x/2+x/6十x/12+…十x/2oo8新闻联播8月8日x2ooo9=2oo8新闻联播8月8日

888x8.7十11.2x9.9一11.2x1.2简便计算_百度知道
888x8.7十11.2x9.9一11.2x1.2简便计算
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7+11.7=(88.7=7823:88.7+11,而应该是88.7=899.2)=88.2)x8.8x8,个人觉得.2)x8.7+11.8x8.2x8.2x9.2x9.8+11.9-1.7+11.2x8.8最合适.9-11.8x8,前面不应该是888.2=88.7+11.7=100x8.7+11.8的话.2x1.2x8.2x(9.2=888x8.7=870这样更符合简便运算的规律~.9-11!如果是88.2x(9.04如果是考简便元算的话.9-1.2)=888xx1.7=(888+11
888x8.7十11.2x9.9一11.2x1.2简便计算888x8.7十11.2x9.9一11.2x1.2=888x8.7十11.2x(9.9一1.2)=888x8.7十11.2x8.7=(888+11.2)x8.7=899.2*8.7=7823.04从题目你11.2应该是112,888x8.7十112x9.9一112x1.2=888x8.7十112x(9.9一1.2)=888x8.7十112x8.7=(888+112)x8.7==8700
888×8.7+11.2×(9.9-1.2)=888×8.7+11.2×8.7=(888+11.2)×8.7=899.2×8.7=7823.04
888x8.7十11.2x9.9一11.2x1.2简便计算888x8.7十11.2x9.9一11.2x1.2=888x8.7十11.2x(9.9一1.2)=888x8.7十11.2x8.7=8.7x(888+11.2)=8.7x899.2=7823.04。前面的888应是88.8吧?
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正在加载中,请稍后...Hierarchical approach to project planning: The case of a petroleum pipeline construction
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, September 1996, Pages 683-698
Hierarchical approach to project planning: The case of a petroleum pipeline construction
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School of Advanced Technologies, Asian Institute of Technology, Bangkok, Thailand
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School of Civil Engineering, Asian Institute of Technology, Bangkok, Thailand
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Projects exposed to an uncertain environment must be adapted to deal with the effective integration of various planning elements and the optimization of project parameters. Time, cost, and quality are the prime objectives of a project that need to be optimized to fulfill the owner's goal. In an uncertain environment, there exist many other conflicting objectives that may also need to be optimized. These objectives are characterized by varying degrees of conflict. Moreover, an uncertain environment also causes several changes in the project plan throughout its life, demanding that the project plan be totally flexible. Goal programming (GP), a multiple criteria decision making technique, offers a good solution for this project planning problem. There the planning problem is considered from the owner's perspective, which leads to classifying the project up to the activity level. GP is applied separately at each level, and the formulated models are integrated through information flow. The flexibility and adaptability of the models lies in the ease of updating the model parameters at the required level through changing priorities and/or constraints and transmitting the information to other levels. The hierarchical model automatically provides integration among various element of planning. The proposed methodology is applied in this paper to plan a petroleum pipeline construction project, and its effectiveness is demonstrated.
integration
J.E. Kelley
Mathematical basis critical path planning and scheduling
Construct. Manage. Econ., 9 (3) (1961), pp. 296–319
D. Fulkerson
A network flow computation for project cost curves
Manage. Sci., 7 (1961), pp. 167–179
J.W. Fondahl
A non-computer approach to the critical path method
Technical Report No. 9, Department of Civil Engineering, Stanford University, CA (1961)
W. Butcher
Dynamic programming for project cost-time curves
J. Construct. Div. Proceedings of the ASCE 93 (1967)
M.M. Cusack
The use of integer linear programming for modelling project control information
Construct. Manage. Econ., 3 (1985), pp. 91–104
M.M. Cusack
An alternative integer linear programming model based on the points of breakthrough on the time-cost curve
Int. J. Proj. Manage., 3 (1985), pp. 50–54
E.L. Hannan
The application of goal programming techniques to the CPM problem
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Project planning through risk analysis: The case of a petroleum pipeline laying project
M.Sc. Thesis (1992) AIT No. IE-92-13
P.K. Dey, M.T. Tabucanon, S.O. Ogunlana
Planning for project control through risk analysis: a case of petroleum pipeline laying project
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赞助商推广Thermodynamics of order-disorder in minerals: II. Symmetric formalism applied to solid solutions : American Mineralogist
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of Earth and Planetary MaterialsIMPACT FACTOR 5-year IMPACT FACTOR: 2.196Rank 9 out of 29 in category Mineralogy and 37 out of 81 in category Geochemistry & Geophysics in the 2015 Thomson Reuters Journal Citation Report/Science Edition
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??Loading journal volume and issue information...Free AccessTim Holland / Roger Powell1Department of Earth Sciences, University of Cambridge, Cambridge CB2 3EQ, U.K.2School of Earth Sciences, University of Melbourne, Victoria 3052, AustraliaPublication HistoryAbstract The thermodynamics of order-disorder in mineral solid solutions are handled with symmetric formalism, whereby the mineral is treated as a solid solution between an independent set of end-members with which the range of composition and states of ordering of the phase can be represented. An n-component mineral, requiring s independent order parameters to represent the state of order in the mineral, involves an independent set of n + s end-members. Symmetric formalism involves ideal mixing-on-sites with regular-solution activity coefficients. It is applied to omphacite, orthopyroxene, ferromagnesian clinoamphibole, and alkali feldspar. The model for omphacite, with a single order parameter, successfully produces the topology of paired miscibility gaps with tricritical points at their apices and with a critical curve connecting them. Ferromagnesian orthopyroxene is shown to behave effectively as an ideal solution at all geologically relevant temperatures. Cummingtonite- grunerite solid solutions are slightly positively nonideal in either a two-site or a three-site model. Na-K alkali feldspars with order-parameter coupling involving tetrahedral site occupancies can show the essential topologic relationships in this system, with only one independent binary interaction energy. The power of symmetric formalism comes from the simplicity of its representation of the thermodynamics of minerals and its flexibility with few adjustable parameters.Have you read our
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