资源列表
Character-code-tools
- 1.可以自动生成十六进制字编码。 2.可以自动C语言格式字符编码。 3.支持GBK和ASCII字符编码查询。-1 can automatically generate a hexadecimal character encoding. 2 can automatically format the C language character encoding. 3 support GBK and ASCII character encoding query.撤消修改
UART
- 最方便的串口(UART)调试工具,支持多种数据格式COM口发送与接收,支持在线字符编码查询。-The most convenient serial debugging tools, support for multiple data formats COM port to send and receive, support online character encoding query.
ACTIVE-CLAMP-FLYBACK-FORWARD-CONVERTER
- GENERAL POWER ELECTRONICS SIMULIK MODELS
liezhuyaun
- 列主元高斯消去法和列主元三角分解法解线性方程 matlab代写代做编程调试修改QQ1747812398-Out PCA Gaussian elimination and main-element triangular decomposition method for solving linear equations matlab write on behalf of doing programming and debugging modify QQ1747812398
JUZHENGFENXI1
- 矩阵数值分析 matlab代写 QQ1747812398-Numerical analysis matrix matlab write on behalf of doing programming and debugging modify QQ1747812398
JULIPANBIE-sas
- 距离判别 sas matlab代写QQ1747812398 -Distance discrimination sas matlab to write QQ1747812398
renlianhsib
- PCA 人脸识别修订版,识别率88% 获取特征值及特征向量 word 可以参考 学习-PCA face recognition revision, the recognition rate of 88 Get the eigenvalues and eigenvectors word can refer to learning
SANCILIANTIAO
- 三次样条插值函数 给出函数在互异点 处的值分别为 。 (1)掌握求三次样条插值函数的基本原理; (2)编写程序求在第一边界条件下函数的三次样条插值函数; (3)在区间 上取n=10,20,分别用等距节点对函数
JISUANFANGFA23
- 猜想:通过对Hilbert矩阵的预处理,能改善Hilbert的病态性质。 验证:根据不同 建立对应的Hilbert矩阵,计算该矩阵的2-范数的条件数,其次计算经过预处理后的H^矩阵的2-范数的条件数,并绘制 曲线。编程实现见附录1中的solution(2)。 实际编程中,分别取 , , , ,可以发现所得到的变化曲线 在 时, 的取值较为平缓的减小,且均小于0。而随着Hilbert矩阵阶数的增大, 的取值在 区间中振荡,主要集中在 ,且多数取值 。则对多数的Hilbert矩阵,其条件数在
JIEXIANXINGFANGCHENGZU
- 解线性方程组的列主元素高斯消去法和LU分解法实验报告-Conjecture: By Hilbert matrix preconditioning can improve the pathological nature of Hilbert.establishment of the corresponding Hilbert matrix, the matrix calculation 2- norm condition number, followed by the calculation 2
PIANWEIFENFANGCHENG
- 偏微分方程数值解法的MATLAB源码 偏微分方程数值解法的MATLAB源码 -Numerical Solution of Partial Differential Equations MATLAB source
1
- 基于分层模糊控制的自主车辆避障仿真 自主车辆;路径规划;避障;分层模糊控制-Based on hierarchical fuzzy control of autonomous vehicle obstacle avoidance simulation Autonomous vehicles Path planning Obstacle avoidance Hierarchical fuzzy control
