Results 191 to 200 of about 5,656,159 (367)
NOISE AS A FACTOR IN THE CAUSATION OF DISEASE. [PDF]
Robert W. Hastings
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Symmetry‐broken plasmonic nanoantenna arrays achieve broadband multiresonant enhancement of second harmonic generation (SHG), third harmonic generation (THG), and upconversion photoluminescence (UCPL), under femtosecond laser excitation across the near‐infrared range (1000–1600 nm).
Elieser Mejia+9 more
wiley +1 more source
Some Notes on the Effects of Excessive Noise on the Hearing of a Group of Workers [PDF]
G. F. Keatinge, S. Laner
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Novel ferrocene derivatives (e.g., FcPhc2) are used as an ultrathin layer hole‐blocking layer, reducing hole injection from the Ag contact. This results in an ultralow noise spectral density of 1.2 × 10−14 A Hz−1/2, and a high specific detectivity of 8.1 × 1012 Jones at −0.5 V.
Eunyoung Hong+16 more
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On the distribution of energy in noise- and signal-modulated waves. II. Simultaneous amplitude and angle modulation [PDF]
David Middleton
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Switching of Magnetic Order via Non‐Magnetic Al Addition in FeCoNiMnAlx Films
Non‐magnetic Al addition provides a sensitive handle to switch the magnetic order in high entropy FeCoNiMnAlx thin films via fcc to bcc phase transformation. Films with fcc structure exhibit a large exchange bias, while bcc films exhibit enhanced ferromagnetic properties, reflecting the magnetic ground state of Mn which switches from antiferromagnetic ...
Willie B. Beeson+6 more
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A New Portable Meter for Noise Measurement and Analysis [PDF]
W. O. Osbon, K. A. Oplinger
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Engineering a Spin‐Orbit Bandgap in Graphene‐Tellurium Heterostructures
Tellurium intercalation in epitaxial graphene on Ir(111) enables the emergence of a spin–orbit‐induced bandgap with energy spin splitting. By combining STM, ARPES, spin‐resolved ARPES, and DFT, two structural phases are identified, both exhibiting tunable electronic doping.
Beatriz Muñiz Cano+14 more
wiley +1 more source
2001 WisDOT Specifications - Texture of PCC Pavements [PDF]
Marquette University, Transportation Research Center
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