Parallel lines and transversals worksheets can help students identify the different types of angles that can be formed like corresponding angles, vertical angles, alternate interior angles, alternate exterior angles. They can utilize this knowledge of the angles formed by parallel lines and transversals to set up and solve equations for missing angles.
Benefits of Parallel Lines and Transversals Worksheets
Parallel lines and transversals worksheets can help students to learn about angles formed by parallel lines cut by a transversal. Parallel lines and transversals worksheets will help kids in solving geometry problems. Some real-life examples of parallel lines cut by a transversal are zebra crossing on the road, road and railway crossing, railway tracks with sleepers, and windscreen wipers in cars.
Printable PDFs for Parallel Lines and Transversals Worksheets
First, students will need to be able to identify angle pairs, then know the properties and relationships. Children and parents can find these math worksheets online or even download the PDF format of these exciting worksheets.
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Classify each pair of angles as one of the following: (a) alternate interior angles. (b) corresponding angles. (c) alternate exterior angles (d) vertical ...
Uploaded on 08/01/2022
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Download Worksheet #3 (Parallel Lines Cut by a Transversal) Name and more Linear Algebra Slides in PDF only on Docsity! Worksheet #3 (Parallel Lines Cut by a Transversal) Name: _______________________________________ Date: ________________ Period: ___________ Use the figure at the right to answer problems 1- 8. Classify each pair of angles as one of the following: (a) alternate interior angles (b) corresponding angles (c) alternate exterior angles (d) vertical angles (e) supplementary angles (f) none 1. _____ 9 & 16 5. _____ 9 & 11 2. _____ 15 & 11 6. _____ 9 & 15 3. _____ 10 & 15 7. _____ 13 & 14 4. _____ 12 & 15 8. _____ 14 & 11 9. m2 = 97 m6 = 83 m 3 = ______ m 5 = ______ m10 = ______ m 7 = ______ m 9 = ______ m16 = ______ Find the value of x given that s // t 10. m4 = 77, m8 = 4x + 57 11. m3 = 5x + 13, m5 = 53 12. m1 = 6x - 5, m7 = 115 3 8