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252 ENGINEERING 132. Reinforced Concrete (3) Prerequisite: C E 130. Analysis and design of elements of concrete structures by working stress, ultimate strength, and prestressed methods. 133. Steel and Timber Structures (4) Prerequisite: C E 130. Steel and timber members for buildings and bridges designed for dead, live, impact, wind, and seismic loads; light gage design; plastic design of steel. (3 lecture, 3 lab hours) 134. Foundation Design (3) Prerequisite: C E 123, 132 (or concurrently) . Theory and design of footings, piles, retaining walls, and other structures combining the use of soil mechanics and structural analysis. 135. Reinforced Concrete Design (2) Prerequisite: C E 132. Design of concrete structures; working stress, ultimate strength, and prestressed methods. ( 1 lecture, 3 lab hours) 140. Hydrology (3) The Hydrologic cycle, atmospheric conditions, precipitation, infiltration, ground water, soil moisture, evaporation, runoff, streamflow, hydrographs, flood routing, hydrologic frequency analyses and their effects in water resource planning and management. 141. Water Resources Engineering (3) Planning, design, and engineering-economic evaluation of water resources projects (21ecture, 3 lab hours; field trips required) 142. Water Supply and Wastewater Engineering (3) Prerequisite: Engr 116. Design of urban water distribution, storm drainage, and sanitary sewer systems. Introduction to water purification and wastewater treatment processes. (Field trips required) 142L. Water Quality Laboratory (1) Prerequisite: C E 142 (or concurrently) . Study and analysis of the physical, chemical and biological characteristics of raw and waste waters. ( 3 lab hours) 143. Engineering Hydraulics (3) Prerequisite: Engr 116. Theory and analysis of pressure-conduit and open-channel flow systems. Applications to hydraulic structures and control works, hydraulic power conversion, sediment transport, and channel stabilization. 144. Water Quality Control (3) Prerequisite: C E 142 or senior-level chemical or biological science, Physical, chemical, and biological operations and processes in water quality control. Process and hydraulic design of water purification and wastewater treatment facilities. (Field trips required) 145. Unit Operations (2) Prerequisite: C E 142L, 144 (or concurrently) . Analyses of the unit operations used in the physical, chemical and biological control of raw and wastewater quality, ( 1 lecture, 3 lab hours) 150. Transportation Planning and Design (3) Prerequisite: C E 2. Transportation as a multimode system; functions, development, elements, and characteristics. Transportation planning; design of geometri elements of route and terminal. ( 2 lecture, 3 lab hours) 151. Pavement and Drainage Design (2) Prerequisite: C E 123 (or concurrently). Factors affecting drainage and load-bearing elements of transportation facilities. Capacity design of drainage facilities. Structural design of highway and airfield pavements.
Object Description
Title | 1978-79 General Catalog |
Creator | California State University, Fresno |
Format | PDF Document |
Date of publication | 1978-05 |
Subjects | California State University, Fresno. Curricula. Catalogs |
Object type | Document |
Location | Fresno, California |
Language | eng |
Description
Title | Page 252 |
Full Text Search | 252 ENGINEERING 132. Reinforced Concrete (3) Prerequisite: C E 130. Analysis and design of elements of concrete structures by working stress, ultimate strength, and prestressed methods. 133. Steel and Timber Structures (4) Prerequisite: C E 130. Steel and timber members for buildings and bridges designed for dead, live, impact, wind, and seismic loads; light gage design; plastic design of steel. (3 lecture, 3 lab hours) 134. Foundation Design (3) Prerequisite: C E 123, 132 (or concurrently) . Theory and design of footings, piles, retaining walls, and other structures combining the use of soil mechanics and structural analysis. 135. Reinforced Concrete Design (2) Prerequisite: C E 132. Design of concrete structures; working stress, ultimate strength, and prestressed methods. ( 1 lecture, 3 lab hours) 140. Hydrology (3) The Hydrologic cycle, atmospheric conditions, precipitation, infiltration, ground water, soil moisture, evaporation, runoff, streamflow, hydrographs, flood routing, hydrologic frequency analyses and their effects in water resource planning and management. 141. Water Resources Engineering (3) Planning, design, and engineering-economic evaluation of water resources projects (21ecture, 3 lab hours; field trips required) 142. Water Supply and Wastewater Engineering (3) Prerequisite: Engr 116. Design of urban water distribution, storm drainage, and sanitary sewer systems. Introduction to water purification and wastewater treatment processes. (Field trips required) 142L. Water Quality Laboratory (1) Prerequisite: C E 142 (or concurrently) . Study and analysis of the physical, chemical and biological characteristics of raw and waste waters. ( 3 lab hours) 143. Engineering Hydraulics (3) Prerequisite: Engr 116. Theory and analysis of pressure-conduit and open-channel flow systems. Applications to hydraulic structures and control works, hydraulic power conversion, sediment transport, and channel stabilization. 144. Water Quality Control (3) Prerequisite: C E 142 or senior-level chemical or biological science, Physical, chemical, and biological operations and processes in water quality control. Process and hydraulic design of water purification and wastewater treatment facilities. (Field trips required) 145. Unit Operations (2) Prerequisite: C E 142L, 144 (or concurrently) . Analyses of the unit operations used in the physical, chemical and biological control of raw and wastewater quality, ( 1 lecture, 3 lab hours) 150. Transportation Planning and Design (3) Prerequisite: C E 2. Transportation as a multimode system; functions, development, elements, and characteristics. Transportation planning; design of geometri elements of route and terminal. ( 2 lecture, 3 lab hours) 151. Pavement and Drainage Design (2) Prerequisite: C E 123 (or concurrently). Factors affecting drainage and load-bearing elements of transportation facilities. Capacity design of drainage facilities. Structural design of highway and airfield pavements. |