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NH(4)Cl crystallizes in a body-centered ...

`NH_(4)Cl` crystallizes in a body-centered cubic type lattice with a unit cell edge length of 387 pm. The distance between the oppositively charged ions in the lattice is

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NH_(4)Cl crystallizes in a body centred cubic lattice , with a unit cell distance of 387 pm. Calculate (a) the distance between the oppositely charged ions in the lattice and (b) the radius of the NH_(4)^(+) ion if the radius of the Cl^(-) ion is 181 pm.

AB crystallizes in a body - centred cubic lattice with edge length 'a' equal to 387 pm. The distance between two oppositely charged ions in the lattice is ______.

NH_(4)Cl crystallises in a body centred cubic lattice with a unit cell distance of 387 pm. Calculate (a) the distance between the oppositely charged ions in the lattice. (b) the radius of NH_(4)^(+) ion if that of Cl^(-) ion is 181 pm.

NH_(4)Cl crystallises in a body centred cubic lattice with a unit cell distance of 387 pm. Calculate (a) the distance between the oppositely charged ions in the lattice. (b) the radius of NH_(4)^(+) ion if that of Cl^(-) ion is 181 pm.

NH_(4)Cl crystallises in a body centred cubic lattice with a unit cell distance of 387 pm. Calculate (a) the distance between the oppositely charged ions in the lattice. (b) the radius of NH_(4)^(+) ion if that of Cl^(-) ion is 181 pm.

AB crystallizes in a body centred cubic lattice with edge length 'a' eqal to 387 pm. The distance between two oppositely charged ions in the lattice is :