By ACI Committee 301
This can be a Reference Specification that the Architect/Engineer can follow to any building venture regarding structural concrete via bringing up it within the undertaking necessities. Checklists are supplied to aid the Architect/Engineer in supplementing the provisions of this Reference Specification as wanted by way of designating or specifying person venture standards. the 1st 5 sections of this rfile conceal normal development requisites for cast-in-place structural concrete and slabs-on-ground. those sections hide fabrics and proportioning of concrete; reinforcement and prestressing metal; creation, putting, completing, and curing of concrete; formwork functionality standards and building; remedy of joints; embedded goods; fix of floor defects; and completing of shaped and unformed surfaces. Provisions governing checking out, overview, and attractiveness of concrete in addition to popularity of the buildings are integrated. the remainder sections are dedicated to architectural concrete, light-weight concrete, mass concrete, post-tensioned concrete, shrinkagecompensating concrete, business ground slabs, tilt-up development, precast structural concrete, and precast architectural concrete.
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Extra resources for ACI 301M-10: Metric Specifications for Structural Concrete
If one could adequately rank derivatives of a known lead compound, one could save the vast eﬀorts of chemists to synthesize derivatives that would not advance. In principle, computational methods can achieve this, but there is great need for the vision that can develop an eﬀective scoring scheme from empirical results and theoretical considerations. For certain specialized applications docking and scoring can be highly accurate. 2 kcal molÀ1. 73 Familiarity with a target enables tailoring the screening method to great advantage.
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Med. , 2006, 49, 5912. 75. M. Knapp, C. Bellamacina, J. M. Murray and D. E. Bussiere, Curr. Top. Med. , 2006, 6, 1129. 1 Introduction Looking back on 40 years of research in medicinal chemistry, later in molecular modeling and combinatorial chemistry, I see a significant change in the science and art of drug discovery. When I started my industrial career in 1966, in the search for new drugs, my colleagues and I synthesized a few compounds per week, at most. The biggest problem was to convince the pharmacologists to investigate them in due time, because they were still busy with the compounds delivered the weeks before.