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Blogpost - Physical Environment: Growing Healthy Fast Plants
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Read this blog post for background information about the relationship between the physical environment and life processes and systems in Fast Plants. Growing healthy Fast Plants is easy if you understand how the environment can affect growth and development. Three broad categories of environmental factors influence how an individual plant matures through its life cycle:  1) the physical environment, 2) the chemical environment, 3) the biological environment. Based on this information about standard conditions for optimal Fast Plants growth, one could easily design a wide variety of controlled experiments. Questions naturally arise while reading about optimal conditions that could be investigated by designing an experiment to how varying one condition affects growth, development and/or reproduction. This blog post is part of a series explaining how key environmental factors "physical, chemical, and biological" can impact the growth of Wisconsin Fast Plants.

Subject:
Agriculture
Career and Technical Education
Material Type:
Reading
Provider:
Wisconsin Fast Plants Program
Author:
Hedi Baxter Lauffer
Date Added:
05/25/2023
Probability: Central limit theorem
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After heuristically deriving Stirling's approximation in the first video segment, we outline a simple example of the central limit theorem for the case of the binomial distribution. In the final segment, we explain how the central limit theorem is used to suggest that physical experiments are characterized by normally-distributed (Gaussian) fluctuations while fluctuations in biological experiments are said to fill out log-normal distributions.

Subject:
Life Science
Mathematics
Physical Science
Physics
Material Type:
Lecture Notes
Provider:
Look At Physics
Provider Set:
A Mathematical Way to Think About Biology
Author:
David Liao
Date Added:
10/08/2012
Physics Motion Activities for Second Grade
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The activity consists of a story and two experiments demonstrating how push and pull can make objects move.

Subject:
Applied Science
Physical Science
Physics
Technology
Material Type:
Activity/Lab
Provider:
Science Education Resource Center (SERC) at Carleton College
Provider Set:
Pedagogy in Action
Date Added:
11/06/2014
Intro to Physical Computing in English Class: micro:bits
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CC BY-NC-ND
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This highly engaging lesson focuses on helping students to follow complex multi-step directions to program a micro:Bit in an Hour of Code™ activity related to an informative article. It uses micro:bit Go educational kits and easy JavaScript block coding. The micro:bit is a miniature programmable computer with 25 LED lights that was created by the BBC to introduce children in England to computing. It is available for purchase in the U.S. This lesson meets the 2014 Nebraska Language Arts Standard 8.3.2.c (among others).

Subject:
Computer Science
English Language Arts
Reading Informational Text
Speaking and Listening
Material Type:
Lesson Plan
Author:
Becky Fendrick
Date Added:
03/13/2019
High School Integrated Physics and Chemistry Course
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The High School Integrated Conceptual Science Program (ICSP) is a NGSS-aligned curriculum that utilizes the conceptual progressions model for bundling of the NGSS, High School Conceptual Model Course 1 and strategies from Ambitious Science Teaching (AST) to focus on teaching practices needed to engage students in science discourse and learning. Course 1 is the High School Integrated Physics and Chemsitry Course.   The goal of these units is to encourage students to continue in STEM by providing engaging and aligned curriculum. The focus of this year long course is on the first year of high school (freshman).  While the course is designed to be taught as a collection of the units, each unit could be taught as a separate unit in a science course.  A video about the new course shared its unique approach to learning and teaching. Wenatchee School District, one of the participating districts, wanted a way to share the program with the community. https://youtu.be/9AGk19YUi2oCourse 1 of the ICSP development was funded by Northwest Earth and Space Sciences Pipeline (NESSP) which is funded through the NASA Science Mission Directorate and housed with Washington NASA Space Grant Consortium at the University of Washington.

Subject:
Chemistry
Physical Science
Material Type:
Activity/Lab
Assessment
Full Course
Lesson
Module
Unit of Study
Author:
Carissa Haug
MECHELLE LALANNE
Date Added:
06/01/2020
AP Physics 1 review of Waves and Harmonic motion
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In this video David quickly explains each concept for waves and simple harmonic motion and does an example question for each one. Created by David SantoPietro.

Subject:
Physical Science
Physics
Material Type:
Lesson
Provider:
Khan Academy
Provider Set:
Khan Academy
Author:
David SantoPietro
Date Added:
06/29/2018
Physics Across Oceanography: Fluid Mechanics and Waves
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Short Description:
This class reflects material and approaches that were developed over 25 years of teaching undergraduates in the School of Oceanography at UW. While fluid mechanics is traditionally an advanced subject, Oceanography and Marine Biology majors can benefit from a more basic treatment, ideally early in their degree, as foundational material for understanding interdisciplinary topics. That is the motivation for this book.

Word Count: 28167

(Note: This resource's metadata has been created automatically by reformatting and/or combining the information that the author initially provided as part of a bulk import process.)

Subject:
Oceanography
Physical Science
Physics
Material Type:
Textbook
Author:
Susan Hautala
Date Added:
12/15/2020
The Adventure of Physics - Vol. V: Motion Inside Matter - Pleasure, Technology, and Stars
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This book is written for anybody who is curious about nature and motion. Curiosity about how bodies, images and empty space move leads to many adventures. This volume presents the best adventures about the motion inside people, inside animals, and inside any other type of matter – from the largest stars to the smallest nuclei.

Motion inside bodies – dead or alive – is described by quantum theory. Quantum theory describes all motion with the quantum of action h, the smallest change observed in nature. Building on this basic idea, the text first shows how to describe life, death and pleasure. Then, the text explains the observations of chemistry, materials science, astrophysics and particle physics. In the structure of physics, these topics correspond to the three ‘quantum’ points in Figure 1. The story of motion inside living and non-living matter, from the coldest gases to the hottest stars, is told here in a way that is simple, up to date and captivating.

In order to be simple, the text focuses on concepts, while keeping mathematics to the necessary minimum. Understanding the concepts of physics is given precedence over using formulae in calculations. The whole text is within the reach of an undergraduate.

In order to be up to date, the text is enriched by the many gems – both theoretical and empirical – that are scattered throughout the scientific literature.

In order to be captivating, the text tries to startle the reader as much as possible. Read- ing a book on physics should be like going to a magic show. We watch, we are astonished, we do not believe our eyes, we think, and finally we understand the trick. When we look at nature, we often have the same experience. Indeed, every page presents at least one sur- prise that makes the reader think. Also numerous interesting challenges are proposed.

The motto of the text, die Menschen stärken, die Sachen klären, a famous statement by Hartmut von Hentig on pedagogy, translates as: ‘To fortify people, to clarify things.’ Clar- ifying things – and adhering only to the truth – requires courage, as changing the habits of thought produces fear, often hidden by anger. But by overcoming our fears we grow in strength. And we experience intense and beautiful emotions. All great adventures in life allow this, and exploring motion is one of them. Enjoy it!

Subject:
Physical Science
Physics
Material Type:
Textbook
Provider:
Motion Mountain
Author:
Christoph Schiller
Date Added:
02/20/2015
AP Physics 1 review of Forces and Newton's Laws
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In this video David quickly explains each concept behind Forces and Newton's Laws and does a sample problem for each concept. Keep an eye on the scroll to the right to see how far along you've made it in the review. Created by David SantoPietro.

Subject:
Physical Science
Physics
Material Type:
Lesson
Provider:
Khan Academy
Provider Set:
Khan Academy
Author:
David SantoPietro
Date Added:
06/29/2018
Physical Science II online simulation as quiz - Momentum
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This is a quiz designed to accompany the online simulation "Collision Lab," which is part of the PhET Interactive Simulations of the University of Colorado Boulder. The quiz was designed for Canvas. Each question includes instructions for an action the student is to complete in the online simulation, followed by a multiple choice question.

Subject:
Physics
Material Type:
Lesson Plan
Author:
Brian Cushing
Date Added:
06/10/2019
Modern Quantum Many-body Physics for Condensed Matter Systems
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This graduate-level course covers the quantum effect in solids. It focuses on the concepts and physical pictures behind various phenomena that appear in interacting many-body systems.

Subject:
Physical Science
Physics
Material Type:
Full Course
Provider:
MIT
Provider Set:
MIT OpenCourseWare
Author:
Wen, Xiao-Gang
Date Added:
09/01/2021
Chemistry: Classifying Chemical and Physical Changes in Various Materials/Substances
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This activity is a classroom lab where students observe and classify chemical and physical changes using the five characteristics of a chemical change, interpret their findings, and use evidence to support their findings.

Subject:
Chemistry
Physical Science
Material Type:
Activity/Lab
Provider:
Science Education Resource Center (SERC) at Carleton College
Provider Set:
Pedagogy in Action
Author:
Nikki Schilling
Date Added:
08/16/2012
Models in Architecture – Design through Physical & Digital Models
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Physical and digital design skills are key to practitioners in art, design, and engineering, as well as many other creative professions. Models are essential in architecture. In design practice all kinds of physical scale models and digital models are used side by side.

In this architecture course, you will gain experience that will help and inspire you to advance in your personal and professional development. You will attain skills in a practical way. First, we will focus on sketch models for the early stages of a design process, then we will continue with virtual representations for design communication and finally more precise and detailed models will be used for further development of the ideas.

In the theoretical part of the course, you will learn about many different sorts of models: how architects use these and how they are essential in the design process.

The practical part of the course addresses a number of challenges. In small steps we will guide you through technical and creative difficulties in exciting, playful, and pleasant ways.

Subject:
Applied Science
Architecture and Design
Material Type:
Full Course
Provider:
Delft University of Technology
Provider Set:
TU Delft OpenCourseWare
Author:
Martijn Stellingwerff
Date Added:
08/09/2019
Physics of Sound: How Does Length Affect Pitch?
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This activity is an investigation where students use tools to determine how the length of a sound source affects its pitch.

Subject:
Physical Science
Physics
Material Type:
Activity/Lab
Provider:
Science Education Resource Center (SERC) at Carleton College
Provider Set:
Pedagogy in Action
Author:
Medora Gruber
Date Added:
08/16/2012
Forces and Interactions (3rd Grade Physical Science Unit)
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In this Unit, students embark on a mission to create a campaign which promotes seat belt use for a teenage audience. In the context of this project, students explore NGSS PE’s 3-PS2-2, 3-PS2-1, 3-5-ETS1-1, 3-PS2-3, and 3-PS2-4 while investigating the effects of balanced and unbalanced forces acting on an object. Through a series of collect evidence to write a claim based on evidence for why seatbelts are important.

Subject:
Physical Science
Material Type:
Activity/Lab
Date Added:
05/24/2018