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{:(,"A.","Spring constant",1.,["M"^(1)"L...

`{:(,"A.","Spring constant",1.,["M"^(1)"L"^(2)"T"^(-2)]),(,"B.","Pascal",2.,["M"^(0)"L"^(0)"T"^(-1)]),(,"C","Hertz",3.,["M"^(1)"L"^(0)"T"^(-2)]),(,"D.","Joule",4.,["M"^(1)"L"^(-1)"T"^(-2)]):}`

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{:(,"Column I",,"Column II"),(("A"),"Electrical resistance",(p),["M"^(-1)"L"^(-2)"T"^(4)"A"^(2)]),(("B"),"Capacitance",(q),["ML"^(2)"T"^(-2)"A"^(-2)]),(("C"),"Magnetic field",(r),["ML"^(2)"T"^(-3)"A"^(-2)]),(("D"),"Inductance",(s),["MT"^(-2)"A"^(-1)]):}

{:("List-I","List-2"),((a)"Pressure ",(e)ML^(2)T^(-2)I^(-1)),((b)"Latent heat", (f) M^(0)L^(0)T^(-1)),((c)"Velocity gradient" ,(g) ML^(-1)T^(-2)),((d) "Magnetic flux" ,(h) M^(0)L^(2)T^(-2)):}

Match the following. |{:(,"Table-1",,"Table-2"),((A),"Coefficient of viscosity",(P),[M^(2)L^(-1)T^(-2)]),((B),"Surface tension",(Q),[ML^(0)T^(-2)]),((C),"Modulus of elasticity",(R),[ML^(-1) T^(-2)]),((D),"Energy per unit volume",(S),"None"),(,"of a fiuid",,):}|

Match the following {:(,,"Table-1",,"Table-2"),(,(A),L,(P),[M^(0)L^(0)T^(-2)]),(,(B),"Magnetic Flux",(Q),[ML^(2)T^(-2)A^(-1)]),(,(C),LC,(R),[ML^(2)T^(-2)A^(-2)]),(,(D),CR^(2),(S),"None"):}

Dimension of sqrt((in_(0))/(mu_(0))) are (A) [M L^(2) T^(-3) A^(-2)] (B) [M^(-1) L^(-2) T^(3) A^(2)] (C) [M^(2)L^(2)T^(-3) A^(2)] (D) [M^(-1) L^(2) T^(3) A^(2)]

The dimension of pole strength of solenoid per unit current through it can be represented as A. M^(0) L^(-1) T^(0) A B. M^(0) L^(0) T^(0) A C. M^(0) L^(+1) T^(0) A^(0) D. M^(0) LT^(0) A^(-1)

The physical quanitity the dimensions [M^(1)L^(2)T^(-3)A^(-1)] is

The physical quantity having the dimensions [M^(-1)L^(-3)T^(3)A^(2)] is

Match the following : {:(,"Column-I",,"Column-II"),((A),3s^(1),(p),n=3),((B), 3p^(1),(q), l=0),((C ), 4s^(1),(r ) , l=1),((D),4d^(1),(s),m=0),(,,(t),m=+-1):}

Which of the following sets of quantum numbers represent an impossible arrangement :- {:(,n,l,m,m_(s),),((A),3,2,-2,(1)/(2),),((B),4,0,0,(1)/(2),),((C),3,2,-3,(1)/(2),),((D),5,3,0,(1)/(2),):}