#include<stdio.h> #include<windows.h> int xuanxiang; int studentcount; int banjihao[100]; int xueqihao[100][10]; char xm[100][100]; int xuehao[100][10]; int score[100][3]; int yuwen; int shuxue[000]; int yingyu[100]; int c[100]; int p; char x[1000][100]="",y[100][100]="";/*x学院 y专业 z班级*/ int z[100]; main() { void input(); void inputsc(); void alter(); void scbybannji(); printf("--------学生成绩管理-----\n"); printf("请按相应数字键来实现相应功能\n"); printf("1.录入学生信息 2.录入学生成绩 3.修改学生成绩\n"); printf("4.查询学生成绩 5.不及格科目及名单 6.按班级输出学生成绩单\n"); printf("请输入你要实现的功能所对应的数字:"); scanf("%d",&xuanxiang); system("cls"); getchar(); switch (xuanxiang) { case 1:input(); case 2:inputsc(); case 3:alter(); /*case 4:select score(); case 5:bujigekemujimingdan();*/ case 6:scbybanji; } } void input() { int i; printf("请输入你的学院名称:"); gets(x); printf("请输入你的专业名称:"); gets(y); printf("请输入你的班级号:"); scanf("%d",&z); printf("请输入你们一个班有几个人:"); scanf("%d",&p); system("cls"); for(i=0;i<p;i++) { printf("请输入第%d个学生的学号:",i+1); scanf("%d",xuehao[i]); getchar(); printf("请输入第%d个学生的姓名:",i+1); gets(xm[i]); system("cls"); } printf("您已经录入完毕您的班级所有学生的信息!\n"); printf("您的班级为%s%s%s\n",x,y,z); /*alter(p);*/ } void inputsc() { int i; for(i=0;i<p;i++) { printf("\n"); printf("--------------------------------------------------------------------------------\n\n"); printf("\t\t\t\t录入学生的成绩\n\n\n"); printf("--------------------------------------------------------------------------------\n\n"); printf("\t\t\t\t%s\n",xm[i]); printf("\n"); printf("\t\t\t\t数学:"); scanf("%d",&shuxue[i]); printf("\n"); getchar(); printf("\t\t\t\t英语:"); scanf("%d",&yingyu[i]); printf("\n"); getchar(); printf("\t\t\t\tc语言:"); scanf("%d",&c[i]); system("cls"); } } void alter() { int i;/*循环变量*/ int m[10000];/*要查询的学号*/ int b;/*修改后的成绩*/ char kemu[20]=""; printf("请输入你要修改的学生的学号"); scanf("%d",&m); for (i=0;i<p;i++) { if (m==xuehao[i]) { printf("%s的数学成绩为%d,英语成绩为%d,c语言成绩为%d,xm[i],shuxue[i],yingyu[i],c[i]"); printf("请输入你想修改的科目");} } gets(kemu); getchar(); if (kemu=="数学"); { scanf("%d",&b); shuxue[i]=b;} if (kemu=="英语"); { scanf("%d",&b); yingyu[i]=b;} if (kemu=="c语言"); { scanf("%d",&b); c[i]=b; } printf("%s的数学成绩为%d,英语成绩为%d,c语言成绩为%d,xm[i],shuxue[i],yingyu[i],c[i]"); } void scbybannji() { int i; char zyname[20]; int bjnumber; printf("请输入你的专业名称"); scanf("%s",&zyname); printf("请输入你的班级号"); scanf("%d",&bjnumber); for (i=0;i<p;i++) { if (zyname==y[i]); if (bjnumber==z[i]); printf("专业名称%s班级号%d数学成绩%d英语成绩%dc语言成绩%d,y[i],z[i],shuxue[i],yingyu[i],c[i]"); } }
标签: c语言
上传时间: 2018-06-08
上传用户:2369043090
在包 hugeinteger 中创建功能类 HugeInteger,该类用来存放和操作一个不超过 40 位的大整数。 (1) 定义一个构造函数,用来对大整数进行初始化。参数为一个字符串。 (2) 定义 input 成员函数,实现大整数的重新赋值。参数为一个字符串,无返回 值。 (3) 定义 output 成员函数,将大整数输出到屏幕上。无参数无返回值。 (4) 定义 add 成员函数,实现两个大整数的加法。参数为一个 HugeInteger 对 象,无返回值,例如: HugeInteger A = new HugeInteger("12345"); HugeInteger B = new HugeInteger("1234"); A.add(B); 此时,A 为 13579,B 为 1234。 (5) 定义 sub 成员函数,实现两个大整数的减法。参数和返回值同 add 函数。 (6) 定义若干大整数关系运算的成员函数,包括 isEqualTo(等于,=)、 isNotEqualTo(不等于,≠)、isGreaterThan(大于,>)、isLessThan(小 于,<)、isGreaterThanOrEqualTo(大于等于,≥)和 isLessThanOrEqualTo (小于等于,≤)。这些函数的参数为一个 HugeInteger 对象,返回值为一个 布尔类型,表示关系运算的结果,例如: HugeInteger A = new HugeInteger("12345"); HugeInteger B = new HugeInteger("1234"); 那么此时 A.isGreaterThan(B)的结果应当为 True,表示 12345>1234。
上传时间: 2019-06-01
上传用户:idealist
Once upon a time, cellular wireless networks provided two basic services: voice telephony and low-rate text messaging. Users in the network were separated by orthogonal multiple access schemes, and cells by generous frequency reuse patterns [1]. Since then, the proliferation of wireless services, fierce competition, andthe emergenceof new service classes such as wireless data and multimediahave resulted in an ever increasing pressure on network operators to use resources in a moreefficient manner.In the contextof wireless networks,two of the most common resources are power and spectrum—and, due to regulations, these resources are typically scarce. Hence, in contrast to wired networks, overprovisioning is not feasible in wireless networks.
标签: Maximization Nonconvex Wireless Utility Systems in
上传时间: 2020-06-01
上传用户:shancjb
n recent years, there have been many books published on power system optimization. Most of these books do not cover applications of artifi cial intelligence based methods. Moreover, with the recent increase of artifi cial intelligence applications in various fi elds, it is becoming a new trend in solving optimization problems in engineering in general due to its advantages of being simple and effi cient in tackling complex problems. For this reason, the application of artifi cial intelligence in power systems has attracted the interest of many researchers around the world during the last two decades. This book is a result of our effort to provide information on the latest applications of artifi cial intelligence to optimization problems in power systems before and after deregulation.
标签: Intelligence Artificial System Power in
上传时间: 2020-06-10
上传用户:shancjb
小车资料 - 0树莓派教程2016-0804 - 0树莓派入门套件A光盘.rar - 2.87GB(网盘)B套餐资料.rar - 507.56MBC盘.rar - 1.31GBB套餐资料.rar - 1.87GBB盘.rar - 2.35GBA盘.rar - 2.07GB40118树莓派实战指南(教学视频与源代码).rar - 3.01GB微雪5寸显示器config - 0树莓派详细资料 - 0视频教程 - 0RaspberryPi配件安装视频.mp4 - 13.49MB6、树莓派小车系列之按键控制小车.mp4 - 197.46MB
上传时间: 2022-06-05
上传用户:
|- 我的虚拟机和ubuntu下载 - 0 B|- 腾讯课堂公开课 - 0 B|- 工具软件 - 0 B|- X210光盘资料 - 0 B|- 4.C语言专题精讲篇 - 0 B|- 2.uboot和linux内核移植 - 0 B|- 1.ARM裸机全集 - 0 B|- 0.基础预科 - 0 B|- 专用播放器第一代-已不用,请下载第二代.rar - 18.10 MB|- 专用播放器-《朱老师物联网大讲堂》收费视频.rar - 18.10 MB|- 朱老师物联网大讲堂高级课程专用播放器-第二代.rar - 28.10 MB
标签: 物联网
上传时间: 2022-06-06
上传用户:
|- 数据科学速查表 - 0 B|- 迁移学习实战 - 0 B|- 零起点Python机器学习快速入门 - 0 B|- 《深度学习入门:基于Python的理论与实现》高清中文版PDF+源代码 - 0 B|- 《Python生物信息学数据管理》中文版PDF+英文版PDF+源代码 - 0 B|- 《Python深度学习》2018中文版pdf+英文版pdf+源代码 - 0 B|- 《Python编程:从入门到实践》中文版+源代码 - 0 B|- stanford machine learning - 0 B|- Python语言程序设计2018版电子教案 - 0 B|- Python网络编程第三版 (原版+中文版+源代码) - 0 B|- Python机器学习实践指南(中文版带书签)、原书代码、数据集 - 0 B|- python官方文档 - 0 B|- Python编程(第4版 套装上下册) - 0 B|- PyQt5快速开发与实战(pdf+源码) - 0 B|- linux - 0 B|- 征服PYTHON-语言基础与典型应用.pdf - 67.40 MB|- 与孩子一起学编程_中文版_详细书签.pdf - 69.10 MB|- 用Python做科学计算.pdf - 6.10 MB|- 用Python写网络爬虫.pdf - 9.90 MB|- 用Python进行自然语言处理(中文翻译NLTK).pdf - 4.40 MB|- 像计算机科学家那样思考 Python中文版第二版.pdf - 712.00 kB|- 网络爬虫-Python和数据分析.pdf - 6.90 MB|- 图解机器学习.pdf - 59.40 MB|- 凸优化.pdf - 5.70 MB|- 数据挖掘导论.pdf - 2.50 MB|- 数据科学入门.pdf - 13.30 MB|- 数据结构与算法__Python语言描述_裘宗燕编著_北京:机械工业出版社_,_2016.01_P346.pdf - 74.30 MB|- 神经网络与深度学习.pdf - 92.60 MB|- 深入Python3...
标签: python
上传时间: 2022-06-06
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|- 9.配套数据手册 - 0 B|- 8.面包板接线软件 - 0 B|- 7.物联网实验 - 0 B|- 6.图形化编程 - 0 B|- 5.实验接线图 - 0 B|- 4.视频教程 - 0 B|- 3.案例程序 - 0 B|- 2.开发环境 - 0 B|- 10.辅助软件 - 0 B|- 1.学前先看 - 0 B|- CLB.ico - 17.00 kB|- Autorun.inf - 23 B
上传时间: 2022-06-06
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We introduce a sub-cell WENO reconstruction method to evaluate spatial derivatives in the high-order ADER scheme. The basic idea in our reconstruction is to use only r stencils to reconstruct the point-wise values of solutions and spatial derivatives for the 2r-1 th order ADER scheme in one dimension, while in two dimensions, the dimension-by-dimension sub-cell reconstruction approach for spatial derivatives is employed. Compared with the original ADER scheme of Toro and Titarev (2002) [2] that uses the direct derivatives of reconstructed polynomials for solutions to evaluate spatial derivatives, our method not only reduces greatly the computational costs of the ADER scheme on a given mesh, but also avoids possible numerical oscillations near discontinuities, as demonstrated by a number of one- and two-dimensional numerical tests. All these tests show that the 5th-order ADER scheme based on our sub-cell reconstruction method achieves the desired accuracy, and is essentially non-oscillatory and computationally cheaper for problems with discontinuities.
标签: 高精度格式
上传时间: 2016-01-13
上传用户:ccsdcczd
Differential Nonlinearity: Ideally, any two adjacent digitalcodes correspond to output analog voltages that are exactlyone LSB apart. Differential non-linearity is a measure of theworst case deviation from the ideal 1 LSB step. For example,a DAC with a 1.5 LSB output change for a 1 LSB digital codechange exhibits 1⁄2 LSB differential non-linearity. Differentialnon-linearity may be expressed in fractional bits or as a percentageof full scale. A differential non-linearity greater than1 LSB will lead to a non-monotonic transfer function in aDAC.Gain Error (Full Scale Error): The difference between theoutput voltage (or current) with full scale input code and theideal voltage (or current) that should exist with a full scale inputcode.Gain Temperature Coefficient (Full Scale TemperatureCoefficient): Change in gain error divided by change in temperature.Usually expressed in parts per million per degreeCelsius (ppm/°C).Integral Nonlinearity (Linearity Error): Worst case deviationfrom the line between the endpoints (zero and full scale).Can be expressed as a percentage of full scale or in fractionof an LSB.LSB (Lease-Significant Bit): In a binary coded system thisis the bit that carries the smallest value or weight. Its value isthe full scale voltage (or current) divided by 2n, where n is theresolution of the converter.Monotonicity: A monotonic function has a slope whose signdoes not change. A monotonic DAC has an output thatchanges in the same direction (or remains constant) for eachincrease in the input code. the converse is true for decreasing codes.
标签: Converters Defini DAC
上传时间: 2013-10-30
上传用户:stvnash