Results 171 to 180 of about 11,329 (209)
Recent progress in triplet energy transfer systems toward organic afterglow materials. [PDF]
Wu K +8 more
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White light-excited organic room-temperature phosphorescence for improved in vivo bioimaging. [PDF]
Zhang L +10 more
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The Afterglow Inventory (AGI): Validation of a new instrument for measuring subacute effects of classic serotonergic psychedelics. [PDF]
Majić T +6 more
europepmc +1 more source
Multi-Color Tunable Afterglow Materials Leveraging Energy Transfer Between Host and Guest. [PDF]
He X +8 more
europepmc +1 more source
Excitation-Dependent Quadruple-Level Emission from an Isolated Molecule for Dynamic Information Encryption. [PDF]
Shi Y +8 more
europepmc +1 more source
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Science, 1968
Brief stimulation of the upper lip with the tip of a nylon thread frequently produces an "afterglow" sensation that may persist as long as several minutes after cessation of stimulation. The duration of afterglow is increased by strong suggestion, and decreased by vibration of the skin prior to stimulation.
R, Melzack, H, Eisenberg
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Brief stimulation of the upper lip with the tip of a nylon thread frequently produces an "afterglow" sensation that may persist as long as several minutes after cessation of stimulation. The duration of afterglow is increased by strong suggestion, and decreased by vibration of the skin prior to stimulation.
R, Melzack, H, Eisenberg
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2002
Abstract By 1993 most astronomers were convinced, on the basis of the BATSE data and apparently sound theoretical arguments, that gamma-ray bursts occur at cosmological distances, and that they involve relativistic expansion with Lorentz factors of one hundred or more.
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Abstract By 1993 most astronomers were convinced, on the basis of the BATSE data and apparently sound theoretical arguments, that gamma-ray bursts occur at cosmological distances, and that they involve relativistic expansion with Lorentz factors of one hundred or more.
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2011
This chapter focuses on the search for afterglows of gamma-ray bursts (GRBs). In 1996, Peter Mészáros (Pennsylvania State University) and Martin J. Rees (Cambridge University) began developing a detailed theory of afterglows, positing that long-lived emission should be observed at all wavelengths—a panchromatic phenomenon—as a natural consequence of ...
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This chapter focuses on the search for afterglows of gamma-ray bursts (GRBs). In 1996, Peter Mészáros (Pennsylvania State University) and Martin J. Rees (Cambridge University) began developing a detailed theory of afterglows, positing that long-lived emission should be observed at all wavelengths—a panchromatic phenomenon—as a natural consequence of ...
openaire +1 more source

