increase in temperature |
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| 5. |
The gas molecules randomly move in all directions and collide with each other and with the wall of the container. If is difficult to determine the speed of an individual molecule but it had become passible to work out the distribution of molecules among different molecular speeds. This is known as Maxwell Boltzmann distribution consider the following graph about Maxwell's distribution of speed at two different temperature T_(1) " and " T_(2) Total area under the curve at T_(1) is : |
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Answer» EQUAL to that under CURVE at `T_(2)` |
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| 6. |
The gas molecules randomly move in all directions and collide with each other and with the wall of the container. If is difficult to determine the speed of an individual molecule but it had become passible to work out the distribution of molecules among different molecular speeds. This is known as Maxwell Boltzmann distribution consider the following graph about Maxwell's distribution of speed at two different temperature T_(1) " and " T_(2) The shaded area represents : |
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Answer» NUMBER of molecules having speed between `u_(1) " and " u_(2)` |
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| 7. |
The gas liberated when aluminium reacts with conc. H_2 SO_4 is |
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Answer» `H_(2)S` |
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| 8. |
The gas liberated when aluminium reacts with conc. H_(2)SO_(4) is |
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Answer» `H_(2)S` |
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| 9. |
The gas liberated by the electrolysis of Dipotassium succinate solution is : |
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Answer» Ethane |
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| 10. |
The gas leaked from a storage tank of the Union Carbide plant in Bhopal gas tragedy was: |
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Answer» Phosgene |
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| 11. |
The gas leaked from a storage tank of the union Carbide plant in Bhopal gas tragedy was |
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Answer» AMMONIA |
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| 12. |
The gas emitted by supersonic jet planes that slowly depletes the ozone layer is |
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Answer» CO |
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| 13. |
The gas emitted by supersonic jet planes that slowly depletee the ozone layer is |
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Answer» CO |
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| 14. |
The gas constant R represents work done |
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Answer» PER MOLECULE |
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| 15. |
The g/L of 5 M aqueous solution of NaOH is ....... (Molecular mass of NaOH : 40 g " mole"^(-1) ) |
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Answer» 200 |
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| 16. |
The functional group(s) present in H_(3)C-CH_(2)-O-CH_(2)-overset(O)overset("||")("C")-OCH_(3) |
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Answer» ETHER, KETONE |
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| 17. |
The functional groups in cortisone are: |
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Answer» ETHER, ALKENE, alcohol |
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| 18. |
The function of sodium pump is a biological process operating in each and every cell of all animals . Which of the following biologically important ions is also a constituent of the pump ? |
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Answer» `K^(+)` |
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| 19. |
The function of ZnCl_(2) in Lucas test for alcohols is |
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Answer» to act as acid catalyst and react with `HCL` to form `H_(2)ZnCl_(2)` |
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| 20. |
The function of "Sodium pump" is a biological process operating in each and every cell of all animals. Which of the following biologically important ions is also a constituent of this pump? |
| Answer» Answer :B | |
| 21. |
The function of sand in mortar is |
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Answer» To decreases the hardness |
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| 22. |
The function of gum Arabic in the preparation of Indian ink is |
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Answer» COAGULATION |
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| 23. |
The function of boiling the sodium extract with conc. HNO_(3) before testing for halogen as: |
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Answer» to make the solution acidic |
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| 24. |
The function of anhydrous aluminium chloride in the Friedel-Craft's reaction is |
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Answer» Absorb water |
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| 25. |
The fully eclipsed conformation of n - butane is least stable due to the presence of |
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Answer» BOND OPPOSITION strain only |
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| 26. |
The fullform DDT is ........ |
| Answer» SOLUTION :DICHLORODIPHENYLTRICHLOROETHANE | |
| 27. |
The fuel used to produce electrical energy in the space rocket saturn V which Neil Armstrong reached the Moon is |
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Answer» `CO+O_(2)` |
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| 28. |
A fuel has the same knocking property as a mixture of 70% isooctane (2,2,-4 trimethyl pentane) and 30% n heptane by volume, the octane number of the fuel is |
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Answer» |
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| 29. |
The fuel gas having volume composition equal to 44%CH_(4)+48%H_(2)+5%N_(2)+3%CO is |
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Answer» oil gas |
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| 30. |
The fuel gas with highest composition of hydrogen is |
| Answer» Answer :A | |
| 31. |
The fresh precipitate can be transformed in colloidal state by |
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Answer» Peptisation |
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| 32. |
The Friedel-Crafts alkylation... |
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Answer» WORKS well for primary chlorides |
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| 33. |
The frequency transition n = 4 to n = 2 of He+ is equal to the transition in H atom corresponding to which of the following. |
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Answer» n=3 to n=1 |
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| 34. |
The frequency of the spectral line obtained when the electron in n = 3 of Hydrogen atom drops to the ground state is |
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Answer» `2.925xx10^(15)` HERTZ `=3xx10 xx 109677 [1/1 -1/9]` `=32.9xx10^(14) [8/9] = 2.925 xx 10^(15) Hz` |
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| 35. |
The frequency of the radiation emitted when the electron falls from n = 4 to n = 1 in a hydrogen atom will be (Given ionization energy of H = 2.18 xx 10^(-18) J "atom"^(-1) and h = 6.625 xx 10^(-34) Js) |
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Answer» `1.54 XX 10^(15) s^(-1)` Thus, `E_(n) = - (2.18 xx 10^(-18))/(n^(2)) J "atom"^(-1)` `DELTA E = E_(4) - E__(1) = -2.18 xx 10^(-18) ((1)/(4^(2)) - (1)/(1^(2)))` `= 2.044 xx 10^(-18) J "atom"^(-1)` `Delta E = hv` or `v = (Delta E)/(h) = (2.044 xx 10^(-18)j)/(6.625 xx 10^(-34)JS) = 3.085 xx 10^(15) s^(-1)` |
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| 36. |
The frequencyof yellowlighthavingwavelength600 nm is |
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Answer» `5.0 XX 10^(14) Hz` |
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| 37. |
The frequency of the characterstic X ray of K_(alpha) line of metal target 'M' is 2500 cm^(-1) and the graph between sqrt(v) Vs 'z' is as follows, then atomic number of M is |
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Answer» 49 |
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| 38. |
The frequency of one of the lines in Paschen series of hydrogen atom is 2.340 xx 10^(14)Hz. What is the quantum number n_(2) which produces this transition ? |
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Answer» Solution :`bar(v) = R_(H) ((1)/(n_(1)^(2)) - (1)/(n_(2)^(2)))` `bar(v) = (1)/(LAMDA), C = v lamda or (1)/(lamda) = (v)/(c)` `:. v = c R_(H) ((1)/(n_(1)^(2)) - (1)/(n_(2)^(2)))` For Paschen series, `n_(1) = 3` `:. 2.340 xx 10^(14) = (3 xx 10^(8) ms^(-1)) xx (1.097 xx 10^(7) m^(-1)) ((1)/(3^(2)) - (1)/(n_(2)^(2)))` or `((1)/(3^(2)) - (1)/(n_(2)^(2))) = (2.340 xx 10^(14))/(3.291 xx 10^(15)) = 0.071` or `(1)/(n_(2)^(2)) = (1)/(9) - 0.071 = 0.111 - 0.071 = 0.04 or n_(2)^(2) = 25 or n_(2) = 5` |
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| 39. |
The frequency of light emitted for the transition n = 4 " to " n = 2 of He^(+) is equal to the transition in H atom corresponding to which of the following : |
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Answer» `n = 3 " to " n = 1` `v = (C)/(lamda) = cbar(v) or bar(v) = (v)/(c)` `:. (v)/(c) = R ((1)/(n_(1)^(2)) - (1)/(n_(2)^(2))) Z^(2)` or `v = Rc ((1)/(n_(1)^(2)) - (1)/(n_(2)^(2))) Z^(2) = R' ((1)/(n_(1)^(2)) - (1)/(n_(2)^(2))) Z^(2)` For `He^(+)`, for TRANSITION `n = 4 " to " n = 2` `v = R' ((1)/(2^(2)) - (1)/(4^(2))) xx 2^(2) = R' ((1)/(1^(2)) - (1)/(2^(2)))` For H, Z = 1, therefore for same VALUE of v, transition will be form `n = 2 " to " n = 1` |
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| 40. |
The frequency of an electromagnetic radiation is 2xx10^6 Hz. What is its wavelength in metres (Velocity of light =3xx10^8 ms^(-1)) |
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Answer» `6.0xx10^14` |
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| 41. |
The frequency of a wave of light is 12xx10^14 s^(-1) . The wave number associated with this light is |
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Answer» `5XX10^(-7) m` |
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| 42. |
The frequency of a radiation having a wave number of 2 xx10^(14) "cm"^(-1) will be x xx 10^(24) s^(-1) .Then the value of x is ____ |
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Answer» |
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| 43. |
The frequency associated with photon of radiation having a wavelength of 6000 Å is |
| Answer» Answer :A | |
| 44. |
The freezing point of 3.75xx10^(-2)M aqueous solution of weak acid HA is 272.9K. The molality of the solution was found to be 0.0384 molal. Find the [H^(+)] of the solution on adding 3.75xx10^(-2) moles of NaA to one litre of the above solution. (K_(f) "of water" =1.86 "molal"^(-1)) |
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Answer» |
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| 45. |
The freezing point of 0.05M urea solution is differnet from that of 0.05 M sodium chloride solution The depression in freezing point is directly propotional to the number of species present in the solution . |
| Answer» SOLUTION :EXPLANTION is CORRECT REASON for STATEMENT | |
| 46. |
The freezing point depression constant for water is1.86 ^(@) K kg mol ^(-1), I f5g Na_2 SO_4 is dissolved in 45 g water the depression in freezingpoint as 3.64 ^(@) C The Vant Hoff factor forNa_2 SO_4 is |
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Answer» `2.50` |
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| 47. |
The freezing point depression constant for water is 1. 86^(@)K gm mol ^(-1). If 5g Na _(2) SO_(4) is dissolved in 45 g water, the depression in freezing point is 3.64 ^(@)C. The van't Hoff factor for Na _(2) SO _(4) is …… |
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Answer» `2.50` `Delta T_(f) = I xx K _(f)` `i = (Delta T _(f) xxM _(2) xx W_(1))/( K _(f) xx W _(2) xx 1000)` `= (3.64 xx 142 xx 45)/(1. 86 xx 5 xx 1000)` `i = 2.5` |
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| 48. |
The free energy changes for the two reactions given below are : (i) SO_(2)(g) + Cl_(2)(g) rarr SO_(2)Cl_(2)(g) , DeltaG= - 2270 cal (ii) S(rhom) + O_(2)(g) + Cl_(2) (g) rarr SO_(2)Cl_(2)(g) , DeltaG = - 74060 cal Find the Delta G for the reaction : S ( rhom ) + O_(2)(g) rarr SO_(2)(g) |
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Answer» |
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| 49. |
The fragrance of flowers is due to the presence of some steamm volatile organic compounds called essential oils. These are generally insoluble in water at room temperature but are miscible with water vapour in vapour phase. A suitable method for the extraction of these oils from the flowers is |
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Answer» distillation |
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| 50. |
The fragrance of flowers is due to the presence of some steam volatile organic compounds called essential oils. These are generally insoluble in water at room temperature but are miscible with water vapour in vapour phase. A suitable method for the extraction of these oils from the flowers is : |
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Answer» Distillation |
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