836 resultados para curricular proposition of history


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1887-91, annual meeting held in January; 1891- in December.

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Mode of access: Internet.

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First edition, 1898; reprinted 1899.

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Introductory: Faith and modern thought.--pt. 1. Theism and science. Man and religion.--pt. 2. God and Israel. The problem of Job. Man and God.--pt. 3. The Jesus of history and the Christ of faith. Christ in history. The riches of Christ's poverty.--pt. 4. The quest of the chief good. Love of Christ. The city of God.

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No.1; Published by the Randolph-Macon Historical Society

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Each no. has also a distinctive title.

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Vol. 1, no. 1 preceded by a number dated July/Dec. 1975, and a transitional volume dated May 1973-June 1975.

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Extinction of the ballet. Operatic management. Musical agents. Libretti. Operatic and theatrical anomalies. The literary maltreatment of music. Dictionaries of music. Grove's musical dictionary. Quartett concerts and the classical in music. Reasonableness of opera. Tatra Füred, and the music of the Hungarian gipsies. The byeways of bookmaking.

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Thesis (Ph.D.)--University of Washington, 2016-06

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Nitrogen adsorption at 77 K is the current standard means for pore size determination of adsorbent materials. However, nitrogen adsorption reaches limitations when dealing with materials such as molecular sieving carbon with a high degree of ultramicroporosity. In this investigation, methane and carbon dioxide adsorption is explored as a possible alternative to the standard nitrogen probe. Methane and carbon dioxide adsorption equilibria and kinetics are measured in a commercially derived carbon molecular sieve over a range of temperatures. The pore size distribution is determined from the adsorption equilibrium, and the kinetics of adsorption is shown to be Fickian for carbon dioxide and non-Fickian for methane. The non-Fickian response is attributed to transport resistance at the pore mouth experienced by the methane molecules but not by the carbon dioxide molecules. Additionally, the change in the rate of adsorption with loading is characterized by the Darken relation in the case of carbon dioxide diffusion but is greater than that predicted by the Darken relation for methane transport. Furthermore, the proposition of inkbottle-shaped micropores in molecular sieving carbon is supported by the determination of the activation energy for the transport of methane and subsequent sizing of the pore-mouth barrier by molecular potential calculations.

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