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Experience Hendrix, L.L.C.

Owned and operated by members of the Hendrix family, Experience Hendrix is the official family company charged with managing the name, likeness, image and 100% of the music of Jimi Hendrix’s legacy. Formed in 1995 by James ‘Al’ Hendrix, Jimi’s father, Experience Hendrix and its affiliates oversee the daily operations of the Hendrix legacy on a worldwide basis.

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Have comments or questions, please write to us: Experience Hendrix, L.L.C. Feedback P.O. BOX 88070 Seattle, WA 98138-1070 Email:

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Looking for more information about our licensing programs? Be sure to read through the following information using the arrows shown below to scroll through the content.

Experience Hendrix, L.L.C. manages 100% of the music of Jimi Hendrix. If you plan on utilizing Jimi Hendrix’s music in any of your upcoming projects, please consult the appropriate licensing files that meet your needs.

MECHANICAL LICENSES: Mechanical licenses are the most requested licenses from Experience Hendrix and are required if you plan on recording and releasing a cover version of any Jimi Hendrix composition. For more information about Mechanical Licenses and to request a license for your upcoming project, please consult our Mechanical License Request form.


For more information about Mechanical Licenses please contact our Music Publishing Office: Experience Hendrix, L.L.C. Music Publishing Licensing P.O. BOX 88070 Seattle, WA 98138-1070 Fax: (206) 241-5477 Email:

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LYRIC REPRINTS: Experience Hendrix, L.L.C. owns and administers all copyrights in the lyrics and written compositions produced by Jimi Hendrix. If you wish to reprint any portion of Jimi’s lyrics or other written compositions please consult our Lyric Reprint Request form.


For more information about Sync Licenses and/or Lyric Reprint Rights, please contact our Music Publishing Office: Experience Hendrix, L.L.C. Music Publishing Licensing P.O. BOX 88070 Seattle, WA 98138-1070 Fax: (206) 241-5477 Email:

The impact factors of other journals also increased:

The Editor-in-chief of IUCr Journals, Professor Samar Hasnain commented:" Each of our journals have made a significant improvement in the latest impact factor results. We thank our authors, reviewers, editors and co-editors for their commitment to ensuring that the best of structural science and underpinning technology and methods is reported in IUCr Journals. This is the first time that four of our journals concurrently have an impact factor above 6, and we look forward to building on this success ."Peter Strickland, Executive Managing Editor of IUCr Journals, noted:" This is first time, since I started working for the IUCr some 30 years ago, that I can remember all of the journals increasing their impact factors in the same year. "

For more details, see

Ptychographic X-ray imaging is used to characterize the structure and properties of matter and materials. While the method has been around for 50 years or so, wide use was at first hampered by the experimental process being slow and the computational processing of the data to produce a reconstructed image being expensive. But in recent years, advances in detectors and X-ray microscopes at light sources such as Lawrence Berkeley National Laboratory's Advanced Light Source have made it possible to measure a ptychographic data set in seconds. As a result, today ptychography is used in a range of scientific domains, including condensed-matter physics, cell biology and electronics.

Reconstructing ptychographic data sets can be a data-intensive challenge, as it involves solving a difficult phase-retrieval problem, calibrating optical elements and dealing with experimental outliers and 'noise'. To address this challenge, Berkeley Lab scientists developed (scalable heterogeneous adaptive real-time ptychography), which enables the reconstruction of millions of phases of ptychographic image data per second. Since being introduced in 2016, has had notable successes in the analysis of magnetic thin films, magnetozomes and three-dimensional battery materials.

Now members of the collaboration have developed a model that further enhances 's reconstruction capabilities. The new algorithm, (gradient decomposition of the probe/alternating direction method of multipliers), is described in a recent article in Section A [ Zales Mothers PrincessCut Birthstone and Diamond Accent Ring in Sterling Silver 1 Stone UXWkaauI
] and was featured on the cover of the May issue. takes advantage of state-of-the-art mathematical aspects of phase retrieval, background-noise optimization and detector 'denoising', allowing to handle more light than before, enabling faster data acquisition and higher time resolution, and ultimately more scientific discoveries.

'The goal was to offer the ability to quickly discover interesting nanoparticles at full resolution by enabling rapid feedback from the microscopists at the beamlines,' said Stefano Marchesini, a staff scientist at Berkeley Lab and a co-author of the article. 'Even when the next-generation coherent light sources come online, we may be able to extend the X-ray energies that can be used in ptychography by using this model.'

The results from structure prediction programs have demonstrated that any organic molecule has the potential to interrelate with its siblings in a number of different ways, the observed crystal structure representing an energy minimum where the contributions from various types of intermolecular interactions have been carefully balanced. Systematic investigations of molecules that share one important moiety/feature provide valuable experimental data for the understanding of this balance and for rationalizing important trends, even among other sets of compounds. Amino acids constitute an attractive group for such a survey, with a common polar head and a variable side chain. Crystal structures of more than 120 regular, acyclic amino acids have been published in the past, meaning that the 20 proteinogenic amino acids represent but a minor fraction of the experimental material. If these amino acids are used, however, to construct dipeptides, they alone leave 20 x 20 = 400 different options. As of June 2018, crystal structures are only available for 104 of them.

is a subgroup of particular interest. These are based on combinations of the five non-polar amino acids alanine (Ala), valine (Val), isoleucine (Ile), leucine (Leu) and phenylalanine (Phe) only, meaning that hydrogen bonds are essentially limited to connecting the constant parts of the molecules, the peptide main chains. Accordingly, any change in crystal structure upon amino acid substitution is due to the side chain.

The crystal structure of Val-Leu acetonitrile solvate presented in Görbitz (2018). B 74 , 311-318 is the 25th and last missing piece in the 5 x 5 puzzle of hydrophobic dipeptide structures. This “completion event” is used here as an opportunity to review their crystal packing arrangements and hydrogen-bonding pattern preferences, the associated peptide conformations and the sometimes unexpected impact a seemingly modest amino acid substitution can have not only on the crystal structure but also on the propensity to include co-crystallized solvent molecules.

IUCrJ Editorial Board Member Richard Henderson (MRC LMB, Cambridge, UK) has been made a Companion of Honour in Queen Elizabeth II's 2018 Birthday Honours list for services to electron microscopy of biological molecules. The order is a special award held by only 65 people at any one time.

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Ensemble of hotel, commercial spaces and apartments on Wijnhaveneiland

The Wijnhaven hotel is a development which includes next to hotel functions with a restaurant also commercial spaces and apartments. It is located on Rotterdam’s Wijnhaveneiland, next to the Red Apple, a mixed-use building designed by KCAP and realized in 2009. Wijnhaveneiland is a strategic area in Rotterdam, flanked by the arteries that link the city centre with the south bank of the river Mass. In the recent years the area has undergone a urban regeneration, based on a dynamic transformation model developed by KCAP that takes in advantage the free-market forces as urban generator, while ensuring the balance between old and new construction, the preservation of views and sufficient incidence of daylight throughout the area. Together with the Red Apple the Wijnhaven hotel forms the block on the tip of the island facing the historical area of Rotterdam’s old harbour.The massing and building height of the hotel building blends in with its surroundings. It reveals its two different functions – hotel and apartments - while maintaining one coherent image at the same time. This is achieved by composing two contrasting façades on top of a bonding plinth. The apartments open towards the quay with a totally glazed elevation, whereas the hotel reveals a more enclosed thus massive appearing yet light-weight undulating polyester façade. The plinth connects the ensemble horizontally and refers with its execution in natural stone to the quay. At the same time it creates vertical links by adopting the rhythm of the volume on top.

Heijmerink - J.P. Van Eesteren v.o.f, Bunnik7.650 m2 GFA of which 139 rooms ibis ho­tel and ‘Dock21’ apartment building with 21 units of 85 m2, 400 m2 offices/commer­cial spaces, 600 m2 restaurant2010 - 2014Architect

Rotterdam [NL]

Yesterday spectacular opening ibis hotel Rotterdam City Centre


Yesterday, KCAP's ibis hotel in Rotterdam's Wijnhaveneiland has been officially and above all spectacularly openend with a show by Flyboatteam on the river. The hotel is already operational since August 2014 and marks a major step in KCAP's urban transformation of the post-war office environment Wijnhaveneiland into a new vivid city quarter. The hotel, together with Dock21 and the Red Apple, complete the block at the tip of Wijnhaveneiland.

Today official opening of ibis hotel Rotterdam City Centre


Today, the new ibis hotel Rotterdam City Centre on Rotterdam's Wijnhaveneiland will be officially opened. KCAP is responsible for the design of the hotel and the adjacent Dock21 apartment building. The ensemble has been developed and realised by J.P. van Eesteren. The hotel is operational since August 2014 and marks a major step in the urban transformation of the post-war office environment into a new vivid city quarter. The ensemble, together with Dock21 and the Red Apple, also designed by KCAP, complete the block at the tip of Wijnhaveneiland.

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Jun, 22, 2018

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on July 1 and many fans are still reeling from Raina's sudden death in season four.

James "Ghost" St. Patrick (Omari Hardwick) and wife Tasha's ( Naturi Naughton ) nearly nonexistent marriage is still chugging along, but can they survive the loss of their daughter ? And, how would Ghost react to the possibility of Tariq not being his son?

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Some fans have long speculated that Tariq may actually be Kanan's child, point to similarities between the two and a creepy moment in season two when Kanan tells Tasha that he used to think about her while in jail.

Plot twist Ghost showed no emotion because Raina and Tariq are not his kids and Kanan is their father

So, what you saying? Tasha wanted Ghost to kill Kanan because she knows that Kanan is Tariq's real father?

Waiting on Tommy to figure out who killed Julio, Tariq to get slapped, Sandoval to get caught us to find out Kanan Tariq's father

What is this history lesson? Kanan is really Tariq's father? 🤔

• Shawn Was Ghost Son Tariq Is Kanan Son

I really think Tariq is Kanans. Looks more like him, his whole energy reflects Kanan. When he first met him he just latched onto him with ease. More chemistry there than with Ghost.

Are you ready?

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