Example: dental hygienist

Lesson Plan Straw Bridge Design Challenge - Latest …

Lesson plan Straw Bridge Design Challenge Grade Level Gr 4 and up Topics Covered Straw Bridge Design Challenge Objectives General: Students will work in teams to Design and build a Bridge using plastic straws and tape. (masking or scotch) The models will be tested by adding weight to them until they collapse. Grade-Specific Prescribed Learning Outcomes (BC Curriculum): SCIENCE: Processes of Science Grade 4: Make predictions, supported by reason and relevant to the content (Designing a Bridge and predicting how it would do) Grade 5: Identify variables that can be changed in an experiment (Changing the shapes used to build the Bridge , number of straws used, length of straws) Grade 6: Apply solutions to a technical problem (How would you improve on your Bridge Design ?)

Lesson Plan – Straw Bridge Design Challenge Grade Level Gr 4 and up Topics Covered Straw Bridge Design Challenge Objectives General: Students will work in teams to design and build a bridge

Tags:

  Bridge, Design, Challenges, Plan, Lesson, Bridge design, Lesson plan straw bridge design challenge, Straw

Information

Domain:

Source:

Link to this page:

Please notify us if you found a problem with this document:

Other abuse

Advertisement

Transcription of Lesson Plan Straw Bridge Design Challenge - Latest …

1 Lesson plan Straw Bridge Design Challenge Grade Level Gr 4 and up Topics Covered Straw Bridge Design Challenge Objectives General: Students will work in teams to Design and build a Bridge using plastic straws and tape. (masking or scotch) The models will be tested by adding weight to them until they collapse. Grade-Specific Prescribed Learning Outcomes (BC Curriculum): SCIENCE: Processes of Science Grade 4: Make predictions, supported by reason and relevant to the content (Designing a Bridge and predicting how it would do) Grade 5: Identify variables that can be changed in an experiment (Changing the shapes used to build the Bridge , number of straws used, length of straws) Grade 6: Apply solutions to a technical problem (How would you improve on your Bridge Design ?)

2 What geometric shapes could you use?) Grade 7: Create models that help to explain scientific concepts and hypotheses (Designing blueprint, making predictions, testing those predictions, reflecting on how we learn from mistakes/failures) MATH: Measurement and 3-D Objects and 2-D Shapes Grade 4: Describe and construct rectangular and triangular shapes (C4) Grade 5: Describe and provide examples of edges and faces of 3-D objects, and sides of 2-D shapes that are parallel, intersecting, perpendicular, vertical, horizontal (C5) Grade 6: Construct and compare triangles (C4) Grade 7: Perform geometric constructions (C3) SWBAT (students will be able to): 1. Describe and Design different types of bridges 2. Identify effective geometric shapes used in Bridge Design 3.

3 Identify factors that civil engineers consider when designing bridges Materials 50 plastic straws per team Tape for each team Scissors for each team Handout for each team Measuring tape/Ruler 2 tables/desks that can be separated 30 cm apart A small paper/plastic cup or container and small objects that can be used as weight. Marbles are a good idea. Each marble can represent 1 car. Preparation Beforehand Teacher Contact: - Use of tables/desks and scissors - The activity will align with the processes of science section of the Science IRP - It would be helpful if the teacher separates the class into groups of 3 befordhand Activity Preparation: - Gather the above materials and separate them into kits for each team.

4 Background : Lesson plan was prepared by former civil engineer/now teacher candidate From the Internet: After the Industrial Revolution, bridges became more and more sophisticated as iron and steel became more commonly available. By using iron and steel, engineers could Design bridges capable of supporting larger loads and spanning greater distances, making it possible to link cities and communities through shorter, more direct routes and crossing obstacles such as waterways or other natural features that had previously blocked passage. Sometimes we take it for granted that bridges provide important links between places. They enable us to get to resources, conduct commerce, travel, and visit other people. The Design of bridges is important to the transportation networks we depend upon.

5 Below information can be discussed at any time during the activity. It s optional and just extra information. Critical information is embedded into Lesson plan . Connect the fact that while the materials used today will be different. The basic principles such as the geometric shapes used will be the same for our Straw bridges as for the bridges we drive over everyday. Model making is extremely important for engineers. Would engineers build life-sized models of all their designs? (Of course not! Money and time!) Nowadays, most of the modeling is done using computers. The programs used to model bridges and buildings are actually very similar to the programs used to create 3-D animated films. However, sometimes it is still useful to build physical that s what we will do today!

6 How much would bridges cost to Design and build? A small pedestrian Bridge crossing a creek could cost a few thousand dollars. The typical bridges we drive over that cross bodies of water would cost hundreds of millions of dollars. The most expensive ones cost billions of dollars. Port Mann Bridge = $ billion Pictures and Example Bridge Designs at the end of this Lesson plan Introduction Objectives Time Instructions Materials Identify factors that civil engineers consider when designing bridges 10 min - Introduce the concept of bridges. Why do we need them? What are they for? What are some concerns an engineer may have when designing a Bridge ? ( environment, cost, labor, weather, etc.) You could write down their ideas on the board -Ask them about bridges in Vancouver so that you are connecting with the world they know.

7 What Bridge connects ____ and ____? Which Bridge will I go over to get to _____? Which Bridge is parallel to _____? (Linking to their community and math PLO s) Draw a picture like the following on the board to help explain instructions. - Today, we will be acting as a team of engineers making Bridge models. We have been asked by the City of _____ municipal government to create a Bridge to cross a river. An amusement park is being built on the other side of the river and visitors need a way to reach it! Design objectives: You will be given 50 straws and tape and these are the only materials you can use to create your model. N/A It will have to span the river. The distance our model will have to span is 30 cm so make sure the Bridge is longer than 30 cm!

8 The river is the spawning area of many species of fish. Therefore, we should not disturb this river. No part of the Bridge may touch the water ! This means you can t have pillars supporting the Bridge in the middle. You cannot tape your Bridge to the desks/tables to help support it. To test your Design , we will be adding weight to the Bridge until it collapses. That means there has to be an area in the middle of your Bridge where you can securely hold a small cup/container. How many cars can your Bridge hold until it collapses? Your Design should look like a real Bridge . That means you should not just tape a bunch of straws together into a bundle. -Reinforce in students that taking risks and making mistakes are perfectly fine.

9 Engineers do it all the time when building models and testing. We are not trying to find a winner in this activity. Part #1 Science in Bridge Building Objectives Time Instructions Materials -Identify effective geometric shapes used in Bridge Design 15-20 min Note to Volunteer: Tensile Strength is the maximum stress that a material can withstand while being stretched/pulled before failing/breaking Compressive Strength is the opposite. Demonstrate Straw Power: (Optional Extension: This would be appropriate for higher level classes grade 7 and up) 1. Have two students come up and try to pull apart a Straw . Discuss Tensile Strength if class is at that level. Otherwise, simply mention it is difficult to pull a Straw apart.

10 2. Now, cut a short piece of the Straw off. Demonstrate it is very difficult to push it inwards. Discuss Compressive Strength if class is at that level. Otherwise, simply mention it is - Straw -Optional: premade 2-D/3-D shapes harder to crumple the Straw if it is shorter. This concept applies to all materials! Look at the pillars and columns around your school. The shorter they are, the harder they would be to crumple. 3. Ask students to keep these concepts in mind when designing their Bridge . Where would you want higher tensile strength? Where would you want higher compressive strength? Answer: Imagine loading a car on to a Bridge . You would want higher tensile strength at the bottom of the Bridge . You would want higher compressive strength at the top of the Bridge .


Related search queries