An entry from Deb Robertson's blog for 17 July 2013 entitled, "ps, I love you too".
Fabric woven into the fence of St Paul's Trinity Pacific Church spells out "Faith Hope Love".
A photograph of fabric banners reading 'Faith', 'Hope', and 'Love', on a fence behind the former site of the St Paul's-Trinity-Pacific Church.
A sign tied to the security fence surrounding Shands Emporium shows a heart made up of photographs of faces, and the words "Share your smile, share your love".
A photograph of All Right? advertisements on the back of buses at the Red Bus depot on Ferry Road. The advertisements read, "When did you last really catch up?" and "When did you last show a little love?".
A photograph of All Right? advertisements on the back of a bus at the Red Bus depot on Ferry Road. The advertisement depicts an 'All Rightie' trimming a hedge and reads, "When did you last show a little love?" The posters are part of a set of advertisements which ask a question of the viewer, related to their mental health and wellbeing.
Measurement of basement seismic resonance frequencies can elucidate shallow velocity structure, an important factor in earthquake hazard estimation. Ambient noise cross correlation, which is well-suited to studying shallow earth structure, is commonly used to analyze fundamental-mode Rayleigh waves and, increasingly, Love waves. Here we show via multicomponent ambient noise cross correlation that the basement resonance frequency in the Canterbury region of New Zealand can be straightforwardly determined based on the horizontal to vertical amplitude ratio (H/V ratio) of the first higher-mode Rayleigh waves. At periods of 1-3 s, the first higher-mode is evident on the radial-radial cross-correlation functions but almost absent in the vertical-vertical cross-correlation functions, implying longitudinal motion and a high H/V ratio. A one-dimensional regional velocity model incorporating a ~ 1.5 km-thick sedimentary layer fits both the observed H/V ratio and Rayleigh wave group velocity. Similar analysis may enable resonance characteristics of other sedimentary basins to be determined. © 2013. American Geophysical Union. All Rights Reserved.