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Model: Catalina Valencia

Makeup: Verónica Ospina

Hair: Natalia Tamayo

i forgot this one! i must say that it is so much more fun build stuff in minifig scale... and btw excuse me for the bad name...

Last week I got a new set of gouache which I'm testing. Upper left grid tests pure colors adding more and more water. The last row adds Titanium White to make tints. Below that are the neutrals and their tints, and on the right is a color wheel which mixes the primaries to make secondaries and tertiaries.

 

Quarter sheet of Fabriano hot press extra white paper 300g. Schmincke Horadam Gouache set. Colors include Titanium White, Lemon Yellow, Indian Yellow, Vermillion, Scarlet, Purple Magenta, Helio Blue, Delft Blue, Helio Turquoise, and Burnt Sienna.

Just a quick test of new Topaz B&W Effects 2 complimentary upgrade :-)

Prototype Waratah set A1 stabled at Richmond on 5th October 2010 while under acceptance testing.

Testing, Testing, ... BANG!!!

  

Nondestructive testing

  

Nondestructive testing or Non-destructive testing (NDT) is a wide group of analysis techniques used in science and industry to evaluate the properties of a material, component or system without causing damage.[1] The terms Nondestructive examination (NDE), Nondestructive inspection (NDI), and Nondestructive evaluation (NDE) are also commonly used to describe this technology.[2] Because NDT does not permanently alter the article being inspected, it is a highly valuable technique that can save both money and time in product evaluation, troubleshooting, and research. Common NDT methods include ultrasonic, magnetic-particle, liquid penetrant, radiographic, remote visual inspection (RVI), eddy-current testing,[1] and low coherence interferometry.[3][4] NDT is commonly used in forensic engineering, mechanical engineering, petroleum engineering, electrical engineering, civil engineering, systems engineering, aeronautical engineering, medicine, and art.[1] Innovations in the field of nondestructive testing have had a profound impact on medical imaging, including on echocardiography, medical ultrasonography, and digital radiography.

  

Methods[edit]

 

NDT methods may rely upon use of electromagnetic radiation, sound, and inherent properties of materials to examine samples. This includes some kinds of microscopy to examine external surfaces in detail, although sample preparation techniques for metallography, optical microscopy and electron microscopy are generally destructive as the surfaces must be made smooth through polishing or the sample must be electron transparent in thickness. The inside of a sample can be examined with penetrating radiation, such as X-rays, neutrons or terahertz radiation. Sound waves are utilized in the case of ultrasonic testing. Contrast between a defect and the bulk of the sample may be enhanced for visual examination by the unaided eye by using liquids to penetrate fatigue cracks. One method (liquid penetrant testing) involves using dyes, fluorescent or non-fluorescent, in fluids for non-magnetic materials, usually metals. Another commonly used NDT method used on ferrous materials involves the application of fine iron particles (either liquid or dry dust) that are applied to a part while it is in an externally magnetized state (magnetic-particle testing). The particles will be attracted to leakage fields within the test object, and form on the objects surface. Magnetic particle testing can reveal surface & some sub-surface defects within the part. Thermoelectric effect (or use of the Seebeck effect) uses thermal properties of an alloy to quickly and easily characterize many alloys. The chemical test, or chemical spot test method, utilizes application of sensitive chemicals that can indicate the presence of individual alloying elements. Electrochemical methods, such as electrochemical fatigue crack sensors, utilize the tendency of metal structural material to oxidize readily in order to detect progressive damage.

 

Analyzing and documenting a non-destructive failure mode can also be accomplished using a high-speed camera recording continuously (movie-loop) until the failure is detected. Detecting the failure can be accomplished using a sound detector or stress gauge which produces a signal to trigger the high-speed camera. These high-speed cameras have advanced recording modes to capture some non-destructive failures.[5] After the failure the high-speed camera will stop recording. The capture images can be played back in slow motion showing precisely what happen before, during and after the non-destructive event, image by image.

  

en.wikipedia.org/wiki/Nondestructive_testing

5d mark iii| 16-35 f/4L

Test Sony NEX-5n, adaptateur Fotodiox et lentille Nikon 50mm f/1,8...

santosh.com call 34433 toll free number test title Delhi, Delhi

    

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Model: Catalina Valencia

Makeup: Verónica Ospina

Hair: Natalia Tamayo

Premier shoot avec mon nouveau TZ100

Test de prise de vue à faible vitesse et à main levée

 

Shooting test at low speed and at hand held.

 

f/6.3 - 1/30 - 800 ISO

just a quick test of my new 85mm f/1.8 which arrived this morning :)

This is just a test shot to check if my camera is working and if I've inserted film right. I think they retouched my photos in the photo lab which well, sucks.

Miss Pips…

 

But in relation to testing out the New & Better Beta….I got depressed !

 

Must be really to make it easier for the Flickeroonies in head office, I think…

 

Haven't seen any improvement in photo-viewing quality…the only thing I've noticed is the absence of that Bad Panda..and he popped up when things got overloaded, didn't he ?

 

So I'm assuming, perhaps wrongly, that it's made everything flow more smoothly for the Flickr Team…after all, there must be thousands of photos flowing in from around the world, day and night..

 

We can't say, we weren't warned..

 

Dear Anuj, has been on the ball, the last few months…remember Black Friday ?

 

Here is his latest :

www.flickr.com/photos/anujnair/13165654265/

 

Thank you, Anuj !

 

But….hey….I've just found him on iPernity…..

Oh, Bye, Anuj……

:o((((((

 

~~~~~~~~~~~~~~~~~~~~~~~~~~

Testing, Testing, ... BANG!!!

  

Nondestructive testing

  

Nondestructive testing or Non-destructive testing (NDT) is a wide group of analysis techniques used in science and industry to evaluate the properties of a material, component or system without causing damage.[1] The terms Nondestructive examination (NDE), Nondestructive inspection (NDI), and Nondestructive evaluation (NDE) are also commonly used to describe this technology.[2] Because NDT does not permanently alter the article being inspected, it is a highly valuable technique that can save both money and time in product evaluation, troubleshooting, and research. Common NDT methods include ultrasonic, magnetic-particle, liquid penetrant, radiographic, remote visual inspection (RVI), eddy-current testing,[1] and low coherence interferometry.[3][4] NDT is commonly used in forensic engineering, mechanical engineering, petroleum engineering, electrical engineering, civil engineering, systems engineering, aeronautical engineering, medicine, and art.[1] Innovations in the field of nondestructive testing have had a profound impact on medical imaging, including on echocardiography, medical ultrasonography, and digital radiography.

  

Methods[edit]

 

NDT methods may rely upon use of electromagnetic radiation, sound, and inherent properties of materials to examine samples. This includes some kinds of microscopy to examine external surfaces in detail, although sample preparation techniques for metallography, optical microscopy and electron microscopy are generally destructive as the surfaces must be made smooth through polishing or the sample must be electron transparent in thickness. The inside of a sample can be examined with penetrating radiation, such as X-rays, neutrons or terahertz radiation. Sound waves are utilized in the case of ultrasonic testing. Contrast between a defect and the bulk of the sample may be enhanced for visual examination by the unaided eye by using liquids to penetrate fatigue cracks. One method (liquid penetrant testing) involves using dyes, fluorescent or non-fluorescent, in fluids for non-magnetic materials, usually metals. Another commonly used NDT method used on ferrous materials involves the application of fine iron particles (either liquid or dry dust) that are applied to a part while it is in an externally magnetized state (magnetic-particle testing). The particles will be attracted to leakage fields within the test object, and form on the objects surface. Magnetic particle testing can reveal surface & some sub-surface defects within the part. Thermoelectric effect (or use of the Seebeck effect) uses thermal properties of an alloy to quickly and easily characterize many alloys. The chemical test, or chemical spot test method, utilizes application of sensitive chemicals that can indicate the presence of individual alloying elements. Electrochemical methods, such as electrochemical fatigue crack sensors, utilize the tendency of metal structural material to oxidize readily in order to detect progressive damage.

 

Analyzing and documenting a non-destructive failure mode can also be accomplished using a high-speed camera recording continuously (movie-loop) until the failure is detected. Detecting the failure can be accomplished using a sound detector or stress gauge which produces a signal to trigger the high-speed camera. These high-speed cameras have advanced recording modes to capture some non-destructive failures.[5] After the failure the high-speed camera will stop recording. The capture images can be played back in slow motion showing precisely what happen before, during and after the non-destructive event, image by image.

  

en.wikipedia.org/wiki/Nondestructive_testing

test shoot for a shoot I'm doing with a friend of mine oeil photography, wanted to make sure I could pose and stay under water

 

again thanks to fred for shooting me

just checking the DOF and sharpness as a closeup shot from a few m away!

Testing long exposures with the 2nd backup camera. Garbage night at Grandma's house. I liked the results enough to share this test shot. 3min exp approx 1.5 hrs after sunset.

Better Large On Black

Almost ready to test ;) Gear is mounted into a temporary test jig to ensure proper clearance and operation.

Shot with an X-Pro 1 and XF14mm

a shot from a test roll I ran through a new Leica CL.

 

Leica CL + 40mm Rokkor, Fujifilm X-Tra(expired)

This is a near-repeat of a 2014 test fold. See more on my website.

Good color atnd detail at 10,000 ISO.

Taken by 5DIII from my friend, Moonlight Photography

Getting my method down before starting on a big project

20 pictures stitched in a simple android app, all of the pictures were taken using sony nex 3 and Rokinon 85 f1.4

I'm shooting a couple of couples for their prom tomorrow, and needed to test the fog machine setup in my brother-in-law's garage, where I have the lights set up.

Not much to say that hasn't already been said, just some cool pearly test parts.

 

If anyone wants to swap colors, let me know.

 

I'll have more in depth comparison photos uploaded to TQE in the coming days.

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