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Python Programming Challenge Worksheets
Python Programming Challenge Worksheets
Python Programming Challenge Worksheets
Python Programming Challenge Worksheets
Python Programming Challenge Worksheets
Python Programming Challenge Worksheets
Python Programming Challenge Worksheets
Python Programming Challenge Worksheets
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Description

This bundle contains 12 PDF worksheets containing 65 Python coding challenges focusing on specific skills which help pupils to focus on one skill at a time. It also includes 12 PDF worksheets which contain the answers.

Download the preview now and see for yourself how useful and flexible this worksheet can be.

HOW CAN THESE PYTHON PROGRAMMING CHALLENGES BE USED?

These worksheets are idea for:

  • A summative assessment task in the classroom
  • A plenary activity
  • A homework task

Use them immediately or simply keep them in reserve for when you need them.

WHAT IS INCLUDED?
01 - Python Basics (includes 6 challenges)
02 - If Statements (includes 5 challenges)
03 - For Loops (includes 6 challenges)
04 - While Loops (includes 5 challenges)
05 - Random Functions (includes 6 challenges)
06 - Mathematical Operators (includes 7 challenges)
07 - Lists (includes 5 challenges)
08 - Turtle (includes 5 challenges)
09 - 2D Lists (includes 5 challenges)
10 - Text Files (includes 5 challenges)
11 - CSV Files (includes 5 challenges)
12 - Subprograms (includes 5 challenges)

This makes 65 programming challenges at your fingertips, ready to use with virtually no preparation

Saves you hours of planning time.

Don't forget that leaving feedback earns you point towards FREE TpT purchases.

Also, click here to follow me and be notified when new products are uploaded.

Report this resource to TPT
Reported resources will be reviewed by our team. Report this resource to let us know if this resource violates TPT's content guidelines.

Python Programming Challenge Worksheets

Nichola Wilkin
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$55.60
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Highlights

Grades icon
Grades
8th - 10th
Standards icon
Standards
Pages
12 PDF Worksheets and 12 PDF documents containing the answers
Answer Key
Included

Description

This bundle contains 12 PDF worksheets containing 65 Python coding challenges focusing on specific skills which help pupils to focus on one skill at a time. It also includes 12 PDF worksheets which contain the answers.

Download the preview now and see for yourself how useful and flexible this worksheet can be.

HOW CAN THESE PYTHON PROGRAMMING CHALLENGES BE USED?

These worksheets are idea for:

  • A summative assessment task in the classroom
  • A plenary activity
  • A homework task

Use them immediately or simply keep them in reserve for when you need them.

WHAT IS INCLUDED?
01 - Python Basics (includes 6 challenges)
02 - If Statements (includes 5 challenges)
03 - For Loops (includes 6 challenges)
04 - While Loops (includes 5 challenges)
05 - Random Functions (includes 6 challenges)
06 - Mathematical Operators (includes 7 challenges)
07 - Lists (includes 5 challenges)
08 - Turtle (includes 5 challenges)
09 - 2D Lists (includes 5 challenges)
10 - Text Files (includes 5 challenges)
11 - CSV Files (includes 5 challenges)
12 - Subprograms (includes 5 challenges)

This makes 65 programming challenges at your fingertips, ready to use with virtually no preparation

Saves you hours of planning time.

Don't forget that leaving feedback earns you point towards FREE TpT purchases.

Also, click here to follow me and be notified when new products are uploaded.

Report this resource to TPT
Reported resources will be reviewed by our team. Report this resource to let us know if this resource violates TPT's content guidelines.

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Questions & Answers

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Standards

to see state-specific standards (only available in the US).
Make sense of problems and persevere in solving them. Mathematically proficient students start by explaining to themselves the meaning of a problem and looking for entry points to its solution. They analyze givens, constraints, relationships, and goals. They make conjectures about the form and meaning of the solution and plan a solution pathway rather than simply jumping into a solution attempt. They consider analogous problems, and try special cases and simpler forms of the original problem in order to gain insight into its solution. They monitor and evaluate their progress and change course if necessary. Older students might, depending on the context of the problem, transform algebraic expressions or change the viewing window on their graphing calculator to get the information they need. Mathematically proficient students can explain correspondences between equations, verbal descriptions, tables, and graphs or draw diagrams of important features and relationships, graph data, and search for regularity or trends. Younger students might rely on using concrete objects or pictures to help conceptualize and solve a problem. Mathematically proficient students check their answers to problems using a different method, and they continually ask themselves, "Does this make sense?" They can understand the approaches of others to solving complex problems and identify correspondences between different approaches.
Model with mathematics. Mathematically proficient students can apply the mathematics they know to solve problems arising in everyday life, society, and the workplace. In early grades, this might be as simple as writing an addition equation to describe a situation. In middle grades, a student might apply proportional reasoning to plan a school event or analyze a problem in the community. By high school, a student might use geometry to solve a design problem or use a function to describe how one quantity of interest depends on another. Mathematically proficient students who can apply what they know are comfortable making assumptions and approximations to simplify a complicated situation, realizing that these may need revision later. They are able to identify important quantities in a practical situation and map their relationships using such tools as diagrams, two-way tables, graphs, flowcharts and formulas. They can analyze those relationships mathematically to draw conclusions. They routinely interpret their mathematical results in the context of the situation and reflect on whether the results make sense, possibly improving the model if it has not served its purpose.
Use appropriate tools strategically. Mathematically proficient students consider the available tools when solving a mathematical problem. These tools might include pencil and paper, concrete models, a ruler, a protractor, a calculator, a spreadsheet, a computer algebra system, a statistical package, or dynamic geometry software. Proficient students are sufficiently familiar with tools appropriate for their grade or course to make sound decisions about when each of these tools might be helpful, recognizing both the insight to be gained and their limitations. For example, mathematically proficient high school students analyze graphs of functions and solutions generated using a graphing calculator. They detect possible errors by strategically using estimation and other mathematical knowledge. When making mathematical models, they know that technology can enable them to visualize the results of varying assumptions, explore consequences, and compare predictions with data. Mathematically proficient students at various grade levels are able to identify relevant external mathematical resources, such as digital content located on a website, and use them to pose or solve problems. They are able to use technological tools to explore and deepen their understanding of concepts.
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