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Ch03 Ex16 [Ch03 Ex16] 假设如题3.1所述火车调度站的入口处有n节硬席或软席车厢(分别以H和S表示) 等待调度,试编写算法,输出对这n节车厢进行调度的操作(即入栈或出栈操作)序列,以使用 所有的软席车厢都被调整到硬席车厢之前。 串。 -Ch03 Ex16 [Ch03 Ex16] assumptions, such as described in 3.1 title at the entrance to the train station scheduling has n hard seat section or Green compartment (H and S, respectively, to express) to wait for scheduling, preparation of test algorithm, the output of these n cars for scheduling operation (that is, a stack operation or
Date : 2025-12-16 Size : 1kb User : Sean

CHP 3 - Real-Time Digital Signal Processing: Implementations and Applications, Second Edition by Sen M. Kuo, Bob H. Lee & Wenshun Tian, ISBN 0470014954 - Real-Time Digital Signal Processing: Implementations and Applications, Second Edition by Sen M. Kuo, Bob H. Lee & Wenshun Tian, ISBN 0470014954-CHP 3- Real-Time Digital Signal Processing: Implementations and Applications, Second Edition by Sen M. Kuo, Bob H. Lee & Wenshun Tian, ISBN 0470014954- Real-Time Digital Signal Processing: Implementations and Applications, Second Edition by Sen M. Kuo, Bob H. Lee & Wenshun Tian, ISBN 0470014954
Date : 2025-12-16 Size : 3.79mb User : enogo

ColorPicker是一个基于对话框的应用程序,它具有以下功能: 1. 色彩编辑功能 用户可以通过可以调整R、G、B的值来编辑颜色,亦可通过调整H、S、V的值来选取颜色。颜色编辑的结果会马上反馈到颜色面板和颜色预览框中。 2.RGB颜色空间和HSV颜色空间的转换 当改变RGB值,会得到相应的HSV值,并进行显示,反之亦然。 3.取色功能 取色功能包含“面板取色”和“屏幕取色”。面板取色就是用户可以在颜色面板中单击鼠标左键,选取目标点所表示的某种颜色。屏幕取色则是允许用户获取整个屏幕上的任意一点的颜色值。用户可以将鼠标移动到需要获取颜色的地方,然后按a键或A键即可以获取该点颜色值。-ColorPicker is a dialog-based application that has the following functions: 1. Color Edit function Users can adjust R, G, B color value to edit, also by adjusting the H, S, V to select the color value. Edit color of the results will be immediately fed back to the color panel and color preview box. 2.RGB color space and HSV color space conversion When changing the RGB values will be the corresponding HSV values, and display, and vice versa. 3. Check color function Check color features include "access panel color" and "color screen check." Color panel is the user can check in the color panel, click the left mouse button, select the goal expressed by a point color. Check color screen is the screen allows the user to access any point on the color value. Users can mouse over the color to obtain the necessary places, and then press a button or A button that can get the color value of points.
Date : 2025-12-16 Size : 60kb User : mike

这是《Robust control design with matlab》书的源码,对照学习,很有帮助-This collection contains M-files intended for design of the Mass/Damper/Spring control system using the newly available functions from Robust Control Toolbox,version 3. Description of the system and version of the files using functions from mu-toolbox can be found in the book ?Robust Control Design with MATLAB? by Da-Wei Gu, Petko H. Petkov and Mihail M. Konstantinov, Springer-Verlag, London, 2005
Date : 2025-12-16 Size : 11kb User : sufan

12-step reaction mechanism: O2+2CO = 2CO2 (1) H+O2+CO = OH+CO2 (2) H2+O2+CO = H+OH+CO2 (3) HO2+CO = OH+CO2 (4) O2+H2O2+CO = OH+HO2+CO2 (5) O2+ C2H2 = H+CO2 (6) O2+CH3+CO+C2H4 = CH4+CO2+CH2O+ C2H2 (7) O2+2CH3 = H2+CH4+CO2 (8) O2+2CH3+CO = CH4+CO2+CH2O (9) O2+CH3+CO = H+CO2+CH2O (10) O2+CO+C2H6 = CH4+CO2+CH2O (11) H+OH = H2O (12)-12-step reaction mechanism: O2+2CO = 2CO2 (1) H+O2+CO = OH+CO2 (2) H2+O2+CO = H+OH+CO2 (3) HO2+CO = OH+CO2 (4) O2+H2O2+CO = OH+HO2+CO2 (5) O2+ C2H2 = H+CO2 (6) O2+CH3+CO+C2H4 = CH4+CO2+CH2O+ C2H2 (7) O2+2CH3 = H2+CH4+CO2 (8) O2+2CH3+CO = CH4+CO2+CH2O (9) O2+CH3+CO = H+CO2+CH2O (10) O2+CO+C2H6 = CH4+CO2+CH2O (11) H+OH = H2O (12)
Date : 2025-12-16 Size : 19kb User : yangyu

C Five-step mechanism submitted to the 26th Symposium C version from March 1996 C Citation: C J. Hewson and M. Bollig, C Reduced Mechanisms for NOx Emissions from Hydrocarbon Diffusion Flames, C Twenty-Sisxth Symposium (International) on Combustion, C 1996 C C Global Reactions C I: CH4 + 2 H + H2O -> 4H2 + CO C II: H2O + CO -> H2 + CO2 C III: 2 H -> H2 C IV: O2 + 3 H2 -> 2 H2O + 2 H C V: H2 + 2 CO -> C2H2 + O2 - C Five-step mechanism submitted to the 26th Symposium C version from March 1996 C Citation: C J. Hewson and M. Bollig, C Reduced Mechanisms for NOx Emissions from Hydrocarbon Diffusion Flames, C Twenty-Sisxth Symposium (International) on Combustion, C 1996 C C Global Reactions C I: CH4 + 2 H + H2O -> 4H2 + CO C II: H2O + CO -> H2 + CO2 C III: 2 H -> H2 C IV: O2 + 3 H2 -> 2 H2O + 2 H C V: H2 + 2 CO -> C2H2 + O2
Date : 2025-12-16 Size : 6kb User : yangyu

实现了AES加密算法。包含3个文件,AES.h,AES.c,testAES.c。-AES source code
Date : 2025-12-16 Size : 5kb User : 韩冰

简易无线遥控中LCD1602的程序代码。希望对大家有帮助-LCD1602 #include <reg52.h> #include <intrins.h> #define uint unsigned int #define uchar unsigned char //****************************************NRF24L01端口定义*************************************** sbit MISO =P2^3 sbit MOSI =P2^1 sbit SCK =P2^4 sbit CE =P2^5 sbit CSN =P2^0 sbit IRQ =P2^2 //******************************************************************************************* #define TX_ADR_WIDTH 5 // 5 uints TX address width #define RX_ADR_WIDTH 5 // 5 uints RX address width #define TX_PLOAD_WIDTH 32 // 20 uints TX payload #define RX_PLOAD_WIDTH 32 // 20 uints TX payload uchar const TX_ADDRESS[TX_ADR_WIDTH]= {0x34,0x43,0x10,0x10,0x01} //本地地址· uchar const RX_ADDRESS[RX_ADR_WIDTH]= {0x34,0x43,0x10,0x10,0x01} //接收地址· //*************************** 状
Date : 2025-12-16 Size : 8kb User : 吴民

DES加密聊天工具,共包含3个文件:chat.cpp、des.h、makefile。 编译:命令行模式下,切换到代码所在目录,输入make后回车即可。 运行:命令行模式下输入 ./chat,然后选择程序执行角色(客户端或服务器)。如选择服务器,则程序自动打开端口开始监听;如选择客户端,则需要输入服务器地址。最后输入命令quit退出程序。-DES encryption chat tool contains three files: chat.cpp, des.h, makefile. Compile: command line mode, switch to the code directory, enter make press Enter. Run: Command line mode input/chat, and then select the program to perform the role (client or server). If you select a server, the program automatically opens the port to start listening If you choose a client, you need to enter the server address. Finally, enter the quit command to exit the program.
Date : 2025-12-16 Size : 5kb User : xuting

#include<iom16v.h> #include<macros.h> #define uchar unsigned char #define uint unsigned int uchar senserflag=0 //传感器状态标志 uchar count1=0 uchar jsflag=0 //金属标志 uchar task=1 //任务标志 uint distancedata=0 //路程值 uint distancecount=0 //路程脉冲记数 //数码管字型表,对应0,1,2,3,4,5,6,7,8,9//#pragma data:code #pragma data:code const uchar Table[10]={0x3f,0x06,0x5b,0x4f,0x66,0x6d,0x7d,0x07,0x7f,0x6f} #pragma data:data static uchar Data[3]={0,0,0} //显示初始值:0 0 0 uchar CNT=0 //初始计数值:0 uchar Timer[2]={1,10} //初始时间00:00 uchar disdata[3]={0,0,0} //路程初值0 -#include<iom16v.h> #include<macros.h> #define uchar unsigned char #define uint unsigned int uchar senserflag=0 //传感器状态标志 uchar count1=0 uchar jsflag=0 //金属标志 uchar task=1 //任务标志 uint distancedata=0 //路程值 uint distancecount=0 //路程脉冲记数 //数码管字型表,对应0,1,2,3,4,5,6,7,8,9//#pragma data:code #pragma data:code const uchar Table[10]={0x3f,0x06,0x5b,0x4f,0x66,0x6d,0x7d,0x07,0x7f,0x6f} #pragma data:data static uchar Data[3]={0,0,0} //显示初始值:0 0 0 uchar CNT=0 //初始计数值:0 uchar Timer[2]={1,10} //初始时间00:00 uchar disdata[3]={0,0,0} //路程初值0
Date : 2025-12-16 Size : 1.31mb User : 黄海

About the h.264 matlab code in video compression
Date : 2025-12-16 Size : 297kb User : abinaya

生成纵横向四阶方程,计算特征根,传递函数等,给出波特图及尼科尔斯图。- SURVEY is set up to make calculations based on the 12 x 12 Fmodel and 12 x 7 Gmodel produced by FLIGHT, with the generic business jet model trimmed for flight at V = 102 m/s and h = 3,050 m. The flags are set to generate a fourth-order, body-axis, lateral-directional model the data set to calculate eigenvalues, eigenvectors, and the transfer function aileron to roll rate and to show the Bode plot, Nyquist plot, and Nichols chart for the transfer function.
Date : 2025-12-16 Size : 6kb User : guolinliang

DL : 0
C *** **** PROGRAM GENEIGEN *** ** IMPLICIT DOUBLE PRECISION (A-H,O-Z) DIMENSION S(100,100),GM(100,100),NORD(100),D(100),B(99) CHARACTER*16 FILE1,FILE2 CHARACTER*81 DUMMY PRINT *, ******************************************** PRINT *, * GENERALIZED EIGENVALUE PROBLEM * PRINT *, * Kx = lambda Mx * PRINT *, * IMPLICIT SHIFT METHOD OF WILKINSON * PRINT *, * T.R.Chandrupatla and A.D.Belegundu * PRINT *, ******************************************** IMAX = 100 PI = 3.14159 -C ********** PROGRAM GENEIGEN ******** IMPLICIT DOUBLE PRECISION (A-H,O-Z) DIMENSION S(100,100),GM(100,100),NORD(100),D(100),B(99) CHARACTER*16 FILE1,FILE2 CHARACTER*81 DUMMY PRINT *, ******************************************** PRINT *, * GENERALIZED EIGENVALUE PROBLEM * PRINT *, * Kx = lambda Mx * PRINT *, * IMPLICIT SHIFT METHOD OF WILKINSON * PRINT *, * T.R.Chandrupatla and A.D.Belegundu * PRINT *, ******************************************** IMAX = 100 PI = 3.14159
Date : 2025-12-16 Size : 2kb User : apm
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