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[" 2.Calculat the dechic field intensity...

[" 2.Calculat the dechic field intensity antich would be junt "],[" sulficient be balance the woint of a particle of change "],[" - Lo,uc and maks "10mg" ."]

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Calculate the electric field intensity which would be just sufficient to balance the weight of a particle of charge -10 muC and mass 10 mg. ("Take "g=10 ms^(2))

Calculate the electric field intensity which would be just sufficient to balance the weight of a particle of charge -10 muC and mass 10 mg. ("Take "g=10 ms^(2))

Calculate the electric field intensity E which would be just sufficient to balance the wight of an electron. If this electric field is produced by a second electron located below the first one what would be the distance between them? [Given: e=1.6xx10^(-19)C, m=9.1xx10^(-31)kg and g=9.8 m//s^(2) ]

Calculate the electric field intensity E which would be just sufficient to balance the wight of an electron. If this electric field is produced by a second electron located below the first one what would be the distance between them? [Given: e=1.6xx10^(-19)C, m=9.1xx10^(-31)kg and g=9.8 m//s^(2) ]

Calculate the electric field intensity E which would be just sufficient to balance the wight of an electron. If this electric field is produced by a second electron located below the first one what would be the distance between them? [Given: e=1.6xx10^(-19)C, m=9.1xx10^(-31)kg and g=9.8 m//s^(2) ]

The forces of cathode ray particles due to electric and magnetic fields which are at right angles to each other balance each other. If the magnetic field has an intensity 0.1 T , what is the intensity of the electric field? The velocity of cathode ray particles is 10^(6) m s^(-1) . What p.d. is required to produce this velocity?

a charged particle of mass 2 mg hang in air in an electric field of strength 4 N/C directed upwards. the charge on the particle would be (g=10m/s^2)