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moved magdziaz sed
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data=read.csv("components.csv",header=T)
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plot(data,log="xy",ylim=c(.0003,.1),xlim=c(.001,1000))
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plot(data,log="xy",ylim=c(.0003,.2),xlim=c(.001,1000))
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data$test_sum = data$blackbody_sum_1 + data$comptonization + data$excess
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plot(data,log="xy",ylim=c(.0003,.2),xlim=c(.001,1000))
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data$test_error = data$total - data$test_sum
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plot(data,log="xy",ylim=c(.0003,.2),xlim=c(.001,1000))
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warnings()
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plot(data,log="xy",ylim=c(.0003,.2),xlim=c(.001,1000))
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head(data)
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mean(data$total - data$test_error)
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mean((data$total - data$test_error)^2)
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mean(sqrt((data$total - data$test_error)^2))
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data$test_sum = data$blackbody_sum_2 + data$comptonization + data$excess
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mean(sqrt((data$total - data$test_error)^2))
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mean(sqrt((data$total - data$test_sum)^2))
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data$test_sum = data$blackbody_sum_1 + data$comptonization + data$excess
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mean(sqrt((data$total - data$test_sum)^2))
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plot(data,log="xy",ylim=c(.0003,.2),xlim=c(.001,1000))
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data$test_error = data$total - data$test_sum
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plot(data,log="xy",ylim=c(.0003,.2),xlim=c(.001,1000))
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data$test_sum = data$blackbody_sum_2 + data$comptonization + data$excess
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plot(data,log="xy",ylim=c(.0003,.2),xlim=c(.001,1000))
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data$test_error = data$total - data$test_sum
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mean(sqrt((data$total - data$test_sum)^2))
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rms
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?rms
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library(rms)
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data$test_error = data$total - data$test_sum
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plot(data,log="xy",ylim=c(.0003,.2),xlim=c(.001,1000))
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data$test_error_sq = (data$total - data$test_sum)^2
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plot(data,log="xy",ylim=c(.0003,.2),xlim=c(.001,1000))
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data = read.csv("components.csv",header=t)
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data = read.csv("components.csv",header=T)
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plot(data,log="xy",ylim=c(.0003,.2),xlim=c(.001,1000))
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data$test_sum_1 = data$blackbody_sum_1 + data$comptonization + data$excess
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data$err_1_sq = (data$total - data$test_sum)^2
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data$test_sum_2 = data$blackbody_sum_2 + data$comptonization + data$excess
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data$err_2_sq = (data$total - data$test_sum_2)^2
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data$err_1_sq = (data$total - data$test_sum_1)^2
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plot(data,log="xy",ylim=c(.0003,.2),xlim=c(.001,1000))
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warnings()
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data$err_1_sq = (data$total - data$test_sum)^2
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data$err_1_sq = (data$total - data$test_sum_1)^2
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plot(data,log="xy",ylim=c(.0003,.2),xlim=c(.001,1000))
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attach(data)
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plot(err_1_sq ~ energy..keV.)
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plot(err_2_sq ~ energy..keV.)
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head(err_1_sq)
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head(err_2_sq)
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plot(err_2_sq ~ energy..keV.,log="x")
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plot(err_1_sq ~ energy..keV.,log="x")
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plot(total ~ energy..keV.,log="x")
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contour()
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?read.table
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TOTL1216 = read.table("../../../TOTL1216.tab",header=T)
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head(TOTL1216)
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contour(TOTL1216)
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man contour()
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?contour
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contour(TOTL1216$Hden,TOTL1216$Phi.H.,TOTL1216$Eq_Width.A.)
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?contour
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contour(TOTL1216$Phi.H.,TOTL1216$Hden,TOTL1216$Eq_Width.A.)
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TOTL1216
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contour(TOTL1216$Phi.H.,TOTL1216$Hden,TOTL1216$Eq_Width.A.)
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contour(y = TOTL1216$Phi.H.,x = TOTL1216$Hden,z = TOTL1216$Eq_Width.A.)
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?contour
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?contour
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contour(seq(1:4),seq(5:8),seq(3:6))
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?contour
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?op
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?op
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?opar
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?contour
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filled.contour
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?filled.contour
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filled.contour(seq(1:4),seq(5:8),seq(3:6))
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contour(y = TOTL1216$Phi.H.,x = TOTL1216$Hden,z = TOTL1216$Eq_Width.A.)
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TOTL1216$Hden
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TOTL1216$Phi.H.
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?sort
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TOTL1216[order(TOTL1216$Phi.H.,TOTL1216$Hden)]
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TOTL1216[order(Phi.H.,Hden)]
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TOTL1216[order(TOTL1216$Phi.H.,Hden)]
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TOTL1216[order(TOTL1216$Phi.H.,Hden),]
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TOTL1216[order(TOTL1216$Phi.H.,TOTL1216$Hden),]
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TOTL1216[order(TOTL1216$Hden,TOTL1216$Phi.H.),]
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library(ggplot)
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library(ggplot2)
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library(ggplot2)
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ggplot(Statsrep, aes(x=X, y=Y, z=Zn)) +
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geom_density2d()
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ggplot(Statsrep, aes(x=TOTL1216$Hden, y=TOTL1216$Phi.H., z=TOTL1216$Eq_Width.A.)) +
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ggplot(Statsrep, aes(x=TOTL1216$Hden, y=TOTL1216$Phi.H., z=TOTL1216$Eq_Width.A.)) + geom_density2d()
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library(stats)
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ggplot(Statsrep, aes(x=TOTL1216$Hden, y=TOTL1216$Phi.H., z=TOTL1216$Eq_Width.A.)) + geom_density2d()
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?ggplot
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ggplot(TOTL1216, aes(x=Hden, y=Phi.H., z=Eq_Width.A.)) + geom_density2d()
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TOTL1216$Eq_Width.A.
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ggplot(TOTL1216, aes(x=Hden, y=Phi.H., z=Eq_Width.A.)) + geom_density2d()
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ggplot(TOTL1216, aes(x=Hden, y=Phi.H., z=Eq_Width.A.)) + geom_density2d()
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ggplot(TOTL1216, aes(x=Hden, y=Phi.H., z=Eq_Width.A.))
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?ggplot
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?interp
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ggplot(TOTL1216, aes(x=Hden, y=Phi.H., z=Eq_Width.A.)) + geom_contour()
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ggplot(TOTL1216, aes(x=Hden, y=Phi.H., z=Eq_Width.A.)) + geom_contour(alpha=0.5)
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ggplot(TOTL1216, aes(x=Hden, y=Phi.H., z=Eq_Width.A.)) + geom_contour(alpha=1)
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ggplot(TOTL1216, aes(x=Hden, y=Phi.H., z=Eq_Width.A.)) +
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geom_tile() +
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coord_equal() +
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geom_contour(color = "white", alpha = 0.5) +
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s
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theme_bw()
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ggplot(TOTL1216, aes(x=Hden, y=Phi.H., z=Eq_Width.A.)) +
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geom_tile() +
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coord_equal() +
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geom_contour(color = "white", alpha = 0.5) +
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theme_bw()
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ggplot(TOTL1216, aes(x=Hden, y=Phi.H., z=Eq_Width.A.)) +
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geom_tile("TOTL 1216") +
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coord_equal() +
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geom_contour(color = "white", alpha = 0.5) +
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theme_bw()
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ggplot(TOTL1216, aes(x=Hden, y=Phi.H., z=Eq_Width.A.)) +
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geom_tile() +
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coord_equal() +
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geom_contour(color = "white", alpha = 0.5) +
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theme_bw()
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?ggplot
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plot(data,log="xy",ylim=c(.0003,.2),xlim=c(.001,1000))
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plot(err_1_sq ~ energy..keV.)
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plot(err_1_sq ~ energy..keV.,log="x")
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plot(data,log="xy",ylim=c(.0003,.2),xlim=c(.001,1000))
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plot(err_2_sq ~ energy..keV.,log="x")
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plot(total ~ energy..keV.,log="x")
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mean(sqrt((data$total - data$test_sum)^2))
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mean(sqrt((data$total - data$test_sum_1)/data$total))
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mean((data$total - data$test_sum_1)/data$total)
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mean((data$total - data$test_sum_2)/data$total)
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plot(data,log="xy",ylim=c(.0003,.2),xlim=c(.001,1000))
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ggplot(TOTL1216, aes(x=Hden, y=Phi.H., z=Eq_Width.A.)) +
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geom_tile() +
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coord_equal() +
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geom_contour(color = "white", alpha = 0.5) +
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theme_bw()
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q()
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