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Mary Miller

Exploring yeast. | TINDERBOX - 1 views

  • Exploring yeast.
    • Mary Miller
       
      These experiments should be conducted with a science notebook so students make predictions and observations, draw pictures, and record their findings. They are fun experiments to do in class, but they should be tied into a lesson about why the things happen in the experiment.  Like I have been noting in many of my science lesson activities, know your students and their capabilities and make sure that they understand what is going on.  Lessons that involve the student observing and note-taking in a science journal allow them to work at their own pace and according to their own abilities, so the nature of the assignment means that it is already adapted for all different learners. 5.NS.1 Make predictions and formulate testable questions. 5.NS.3 Plan and carry out investigations-often over a period of several lessons-as a class, in small groups or independently.
    • Mary Miller
       
      5.DP.3 Document the design throughout the entire design process. 5.DP.4 Select a solution to the need or problem.
    • Mary Miller
       
      2.4.3 Identify a need and design a simple tool to meet that need.
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    Learn about yeast with this fun science experiment!  Students will love this activity because it is very hands on, and they love to see slimy liquids that bubble and grow.  This would grab their attention and allow them to make observations and predictions about what is happening to the yeast, and then they can test those predictions by experimenting with ratios of yeast to other ingredients.  I did the balloon activity with my first graders and they loved it!  But it should really be reinforced with a lesson about why what is happening is going on, otherwise it is just something cool to see.
Mary Miller

Classroom Magic: Are Mittens Warm? - 0 views

    • Mary Miller
       
      This lesson could be extended in all sorts of directions, depending on what stage the children are in their learning.  For example, you could tie the lesson into other sorts of measurement and have students estimate how much the mitten can stretch. This lesson can be adapted for more accelerated students by allowing them to experiment with different mittens and gloves to see which is the most efficient at holding heat. 2.NS.3=Generate questions and make observations about natural processes. 2.NS.5=Discuss observations with peers and be able to support your conclusion with evidence.
    • Mary Miller
       
      5.4.2 Investigate the purpose of prototypes and models when designing a solution to a problem and how limitations in cost and design features might affect their construction.
    • Mary Miller
       
      Students could also extend the activity to see how different types of gloves and mittens hold heat, thereby deciding which is the most efficient.
    • Mary Miller
       
      2.4.3 Identify a need and design a simple tool to meet that need.
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    This is a fun lesson that connects literature to science and allows students to think about temperature in a new way.  The lesson involve measuring the temperature of the room, an empty mitten, and a mitten with a hand in it.  Most children will be surprised to find out that the mitten itself is not warm, but mittens keep your hands warm because they insulate your body temperature.
Andrew Todd

Teaching About Natural Resources and Energy Sources - Energy and the Polar Environment ... - 1 views

    • Andrew Todd
       
      Standard: 4.NS.2- Observe, investigate and give examples of ways that the shape of land changes over time.(4.2.1, 4.2.2, 4.2.3) Describe how the supply of natural resources is limited and investigate ways that humans protect and harm the environment. (4.2.4, 4.2.5, 4.2.6)
    • Andrew Todd
       
      Extension: Students could build more elaborate models with rocks, mud, dirt, soil, and other natural objects. Students could build larger models that set over time and could be used to mimic larger mining operations.
    • Andrew Todd
       
      Adaptations: Students could write reports on the effects of coal mining and other human practices on the earth and our resources. Students could give presentations on other harmful practices that humans participate in, explaining why, despite the negative effects, we still make these decisions.
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    Students will "hunt" for coal by digging chocolate chips out of chocolate chip cookies with tooth picks. Students will not be able to break cookies or take bites to get chocolate out of the cookies. Students will understand the affects that mining has on its environment.
Andrew Todd

Investigating Sounds: Identifying Vibration, Pitch, and Volume - 1 views

    • Andrew Todd
       
      Standards: 3.DS.1 - Observe and describe how sound is produced by vibrations. (3.1.1, 3.1.2, 3.1.3) Observe and describe how light travels from point to point. (3.1.4, 3.1.5, 3.1.6)
    • Andrew Todd
       
      Adaptation- Different instruments could be placed at stations throughout the room if there were not enough to pass out to everyone. Students could move table to table recording what they observe about the sound.
    • Andrew Todd
       
      Extension: This could be extended by turning it into a research project. Students could research specific instruments, then with classroom materials or materials from home, students could construct homemade instruments resembling what they researched. Knowledge of sounds waves and vibrations would be used to create working instruments.
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    In this investigation, students will observe and experiment with how sounds are made. They will use various elementary music instruments as well as tuning forks, combs, rubber bands, books, bottles, etc... They will collect data on how their sounds were made in their Science journals. Following a discussion of their findings, they will generate questions about what they would like to find out about sound. They will then return to their investigations to observe how their original sounds can be changed and record this data in their journals as well. Finally, there will be another discussion to share their information.
Andrew Todd

Paper Airplanes & The Four Forces of Flight Lesson - 1 views

    • Andrew Todd
       
      4.DS.4 - Design a moving system and measure its motion. 4.DS.4.1- Investigate transportation systems and devices that operate on or in land, water, air and space and recognize the forces (lift, drag, friction, thrust and gravity) that affect their motion.
    • Andrew Todd
       
      Adaptation - Lesson could be shortened by discussing the principles of flight, reviewing possible designs, then have students design 1 paper airplane based on what they think will work best.
    • Andrew Todd
       
      Extension: Students could be given a second chance to construct a paper airplane, providing a written explanation and model drawing for what they did differently.
Maria Watson

Plane Smarts - 0 views

    • Maria Watson
       
      STANDARDS:SCI.6.4.1 2010 Understand how to apply potential or kinetic energy to power a simple device. ADAPTATIONS: Students who have great hand, eye coordination can be paired with students who have great linguistic skills.  One student can build the airplane, and the other could make the observations of the different models.  Both students can share how they excel in each skill (kinesthic and logical) EXTENSION: Students can design their own airplane model and test which students designs are most efficient.  
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    SCI.6.4.1 2010 Understand how to apply potential or kinetic energy to power a simple device.
Maria Watson

Do The Swing Thing - 1 views

    • Maria Watson
       
      STANDARDS: SCI.4.4.3 2010 Investigate how changes in speed or direction are caused by forces: the greater the force exerted on an object, the greater the change. ADAPTATIONS:  EXTENSION:  Teacher can show the video on http://www.pbs.org/opb/circus/classroom/circus-physics/activity-guide-pendulum-motion/.  This link shows a different type of pendulum, a human pendulum.  Students can explore humans as motion.  
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    SCI.4.4.3 2010 Investigate how changes in speed or direction are caused by forces: the greater the force exerted on an object, the greater the change.
Maria Watson

Welcome to Amusement Park Physics - 1 views

    • Maria Watson
       
      STANDARDS: SCI.4.4.3 2010 Investigate how changes in speed or direction are caused by forces: the greater the force exerted on an object, the greater the change. ADAPTATIONS: Students who are more bodily kinesthetic can design their own roller coaster.    EXTENSION:Teacher can have students simulate the visual effects of a roller coaster through http://www.youtube.com/watch?v=IiP0D7kX_4c&noredirect=1.  The teacher can bring the roller coaster to the class. 
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