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Transition active

VI. Are the H3 ersensitive Pseudoquadrupolar Transitions Actively Luminescent or Approximating Opacity ... [Pg.14]

Values refer to neutral molecule. Gas phase. Values refer to the radical anion. Increase in bond length at the ET transition. Activation energy for ET. [Pg.142]

The oscillating force which is imposed on the specimen can be deconvoluted as the superposition of a number of excitations at different frequencies [47]. By summing the contributions from all frequencies the total material dissipation can be calculated. In analogy to time-temperature superposition, the glass transition activation energy can be determined through the use of results obtained at multiple frequencies. [Pg.108]

Transition Gate 3 checklist (transition complete review). This is a template agenda for the transition complete review meeting, which is called to confirm that all of the required transition activities have been completed and the service can progress to business as usual. It also details all of the deliverables required. The changes made were to clarify that a safety management plan, hazard log and safety justification report are required deliverables. [Pg.100]

The transition activities have been categorized as being of either a routine or nonroutine nature. Therefore, a NEPA strategy for each activity category will be implemented. [Pg.288]

Nonroutine Activities. An action description memorandum (ADM) was submitted to DOE in December 1992 to determine the appropriate level of NEPA documentation (EA or EIS) required for the program s transition activities. After receiving formal direction on December 7, 1993, an EA is now being prepared. [Pg.289]

Figure 2.35 compares local defect-type and collective proton transitions. Transitions are completed within 140 and 45 ps for local and collective pathways, respectively. Reconstructed Helmholtz energy profiles, as a function of the CV, are shown together with snapshots of configurations during transitions. Activation and reaction Helmholtz energies of the defect-type transition are AFa = 0.6 eV and AFr = 0.5 eV. The final state of this transition is metastable. For the collective transition, activation, and reaction Helmholtz energies are AFa = 0.3 eV and AFr = 0 eV. [Pg.139]

Key words Micelles, shape transitions, activation energy, 1-alcohols... [Pg.34]

A special case arises at concentration E, the composition of the compound 3. In this case no transition activity occurs until the melting point of the compound is reached. The compound melts sharply. The breadth of the melting peak indicated by the upper curve E is determined by the instrument lag. Thermodynamics calls for a perfectly sharp transition. [Pg.176]

This way, we can interpret the two fittest molecules (/, j) as reciprocally activated by the models (/, / ) through the spectral path whom they belong putted in analytical terms, the difference between quantities of Eqs. (3.127) and (3.128) may assure the jump or transition activity that... [Pg.245]


See other pages where Transition active is mentioned: [Pg.343]    [Pg.132]    [Pg.100]    [Pg.1]    [Pg.471]    [Pg.343]    [Pg.446]    [Pg.119]    [Pg.202]    [Pg.98]    [Pg.132]    [Pg.288]    [Pg.19]    [Pg.31]    [Pg.529]    [Pg.206]    [Pg.122]    [Pg.68]    [Pg.210]    [Pg.715]    [Pg.373]    [Pg.374]   
See also in sourсe #XX -- [ Pg.36 ]




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Absolute Rate (Transition State) Theory and the Activated Complex

Activated carbon/transition metal catalysts

Activated complex or transition state

Activated complex theory transition state

Activated complex, and transition states

Activated complex, transition state

Activation by Second-Row Transition-Metal Atoms

Activation energies, glass transition

Activation energies, glass transition polystyrene

Activation energy for the glass transition

Activation energy polymer transitions

Activation energy relation with Transition-state theory

Activation energy soft segment glass transition

Activation energy transition-state complex

Activation energy transitions

Activation energy, apparent transition state theory

Activation of Alkanes by Transition Metal Compounds

Activation of C—H bonds by transition

Activation of Silicon Bonds by Transition Metal Salts and Complexes

Activation of Transition Metal Catalysts

Activation of a transition metal catalyst in ionic liquids

Activation of transition metal

Activation parameters transition metal ions

Activation phase transition

Activation, transition state

Active space, transition metal compounds

Active-passive transitions

Activity coefficient transition state

Activity of Transition Metals

Activity of transition metal macrocycles

Anode reactions active-passive transition

C-H activation transition state

Catalytic activity of transition metal

Catalytic activity transition metal oxides, related

Coordinated transition metal redox-active macrocycles

Creep activation parameters, relaxation transitions

Dioxygen activation by transition metal

Dioxygen activation by transition metal complexes

Dose-activity relation, transition

Dual activation transition-state model

Electron spin resonance -active transition metal ions

Enzyme Active Sites Are Most Complementary to the Transition State Structure

Functionalization of Arenes via C—H Bond Activation Catalysed by Transition Metal Complexes Synergy between Experiment and Theory

Hydrocarbon Activation by Transition-Metal Complexes

Hydrocarbon activation transition-state energies

In Stereochemistry of Optically Active Transition Metal Compounds Douglas

In Stereochemistry of Optically Active Transition Metal Compounds Douglas ACS Symposium Series American Chemical Society: Washington

Infrared active transition

Lifetime, active complex transition structure

Metal active transition

Molecular catalysts designing, with active transition metals

Mossbauer-Active Transition Metals Other than Iron

Optical Activity in Silicon-Transition-Metal Compounds

Organo-transition-metal complexes, optical activity

PSiP Transition-Metal Pincer Complexes Synthesis, Bond Activation, and Catalysis

Phase activity, binary transition metal

Polarization active-passive transition

Raman active transitions

Redox-active dendrimers transition metal complexes

Redox-active transition metals

Redox-active transition-metal sandwiche

Relaxation Activation Energy of Polymers in the Glass Transition Region

Replacement in Transition Metal Alkyl Compounds and Polymerization Activity

Some Recent Developments in Hydrogenation Activation of Hydrides by Transition Metal Derivatives

Substrate Conformational Transition and the Role of Active Site Residues

Substrate activation transition metal complexes

The Active Site and Transition States

The Symmetry Model Provides a Useful Framework for Relating Conformational Transitions to Allosteric Activation or Inhibition

Thermal Activation of Transition Metal Macrocycles

Thermal activation, transition metal

Thermal activation, transition metal macrocycles

Transition Metal Derivatives and Catalytic Activity

Transition Metal and Organic Redox-Active Macrocycles Designed

Transition Metals as Protecting, Activating, and Directing Groups

Transition State Theory Molecular Nature of the Activated Complex

Transition activated complex

Transition active complexes

Transition and activity

Transition elements catalytic activity

Transition metal alkyl compounds activity

Transition metal catalyst active in absence of alkylmetals

Transition metal catalysts carbon-hydrogen activation

Transition metal catalytic activity

Transition metal clusters activation of carbonyls

Transition metal complexes hydrogen activation

Transition metal complexes intermolecular activation processes

Transition metal complexes, activation

Transition metal complexes, activation dioxygen

Transition metal oxides catalytic activity

Transition metal-catalyzed dinitrogen activation

Transition metals active space selection

Transition metals catalysed bond activation

Transition metals ligand activation

Transition state (activated

Transition state activation energy

Transition state and activation energy

Transition state theory , development activated complex

Transition state theory activation energy

Transition state theory enthalpy of activation

Transition state theory entropy activation

Transition state theory entropy of activation

Transition thermal activation

Transition! metal activation

Transition, activated

Transition, thermodynamics active-passive

Transition-State or Activated Complex Theory

Transition-metal sulfide catalysts activity

Transition-state theory catalytic activity

Transitional metal complexes methane activation

Transitions activators

Understanding and Predicting Trends in ORR Activity on Transition-Metal Catalysts

Water activity glass transition temperature

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