#' AWS coordinates
#'#' Dataset contains lat lon of all the aws stations.
#'
#' @format A data frame with 46 rows and 9 variables:
#' \describe{
#' \item{IT_DATETIME}{price, in US dollars}
#' \item{DS_CODE}{weight of the diamond, in carats}
#' \item{DS_NAME}{weight of the diamond, in carats}
#' \item{DS_DESC}{weight of the diamond, in carats}
#' \item{DS_LAT}{weight of the diamond, in carats}
#' \item{DS_LON}{weight of the diamond, in carats}
#' \item{DS_ALT}{weight of the diamond, in carats}
#' \item{REH1.TG}{weight of the diamond, in carats}
#' \item{REH1.Q_TG}{weight of the diamond, in carats}
#' }
#' @examples
#' data(AWS.df)
#' str(AWS.df)
#' summary(AWS.df)
#'
"AWS.df"
#' spatial data
#'
#' some desc
#'
#' @slot DS_CODE iets
#'
"AWS.sp"
#'AHN3 data for the Bilt
#'@description data can be downloaded from \url{https://www.pdok.nl/nl/ahn3-downloads}
#'
#'@slot r_32cn1 kaartblad number for the bilt with height elevation data
#'
"ahn3_deBilt"
#' coordinates sensors De Bilt
#' Dataset contains x, y, lat lon of all the sensors at The Bilt.
#'
#' @format A data frame with 11 rows and 5 variables:
#' \describe{
#' \item{X}{RD X Coordinate, in meters}
#' \item{Y}{RD Y coordinate, in meters}
#' \item{LAT}{Latitude}
#' \item{LON}{Longitude}
#' \item{Sensor}{name of sensor}
#' }
#' @examples
#' data(sensor_coordsDeBilt.df)
#' str(sensor_coordsDeBilt.df)
#' summary(sensor_coordsDeBilt.df)
"sensor_coordsDeBilt.df"
#' coordinates sensors De Bilt
#'
#' some description
"sensor_coordsDeBilt.sp"
#'CBS Bodemkaart
#' @slot Hoofdgroep land use categories
#' @slot Shape_Leng shape_length
#' @slot Shape_Area shape area
"cbs_bodemgebruik"
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