989 resultados para William Richard Penhall
Resumo:
English language song (both British and American) is influenced by a variety of cultures, races, and musical forms and has produced a broad range of song repertoire. Like songs in all countries and throughout history, these songs can be classified into three categories: imitative songs, experimental songs, and songs of individuality. Music experimentation, necessary and welcome as it is, can hardly command broad international attention. Thus, the songs of this dissertation performance project are chosen from the first and third categories: imitative songs and individual songs in the composer's own unique style. This project concentrates its exploration on twentieth-century solo songs written in English. Although twentieth-century British & American composers also produced solos and chamber music in other languages, this dissertation focuses upon their English repertoire. This performance project consists of three programs: one British repertoire and two American. The first program titled An Evening of British Song examines twentieth-century British song written by Roger Quilter, Peter Warlock, William Walton, Benjamin Britten, Thomas F. Dunhill, Ivor Gurney, and Frank Bridge. It was presented on December 12, 2001, in Homer Ulrich Recital Hall with the collaborative pianist Meriel Owen. The second program titled An Evening of American Song I comprises music written by Dominick Argento, Samuel Barber, Ned Rorem, Leonard Bernstein, and Lee Hoiby. It was presented on October 23, 2002, in Joseph & Alma Gildenhorn Recital Hall with the collaborative pianist R. Timothy McReynolds. The third program titled An Evening of American Song II written by John Duke, John Corigliano, Charles Ives, Richard Hundley, Lori Laitman, Frederick Loewe, George Gershwin, and Jerome Kern was presented on December 18, 2003, again in Joseph & Alma Gildenhorn Recital Hall with the collaborative pianist R. Timothy McReynolds and the flutist Jessica Dunnavant. Each of these three dissertation recitals occurred at the University of Maryland in College Park and was recorded. These CD recordings are held by the Michelle Smith Performing Arts Library at the University of Maryland.
Resumo:
The Fantasy, as the term suggests, is a genre that composers have found congenial for exploring innovative and imaginative processes. Works in this genre are numerous in the solo piano literature, and extend even to works for piano and orchestra and to chamber music with piano. I was curious to explore how a specific genre of music maintained similar characteristics but evolved over time. A fantasy is primed to be inventive and I wanted to see how composers from different eras and backgrounds would handle their material in this genre. I have learned that composers worked through formal developments while making innovations within this genre. The heart of my dissertation is presented through the recording project. Because ofthe abundance ofpiano fantasies, many works had to be excluded from this project for time's sake. On two compact discs, I have recorded approximately two hours of solo piano music. I have included some shorter fantasies to magnify significant developments from era to era, country to country, and composer to composer. The first disc has recordings of eighteenth and nineteenth-century fantasies: Chromatic Fantasy and Fugue, BWV 903 by J.S. Bach (1685-1750); Fantasia inC major, H. XVII, 4 by Franz Joseph Haydn (1732-1809); Fantasy inc minor, K. 475 by Wolfgang Amadeus Mozart (1756- 1791); Fantasia inf-sharp minor, Op. 28 by Felix Mendelssohn (1809-1847); and Polonaise-Fantaisie in A-flat major, Op. 61 by Frederic Chopin (1810-1849). On the second disc I have included mid-19th, 20th and 2151-century piano fantasies: Fantasy and Fugue on the Theme B-A-C-H by Franz Liszt (1811-1886); Fantasia Baetica by Manuel de Falla (1876-1946); Three Fantasies by William Bergsma (1921-1994); Fantasy, Aria and Fugue by Frederic Goossen (1927-2011); and Piano Fantasy ("Wenn ich einmal sol! scheiden") by Richard Danielpour (b. 1956). The accompanying document includes program notes for each of the pieces recorded. They were recorded on a Steinway "D" in Dekelboum Concert Hall at the University of Maryland by Antonino D'Urzo ofOpusrite Productions. This document is available in the Digital Repository at the University of Maryland and the CO's are available through the Library System at the University of Maryland.
Resumo:
Tony Mann provides a review of the recording: William Herschel, Symphonies Nos. 2, 8, 12, 13, 14, 17, soloists, London Mozart Players / Matthias Bamert, Chandos 10048, 2003, (68 mins). [CD]
Resumo:
This paper details the prototyping of a novel three axial micro probe based on utilisation of piezoelectric sensors and actuators for true three dimensional metrology and measurements at micro- and nanometre scale. Computational mechanics is used first to model and simulate the performance of the conceptual design of the micro-probe. Piezoelectric analysis is conducted to understand performance of three different materials - silicon, glassy carbon, and nickel - and the effect of load parameters (amplitude, frequency, phase angle) on the magnitude of vibrations. Simulations are also used to compare several design options for layout of the lead zirconium titanate (PZT) sensors and to identify the most feasible from fabrication point of view design. The material options for the realisation of the device have been also tested. Direct laser machining was selected as the primary means of production. It is found that a Yb MOPA based fiber laser was capable of providing the necessary precision on glassy carbon (GC), although machining trials on Si and Ni were less successful due to residual thermal effects.To provide the active and sensing elements on the flexures of the probe, PZT thick films are developed and deposited at low temperatures (Lt720 degC) allowing a high quality functional ceramic to be directly integrated with selected materials. Characterisation of the materials has shown that the film has a homogenous and small pore microstructure.