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[教学]MATLAB小程序

[教学]MATLAB小程序MATLAB小程序1-1.1 描绘出“点”%密度和穗花被害率x=[0,3,10,20,30,40];y1=[0,0.273,2.260,2.550,2.920,3.950];subplot(2,2,1);plot(x,y1);title(' 密度和穗花被害率');xIabelC 头肝八2');ylabel(' 穗花被害率%');%密度和结实率x=[0,3,10,20,30,40];y2=[94.4,93.2,92.1,91.5,89.9,87.9];subplot(2,2,2);plot(x,y2);title(' 密度和结实率');xIabelC 头/m^2');ylabel(' 结实率%');%密度和千粒重x=[0,3,10,20,30,40];y3=[21.37,20.60,20.60,20.50,20.60,20.13];subplot(2,2,3);xIabelC 头/mV);ylabel(' 千重粒g');%密度和减产率x=[0,3,10,20,30,40];y4=[0,2.4,12.9,16.3,20.1,26.8];subplot(2,2,4);plot(x,y4);title(' 密度和减产率');xlabel(' 头/mV);ylabel(' 减产率%')%1-1.2 表2 稻纵卷叶螟与水稻作用的数据%产量损失率:x=[3.75,7.50,11.25,15.00,18.75,30.00,37.50,56.25,75.00,112. 50];y1=[0.73,1.11,2.2,3.37,5.05,6.78,7.16,9.39,14.11,20.06]; subplot(2,2,1);plot(x,y1);title(' 密度和减产率');xIabelC 头/m^2');ylabel(' 减产率%');%卷叶率:x=[3.75,7.50,11.25,15.00,18.75,30.00,37.50,56.25,75.00,112. 50];y2=[0.76,1.11,2.22,3.54,4.72,6.73,7.63,14.82,14.93,20.40]; subplot(2,2,2);xIabelC 头肝八2');ylabel(' 卷叶率%');%空壳率:x=[3.75,7.50,11.25,15.00,18.75,30.00,37.50,56.25,75.00,112. 50];y3=[14.22,14.43,15.34,15.59,16.87,17.10,17.21,20.59,23.19,2 5.16];subplot(2,2,3);plot(x,y3);title(' 密度和减产率');xIabelC 头/m^2');ylabel(' 空壳率%');%进行曲线拟合%密度和穗花被害率x=[0,3,10,20,30,40];y1=[0,0.273,2.260,2.550,2.920,3.950];subplot(2,2,1);p=polyfit(x,y1,4) x=linspace(0,40,40);y=polyval(p,x);plot(x,y);title(' 密度和穗花被害率');xIabelC 头肝八2');ylabel(' 结实率%');%密度和结实率x=[0,3,10,20,30,40];y2=[94.4,93.2,92.1,91.5,89.9,87.9]; subplot(2,2,2);p=polyfit(x,y2,4) x=linspace(0,40,40);y2=polyval(p,x);plot(x,y2);title(' 密度和结实率');xIabelC 头/mV);ylabel(' 结实率%');%密度和千粒重x=[0,3,10,20,30,40];y3=[21.37,20.60,20.60,20.50,20.60,20.13]; subplot(2,2,3);p=polyfit(x,y3,4)x=linspace(0,30,30);y3=polyval(p,x);plot(x,y3);title(' 密度和千粒重');xIabelC 头肝八2');ylabel(' 千重粒g');%密度和减产率x=[0,3,10,20,30,40];y4=[0,2.4,12.9,16.3,20.1,26.8];subplot(2,2,4);p=polyfit(x,y4,4) x=linspace(0,40,40);y4=polyval(p,x)plot(x,y4);title(' 密度和减产率');xlabel(' 头/mV);ylabel(' 减产率%')%1-1.2 表2 稻纵卷叶螟与水稻作用的数据%产量损失率:x=[3.75,7.50,11.25,15.00,18.75,30.00,37.50,56.25,75.00,112.50]; y1=[0.73,1.11,2.2,3.37,5.05,6.78,7.16,9.39,14.11,20.06]; subplot(2,2,1);plot(x,y1);title(' 产量损失率');xIabelC 头/mV);ylabel(' 减产率%');%卷叶率:x=[3.75,7.50,11.25,15.00,18.75,30.00,37.50,56.25,75.00,112.50];y2=[0.76,1.11,2.22,3.54,4.72,6.73,7.63,14.82,14.93,20.40]; subplot(2,2,2);plot(x,y2);title(' 卷叶率');xIabelC 头肝八2');ylabel(' 卷叶率%');%空壳率:x=[3.75,7.50,11.25,15.00,18.75,30.00,37.50,56.25,75.00,112.50];y3=[14.22,14.43,15.34,15.59,16.87,17.10,17.21,20.59,23.19,25.16]; subplot(2,2,3);plot(x,y3);title(' 空壳率');xlabel(' 头/mV);ylabel(' 空壳率%')%1-1.2 表2 稻纵卷叶螟与水稻作用的数据%产量损失率:x=[3.75,7.50,11.25,15.00,18.75,30.00,37.50,56.25,75.00,112.50];y1=[0.73,1.11,2.2,3.37,5.05,6.78,7.16,9.39,14.11,20.06];subplot(2,2,1);title(' 产量损失率');xIabelC 头肝八2');ylabel(' 减产率%');%卷叶率:x=[3.75,7.50,11.25,15.00,18.75,30.00,37.50,56.25,75.00,112.50];y2=[0.76,1.11,2.22,3.54,4.72,6.73,7.63,14.82,14.93,20.40];p=polyfit(x,y1,4)x=linspace(0,115,30);y=polyval(p,x);plot(x,y);subplot(2,2,2);p=polyfit(x,y2,4) x=linspace(0,115,30);y=polyval(p,x);plot(x,y) title(' 卷叶率');xIabelC 头/mV);ylabel(' 卷叶率%');%空壳率:x=[3.75,7.50,11.25,15.00,18.75,30.00,37.50,56.25,75.00,112. 50];y3=[14.22,14.43,15.34,15.59,16.87,17.10,17.21,20.59,23.19,2 5.16];subplot(2,2,3);p=polyfit(x,y1,4)x=linspace(0,115,30);y=polyval(p,x);plot(x,y);title(' 空壳率');xIabelC 头肝八2');ylabel(' 空壳率%')题 1.3 代码%x为臭氧持续作用时间,y为病虫害经臭氧处理时的剩余数量比例,%z%臭氧喷嘴出口处检测到的臭氧浓度x=[0.5,1.5,2.5,3.5,4.5,5.5,6.5,7.5,8.5,9.5,10.5];y=[93,89,64,35,30,25,18,10,0,0,0];z=[0.15,0.40,0.75,1.00,1.25,1.50,1.80,2.10,2.25,2.65,2.85]; plot3(x,y,z,'m');text(0,0,0,'origin');xlabel(' 小时'),ylabel(' 病虫剩余数量比例%'),zlabel(' 臭氧喷嘴出口处检测到的臭氧浓度'),grid;title(' 臭氧浓度与真菌作用');进行曲线拟合%x为臭氧持续作用时间,y为病虫害经臭氧处理时的剩余数量比例,%z%臭氧喷嘴出口处检测到的臭氧浓度x=[0.5,1.5,2.5,3.5,4.5,5.5,6.5,7.5,8.5,9.5,10.5];y=[93,89,64,35,30,25,18,10,0,0,0];z=[0.15,0.40,0.75,1.00,1.25,1.50,1.80,2.10,2.25,2.65,2.85];p=polyfit(x,y,z,4) x=linspace(0,115,30);y=polyval(p,x);plot(x,y);text(0,0,0,'origin');xlabel(' 小时'),ylabel(' 病虫剩余数量比例%'),zlabel(' 臭氧喷嘴出口处检测到的臭氧浓度'), grid;title(' 臭氧浓度与真菌作用');。

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