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Media and Learning Conference
                            Bruxelles 14th-15th- November 2012
                                                 ●
Università degli Studi
di Modena e Reggio E.




             Videos : a high tech, low cost, hands-on
            approach to the Physiscs of nano materials
                       for high school pupils


                                                      Annamaria Lisotti *°#
                                                  G.Goldoni°#, V.De Renzi°#

                                                     *ISIS Cavazzi sez. Scientifica – Pavullo (MO)
                                                       °University of Modena and Reggio E- IT-
                                                     Physics Informatics Mathematics Department
                                                                  #CNR Nano, Modena


                                                   annamaria.lisotti@unimore.it

                                                                                                     1
Setting the frame: Nanolab Project




New ierarchy in forces         Atomic manipulation             Quantum tunneling              Size matters!
selfcleaning                   smart materials                 pressure sensors            colorimetric sensors
superhydrophobic               stents, artificial muscles                                     drugs delivery
superadhesive surfaces                                              conductivity,        Light and matter interaction
                               Phase transition resistance
Forces , friction, adhesion,                                      piezoresistance,           colour, spectrometry,
                               metal dilation, sound
                                                                                                     diffusion



                                                Low cost, simple, safe, robust
 From EU                                        Still teaching fundamentals , strongly link to curricula
 input …                                        Sometimes challenging “school linear physics”
                                                Can be taylored to suit different needs and levels
    … to local                                  Students as young researchers IBSE
    implementation
www.nanolab.unimore.it

                                                  August 2013
                                                  Modena IT




                                                  Background
                                                  reading +
                                                  Seminars
                                                  Video PPT

            Teacher guides
Video lab
            Didactical notes      Lab sheets &
            Detailed building
guides                            presentations
            instructions
            ‘Where to buy’ tips
1. Video Lab Tutorials

                         Teachers
                          Preparing for the lab: a preview of
                           what they have to do  no time
                           wasted, appropriate questions,
                          Support in revising after on site
                           course
                          Distant training tout court


                         Students and flipped classrooms
                          Better comprehension of what they
                           are going to do  concentrate on
                           the lab task. Less dispersive .
                          Possibility to revise what has been
SMR recorder free          done once back at home at their own
software: recording        pace.
screen dynamic content
 tutorials, etc…
                          They like it! Importance of visual
                           language for youth
2. Documenting (lab work)

              To design and edit a good video students
              have to
               activate careful reflection on content,
                 procedures and the logic behind each
                 step.
               understand the topic thoroughly -analysis
               decide the focal points - synthesis
               refine      communication      techniques
                 (aesthetics)


              By doing this they
               make use of extracurricular competences
               appreciate the potential of their ludic
                 portable technology as powerful working
                 tools
               become actively engaged: labs too can be
                 VERY boring too! (motivation)

               Promotional Value
               (projects & sponsors)
3. Powerful science tools for high tech hands-on

We often complain of not well equipped
‘up to date ‘ labs BUT
students daily bring in high tech devices at
zero or very low cost which can
 Promote practical skills development
 Stimulate scientific enquiry methods
 Help make abstract concepts visible


Issues

 Teachers don’t feel confortable
 Many schools have rules against the use
  of cell phones inside the classroom
 Students are not always aware of the
  enormous potentialities of their own
  devices for educational purposes.            …some examples !
3.1 Superhydrophobics /liquid marbles

                                  Rolling
                                   1,5 sec



                Tracker free software
                www.cabrillo.edu/~dbrown/tracker/
3.1. Drops motion




     Sliding
                    Stick and slip
3.2. Application example

 A nitinol spring contracts in  8-10 s :
  TOO FAST for hand measurements of the spring lenght.

 Boosting observation sensitivity:
  Tracker : 25 frames per sec  measurements allowed each
  0,04 sec VS  1 sec average human reaction time
  Access to much more information !  steps and stops!

 Alternatively the experiment could be TOO SLOW and time
  consuming (equilibrium spring heating + cooling: 2.5 h)

 Monitoring multiple measurements at the same time
‘Microscopio’ acustico
                   3.3. Acoustic ‘microscope’

                                    Memory metals




Austenite &
Martensite …
44100Hz   8100Hz




                                     Audacity free audio
                                     recording
                                     and sound analysis
Frequenze
           3.3. Frequency shift
Iron Rod            Nitinol Rod


                                  Fundamental
                                   frequency
                                     versus
                                  temperature
3.3. Using data from research videos

                        Videos are taken in research
                        labs by researchers
                        (sophisticated equipment)
                        but students can work on
                        them

                        Calculate :
                        Work
                        Efficiency
www.nanolab.unimore.it
           Food for thought
                                                      Open to collaboration …
 1. Students should be encouraged to bring
 their own devices and use them in school.

2. Making a video of experimental work may
 have as much/more/less? value compared               Modena
             to classical reports

 annamaria.lisotti@unimore.it




                     Thank you for your attention !

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M&L 2012 - Videos: a high tech, low cost, hands-on approach to the physiscs of nano materials - by Annamaria Lisotti

  • 1. Media and Learning Conference Bruxelles 14th-15th- November 2012 ● Università degli Studi di Modena e Reggio E. Videos : a high tech, low cost, hands-on approach to the Physiscs of nano materials for high school pupils Annamaria Lisotti *°# G.Goldoni°#, V.De Renzi°# *ISIS Cavazzi sez. Scientifica – Pavullo (MO) °University of Modena and Reggio E- IT- Physics Informatics Mathematics Department #CNR Nano, Modena annamaria.lisotti@unimore.it 1
  • 2. Setting the frame: Nanolab Project New ierarchy in forces Atomic manipulation Quantum tunneling Size matters! selfcleaning smart materials pressure sensors colorimetric sensors superhydrophobic stents, artificial muscles drugs delivery superadhesive surfaces conductivity, Light and matter interaction Phase transition resistance Forces , friction, adhesion, piezoresistance, colour, spectrometry, metal dilation, sound diffusion  Low cost, simple, safe, robust From EU  Still teaching fundamentals , strongly link to curricula input …  Sometimes challenging “school linear physics”  Can be taylored to suit different needs and levels … to local  Students as young researchers IBSE implementation
  • 3. www.nanolab.unimore.it August 2013 Modena IT Background reading + Seminars Video PPT Teacher guides Video lab Didactical notes Lab sheets & Detailed building guides presentations instructions ‘Where to buy’ tips
  • 4. 1. Video Lab Tutorials Teachers  Preparing for the lab: a preview of what they have to do  no time wasted, appropriate questions,  Support in revising after on site course  Distant training tout court Students and flipped classrooms  Better comprehension of what they are going to do  concentrate on the lab task. Less dispersive .  Possibility to revise what has been SMR recorder free done once back at home at their own software: recording pace. screen dynamic content  tutorials, etc…  They like it! Importance of visual language for youth
  • 5. 2. Documenting (lab work) To design and edit a good video students have to  activate careful reflection on content, procedures and the logic behind each step.  understand the topic thoroughly -analysis  decide the focal points - synthesis  refine communication techniques (aesthetics) By doing this they  make use of extracurricular competences  appreciate the potential of their ludic portable technology as powerful working tools  become actively engaged: labs too can be VERY boring too! (motivation)  Promotional Value (projects & sponsors)
  • 6. 3. Powerful science tools for high tech hands-on We often complain of not well equipped ‘up to date ‘ labs BUT students daily bring in high tech devices at zero or very low cost which can  Promote practical skills development  Stimulate scientific enquiry methods  Help make abstract concepts visible Issues  Teachers don’t feel confortable  Many schools have rules against the use of cell phones inside the classroom  Students are not always aware of the enormous potentialities of their own devices for educational purposes. …some examples !
  • 7. 3.1 Superhydrophobics /liquid marbles Rolling  1,5 sec Tracker free software www.cabrillo.edu/~dbrown/tracker/
  • 8. 3.1. Drops motion Sliding Stick and slip
  • 9. 3.2. Application example  A nitinol spring contracts in  8-10 s : TOO FAST for hand measurements of the spring lenght.  Boosting observation sensitivity: Tracker : 25 frames per sec  measurements allowed each 0,04 sec VS  1 sec average human reaction time Access to much more information !  steps and stops!  Alternatively the experiment could be TOO SLOW and time consuming (equilibrium spring heating + cooling: 2.5 h)  Monitoring multiple measurements at the same time
  • 10. ‘Microscopio’ acustico 3.3. Acoustic ‘microscope’ Memory metals Austenite & Martensite … 44100Hz 8100Hz Audacity free audio recording and sound analysis
  • 11. Frequenze 3.3. Frequency shift Iron Rod Nitinol Rod Fundamental frequency versus temperature
  • 12. 3.3. Using data from research videos Videos are taken in research labs by researchers (sophisticated equipment) but students can work on them Calculate : Work Efficiency
  • 13. www.nanolab.unimore.it Food for thought Open to collaboration … 1. Students should be encouraged to bring their own devices and use them in school. 2. Making a video of experimental work may have as much/more/less? value compared Modena to classical reports annamaria.lisotti@unimore.it Thank you for your attention !