Monday, December 26, 2011

How to Hypnotize People - A Simple System for Beginners

!±8± How to Hypnotize People - A Simple System for Beginners

In this guide I will teach you how to guide someone into hypnosis. The first important rule is that you can only guide someone into hypnosis, you can never guide someone if he is not willing to be hypnotized . All you have to do is follow these simple steps:

1. The subject must be lying or sitting in a comfortable position, relaxed, and at a time when things aren’t going to be interrupted.

2. Light a candle and place it somewhere where I can be easily seen. Make sure the candle is in a place that is a little bit high so the subject has to look up in order to see it.

3. Tell them the following, or something close to it, in a peaceful, monotonous tone (not a commanding tone of voice):

”Take a deep breathe through your nose and old it in for the count of 8.
Now, through your mouth, exhale completely and slowly. Continue breathing
long, deep, breaths through your nose and exhaling through your mouth. Tense
up all your muscles very tight, now, counting from ten to one, release them
slowly, you will find them very relaxed. Now, look at the candle, as you look
at it, with every breath and passing movement, you are feeling increasingly
more and more peaceful and relaxed. The candles flame is peaceful and bright.
As you look at it I will count down from 100 own, as I count, your eyes will become more and more relaxed, getting more and more tired with each passing moment."

Now, count down from 100, about every 10 numbers say "When reach xx your eyes (or you will find your eyes) are becoming more and more tired." Tell them they may close their eyes whenever they feel like it. If the persons eyes are still
open when you get to 50 then instead of saying "your eyes will.." say "your
eyes are...” When their eyes are shut say the following:

".... as you lie (or sit) here with your eyes comfortably closes you find your self relaxing more andmore with each moment and breath. The relaxation feels pleasant and blissful so, you happily give way to these wonderful feeling. Imagine yourself on a cloud, resting peacefully, with a slight breeze caressing your body. A tingling sensation begins to work its way, within and without your toes; it
slowly moves up your feet, making them warm, heavy ad relaxed. The cloud is
soft and supports your body with its soft texture, the scene is peaceful and
absorbing, the peacefulness absorbs you completely. The tingling sensation gently and slowly moves up your leg, relaxing them. Making them warm and heavy. The relaxation feels very good, it feels so good so just relax and let go. As the tingling continues its journey up into your solar plexus (or body)(, you feel your inner stomach become very relaxed. Now, it moves slowly to your chest, making your breathing relaxed as well. The feeling begins to move up your arms to or shoulders, making your arms heavy and relaxed as well. You are aware of
the total relaxation you are now experiencing, and you give way to it. It is
good and peaceful, the tingling now moves into you face and head, relaxing
your jaws, neck, and facial muscles, making your cares and worries flat away
Away into the blue sky as you rest blissfully on the cloud...."

If they are not responsive or you think they (he or she.) is going to sleep, then add in a:
"...always concentrating upon my vice, ignoring all other sounds. Even though
other sounds exist, they aid you in your relaxation."
They should soon let out a sigh as if hey were letting go, and their face should have ”woodenness" to it, becoming featureless. Now, say the following:

"... You now find yourself in a hallway; the hallway is peaceful and nice. As I count from 10 to 1 you will imagine yourself walking further and further down the hall. When I reach one you will find yourself where you want to be, in another higher state of concious and mind. (Count from ten to one)...."

Do this about three or four times. Then, to test if the subject is under hypnosis or not, say:

"...You feel a strange sensation in your arm the feeling begins at your fingers and slowly moves up your arm, as it moves through your arm your arm becomes lighter and lighter, it will soon be so light it will rise...
becoming lighter and lighter which each breath and moment...
Their fingers should begin to twitch and then move up, the arm following.
Congratulations you have him/her in hypnosis. The first time you do this, while he/she is under hypnosis say good things, like: "your going to feel great tomorrow" or every day in every way you will find yourself becoming better and better" or something like that. The more they go under, the deeper in hypnosis they will get each time you do it.

4. Getting them to do what you want during the time they are hypnotized:
Let's say for example the you want them to take their clothes off. You must say something like: "you find yourself at home, in your room an you have to take a shower (vividly describe their room and what’s happening), you begin to take off your clothes..." Now,it's not THAT simple, you must know the persons house, room, and shower room. Then describe things vividly and tell them to at it out (they have to be DEEPLY under to do this.). I would just suggest that you experiment a while, and get to know how to do things. Off course you should always try something a bit simpler and easier then getting the subject to undress. This is just an example of something you shouldn’t do because it might be illegal. Try other, simpler things. :-)

5. Waking them up:

Waking up is very easy, just say: "as I count you find yourself becoming more an more awake, more anymore lively. When you wake up you will find
yourself completely alive, awake, and refreshed. Mentally and physically,
remembering the pleasant sensation that hypnosis brings. Waking up feeling
like a newborn baby, reborn with life and vigor, feeling excellent.
Remembering that next time you enter hypnosis it will become an ever
increasing deeper and deeper state than before. 1) You feel energy course
throughout your limbs. 2) You begin to breathe deeply, stirring. 3) Beginning
to move more and more your eyes open, bringing you up to feel conscious. 4) You are up, up, up and awakening more and more. 5) You are awake and feeling
great.
And that’s it. You now know how to hypnotize someone else. You will learn more and more as you experiment

Find more about hypnosis in my web site: [http://zoom.vsop-info.com]


How to Hypnotize People - A Simple System for Beginners

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Monday, December 19, 2011

High-Efficient Low-Cost Photovoltaics: Recent Developments (Springer Series in Optical Sciences)

!±8±High-Efficient Low-Cost Photovoltaics: Recent Developments (Springer Series in Optical Sciences)

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Post Date : Dec 19, 2011 06:32:08
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A bird's-eye view of the development and problems of recent photovoltaic cells and systems and prospects for Si feedstock is presented. High-efficient low-cost PV modules, making use of novel efficient solar cells (based on c-Si or III-V materials), and low cost solar concentrators are in the focus of this book. Recent developments of organic photovoltaics, which is expected to overcome its difficulties and to enter the market soon, are also included.

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Thursday, December 15, 2011

Nonimaging Fresnel Lenses: Design and Performance of Solar Concentrators (Springer Series in Optical Sciences)

!±8± Nonimaging Fresnel Lenses: Design and Performance of Solar Concentrators (Springer Series in Optical Sciences)

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Post Date : Dec 15, 2011 19:48:51 | Usually ships in 24 hours


A detailed and comprehensive account of the engineering of the world’s first nonimaging Fresnel lens solar concentrator. The book closes a gap in solar concentrator design, and describes nonimaging refractive optics and its numerical mathematics. The book shows the reader how to find his or her own optical solution using the rules and methodologies covering the design and the assessment of the nonimaging lens.

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Sunday, December 11, 2011

7th International Conference on Concentrating Photovoltaic Systems (AIP Conference Proceedings)

!±8±7th International Conference on Concentrating Photovoltaic Systems (AIP Conference Proceedings)

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Post Date : Dec 11, 2011 04:44:54
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In general, these proceedings will appeal to people interested or active in the area of CPV, PV, and other fields of renewable energies, such as students of physics, university professors, scientists, technologists, people in the world of finance, and others. The proceedings book covers the technical aspects of concentrating photovoltaics (CPV).  CPV technology uses optics to concentrate the sunlight onto a solar cell made of semiconductor materials.  Silicon solar cells are used at low concentration levels of between 2 and 100.  At high concentration, typically >300, the solar cell area is greatly reduced and more expensive technologies like III-V multi-junction solar cells can be used to increase conversion efficiencies.  The CPV technology is competitive in arid regions of the world with high solar intensities and will allow to further reduce the cost of solar electricity in the future. The state-of-the-art for the technology, but also critical issues for this technology are summarized in this proceedings book.  Thus, this book is the most comprehensive summary for the CPV technology written by the most prominent scientists and engineers active in the field.

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Sunday, December 4, 2011

Nonimaging Optics

!±8±Nonimaging Optics

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Post Date : Dec 04, 2011 05:32:10
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From its inception nearly 30 years ago, the optical subdiscipline now referred to as nonimaging optics, has experienced dramatic growth. The term nonimaging optics is concerned with applications where imaging formation is not important but where effective and efficient collection , concentration, transport and distribution of light energy is - i.e. solar energy conversion, signal detection, illumination optics, measurement and testing. This book will incorporate the substantial developments of the past decade in this field.

* Includes all substantial developments of the past decade in the rapidly moving field of nonimaging optics
* The only authoritative reference on nonimaging optics, from the leader in the field

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Wednesday, November 30, 2011

Optimization of the Combination Concentrator Silicon Solar Cells

!±8±Optimization of the Combination Concentrator Silicon Solar Cells

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Post Date : Dec 01, 2011 00:40:21
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Sunday, November 27, 2011

Solar "Death Ray": Power of 5000 suns!

The R5800 is my latest and greatest solar creation. Made from an ordinary fiberglass satellite dish, it is covered in about 5800 3/8" (~1cm) mirror tiles. When properly aligned, it can generate a spot the size of a dime with an intensity of 5000 times normal daylight. This intensity of light is more than enough to melt steel, vaporize aluminum, boil concrete, turn dirt into lava, and obliterate any organic material in an instant. It stands at 5'9" and is 42" across. Unfortunately, the R5800 was completely destroyed in a storage shed fire on December 14, 2010. music: "hypnothis" www.incompetech.com provided under creative commons liscence Coming spring of 2011: Sun Runner 3 R23000 (R23K) Area of dish aperture (elliptical)= (pi x 102cm x 73cm)/4 = 5848 sq cm Area of focal point (circular)= pi(0.6cm)^2 = 1.14 sq cm Concentration Power= 5848/1.14 = 5129 then rounded down Output Power Estimate = 560 watts

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Friday, November 25, 2011

Space Solar Power: Two Cell High Efficiency Rainbow Concentrator - Thomas C. Taylor

Presentation from the International Space Solar Power Symposium at the National Space Society International Space Development Conference (ISDC) in Huntsville, Alabama, May 2011. Space Solar Power: Two Cell High Efficiency Rainbow Concentrator, the Space Alternative for Clean Energy - Thomas C. Taylor (Exploration Partners LLC). For more videos from this symposium see the NSS Space Solar Power Library at www.nss.org/ssp

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Sunday, November 20, 2011

Concentrator Photovoltaics (Springer Series in Optical Sciences)

!±8± Concentrator Photovoltaics (Springer Series in Optical Sciences)


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This book gives an overview of all components, e.g. cells, concentrators, modules and systems, for systems of concentrator photovoltaics. It is an application-oriented book. The authors report on significant results related to design, technology, and applications, and they also cover the fundamental physics and market considerations.

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Monday, November 7, 2011

Luminescent solar concentrators and all-inorganic nanoparticle solar cells for solar energy harvesting.

!±8± Luminescent solar concentrators and all-inorganic nanoparticle solar cells for solar energy harvesting.

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Post Date : Nov 07, 2011 22:17:04 | Usually ships in 24 hours

Increasing energy demand and the parallel increase of greenhouse gas emissions are challenging researchers to find new and cleaner energy sources. Solar energy harvesting is arguably the most promising candidate for replacing fossil-fuel power generation. Photovoltaics are the most direct way of collecting solar energy; cost continues to hinder large-scale implementation of photovoltaics, however. Therefore, alternative technologies that will allow the extraction of solar power, while maintaining the overall costs of fabrication, installation, collection, and distribution low, must be explored. This thesis focuses on the fabrication and testing of two types of devices that step up to this challenge: the luminescent solar concentrator (LSC) and all-inorganic nanoparticle solar cells. In these devices I make use of novel materials, semiconducting polymers and inorganic nanoparticles, both of which have lower costs than the crystalline materials used in the fabrication of traditional photovoltaics. Furthermore, the cost of manufacturing LSCs and the nanoparticle solar cells is lower than the manufacturing cost of traditional optics-based concentrators and crystalline solar cells. An LSC is essentially a slab of luminescent material that acts as a planar light pipe. The LSC absorbs incoming photons and channels fluoresced photons toward appropriately located solar cells, which perform the photovoltaic conversion. By covering large areas with relatively inexpensive fluorescing organic dyes or semiconducting polymers, the area of solar cell needed is greatly reduced. Because semiconducting polymers and quantum dots may have small absorption/emission band overlaps, tunable absorption, and longer lifetimes, they are good candidates for LSC fabrication, promising improvement with respect to laser dyes traditionally used to fabricate LSCs. Here the efficiency of LSCs consisting of liquid solutions of semiconducting polymers encased in glass was measured and compared to the efficiency of LSCs based on small molecule laser dyes and on quantum dots. Factors affecting the optical efficiency of the system such as the luminescing properties of the fluorophors were examined. The experimental results were compared to Monte-Carlo simulations. Our results suggest that commercially available quantum dots cannot serve as viable LSC dyes because of large absorption/emission band overlap and relatively low quantum yield. Materials such as Red F demonstrate that semi-conducting polymers with high quantum yield and small absorption/emission band overlap are good candidates for LSCs. Recently, a solar cell system based purely on CdSe and Cite nanoparticles as the absorbing materials was proposed ans it was suggested that its operational mechanism was that of polymer donor/acceptor systems. Here we present solar cells consisting of a sintered active bilayer of CdSe and PbSe nanoparticles in the structure ITO/CdSe/interlayer/PbSe/Al, where an interlayer of LiF or Al2O3 was found necessary to prevent low shunt resistance from suppressing the photovoltaic behavior. We fabricated unoptimized solar cells with a short-circuit current of 6 mA/cm2, an open-circuit voltage of 0.18 V, and a fill factor of 41%. External quantum efficiency spectra revealed that photons from the infrared portion of the spectrum were not collected, suggesting that the low bandgap PbSe film did not contribute to the photocurrent of the structure despite exhibiting photoconductivity. Other measurements, however, showed that the PbSe film was indeed necessary to produce a photovoltage and transport electrons. Through sintering, the nanoparticle films acquired bandgaps similar to those of...

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