the fourteen grand challenges of engineering date: 2/4/10 prepared by: javier kienzle, fellow - gk12...

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THE FOURTEEN GRAND CHALLENGES OF ENGINEERING Date: 2/4/10 Prepared by: Javier Kienzle, Fellow - GK12 Program Presented at: Columbia High School Supported by: NSF Graduate Teaching Fellow in K-12 Education Program Associated Institution: Stevens Institute of Technology - Hoboken, NJ Sources: NAE, NRC (2009)

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Page 1: THE FOURTEEN GRAND CHALLENGES OF ENGINEERING Date: 2/4/10 Prepared by: Javier Kienzle, Fellow - GK12 Program Presented at: Columbia High School Supported

THE FOURTEEN GRAND CHALLENGES OF ENGINEERING

Date: 2/4/10Prepared by: Javier Kienzle, Fellow - GK12  ProgramPresented at: Columbia High SchoolSupported by:  NSF Graduate Teaching Fellow in K-12 Education ProgramAssociated Institution: Stevens Institute of Technology - Hoboken, NJSources: NAE, NRC (2009)

Page 2: THE FOURTEEN GRAND CHALLENGES OF ENGINEERING Date: 2/4/10 Prepared by: Javier Kienzle, Fellow - GK12 Program Presented at: Columbia High School Supported

Keep in mind…

“Although engineers cannot solve these challenges alone, neither can the challenges

be solved without engineers.”

Page 3: THE FOURTEEN GRAND CHALLENGES OF ENGINEERING Date: 2/4/10 Prepared by: Javier Kienzle, Fellow - GK12 Program Presented at: Columbia High School Supported

Making Solar Power Economical

There is a natural efficiency for converting solar energy to electricity.

This limit is imposed by material properties.

Page 4: THE FOURTEEN GRAND CHALLENGES OF ENGINEERING Date: 2/4/10 Prepared by: Javier Kienzle, Fellow - GK12 Program Presented at: Columbia High School Supported

Providing Energy from Fusion

In essence, fusion is the opposite of fission (nuclear reactors)

E = mc2

Requires 100 million Kelvin!

Page 5: THE FOURTEEN GRAND CHALLENGES OF ENGINEERING Date: 2/4/10 Prepared by: Javier Kienzle, Fellow - GK12 Program Presented at: Columbia High School Supported

Developing Carbon-Sequestration Methods

CO2 pollution is a big problem

How do we “capture” it instead of releasing it into the atmosphere? Chemically Store

underground Reduce emissions

Page 6: THE FOURTEEN GRAND CHALLENGES OF ENGINEERING Date: 2/4/10 Prepared by: Javier Kienzle, Fellow - GK12 Program Presented at: Columbia High School Supported

Managing the Nitrogen Cycle

Nitrogen is abundant in out atmosphere, and essential for life.

Humans have made an impact: nitrogen overload Fertilizer Fossil-fuels

Page 7: THE FOURTEEN GRAND CHALLENGES OF ENGINEERING Date: 2/4/10 Prepared by: Javier Kienzle, Fellow - GK12 Program Presented at: Columbia High School Supported

Providing Access to Clean Water

Page 8: THE FOURTEEN GRAND CHALLENGES OF ENGINEERING Date: 2/4/10 Prepared by: Javier Kienzle, Fellow - GK12 Program Presented at: Columbia High School Supported

Restoring Urban Infrastructure

Page 9: THE FOURTEEN GRAND CHALLENGES OF ENGINEERING Date: 2/4/10 Prepared by: Javier Kienzle, Fellow - GK12 Program Presented at: Columbia High School Supported

Reverse-Engineering the Brain

Page 10: THE FOURTEEN GRAND CHALLENGES OF ENGINEERING Date: 2/4/10 Prepared by: Javier Kienzle, Fellow - GK12 Program Presented at: Columbia High School Supported

Preventing Nuclear Terror

Page 11: THE FOURTEEN GRAND CHALLENGES OF ENGINEERING Date: 2/4/10 Prepared by: Javier Kienzle, Fellow - GK12 Program Presented at: Columbia High School Supported

Last but not least…

Engineering better medicines

Advancing health informatics

Securing Cyberspace

Enhancing virtual reality

Advance personalized learning

Engineering the tools of scientific

discovery

Page 12: THE FOURTEEN GRAND CHALLENGES OF ENGINEERING Date: 2/4/10 Prepared by: Javier Kienzle, Fellow - GK12 Program Presented at: Columbia High School Supported

Questions

Questions or Comments?