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library(tidyverse) | |
library(MASS) | |
library(patchwork) | |
cbPalette <- c("#999999", "#E69F00", "#56B4E9", "#009E73", "#F0E442", "#0072B2", "#D55E00", "#CC79A7") | |
# generate data with given cor matrix | |
a <- 0.9 | |
s1 <- matrix(c(1,a, | |
a,1), ncol = 2) |
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library(brickr) | |
make_bricks <- function(brick_width = 5, | |
brick_length = 5, | |
n_layers = 3, | |
colors = c("Bright red", | |
"Bright green", | |
"Bright blue"), | |
render = FALSE){ | |
x <- rep(sort(rep(1:brick_width, brick_length)), n_layers) |
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#libs | |
library(tidyverse) | |
#---CHELSEA--- | |
# load in data | |
california <- read.csv("./Data/namesbystate/STATE.CA.TXT", header = FALSE) | |
colnames(california) <- c("State", "Gender", "Year", "Name", "Count") | |
# filter data | |
california_sub <- california %>% filter(Name == "Chelsea", Gender == "F") |
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library(tidyverse) | |
library(ggtext) | |
library(grid) | |
library(crayon) | |
title <- "The <b><span style='color:#FF0000'>Sigmoid Function</span></b> and its <b><span style='color:#0000FF'>Derivative</span></b>" | |
df <- data.frame(x = -5:5) | |
ggplot(df, aes(x)) + |
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library(tidyverse) | |
library(MASS) | |
# plot e^x | |
x <- -5:5 | |
dat <- data.frame(x,y=exp(x)) | |
f <- function(x) exp(x) | |
p <- ggplot(dat, aes(x,y)) + | |
stat_function(fun=f, colour="red") + |
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from shiny import App, render, ui, reactive | |
from pathlib import Path | |
# Import modules for plot rendering | |
import numpy as np | |
import matplotlib.pyplot as plt | |
import seaborn as sns | |
import pandas as pd |
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library(tidyverse) | |
# create named list | |
l <- list(x = data.frame(a = rnorm(10), b = rnorm(10)), | |
y = data.frame(a = rnorm(10), b = rnorm(10)), | |
z = data.frame(a = rnorm(10), b = rnorm(10))) | |
for (i in names(l)){ | |
if (i %in% c("x", "y")){ # if the name of the list item is in a specified sublist | |
l[[i]] <- l[[i]] %>% mutate(c = a + 1) # then do the mutate |
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library(readr) | |
library(tidyverse) | |
# read in data | |
urlfile <- "https://raw.githubusercontent.com/Z-Unlocked/Unlocked_Challenge_1/main/temperature_change_data_11-29-2021.csv" | |
mydata <-read_csv(url(urlfile)) | |
# filter | |
countries <- c("China", "Germany", "Japan", "United States of America") |
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#libs-------------- | |
library(grid) | |
library(tidyverse) | |
library(ggdark) | |
#funs-------------- | |
irt <- function(a,b,c){ | |
theta <- seq(-10,10, length = 500) | |
exponent <- exp(a*(theta-b)) | |
phat <- c + (1-c)*(exponent/(1 + exponent)) |
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terms <- c("error", "random", "model", | |
"mixed", "linear", "effects", | |
"variance") | |
probs <- c(0.1,0.1, 0.55, 0.05, 0.05, 0.1, 0.05) | |
new_jargon <- sample(terms, | |
size = sample(c(2,3),1), | |
prob = probs) | |
new_jargon <- paste(new_jargon, collapse = " ") |
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