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In Allen's experience, the most complementary job sharing pairs often have opposite strengths – one may be a "big picture" person, the other more obsessed with the finer details, for example.
This phenomenon is due to the Mn and C atoms sharing pairs of electrons.
The resource sharing pairs comprising of the rest of the CUEs and DUEs are also formed in the similar manner.
The proposed scheme outperforms both soft and strict FFR schemes because it wisely considers the spatialdistance between resource sharing pairs while allocating the resources.
In order to consider the interference between resource sharing pairs, eNB calculates the product of both PF metric values (left (lambda _{c,n}^{S_{j}} times lambda _{d,n}^{S_{i,k}} right)).
Nevertheless, in a densely populated network, because of severe interference between resource sharing pairs, it is unlikely for D2D users to achieve their target data rates while transmitting with minimum power.
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This resource sharing pair is formed on the basis of PF metric value of CUEs and the interference level between the pair.
We also define a resource sharing pair f cd(c∈N C and d∈N D ) that consists of one CUE and one D2D pair.
Two shared pairs of electrons, represented by a double dash, form a double bond.
They emphasized shared pairs of electrons and treated the atom as a static arrangement of charges.
Quadruple bonds, which contain four shared pairs of electrons, are rare but have been identified in some compounds in which two metal atoms are bonded directly together.
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