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Preview of binary code worksheets, computer coding

binary code worksheets, computer coding

computer coding worksheets Binary Code Worksheets This educational resource is designed to assist students in mastering binary conversion. It serves as a great starting point for their introduction to computer science, providing clear examples to help them learn the process of converting decimal numbers to binary.
Preview of Math Moments in Read Alouds (Grace Hopper: Queen of Computer Code)

Math Moments in Read Alouds (Grace Hopper: Queen of Computer Code)

Connect Math and Literacy with this Read Aloud Activity Guide. Enjoy the book Grace Hopper: Queen of Computer Code by Laurie Wallmark together as a class as you explore mathematical concepts of time, 2D and 2D objects, displacement, and algebraic thinking with addition and subtraction. Similar to a Movie Guide, this Read Aloud Activity Guide is great for cross-curricular connections and transitions between math and literacy blocks. This particular book also celebrates diverse women in the math
Preview of Computer Science Principles: Turtle Coding (Big Idea 3 Lesson 7)

Computer Science Principles: Turtle Coding (Big Idea 3 Lesson 7)

This is the 7th lesson in my AP Computer Science Principles Big Idea 3: Algorithms & Programming bundle. Students will: learn how to navigate through code moving a robot around a gridapply knowledge of variables, Boolean values and conditionalsapplying sequential and selection blocks of pseudocodecomplete AP style problemsThis download includes: Guided Notes for the studentsLesson Slides (PowerPoint, Keynote and PDF)Practice WorksheetExit Slip (4 versions)Keys for all resources.© 2023 “Innovat
Preview of Computer Science Semester Bundle – High School (No Experience Needed!)

Computer Science Semester Bundle – High School (No Experience Needed!)

Created by
Creepy Circuits
So, your schedule says “Computer Science” this semester… and suddenly you’re supposed to teach programming to students who think the “cloud” is where their TikToks live. Meanwhile, state standards assume your students have been coding since they were in diapers—even though your school only just got enough Chromebooks to share. This bundle is built exactly for you: the teacher who wants a structured, student-friendly, standards-aligned course that doesn’t assume prior background knowledge. It s
Preview of Coding Dice Games: Explore Probability Through Play (Python | Grades 5–10+)

Coding Dice Games: Explore Probability Through Play (Python | Grades 5–10+)

Looking for a meaningful way to teach coding AND probability—without worksheets that fall flat? This ready-to-use resource engages students through interactive Python-based dice games, helping them build, test, and understand key concepts through play. What Students Will Learn: Python fundamentals (variables, loops, conditionals, functions)Randomization and simulationTheoretical vs. experimental probabilityIndependent vs. dependent eventsStrategic thinking and decision-makingWhat’s Included:
Preview of AP Computer Science Principles Bundle - Big Idea 3: Algorithms & Programming

AP Computer Science Principles Bundle - Big Idea 3: Algorithms & Programming

This is a growing bundle to cover all the AP CSP components for Big Idea 3, which has an AP exam weight of 30-35%. The following are the lessons included in this bundle currently: U3 L1 VariablesU3 L2 Math OperatorsU3 L3 StringsU3 L4 Boolean ExpressionsU3 L5 FlowchartsU3 L6 ConditionalsU3 L7 Turtle CodingU3 L9 IterationEach Lessons Includes: Guided Notes for the studentsLesson Slides (PowerPoint & Keynote)Practice WorksheetExit Slip (At least 2 versions)Keys for all resources© 2022 “Innovative M
Preview of Learn Python Coding Bundle | Name Generator + Number Games (Grades 5–7+)

Learn Python Coding Bundle | Name Generator + Number Games (Grades 5–7+)

Introduce your students to Python programming through engaging coding projects that combine creativity, problem-solving, and game design. This bundle includes two scaffolded Python resources that guide students through a series of hands-on coding challenges. Students learn to manipulate text, work with numbers, and build interactive programs using core programming concepts such as variables, lists, loops, conditionals, functions, and user input. Across multiple projects, students gradually build
Preview of micro:bit Coding - Lesson Resource Bank

micro:bit Coding - Lesson Resource Bank

Empower your students to code, create, and connect math concepts with the micro:bit!This micro:bit Coding – Lesson Resource Bank includes 11 complete lessons designed for Grades 3 and up, aligned with the Ontario Mathematics Curriculum (2020) and supported by cross-curricular connections in Science. Each lesson comes with ready-to-use teacher resources, interactive micro:bit simulators, and student-friendly supports—everything you need to bring coding into your classroom with confidence.
Preview of Learn Python Coding with Number Games | Grades 5–7+

Learn Python Coding with Number Games | Grades 5–7+

Help your students build real Python programming skills through two engaging number-based coding challenges! This resource guides students through two scaffolded projects that explore lists, loops, conditionals, functions, and user input--all through interactive number games. Students will: Generate and analyze random number lists Identify even numbers using conditionals Use loops to process data Create and call functions Build complete "Number Sort" and "Guess the Number" games in Python T
Preview of Math × Python - FULL Series - Coding Linear Relations (8 x 2 Guides included)

Math × Python - FULL Series - Coding Linear Relations (8 x 2 Guides included)

Teaching in the Intermediate Grades?!I’m thrilled to introduce this Python + Linear Relations series on Teachers Pay Teachers—a seven-project journey that blends coding with algebraic thinking. From generating random lines to building an interactive tutor with success-rate analytics and live graphs, your students will: Practice pseudocode planning Write & test Python functions Handle input errors like pros Visualize data with Matplotlib & NumPy Reflect on their own learning Perfect for cl
Preview of Geometric Art with LYNX Coding

Geometric Art with LYNX Coding

Geometric Art with Lynx — Student Handout & Teacher Activity GuideIntroduce your students to coding with Lynx in a fun, creative, and structured way. This resource blends coding, geometry, and art, making it a perfect entry point for learners new to text-based programming. Students will plan, write, and test their own procedures to create geometric art — experimenting with shapes, colours, variables, loops, and randomization. Teachers receive clear guidance, sample code, and extension activiti
Preview of Introduction to Coding, Using Scratch and code.org

Introduction to Coding, Using Scratch and code.org

Created by
Mrs SW's Stuff
An introduction to teaching coding to a Year 3 - Year 6 class. This includes links to NSW syllabus suggestions on reflections. Students can work at their own pace using Task Cards.
Preview of Math x Python Series - Coding Linear Relations (Project 7 - BOTH Guides)

Math x Python Series - Coding Linear Relations (Project 7 - BOTH Guides)

Empower students in the Intermediate Grades with “Project 7: Data Handling with Pandas and Export to CSV”—a set of teacher and student guides that seamlessly extend your linear‐relations Python tutor into real‐world data analysis. Why You’ll Love These Resources:Turn Code into Data Stories: Take learners beyond plotting points—now they collect each round’s results, build a Pandas DataFrame, generate descriptive statistics, and export a CSV for deeper exploration. End‐to‐End Support: The Teache
Preview of Grade 9 Destreamed Math -Coding Resources

Grade 9 Destreamed Math -Coding Resources

Created by
STEM Class 7-12
Coding resources for python and scratch for grade 9 destreamed math course in Ontario. more coding materials will be uploaded to the store very soon. There are also some resources on BHN website and EQAO website.
Preview of Math x Python Series - Coding Linear Relations (Project 8 Guides - BUNDLE)

Math x Python Series - Coding Linear Relations (Project 8 Guides - BUNDLE)

Project 8: Enhanced Graphing with Matplotlib – Complete Lesson BundleEquip your intermediate grade learners with a turnkey coding and math analysis experience. This bundle includes both the Teacher Guide and Student Guide—fully aligned to Ontario MTH1W C2—and everything you need to: Teach & Code: Ready-to-use lesson flow, live-coding scripts, pseudocode planning, and sample outputs. Visualize Error: Students implement and plot residual lines, calculate prediction accuracy, and annotate graphs.
Preview of Coding with Python - Rounding Numbers (Junior Grades)

Coding with Python - Rounding Numbers (Junior Grades)

Looking to integrate Python coding into your junior mathematics program in a meaningful way? I’ve created a teacher resource that connects directly with standardized test questions — helping teachers and students develop real programming skills while reinforcing mathematical concepts. High-Value Features of This Resource:✅ Curriculum-Aligned + Authentic Context Inspired by EQAO released items, clearly linking coding to real-world assessment expectations for Ontario educators. Strong alignment
Preview of Coding with micro:bit - Rounding Numbers (Grades 5+)

Coding with micro:bit - Rounding Numbers (Grades 5+)

Grade 6 EQAO-Aligned Number Machine & Pseudocode PowerPoint LessonEnhance your Grade 6 math instruction with this comprehensive PowerPoint lesson focused on coding number machines with micro:bit and pseudocode, meticulously aligned with Ontario's EQAO standards. This resource is designed to develop students' computational thinking and problem-solving skills through interactive and visual learning. What's Included: Step-by-step slides introducing number machines and pseudocode concepts Engaging v
Preview of Quadratics: Projectile Motion with Code!

Quadratics: Projectile Motion with Code!

Looking for a true STEM Project? Quadratics: Projectile Motion with Code allows students to interact with a computer program that requires users to input the parameters of the position function: acceleration due to gravity, initial vertical velocity, and initial position. Just with one click, your entire class can start working with a code! All problems are application based and there is a possible project to do with the students at the end!
Preview of Computer Science Principles: Math Operators (Big Idea 3 Lesson 2)

Computer Science Principles: Math Operators (Big Idea 3 Lesson 2)

This is the 2nd lesson in my AP Computer Science Principles Big Idea 3 Algorithms and Programming. Students will: review order of operations in mathlearn modulus math operationslearn random number generator commandapply all math operations in sequential pseudocodeunderstand simulation in codingcomplete AP style problemsThis download includes: Guided Notes for the studentsLesson Slides (PowerPoint, Keynote)Practice WorksheetExit Slip (2 versions)Keys for all resources.© 2022 “Innovative Mathemati
Preview of Computer Science Principles - Conditional Statements (Big Idea 3 Lesson 6)

Computer Science Principles - Conditional Statements (Big Idea 3 Lesson 6)

This is the sixth lesson in my AP Computer Science Principles Big Idea 3: Algorithms & Programming Bundle Students will: understand what is a conditional statement (IF statements)evaluate conditional statements (IF, IF ELSE & Nested)apply knowledge conditional statements in coding (IF, IF ELSE & Nested)complete AP style problemsThis download includes: Guided Notes for the studentsLesson Slides (PowerPoint & Keynote)Practice WorksheetExit Slips (4 versions)Keys for all resources.© 2022 “Innovat
Preview of Computer Science Principles: Boolean Expressions (Big Idea 3 Lesson 4)

Computer Science Principles: Boolean Expressions (Big Idea 3 Lesson 4)

This is the fourth lesson in my AP Computer Science Principles Big Idea 3: Algorithms & Programming Bundle Students will: understand what is a Boolean expressionevaluate Boolean expression and compound conditionalsapply knowledge of Boolean conditionals in codingcomplete AP style problemsThis download includes: Guided Notes for the studentsLesson Slides (PowerPoint & Keynote)Practice WorksheetExit Slips (4 versions)Keys for all resources.© 2022 “Innovative Mathematics”(Laura Brantley) All righ
Preview of Math × Python Series - Coding Linear Relations (Project 5 - BOTH Guides)

Math × Python Series - Coding Linear Relations (Project 5 - BOTH Guides)

Interactive Linear Relation TutorStudents take the skills from Projects 1–4 and build a fully interactive tutor that challenges their understanding of lines and immediately visualizes each question. In Project 5, learners generate random linear equations, calculate and classify points, and see their work plotted—all in a reusable Python program. What Students Will Do: Generate Random Equations & Points- create y=ax+b and pick a test point (x,y).Prompt & Validate y-Value Answers- Ask users to co
Preview of Math × Python Series - Coding Linear Relations (Project 4 - BOTH Guides)

Math × Python Series - Coding Linear Relations (Project 4 - BOTH Guides)

Visualizing Points and Linear Relations with CodeBring coordinate geometry to life! In Project 4, students write a Python program that randomly generates a line and a test point, challenges them to predict its position, and then plots both on a graph—reinforcing the link between algebraic equations and their visual representations. What Students Will Do: Generate Random Equations & Points- Create a line y=ax+b and a test point (x,y).Predict & Compare- Calculate the correct y for a given x using
Preview of Math x Python Series - Coding Linear Relations (Project 8 - Student Guide)

Math x Python Series - Coding Linear Relations (Project 8 - Student Guide)

Empower Your Students with Hands-On Data Visualization!Unlock deeper understanding of linear relationships and prediction error with the Project 8 Student Guide: Enhanced Graphing with Matplotlib—a student-friendly roadmap that transforms abstract algebra into interactive, real-world analysis. Why Teachers & Students Will Love This Guide Student-Centered Design Clear, Step-by-Step Instructions: Guided pseudocode planning and code snippets walk learners through each function, reducing frus
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