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SIM_Tugas_A_M0725088
Bryan Steven D.S.
Plot tipos de raster
x <- 1:5 y <- 1:4 d <- st_dimensions(x = x, y = y, .raster = c("x", "y")) m <- matrix(runif(20),5,4) r1 <- st_as_stars(r = m, dimensions = d) r <- attr(d, "raster") r$affine <- c(0.2, -0.2) attr(d, "raster") = r r2 <- st_as_stars(r = m, dimensions = d) r <- attr(d, "raster") r$affine <- c(0.1, -0.3) attr(d, "raster") = r r3 = st_as_stars(r = m, dimensions = d) x <- c(1, 2, 3.5, 5, 6) y <- c(1, 1.5, 3, 3.5) d <- st_dimensions(x = x, y = y, .raster = c("x", "y")) r4 <- st_as_stars(r = m, dimensions = d) grd <- st_make_grid(cellsize = c(10,10), offset = c(-130,10), n = c(8,5), crs = st_crs('OGC:CRS84')) r5 <- st_transform(grd, "+proj=laea +lon_0=-70 +lat_0=35") par(mfrow = c(2,3), mar = c(0.1, 1, 1.1, 1)) r1 <- st_make_grid(cellsize = c(1,1), n = c(5,4), offset = c(0,0)) plot(r1, main = "regular") plot(st_geometry(st_as_sf(r2)), main = "rotated") plot(st_geometry(st_as_sf(r3)), main = "sheared") plot(st_geometry(st_as_sf(r4, as_points = FALSE)), main = "rectilinear") plot(st_geometry((r5)), main = "curvilinear")
Plot st_rasterize()
plot(st_rasterize(nc["BIR74"], dx = 0.1), col = sf.colors(), breaks = "equal")
coba rmd
mencoba deploy
Plot packages(stars)
install.packages("stars") library(stars) par(mfrow = c(2, 2)) par(mar = rep(1, 4)) tif <- system.file("tif/L7_ETMs.tif", package = "stars") x <- read_stars(tif)[,,,1] image(x, main = "(a)") image(x[,1:10,1:10], text_values = TRUE, border = 'grey', main = "(b)") image(x, main = "(c)") set.seed(131) pts <- st_sample(st_as_sfc(st_bbox(x)), 3) plot(pts, add = TRUE, pch = 3, col = 'blue') image(x, main = "(d)") plot(st_buffer(pts, 500), add = TRUE, pch = 3, border = 'blue', col = NA, lwd = 2)
HTML packages(sf, tydiverse, mapview)
install.packages("mapview") library(mapview) |> suppressPackageStartupMessages() mapviewOptions(fgb = FALSE) nc.32119 |> mapview(zcol = "BIR74", legend = TRUE, col.regions = sf.colors)
Plot package (sf , tydiverse)
year_labels <- c("SID74" = "1974 - 1978", "SID79" = "1979 - 1984") nc.32119 |> select(SID74, SID79) |> pivot_longer(starts_with("SID")) -> nc_longer ggplot() + geom_sf(data = nc_longer, aes(fill = value), linewidth = 0.4) + facet_wrap(~ name, ncol = 1, labeller = labeller(name = year_labels)) + scale_y_continuous(breaks = 34:36) + scale_fill_gradientn(colors = sf.colors(20)) + theme(panel.grid.major = element_line(color = "white"))
Plot package (sf,tysiverse)
library(tidyverse) library(sf) system.file("gpkg/nc.gpkg", package="sf") |> read_sf() -> nc nc.32119 <- st_transform(nc, 'EPSG:32119') nc.32119 |> select(BIR74) |> plot(graticule = TRUE, axes = TRUE)
Plot package (sf) attributes(nc)
attributes(nc) package (sf)
literacy rate
according to states
LA