Computers are everywhere in our daily lives. Between the desktop, laptop, phone, …
Computers are everywhere in our daily lives. Between the desktop, laptop, phone, bank, and vehicle, it is difficult to completely get away from computers. It only makes sense to learn a little about how a computer really works.This text provides an introduction to programming and problem solving using the Fortran 95/2003/2008 programming language. This introduction is geared for non-computer science majors. The primary focus is on an introduction to problem solving and algorithm development. As such, many details of the Fortran 95/2003/2008 language are omitted.
In this webinar, Doctors David Mellor (Center for Open Science) and Stavroula …
In this webinar, Doctors David Mellor (Center for Open Science) and Stavroula Kousta (Nature Human Behavior) discuss the Registered Reports publishing workflow and the benefits it may bring to funders of research. Dr. Mellor details the workflow and what it is intended to do, and Dr. Kousta discusses the lessons learned at Nature Human Behavior from their efforts to implement Registered Reports as a journal.
The goal of this lesson is to provide an introduction to R …
The goal of this lesson is to provide an introduction to R for learners working with geospatial data. It is intended as a pre-requisite for the R for Raster and Vector Data lesson for learners who have no prior experience using R. This lesson can be taught in approximately 4 hours and covers the following topics: Working with R in the RStudio GUI Project management and file organization Importing data into R Introduction to R’s core data types and data structures Manipulation of data frames (tabular data) in R Introduction to visualization Writing data to a file The the R for Raster and Vector Data lesson provides a more in-depth introduction to visualization (focusing on geospatial data), and working with data structures unique to geospatial data.
This tutorial will teach you the basics of using a static site …
This tutorial will teach you the basics of using a static site generator. We will be using Hugo to build our demonstration site. We’ll play the role of a scholarly communications librarian. We’ll be using a command line terminal to install software and run commands and a text editor to edit and save plain text files. This in-depth tutorial is estimated to take between three and four hours to complete.
While we will be using Hugo as our static site generator, this tutorial is not intended to be a cover the depth and breadth of Hugo. For that, I refer you to the Hugo documentation and community. Rather, this tutorial is about using static site generators in a library-publishing context.
With raised awareness and accessibility laws emerging around the world, understanding what …
With raised awareness and accessibility laws emerging around the world, understanding what inclusive access to the Web means is becoming necessary knowledge for anyone who produces digital content. Much of the current information on Web accessibility requires some technical understanding, and may be difficult to consume for the average person. The instruction here will “interpret” the W3C Web Content Accessibility Guidelines (WCAG 2.1), to make it easier to understand for a general audience. You will have an opportunity to experience barriers firsthand, then experience that content with the barriers removed, developing a practical understanding of web accessibility.
This activity guides students through making a simple circuit and writing a …
This activity guides students through making a simple circuit and writing a simple Arduino sketch (code) to make some LEDs blink. It precedes a lab where students build a temperature sensor, and could be used prior to any lab that has students build Arduino-based environmental sensors. Instructions are complete enough so an instructor with no previous Arduino experience can implement this activity.
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