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psl.
( a ) Define : unit magnetic pole , strength of magnetic field . ( b ) Two bar magnets , exactly alike , are 10 cm . long and have poles of strength 50. The magnets are placed in the same line , the north pole of one facing the south ...
( a ) Define : unit magnetic pole , strength of magnetic field . ( b ) Two bar magnets , exactly alike , are 10 cm . long and have poles of strength 50. The magnets are placed in the same line , the north pole of one facing the south ...
psl.
( a ) Define unit magnetic pole and unit electrical current in the electromagnetic system , and state the relation of the ampere to the latter . ( b ) At a place where the value of H is 0.16 , the angle of deflection of a tangent ...
( a ) Define unit magnetic pole and unit electrical current in the electromagnetic system , and state the relation of the ampere to the latter . ( b ) At a place where the value of H is 0.16 , the angle of deflection of a tangent ...
psl.
Find the equations of the lines which are a unit distance from the origin and which pass through the point of intersection of the lines 6x + 5y = 10 and 9x + 8y = 15 . PRELIMINARY HONOURS . 2. Find the equation and draw the graph of the ...
Find the equations of the lines which are a unit distance from the origin and which pass through the point of intersection of the lines 6x + 5y = 10 and 9x + 8y = 15 . PRELIMINARY HONOURS . 2. Find the equation and draw the graph of the ...
psl.
Obtain the product aß in the standard form Ta TB ( -cos + sin 0 ) , by ( i ) expressing a and ẞ in terms of the unit vectors i , j , k , ( ii ) any other method . 3. Prove the following formulae for quaternions :( i ) Sqq ' = Sq'q ...
Obtain the product aß in the standard form Ta TB ( -cos + sin 0 ) , by ( i ) expressing a and ẞ in terms of the unit vectors i , j , k , ( ii ) any other method . 3. Prove the following formulae for quaternions :( i ) Sqq ' = Sq'q ...
psl.
( a ) Find the potential of a conducting spherical shell due to a unit charge at a point P ( a ) outside , ( b ) inside the sphere . ( b ) A spherical conductor of 16 cm . radius is charged to a potential of 100 e.s. units .
( a ) Find the potential of a conducting spherical shell due to a unit charge at a point P ( a ) outside , ( b ) inside the sphere . ( b ) A spherical conductor of 16 cm . radius is charged to a potential of 100 e.s. units .
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