The geometrical stability of the three lattices of the cubic crystal system, viz. face-centered cubic (fcc), body-centered cubic (bcc), and simple cubic (sc), consisting of bimodal discrete hard spheres, and the transition to amorphous packing is studied. First, the random close packing (rcp) fraction of binary mixtures of amorphously packed spheres is recapitulated. Next, the packing of a binary mixture of hard spheres in randomly disordered cubic structures is analyzed, resulting in original analytical expressions for the unit cell volume and the packing fraction, and which are also valid for the other five crystal systems. The bimodal fcc lattice parameter appears to be in close agreement with empirical hard sphere data from literature, ...
In a previous paper analytical equations were derived for the packing fraction of crystalline struct...
In previous papers analytical equations were derived and validated for the packing fraction of cryst...
In previous papers analytical expressions were derived and validated for the packing fraction of bim...
The geometrical stability of the three lattices of the cubic crystal system, viz. face-centered cubi...
The geometrical stability of the three lattices of the cubic crystal system, viz. face-centered cubi...
The geometrical stability of the three lattices of the cubic crystal system, viz. face-centered cubi...
The geometrical stability of the three lattices of the cubic crystal system, viz. face-centered cubi...
The geometrical stability of the three lattices of the cubic crystal system, viz. face-centered cubi...
In a previous paper analytical equations were derived for the packing fraction of crystalline struct...
In a previous paper analytical equations were derived for the packing fraction of crystalline struct...
In a previous paper analytical equations were derived for the packing fraction of crystalline struct...
In a previous paper analytical equations were derived for the packing fraction of crystalline struct...
In a previous paper analytical equations were derived for the packing fraction of crystalline struct...
In a previous paper analytical equations were derived for the packing fraction of crystalline struct...
In a previous paper analytical equations were derived for the packing fraction of crystalline struct...
In a previous paper analytical equations were derived for the packing fraction of crystalline struct...
In previous papers analytical equations were derived and validated for the packing fraction of cryst...
In previous papers analytical expressions were derived and validated for the packing fraction of bim...
The geometrical stability of the three lattices of the cubic crystal system, viz. face-centered cubi...
The geometrical stability of the three lattices of the cubic crystal system, viz. face-centered cubi...
The geometrical stability of the three lattices of the cubic crystal system, viz. face-centered cubi...
The geometrical stability of the three lattices of the cubic crystal system, viz. face-centered cubi...
The geometrical stability of the three lattices of the cubic crystal system, viz. face-centered cubi...
In a previous paper analytical equations were derived for the packing fraction of crystalline struct...
In a previous paper analytical equations were derived for the packing fraction of crystalline struct...
In a previous paper analytical equations were derived for the packing fraction of crystalline struct...
In a previous paper analytical equations were derived for the packing fraction of crystalline struct...
In a previous paper analytical equations were derived for the packing fraction of crystalline struct...
In a previous paper analytical equations were derived for the packing fraction of crystalline struct...
In a previous paper analytical equations were derived for the packing fraction of crystalline struct...
In a previous paper analytical equations were derived for the packing fraction of crystalline struct...
In previous papers analytical equations were derived and validated for the packing fraction of cryst...
In previous papers analytical expressions were derived and validated for the packing fraction of bim...