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求職招聘網(wǎng)站的設(shè)計畢業(yè)設(shè)計-閱讀頁

2025-07-12 11:41本頁面
  

【正文】 Exception 界面實現(xiàn)界面作為用戶熟悉、操作和閱讀的窗口,是相當重要的,好的界面可以提高系統(tǒng)的友善性,因此,界面在系統(tǒng)開發(fā)中的地位是不容忽視的。如果文本樣式看起來過于圖形化,用戶會把它當作廣告而忽略。不要使背景的顏色沖淡了文字的視覺效果,不要用花里胡哨的色彩組合,一般來說,淺色背景下的深色文字為佳。另外,最好讓文本左對齊,而不是居中。當然,標題一般應該居中,因為這也符合讀者的閱讀習慣。界面并不是越長越好,最佳設(shè)計是在一個半版面之內(nèi)。另外,頁面容量越小越好,最好不要超過75K。(4) 最好使用動態(tài)頁面設(shè)置,即在設(shè)計時最好使用相對位置設(shè)置,使界面大小的更改不至于影響到界面質(zhì)量(5) 網(wǎng)站導航要清晰,即所有的超鏈接應清晰無誤地向讀者標志出來,所有導航性質(zhì)的設(shè)置,像圖像按鈕,都要有清晰的標志,讓人看得明白,不能光顧視覺效果。清晰導航還要求:讀者進入目的頁的點擊次數(shù),不能超過三次。網(wǎng)頁風格要統(tǒng)一,即網(wǎng)頁上的圖像、文字,包括背景顏色、區(qū)分線、字體、標題、注腳等,要統(tǒng)一風格,貫穿全站,從而給用戶一種舒服、順暢的感覺。(2)管理員可登陸后臺進行新聞資訊進行添加、修改。 /** * Constructor of the object. */ public NewsServlet() { super()。 private String neirong。 private Integer stuId。 private String huifushi。用戶和企業(yè)用戶都可以輸入自己的用戶和密碼,登錄到系統(tǒng)。判斷用戶是否登錄,如果已經(jīng)登錄到系統(tǒng),則顯示用戶信息如果沒有登錄,則顯示登錄的表單 登錄程序流程圖: 代碼如下:public String adminAdd() { TAdmin admin=new TAdmin()。 (userPw)。 (操作成功)。 return succeed。因為它是保證系統(tǒng)質(zhì)量和可靠性的最終環(huán)節(jié),是對整個系統(tǒng)開發(fā)過程,包括系統(tǒng)分析、系統(tǒng)設(shè)計和系統(tǒng)實現(xiàn)階段的最后核查。這這階段又可以分為三個步驟:模塊測試,測試每個模塊的程序是否正確;組裝測試,測試模塊之間的接口是否正確;確認測試,測試整個軟件系統(tǒng)是否滿足用戶功能和性能的要求。是基于系統(tǒng)整體需求說明書的黑盒測試,應覆蓋系統(tǒng)隨偶聯(lián)合的部件,系統(tǒng)測試是正對整個產(chǎn)品系統(tǒng)進行的測試,目的是驗證系統(tǒng)是否滿足了需求規(guī)格的定義,找出需求規(guī)格不符合或與之矛盾的地方。這樣不斷發(fā)現(xiàn)問題,經(jīng)過反復的測試、調(diào)試,把問題一個個的解決,最終系統(tǒng)可以正常運行。這些都需要通過細心的檢測與不斷的調(diào)試才能夠排除。 ,運行時的提示總結(jié)經(jīng)過一個多月的設(shè)計和開發(fā),系統(tǒng)完成。后臺主要是網(wǎng)絡(luò)管理員登錄,進行招聘信息管理、信息管理等,完全滿足了網(wǎng)站正常、安全的運行。在整個設(shè)計過程中,出現(xiàn)過很多的問題,得到了老師和同學的幫助,在不斷學習的過程中我體會到:(1)作是一個不斷學習的過程,從設(shè)計初的模糊認識到最后能夠順利完成,我體會到在實踐中學習的重要性。使我體會到在設(shè)計中的每一步的重要性,如果上一個步驟不能很好的完成,在后續(xù)的設(shè)計將會付出幾倍的代價。(4)設(shè)計過程中,由于要實現(xiàn)某些功能,網(wǎng)上資源解決了我的問題。同時我也深刻的認識到,在對待一個新事物時,一定要從整體考慮,完成一步之后再作下一步,這樣對于系統(tǒng)而言才能更加有效。致謝在本次畢業(yè)設(shè)計過程中,得到了指導老師的指導與支持。指導老師的悉心指導和大力支持,在總體結(jié)構(gòu)、功能的把握上給予了非常大的幫助,同時根我們提供了非常優(yōu)越的設(shè)計環(huán)境,并對我在編程、數(shù)據(jù)庫設(shè)計等細節(jié)工作上給予了耐心的指導,對于我順利完成這次畢業(yè)設(shè)計起到了關(guān)鍵性的作用。在此我一并向他表示感謝。通過這次畢業(yè)設(shè)計我還明白了作為一名計算機專業(yè)的大學畢業(yè)生,我們要會的不僅僅是編寫代碼,更重要的是要有整體把握系統(tǒng)設(shè)計的能力。 參考文獻[1] 牛德雄,陳華政著.基于MVC的JSP軟件開發(fā)案例教程[M].北京:清華大學出版社,2014. [2] 張新曼著.精通JSPWEB開發(fā)技術(shù)與典型應用[M].北京:人民郵電出版社,2012.[3] 賀平著.軟件測試教程[M].北京:電子工業(yè)出版社,2012.[4] 陳顯剛,李季著.Java 項目實戰(zhàn)精編[M].北京:電子工業(yè)出版社,2010.[5] 劉志成著.Java 程序設(shè)計案例教程[M].北京:清華大學出版社,2009.[6] 胡林玲,黃奇著.軟件工程與 UML[M].北京:電子工業(yè)出版社,2008.[7] 戴維爾著.JavaScript程序員教程[M].北京:電子工業(yè)出版社,2010.[8] [美]Martin Fowler著.重構(gòu)—改善代碼既有代碼的設(shè)計[M].北京:人民郵電出版社,2010.[9] 張孝祥,徐明華著.JAVA基礎(chǔ)與案例開發(fā)詳解 [M].北京:清華大學出版社, 2009.[10] 康牧著.JSP動態(tài)網(wǎng)站開發(fā)實用教程[M].北京:清華大學出版社,2009.[11] 于萬波著.網(wǎng)站開發(fā)與應用案例教程[M].北京:清華大學出版社,2009.[12] [美]Joshua Bloch著.Effective Java中文版[M].楊春花,俞黎敏譯.北京:機械工業(yè)出版社,2009.[13] 任泰明著.TCP/IP網(wǎng)絡(luò)編程[M].北京:人民郵電出版社,2009.[14] 楊學瑜,高立軍著.軟件開發(fā)過程與項目管理[M].北京:電子工業(yè)出版社,2008.[15] 黎連業(yè),王華,李淑春著.軟件測試與測試技術(shù)[M].北京:清華大學出版社,2009.[16] 唐友國,湛洪波著.JSP網(wǎng)站開發(fā)詳解[M].北京:電子工業(yè)出版社,2008.[17] 衛(wèi)紅春著.信息系統(tǒng)分析與設(shè)計[M].北京:清華大學出版社,2009.[18] 張大方,李瑋等著.軟件測試技術(shù)與管理[M].湖南:湖南大學出版社,2007.[19] 孫衛(wèi)琴著.Tomcat與Java Web開發(fā)技術(shù)詳解(第2版) [M].北京:電子工業(yè)出版社,2009.[20]Bollela G, Gosling J, Brosgol B, et al. The Realtime Specification for Java[M]. [S. l.]: Addison Wesley, 2000.[21] Connor J M O, Tremblay M. PicoJavaI: The Java Virtual Machine in Hardware[J]. IEEE Micro, 1997. 科技外文文獻 Computer networkA puter network is a type of telemunications network between data processing nodes for the purpose of data munications. It is a munications network in which the end points are puters.[1] The interconnection of puters is acplished with a variety of networking hardware.Two devices are said to be networked, when a process in one device is able to exchange information with a process in another device. Networks may be classified by various characteristics, such as the media used to transmit signals, the munications protocols used to organize network traffic, network scale, network topology, benefits, and organizational scope. The best known puter network is the Internet.Communication protocols define the rules and data formats for exchanging information in a puter network. Wellknown munications protocols include Ethernet, a hardware and link layer standard that is widely used for local area networks, and the Internet protocol suite (TCP/IP), which defines a set of protocols for munication between multiple networks, for hosttohost data transfer, and for applicationspecific data transmission formats. Protocols provide the basis for network programming.Computer networking may be considered a branch of electrical engineering, telemunications, puter science, information technology or puter engineering, since it relies upon the theoretical and practical application of the related disciplines.HistoryBefore the advent of puter networks based on telemunications systems, munication between calculation machines and early puters was performed by human users by carrying instructions between them. The overwhelming method for transferring information between puters today is via puter networks. However, using a method that is fondly known as sneakernet, people do continue to handcarry information to be transferred to another person39。 In September 1940, George Stibitz used a teletype to send instructions for a problem set from his Model at Dartmouth College to his Complex Number Calculator in New York and received results back by the same means. In 1960, the mercial airline reservation system semiautomatic business research environment (SABRE) went online with two connected mainframes. In 1964, researchers at Dartmouth developed the Dartmouth Time Sharing System for distributed users of large puter systems. The same year, at Massachusetts Institute of Technology, a research group supported by General Electric and Bell Labs used a puter to route and manage telephone connections. In 1965, Thomas Marill and Lawrence G. Roberts created the first wide area network (WAN). This was an immediate precursor to the ARPANET, of which Roberts became program manager. In 1969, the University of California at Los Angeles, the Stanford Research Institute, the University of California at Santa Barbara, and the University of Utah were connected as the beginning of the ARPANET network using 50 kbit/s circuits.[2]
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