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Of course, such difficulties are not present in condensed phases.
In any condensed phase, a nuclear spin experiences a great number of interactions.
In condensed phase there are a number of complications.
In their simplest forms, these patterns resemble soft condensed phases.
In a condensed phase, there is very nearly a balance between the attractive and repulsive forces.
The reaction products of these and subsequent reactions may partition to the condensed phase.
Lower temperature favors the formation of a condensed phase.
The resulting summer grid-average composition of condensed phase mass is shown in Figure 3.15.
In the condensed phase neither polymerization nor decomposition was observed.
A relatively low total mass emission may be offset by a high potential to partition to the condensed phase.
For example, in multicomponent condensed phases, the pair correlation function between different elements is often of interest.
All these systems exist in a condensed phase, but none of them can be described unambiguously as a liquid or a solid.
By their very nature free radicals are highly reactive and resist study with conventional condensed phase methods.
Further oxidation may occur in the condensed phase.
Entropy calculations for gases, condensed phases, and phase changes.
Chemists have unraveled the driving forces and dynamics for chemical reactions in the condensed phase.
The united atom force field was optimized with respect to the condensed phase properties of alkanes.
Resonance energy transfer is the primary mechanism for the migration of electronic excitation in the condensed phase.
The infrared spectrum of the condensed phase has also been recorded and a complete vibrational assignment is proposed.
In the condensed phases the molecules are associated through strong hydrogen bonds (3–4 kcal/mole).
The fact that volumes do not add when dissolving a solid in a liquid is not important for condensed phases.
Metals and metal ions exist, in the condensed phases at least, only surrounded by ligands.
Electron-hole droplets are a condensed phase of excitons in semiconductors.
The staggered conformation is believed to be most stable in the condensed phase due to crystal packing.
In a condensed phase, the pressure dependence of the equilibrium constant is associated with the reaction molar volume.