Body
http://barrytaff.net/2014/12/anti-gravity-and-hyperspace-propulsion-one-step-closer-to-star-trek/
A very interesting read.
Bert, take a look at the dielectric constant table.
https://physics.info/dielectrics/ potassium tantalate niobate, 0 ℃
34,000 WOW!
On 1/4/2019 9:08 AM, Norman Wootan wrote:
>
> FYI
>
> Ole, You will find this interesting.
>
>
>
> -------- Forwarded Message --------
> Subject: Re: Ferroelectric Thin Films Like Lead Zirconate Titanate
> and Barium Strontium Titanate Characterised by Spectroscopic Ellipsometry
> Date: Fri, 4 Jan 2019 08:48:09 -0600
> From: Norman Wootan <[email protected]>
> To: Bert Pool <[email protected]>, Bob Paddock
> <[email protected]>, Phil Rembold <[email protected]>
>
>
>
> Bert, an interesting note regarding a thin film nonlinear dielectric
> skin for a space craft capable for AG operation goes back to the
> description of the recovered light wight foil like skin material from
> the Roswell crash site. The light weight material was probably this
> same technology.
>
> On 1/4/2019 8:43 AM, Norman Wootan wrote:
>>
>> To make this Anti-gravity connection more clear, you have to go to
>> page 51 of this document.
>> http://www.rexresearch.com/hooper/NewHorizons.pdf Pure TTB.
>> Remember the famous Wright Patterson AFB meeting by top Industrial
>> Contractors where the dielectric constant was outlined for Counter
>> Barry (anti-gravity) aircraft. In the space race we have far
>> surpassed the basic parameters laid out at this Conference in regard
>> to the necessary dielectric needed for AG. T.Townsend Brown There is
>> no doubt as to the use of the cited PZT dielectric .
>>
>> On 1/4/2019 8:08 AM, Bert Pool wrote:
>>>
>>> On the AZO website
>>> <https://www.azom.com/article.aspx?ArticleID=3759>you sent a link
>>> to, a description says:
>>>
>>> /PZT thin films have been grown directly on Pt (100nm) / Ti /
>>> SiO//_2 /// c-Si substrate. Due to the Pt thickness, a pseudo
>>> 3-phase model - air / PZT / Pt - has been used. The PZT coating has
>>> been described using a 3 layers stack *where the density of the PZT
>>> decreases from the bottom to the top surface. *This index variation
>>> is described using the Bruggeman Effective Medium Approximation./
>>>
>>> I find it very interesting thatthe AZo company is creating a
>>> dielectric whose K is changing from bottom to top.
>>>
>>> T. Townsend Brown's electrogravitic devices were based upon this
>>> exact process! TTB created a non-linear dielectric by mixing lead
>>> oxide in paraffin, where the density of the lead oxide changed from
>>> top to bottom in his custom dielectric. He also created a nonlinear
>>> capacitance by using two capacitor plates of different areas, but
>>> the effects were better with special dielectrics.
>>>
>>> Further, this web site says:
>>> /Barium strontium titanate (BST) is the established dielectric
>>> capacitor material for future DRAM devices, allowing a significant
>>> reduction of cell capacitor size due to its high-k properties./
>>>
>>> It seems to me that this company is the perfect manufacturer to
>>> build the most advanced TT Brown non-linear, high K capacitors for
>>> electrogravitic research, certainly way beyond what Brown himself
>>> had available in the '30s, 40's and 1950's. Heck, they are already
>>> building the nonlinear capacitance dielectrics, but not for high
>>> voltage purposes.
>>>
>>> Or maybe they are, and we just don't know it?
>>>
>>> Bert
>>>
>>> /
>>> /
>>>
>>> /
>>> /
>>>
>>> On 1/4/2019 5:02 AM, Norman Wootan wrote:
>>>> https://www.azom.com/article.aspx?ArticleID=3759
>>>>
>>>> Sent from Yahoo Mail on Android
>>>> <https://go.onelink.me/107872968?pid=InProduct&c=Global_Internal_YGrowth_AndroidEmailSig__AndroidUsers&af_wl=ym&af_sub1=Internal&af_sub2=Global_YGrowth&af_sub3=EmailSignature>
>>>>
>>>> During the time Joel & I were working with MRA, 1995, I contacted a
>>>> magnet mfg in China to make prototype magnet that I called a "Light
>>>> magnet" for it had Fe, Ba, Ti and Zi. Looks like I was on the
>>>> right track back then. Joel said it had a light channel. The
>>>> Magneto-electric effect was the correct research path.