1986
DOI: 10.5962/bhl.title.48292
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Annual data summary for 1982 CERC Field Research Facility / by Herman C. Miller ... [et al.].

Abstract: FRF gage locations 16 3 Louvered instrument shelter (background) and rain gages (foreground 19 4 Sample rain gage and microbarograph chart records 25 5

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Cited by 2 publications
(3 citation statements)
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“…The bilayer out-of-plane rms roughness of 3.8 Å is only slightly greater than the 3 Å rms substrate and indicates that the bilayer is nearly conformal with the support. The extracted molecular tilt angle for the hydrocarbon tails was 27.3 , consistent with previous work for DPPC monolayers [13] and multilayers in the gel phase [14], and corresponds to an average area per lipid of 45:9 # A 2 . The distance between the quartz interface and the headgroup region of the inner leaflet was 4.2 Å .…”
supporting
confidence: 86%
See 1 more Smart Citation
“…The bilayer out-of-plane rms roughness of 3.8 Å is only slightly greater than the 3 Å rms substrate and indicates that the bilayer is nearly conformal with the support. The extracted molecular tilt angle for the hydrocarbon tails was 27.3 , consistent with previous work for DPPC monolayers [13] and multilayers in the gel phase [14], and corresponds to an average area per lipid of 45:9 # A 2 . The distance between the quartz interface and the headgroup region of the inner leaflet was 4.2 Å .…”
supporting
confidence: 86%
“…2(b) and the unit cell parameters are presented in Table I. The area per molecule, equivalent to that obtained from reflectivity, matches well with monolayer data [13] and previously reported gelphase DPPC multilayer work [12,17]. Bragg rod (BR) (q z resolved intensity) analysis enabled determination of whether (a) the lipid leaflets of the bilayer scatter independently or as one coupled entity and (b) the relative orientation of the tails in the inner versus the outer leaflet.…”
supporting
confidence: 65%
“…MINERνA will measure the cross-section on carbon up to E ν of 20 GeV with statistical errors ranging from ≤ 1% at low E ν up to 7%.. The expected beam systematic uncertainty is 4-6% because of precision measurements of hadron production (the largest uncertainty in predicting neutrino flux) by the MIPP experi- [7] and Miller et al [8].…”
Section: Physics Goals Of Minerνamentioning
confidence: 99%