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[" 17.KBr has foc structure.The density ...

[" 17.KBr has foc structure.The density of "KBr" is "2.75gcm^(-3)" .Find the distance between "K^(+)" and "Br" .(At mass of "],[Br=80.0).],[" TYPE V.Calculation of the type of lattice."],[" 18.Use the data aiven "]

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KBr has fcc struture. The density of KBr is 2.75 g cm^(-3) . Find the distance between K^(+) and Br^(-) , (At mass of Br = 80.0)

The density of KBr is 2.75 g cm^(-3) . The length of the unit cell is 654 pm. (Given atomic mass of K=39, Br=80). The number of formula units of KBr per unit cell are :

The density of KBr is 2.75 g cm^(-3) . The length of the unit cell is 654 pm. Atomic mass of K = 39, Br = 80 . Then what is true about the predicted nature of the solid?

The density of KBr is 2.75 g cm^(-3) . The length of the unit cell is 654 pm. Atomic mass of K = 39, Br = 80 . Then what is true about the predicted nature of the solid?

The density of KBr is 2.75 g cm^(-3) . The length of the unit cell is 654 pm. Atomic mass of K = 39, Br = 80 . Then what is true about the predicted nature of the solid?

The density of KBr is 2.75 g cm^(-3) . The length of the unit cell is 654 pm. Atomic mass of K = 39, Br = 80 . Then what is true about the predicted nature of the solid?

The density of KBr is 2.75 g cm^(-3) . The length of the unit cell is 654 pm. Atomic mass of K = 39, Br = 80 . Then what is true about the predicted nature of the solid?