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31 VAC Free Energy - Extracting Electrical Energy From The Human Body. - YouTube
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US119825A - Improvement in induction-coils - Google Patents
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My thanks to Mr. Jim P., who, knowing that I had experimented with Acetone as a fuel additive, ultimately achieving 89mpg hwy., from a V8 full size car,[ Article:Truth About Acetone and Ethanol ] cracked a joke at a discussion forum. He was signing off for the day, saying funny little things about each of the participants, in the day's discussion. When he got to my name, he wrote something like "and Steve Gage will get 80mpg from dry ice." We had been discussing the properties of CO2, dry ice, and how it "sublimates", that is, turns straight from solid to gas when it melts, skipping the liquid phase.
When I read that, the thought popped in to my mind that there is in fact energy in dry ice. I thought, "why not build an engine that runs off of the pressure created from the sublimation of dry ice"? A real 'brain fart' idea, perhaps possible, but not something I was able to see in my minds eye how to engineer.
And then...
A NO BRAINER POPPED IN TO MY HEAD.
Following, is what I theorized and then tested, with pretty darn good results.
1] I theorized that if drag racing technology uses COOLING of intake and fuel lines to increase HP then it should follow that if X amount of fuel can give more HP by cooling intake and fuel, it should ALSO increase MPG.
It stood to reason that the HP, MPG and the amount of fuel used, are all part of the same equation. Perhaps someday someone will literally put it into mathematical form.
2] First highway test: Air temperature about 70 F. Baseline run on E-10 [gasohol]. No cooling of intake. Result was 22.2 mpg hwy. Epa rating for this car is 22 mpg hwy. No surprise there. Test car is same car as I tested in the Acetone testing. 1985 Ford T-Bird 5.0L V8, full size car.
3] Second highway test: Air temperature about 75 F. Packed plain old chipped ice all around air filter in metal intake cover. Stopped every 15 miles to check. Each time, the ice was already gone and water evaporated. Got stuck for about 10 minutes in a stop and go traffic jam, because of a wreak, up ahead. So this was a very primitive and uncontrolled test, the results being LIKELY 'off' due to too many variables. BUT...it DID result in 28.2mpg. This is a 27% increase over baseline. I needed a more controlled test to get certain data.
4] Third highway test: I studied the location of the opening of the intake line at front and bottom of car. I then found an appropriate sized FRYING PAN and filled it with tap water. Then froze it overnight. Resulted in an appopriate shape and size to fit under the car, with a flat surface, positioned about 2 or 3 inches directly in front of the intake.
Made my test run. This time no traffic jam and ice was barely melted when done. [In metal intake cover the metal is very hot, in front of intake, is air temperature. Air temperature was mid 60's F. Hot metal in test 2 melted ice too fast.]
I had set a 'dreamland goal' to achieve a 100% gain, up from the baseline to 44.4mpg.
Result of test three was 57.9mpg! This is a 160% increase! From a V8.
Very likely, a small four popper that already gets 35mpg, could well really reach that 80mpg that my pal Jim joked about.
e and effect. No magic kids...sorry...but indeed there IS serendipity!
AUTHORS NOTE AND WARNING:
I did NOT test either solid or liquid CO2, because of the risk of FREEZE UP.
Both of these have a temp. of -109 F. Experiment at your own risk.
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TIFFANY DOVER DEAD Another Vaccine Casualty LETHAL INJECTION - YouTube
http ://www.youtube.com/watch?v=iji2IxmZ5qA
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A relative of Tiffany Dover posted this photo today, it is fake. - YouTube
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Between 2014 and 2020, 160 executions were carried out by state governments, according to DPIC. Of those, only two Democratic governors oversaw any executions—the other was former Missouri governor Jay Nixon, who oversaw 17 of them. Republican administrations carried out the remaining 140.
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キングオブブレンダーズ
5.0 out of 5 stars どんな箱にも合う?クセのないレンジの広い素直な音Will it fit any box? A wide range of obedient sounds without husband,
Reviewed in Japan on March 14, 2016Verified Purchase
浅生バックロード箱のレビューをみて、買いました。
まず、長岡D90に付けていたFE108スーパーから本機に換装してみました。
そうすると高音がうるさく癖の強かったのがなくなり、非常に聴きやすいよい音になりました。
強力マグネットにもかかわらずハイ上がりの程度が小さく使いやすいユニットという印象でした。
D90は、フラットタイプのバックロードで壁に密着させて使うせいか音場感が希薄でもの足りません。
浅生バックロードのレビューに習って、同じ箱キットを購入・制作して108を装着して聴いてみ ました。
108スーパーも結構いい音でしたが、ややハイ上がり。
108solはハイ上がり傾向が無くバランスがよい。そして、相当な低音が出る。
スーパーより高域が抑えられている分、低域が増強されるように聞こえるのでしょう。
とにかく余計な音が付かず、素直な音が出ます。そして高域のレンジが広いです。
さすが最新の高級ユニットという印象でした。古いFE108スーパーとは段違いのよい音です。 I saw a review of Asakusa backload box and bought it.
First, I tried replacing this unit from the FE108 supermarket that was attached to the Nagaoka D90.
Then the treble was noisy and strong habit, and it became very easy to listen to good sound.
Despite the powerful magnet, it was the impression that the degree of high rise is small and easy to use unit.
D90, is not enough even if the sound field feeling is dilute to use in close contact with the wall in the flat type of backload.
I learned to review Asami Backload, I bought and produced the same box kit and attached 108 to listen.
108 Super was a pretty good sound, but slightly higher.
108sol has no high rise trend and good balance. And then a substantial bass will come out.
Super-high frequencies are suppressed, the low frequency will sound to be enhanced.
Anyway, there is no extra sound, an obedient sound is produced. And the range of high frequencies is wide.
It was the impression that it was the latest luxury unit. It is a good sound that is different from the old FE108 super.
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名無し
5.0 out of 5 stars 現状最高の完成度のBH用10cmユニット10cm unit for BH with the highest perfection status quo
Reviewed in Japan on January 21, 2017Verified Purchase
傑作ユニットと言って差し支えないと思います。おそらく、今このページを見ている方は、このペア4万1千円 という値段が高いと思っているでしょう。
実際にこれで組んだスピーカーを音量を出して聴いてみれば、信じられないほど良心的な値付けだったと思うで しょうね。間違いなくメーカー製の2,30万円クラスのスピーカーでは物足りなくなります。
簡潔に言うとこのユニットの魅力は圧倒的な解像度、高音の伸び、元気の良い鳴りっぷり、スピード感ですね。 ヘッドホンで例えると、STAXのSR-009をやや派手で元気にしたようです。ユニットとして通常版のFE-108E∑と比較すると、低音域の量感、厚みはE∑のほうがありますが、あちらは低音の締まりが弱く、高音 がだら下がりでフルレンジ一発は厳しく、ピラミッド型のエネルギーバランス。それに対してこっちはワイドで 聴覚上はほぼフラット、ハイスピードに締まった低音で、小口径ユニットでフルレンジ一発の良さを味わうには 最高の選択肢と言えます。また、過去の限定ユニットはハイ上がりがキツ過ぎて箱を選ぶと言われますが、この ユニットはオールマイティに性能を発揮します。高能率ユニットの特徴が出ており、ある程度音量を上げると音 が飛び出してきます。
価格評価としては、このユニットが2万円というのは安すぎますね。メーカー製ペア35万円の3WAYトー ルボーイも所有していますが、圧倒的に出てくる音のレベルが違います。(E∑の時と比べるとメーカー製のほ うがいいです)。安いラワン合板なら全部込みでも6万円程度、シナアピトンやフィンランドバーチの良い板で 組んでも合計10万円程度で驚異のパフォーマンスが楽しめます。今回のは限定版なので、過去のSuperや ESなどのように後になって入手困難になる悩ましい状態も予想されますので、早めに入手すべきでしょう。す でにFE-103solのほうはプレミア価格になりつつありますし。 I think I can safely say it is a masterpiece unit.Probably, if you are looking at this page now, you think this pair is expensive at 41 thousand yen.
If you actually listen to the speakers you've assembled with this volume, you would think it was an incredibly conscientious price.Definitely a 2.300,000 yen class speaker made by the manufacturer will not be enough.
Briefly, the charm of this unit is overwhelming resolution, treble elongation, cheerful sounds, and a sense of speed.When compared with headphones, it seems that the SR-009 of STAX was slightly flashy and energetic.Compared to the regular version of FE-108Eas a unit, there is a sense of bass and thickness of E, but there are weaker bass tightness, treble down, full range 1 shot is severe, pyramidalEnergy balance.On the other hand, this one is wide, almost flat on hearing, and a high speed tight bass, and the best choice for a full range of one-shot in small aperture units.In addition, the limited units in the past are said to be too strong to choose a box, but this unit performs almighty.It features a high-efficiency unit, and when you increase the volume to a certain extent, the sound will pop out.
As a price rating, it is too cheap for this unit to 20,000 yen.I also own 3WAY Tall Boy for 350,000 yen, but the level of sound that comes out overwhelmingly is different.(It is better to make it from the manufacturer compared to the time of E).If it is cheap rawan plywood, it is about 60,000 yen even if you assemble it with good boards of Sinapiton or Finnish Birch, you can enjoy amazing performance for a total of about 100,000 yen.Since this is a limited edition, it is expected that troubling conditions such as past Super and ES will become difficult to obtain later, so you should get it early.FE-103soL is already becoming the premier price.
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Amazonのお客様
5.0 out of 5 stars 最高のスピーカーが仕上がりましたFinished the best speakers
Reviewed in Japan on February 5, 2016Verified Purchase
吉本キャビネット製作の浅生式のバックロードホーンエンクロージャーに装着しています。空気質2リッター程 度ホーン長は200程度。
フォステクス純正のエンクロージャーもマッチング良さそうですがこちらも全音域の繋がりがよく我が家の視聴 環境でしゃiPhoneアプリの測定器で下は40hz以下上は20khzまで?10dbに収まって素晴らし いフラット特性です。
同じエンクロージャーにfe108eΣを装着すると1kHzあたりがやや音圧低下するので出来のいいバスレ フスピーカーぽい音場感のある音になります。こちらも低音がかなり伸びます。
Fe103-***を装着すると低域の伸び、量感はΣに劣りますが超高音が伸びるせいか1khzを中心とした中高域上下 1オクターブの質感が非常にリアリティあるバックロードホーンらしい音に。
そして、このfe108-***はΣよりも伸びる超低域と低音の量感、そして103solばりの超高音再生の伸びがあり中音域全般が 恐ろしいほど聴きやすい。
このユニットと適合エンクロージャーの組み合わせで聞こえない音は無いと言えるほど録音された全ての音を聴 きとりやすい状態で再生できる脅威のスーパーユニットおもいます。
100hz以下の量感こそ30センチウーファーのJBL431x系などにやや及びませんが、質感、リアリテ ィさではこちらが上回ると感じる人も多いはずです。分離を見せてくれます。
10センチユニット単発の音像定位も素晴らしく左右3メートル話して配置、4メートル先で聞いてますが、高 音楽器、ボーカル、低音楽曲、リズム楽器などそれぞれ前後左右、上下にとレコーディング時に意図したのかし なかったのか粒立ちの良い素晴らしい。
良い録音の楽曲を聴くのがとても楽しくなるスピーカーです。
このユニットはそういうスピーカーを作るためのユニットだと思います。 It is attached to a shallow backroad horn enclosure made by Yoshimoto Cabinet.Air quality about 2 litre horn length is about 200.
Fostex genuine enclosure also looks good matching, but here is also the whole sound connection is well in our home viewing environment with iPhone app measuring instrument below 40Hz and above 20kHzIt fits up to ?10db and is a great flat property.
If Fe108E is installed in the same enclosure, the sound pressure per 1 kHz will decrease slightly, so the sound comes from a good bass reff speaker with a sound field feeling.This also stretches the bass quite a bit.
Fe103-*** stretches the low range and the volume is inferior to σ, but because the super treble is extended? The texture of 1 octave in the middle and high range centered on 1kHz is very realistic backloadHorn-like sound.
And this Fe108-*** has an ultra-low range and a sense of bass that stretches more than σ, and 103sol ultra treble reproduction, and the overall midrange is frightening and easy to hear.
The combination of this unit and the compatible enclosure also has a threat super unit that allows you to play all recorded sounds in an easy-to-listen state that you can say there is no inaudible sound.
The amount of 100 Hz or less is slightly less than 30 cm woofer JBL431x series, etc., but there should be many people who feel that this is above in texture and reality.Show me the separation.
10 cm unit single sound image localization is also wonderfully arranged to speak left and right 3 meters away, 4 meters away, high music instruments, vocals, low music songs, rhythm instruments, etc.Great left and right, up and down and when recording was intended or not good grainy.
It's a speaker that makes it very fun to listen to songs with good recordings.
I think this unit is a unit for making such speakers.
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FTA
4.0 out of 5 stars 高域が素直なのが良い。It is good that the high frequency is honest.
Reviewed in Japan on July 23, 2016Verified Purchase
FOS推奨箱を作って聴いてます。103En+P1000BKで聞くより中域が充実してどっしりした音です 。音量を上げてもピアノのアタック音などが耳障りにならないのは良いですが箱の為か中域のボンつきがまだ取 り切れません。エイジングと吸音材の工夫をもう少し頑張ろうと思います。 I'm making and listening to FOS recommended boxes. 103En+P1000BK is a sound that is substantial in the middle range than heard. It is good that such as the attack sound of the piano even if you raise the volume is not obscurred, but for the box or the middle range of the bonding is still not available. I will try a little harder to devise aging and sound-absorbing materials.
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[h=Questions? Get fast answers from reviewers]4[/h] What do you want to know about FOSTEX 10cm full-range unit FE108Sol (1 piece)?
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?€‹
-
Nested Cylinders of Same Height
-
gm =
DiscreteGeometry with properties:
NumCells: 3
NumFaces: 9
NumEdges: 6
NumVertices: 6
Create a PDE model.
model = createpde
model =
PDEModel with properties:
PDESystemSize: 1
IsTimeDependent: 0
Geometry: []
EquationCoefficients: []
BoundaryConditions: []
InitialConditions: []
Mesh: []
SolverOptions: [1x1 pde.PDESolverOptions]
Include the geometry in the model.
model.Geometry = gm
model =
PDEModel with properties:
PDESystemSize: 1
IsTimeDependent: 0
Geometry: [1x1 DiscreteGeometry]
EquationCoefficients: []
BoundaryConditions: []
InitialConditions: []
Mesh: []
SolverOptions: [1x1 pde.PDESolverOptions]
Plot the geometry.
pdegplot(model,'CellLabels','on','FaceAlpha',0.5)
gm = multicylinder(R,H) creates a geometry by combining several cylindrical cells.
When creating each cylinder, multicylinder uses the following coordinate system.
[h=Nested Cylinders of Same Height]3[/h]
Try This ExampleView MATLAB Command
Create a geometry that consists of three nested cylinders of the same height and include this geometry in a PDE model.
Create the geometry by using the multicylinder function. The resulting geometry consists of three cells.
gm = multicylinder([5 10 15],2)
gm =
DiscreteGeometry with properties:
NumCells: 3
NumFaces: 9
NumEdges: 6
NumVertices: 6
Create a PDE model.
model = createpde
model =
PDEModel with properties:
PDESystemSize: 1
IsTimeDependent: 0
Geometry: []
EquationCoefficients: []
BoundaryConditions: []
InitialConditions: []
Mesh: []
SolverOptions: [1x1 pde.PDESolverOptions]
Include the geometry in the model.
model.Geometry = gm
model =
PDEModel with properties:
PDESystemSize: 1
IsTimeDependent: 0
Geometry: [1x1 DiscreteGeometry]
EquationCoefficients: []
BoundaryConditions: []
InitialConditions: []
Mesh: []
SolverOptions: [1x1 pde.PDESolverOptions]
Plot the geometry.
pdegplot(model,'CellLabels','on','FaceAlpha',0.5)
[h=Stacked Cylinders]3[/h]
Try This ExampleView MATLAB Command
Create a geometry that consists of three stacked cylinders and include this geometry in a PDE model.
Create the geometry by using the multicylinder function with the ZOffset argument. The resulting geometry consists of four cells stacked on top of each other.
gm = multicylinder(10,[1 2 3 4],'ZOffset',[0 1 3 6])
gm =
DiscreteGeometry with properties:
NumCells: 4
NumFaces: 9
NumEdges: 5
NumVertices: 5
Create a PDE model.
model = createpde
model =
PDEModel with properties:
PDESystemSize: 1
IsTimeDependent: 0
Geometry: []
EquationCoefficients: []
BoundaryConditions: []
InitialConditions: []
Mesh: []
SolverOptions: [1x1 pde.PDESolverOptions]
Include the geometry in the model.
model.Geometry = gm
model =
PDEModel with properties:
PDESystemSize: 1
IsTimeDependent: 0
Geometry: [1x1 DiscreteGeometry]
EquationCoefficients: []
BoundaryConditions: []
InitialConditions: []
Mesh: []
SolverOptions: [1x1 pde.PDESolverOptions]
Plot the geometry.
pdegplot(model,'CellLabels','on','FaceAlpha',0.5)
[h=Single Cylinder]3[/h]
Try This ExampleView MATLAB Command
Create a geometry that consists of a single cylinder and include this geometry in a PDE model.
Use the multicylinder function to create a single cylinder. The resulting geometry consists of one cell.
gm = multicylinder(5,10)
gm =
DiscreteGeometry with properties:
NumCells: 1
NumFaces: 3
NumEdges: 2
NumVertices: 2
Create a PDE model.
model = createpde
model =
PDEModel with properties:
PDESystemSize: 1
IsTimeDependent: 0
Geometry: []
EquationCoefficients: []
BoundaryConditions: []
InitialConditions: []
Mesh: []
SolverOptions: [1x1 pde.PDESolverOptions]
Include the geometry in the model.
model.Geometry = gm
model =
PDEModel with properties:
PDESystemSize: 1
IsTimeDependent: 0
Geometry: [1x1 DiscreteGeometry]
EquationCoefficients: []
BoundaryConditions: []
InitialConditions: []
Mesh: []
SolverOptions: [1x1 pde.PDESolverOptions]
Plot the geometry.
pdegplot(model,'CellLabels','on')
[h=Hollow Cylinder]3[/h]
Try This ExampleView MATLAB Command
Create a hollow cylinder and include it as a geometry in a PDE model.
Create a hollow cylinder by using the multicylinder function with the Void argument. The resulting geometry consists of one cell.
gm = multicylinder([9 10],10,'Void',[true,false])
gm =
DiscreteGeometry with properties:
NumCells: 1
NumFaces: 4
NumEdges: 4
NumVertices: 4
Create a PDE model.
model = createpde
model =
PDEModel with properties:
PDESystemSize: 1
IsTimeDependent: 0
Geometry: []
EquationCoefficients: []
BoundaryConditions: []
InitialConditions: []
Mesh: []
SolverOptions: [1x1 pde.PDESolverOptions]
Include the geometry in the model.
model.Geometry = gm
model =
PDEModel with properties:
PDESystemSize: 1
IsTimeDependent: 0
Geometry: [1x1 DiscreteGeometry]
EquationCoefficients: []
BoundaryConditions: []
InitialConditions: []
Mesh: []
SolverOptions: [1x1 pde.PDESolverOptions]
Plot the geometry.
pdegplot(model,'CellLabels','on','FaceAlpha',0.5)
[h=Input Arguments]2[/h]collapse all
[h=R — Cell radius
[COLOR=#6F6F6F !important]positive real number | vector of positive real numbers]3[/h]
Cell radius, specified as a positive real number or a vector of positive real numbers. If R is a vector, then R(i) specifies the radius of the ith cell.
Radius R and height H can be scalars or vectors of the same length. For a combination of scalar and vector inputs, multicylinder replicates the scalar arguments into vectors of the same length.
Note
Either radius or height must be the same for all cells in the geometry.
Example: gm = multicylinder([1 2 3],1,'Zoffset',[0 1 3])
[h=H — Cell height
[COLOR=#6F6F6F !important]positive real number | vector of positive real numbers[/COLOR]]3[/h]
Cell height, specified as a positive real number or a vector of positive real numbers. If H is a vector, then H(i) specifies the height of the ith cell.
Radius R and height H can be scalars or vectors of the same length. For a combination of scalar and vector inputs, multicylinder replicates the scalar arguments into vectors of the same length.
Note
Either radius or height must be the same for all cells in the geometry.
Example: gm = multicylinder(1,[1 2 3])
[h=Name-Value Pair Arguments]3[/h]Specify optional comma-separated pairs of Name,Value arguments. Name is the argument name and Value is the corresponding value. Name must appear inside quotes. You can specify several name and value pair arguments in any order as Name1,Value1,...,NameN,ValueN.
Example: gm = multicylinder([1 2],1,'Void',[true,false])
[h='ZOffset' — Z-offset for each cell
[COLOR=#6F6F6F !important]vector of 0 values (default) | vector of real numbers[/COLOR]]3[/h]
Z-offset for each cell, specified as a vector of real numbers. ZOffset(i) specifies the Z-offset of the ith cell. This vector must have the same length as the radius vector R or height vector H.
Note
The ZOffset argument is valid only if the radius is the same for all cells in the geometry.
Example: gm = multicylinder(20,[10 10],'ZOffset',[0 10])
Data Types: double
[h='Void' — Empty cell indicator
[COLOR=#6F6F6F !important]vector of logical false values (default) | vector of logical true or false values[/COLOR]]3[/h]
Empty cell indicator, specified as a vector of logical true or false values. This vector must have the same length as the radius vector R or the height vector H.
The value true corresponds to an empty cell. By default, multicylinder assumes that all cells are not empty.
Example: gm = multicylinder([1 2],1,'Void',[true,false])
Data Types: double
[h=Output Arguments]2[/h]collapse all
[h=gm — Geometry object
[COLOR=#6F6F6F !important]DiscreteGeometry object]3[/h][/COLOR]
Geometry object, returned as a DiscreteGeometry Properties object.
Tip
A cylinder has one cell, three faces, and two edges. Also, since every edge has a start and an end vertex, a cylinder has vertices. Both edges are circles, their start and end vertices coincide. Thus, a cylinder has two vertices - one for each edge.
[h=Limitations]2[/h]
- multicylinder lets you create only geometries consisting of stacked or nested cylinders. For nested cylinders, the height must be the same for all cells in the geometry. For stacked cylinders, the radius must be the same for all cells in the geometry. Use the ZOffset argument to stack the cells on top of each over without overlapping them.
- multicylinder does not let you create nested cylinders of the same radius. The call multicylinder(r,[h1,h2,...]) is not supported.
[h=See Also]2[/h]DiscreteGeometry Properties | multicuboid | multisphere
Introduced in R2017a
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[h=Partial Differential Equation Toolbox Documentation]2[/h]
[h=Support]2[/h]
[h=Try MATLAB, Simulink, and Other Products]4[/h]Get trial now
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3093 replies | 331916 view(s)
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3093 replies | 331957 view(s)
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180mph 1937 F1 truck - YouTube
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guns kill people,
like spoons made rush limbaugh,
fat ....
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