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A task force was initiated, which subsequently met several times over the next year, to propose improvements and revisions in the principal preparation programs across the state. There are currently thirty-two public and private institutions of higher education which operate principal preparation programs in Illinois. Many of these institutions were represented at the inaugural meeting of the task force which was held on May 29 and May 30, 2008 in Bloomington, Illinois. Other participants included teachers and public school administrators, Regional Superintendents of Education, representatives of the two major Illinois teachers unions, the Illinois Education Association (IEA) and the Illinois Federation of Teachers (IFT), and representatives of the Illinois Principals Association (IPA) and the Illinois Association of School Administrators (IASA), which represents superintendents in Illinois. Before addressing the work of this Illinois process, it was first instructive to address efforts in other states which had transpired prior to the work in Illinois.

Illinois redesign efforts

The “Working to Prepare Illinois School Leaders” task force initially met in May 2008 in Bloomington, Illinois and out of that initial meeting came a core group of individuals who volunteered to continue working on suggestions for the redesign of principal preparation programs in Illinois. The working group which evolved consisted of university personnel involved in principal preparation, practicing school administrators, teachers, representatives of the two major teacher unions (IEA and IFT) in Illinois, as well as representatives of the two major school administrators’ groups (IPA and IASA). There were also staff members from the Illinois State Board of Education and the Illinois Board of Higher Education. The university representatives were almost exclusively members of the Illinois Council of Professors of Educational Administration (ICPEA). The ICPEA represents the 32 private and public institutions of higher education in Illinois which provide principal preparation programs. This working task force group met approximately another half-dozen times over the ensuing summer and throughout the following school year.

The decision was made early in the process to divide the task force into five working groups to better facilitate the redesign efforts. Each of the five subcommittees was co-chaired by a public university and a private university representative. All ten co-chairs were members of ICPEA. The five subcommittees were as follows:

  1. New Structures for Leadership Certification&Endorsements.
  2. School/University Partnerships&Selection Process.
  3. School Leadership Standards.
  4. Residencies&Internships.
  5. Assessments of Candidates&Graduates.

The five subcommittees also included non-ICPEA members. As previously mentioned, the teachers unions and administrative groups were involved. Other participants included two Regional Superintendents of Schools, the director of the Illinois Education Research Council, and members of the Illinois State Action for Education Leadership Project (SAELP), funding by the Wallace Foundation.

Questions & Answers

do you think it's worthwhile in the long term to study the effects and possibilities of nanotechnology on viral treatment?
Damian Reply
absolutely yes
how to know photocatalytic properties of tio2 nanoparticles...what to do now
Akash Reply
it is a goid question and i want to know the answer as well
characteristics of micro business
Do somebody tell me a best nano engineering book for beginners?
s. Reply
what is fullerene does it is used to make bukky balls
Devang Reply
are you nano engineer ?
fullerene is a bucky ball aka Carbon 60 molecule. It was name by the architect Fuller. He design the geodesic dome. it resembles a soccer ball.
what is the actual application of fullerenes nowadays?
That is a great question Damian. best way to answer that question is to Google it. there are hundreds of applications for buck minister fullerenes, from medical to aerospace. you can also find plenty of research papers that will give you great detail on the potential applications of fullerenes.
what is the Synthesis, properties,and applications of carbon nano chemistry
Abhijith Reply
Mostly, they use nano carbon for electronics and for materials to be strengthened.
is Bucky paper clear?
so some one know about replacing silicon atom with phosphorous in semiconductors device?
s. Reply
Yeah, it is a pain to say the least. You basically have to heat the substarte up to around 1000 degrees celcius then pass phosphene gas over top of it, which is explosive and toxic by the way, under very low pressure.
Do you know which machine is used to that process?
how to fabricate graphene ink ?
for screen printed electrodes ?
What is lattice structure?
s. Reply
of graphene you mean?
or in general
in general
Graphene has a hexagonal structure
On having this app for quite a bit time, Haven't realised there's a chat room in it.
what is biological synthesis of nanoparticles
Sanket Reply
what's the easiest and fastest way to the synthesize AgNP?
Damian Reply
types of nano material
abeetha Reply
I start with an easy one. carbon nanotubes woven into a long filament like a string
many many of nanotubes
what is the k.e before it land
what is the function of carbon nanotubes?
I'm interested in nanotube
what is nanomaterials​ and their applications of sensors.
Ramkumar Reply
what is nano technology
Sravani Reply
what is system testing?
preparation of nanomaterial
Victor Reply
Yes, Nanotechnology has a very fast field of applications and their is always something new to do with it...
Himanshu Reply
good afternoon madam
what is system testing
what is the application of nanotechnology?
In this morden time nanotechnology used in many field . 1-Electronics-manufacturad IC ,RAM,MRAM,solar panel etc 2-Helth and Medical-Nanomedicine,Drug Dilivery for cancer treatment etc 3- Atomobile -MEMS, Coating on car etc. and may other field for details you can check at Google
anybody can imagine what will be happen after 100 years from now in nano tech world
after 100 year this will be not nanotechnology maybe this technology name will be change . maybe aftet 100 year . we work on electron lable practically about its properties and behaviour by the different instruments
name doesn't matter , whatever it will be change... I'm taking about effect on circumstances of the microscopic world
how hard could it be to apply nanotechnology against viral infections such HIV or Ebola?
silver nanoparticles could handle the job?
not now but maybe in future only AgNP maybe any other nanomaterials
I'm interested in Nanotube
this technology will not going on for the long time , so I'm thinking about femtotechnology 10^-15
how did you get the value of 2000N.What calculations are needed to arrive at it
Smarajit Reply
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Source:  OpenStax, Education leadership review special issue: portland conference, volume 12, number 3 (october 2011). OpenStax CNX. Oct 17, 2011 Download for free at http://cnx.org/content/col11362/1.5
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