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#sublinear | |
library(deSolve) | |
# adapted from | |
# https://hankstevens.github.io/Primer-of-Ecology/DDgrowth.html | |
sublinear <- function(t, y, p){ | |
bi <- y[1] | |
dN.dt <- with(as.list(p), | |
r*b0^(1-k)*bi^k - z*bi |
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--- | |
title: "test" | |
format: revealjs | |
--- | |
# DAG Before You Model | |
[Which of these is your model?]{.center} | |
::: {.columns} |
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library(dplyr) | |
library(piecewiseSEM) | |
make_tests <- function(){ | |
dat <- tibble( | |
x <- runif(100), | |
x1 = rnorm(100, x, sd = 0.001), | |
x2 = rnorm(100, x, sd = 0.001), | |
x3 = runif(100), | |
y1 = rnorm(100, x1 + x3, sd = 0.1), |
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--- | |
title: "1. How to work with satellite data in R" | |
output: | |
html_document: | |
df_print: paged | |
--- | |
This tutorial will show the steps to grab data in ERDDAP from R, how to work with NetCDF files in R and how to make some maps and time-series of sea surface temperature (SST) around the main Hawaiian islands. |
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library(shiny) | |
library(rnoaa) | |
library(leaflet) | |
ui <- fluidPage( | |
leafletOutput("map"), | |
plotOutput("tempPlot") | |
) | |
server <- function(input, output) { |
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library(palmerpenguins) | |
library(ggplot2) | |
library(geomtextpath) | |
ggplot(penguins, | |
aes(x = body_mass_g, y = flipper_length_mm, | |
color = species, label = species)) + | |
geom_point(alpha = 0.2) + | |
geom_labelsmooth(method = "lm", boxlinewidth = 0) + |
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#' ---------------------------------- | |
#' Get simulated posterior fits from a gllvm | |
#' based on code from Francis KC Hui | |
#' with some light modifications by Jarrett Byrnes | |
#' ---------------------------------- | |
require(mvtnorm) | |
require(tidyr) | |
require(dplyr) |
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#gllvm reprex on posthocs | |
library(palmerpenguins) | |
penguins <- na.omit(penguins) | |
Y <- with(penguins, data.frame(bill_length_mm, bill_depth_mm, | |
flipper_length_mm, body_mass_g)) | |
X <- with(penguins, data.frame(species, sex)) |
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#'-------------------------------------------------- | |
#' Script for gmail analysis between two people | |
#' using gmailr | |
#'-------------------------------------------------- | |
library(gmailr) | |
library(tidyverse) | |
library(rties) | |
library(lubridate) | |
library(gganimate) |
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library(dplyr) | |
g <- tibble(x = 1:10, | |
y = rnorm(10, x^(0.2), 0.05)) | |
library(ggplot2) | |
mod <- lm(log(y) ~ log(x), data = g) |
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