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A note on possible interpretations for the DSJ+(2632) observed by SELEX
AbstractWe suggest some possible interpretations for the DSJ+(2632) observed by SELEX. The DSJ+(2632) could be the first radial excitation of the 1− ground state Ds*(2112), and its unusual decay patten might be hopefully explained by the node structure of the wave functions. In addition, the DSJ+(2632) could also be a cs¯g hybrid state or a (cs)3*–(s¯s¯)3 (diquark–antidiquark) bound state
[Rock Island 2632 Locomotive, Print]
Photograph of Rock Island Railway's 2632 train locomotive. The cylindrical, dark locomotive sits on large wheels and dark mechanical parts. It is lined with horizontal pipes and short smokestacks releasing white smoke. A square cab with white text below an empty window reading "2632" sits behind the locomotive to the left. A rectangular train car is pulled by the train on the left. Brick buildings surround the train in the background. A brick chimney is visible at the top edge of the photograph
[Rock Island 2632 Locomotive, Negative]
Negative of Rock Island Railway's 2632 train locomotive. The cylindrical locomotive sits on large wheels and dark mechanical parts. It is lined with horizontal pipes and short smokestacks releasing white smoke. A square cab with white text below an empty window reading "2632" sits behind the locomotive to the left. A rectangular train car is pulled by the train on the left. Brick buildings surround the train in the background
Astronomische Nachrichten (suite) ; n° 2632-2639
Radau Rodolphe. Astronomische Nachrichten (suite) ; n° 2632-2639. In: Bulletin astronomique, tome 2, 1885. pp. 52-59
Is the D_sJ(2632) Meson a Cryptoexotic Tetraquark Baryonium State?
We suggest that the recently discovered charm-strange meson D_s(2632), with unusual properties, could be a cyptoexotic tetraquark baryonium state cdd_bars_bar. We predict other four narrow states, as Regge recurrences of D_s(2632), below the possible baryon-antibaryon thresholds
D-sJ(+)(2632): An excellent candidate of tetraquarks
We analyze various possible interpretations of the narrow state D-sJ(2632) which lies 100 MeV above threshold. This interesting state decays mainly into D(s)eta instead of (DK+)-K-0. If this relative branching ratio is further confirmed by other experimental groups, we point out that the identification of D-sJ(2632) either as a c (s) over bar state or more generally as a (3) over bar state in the SU(3)(F) representation is probably problematic. Instead, such an anomalous decay pattern strongly indicates D-sJ(2632) is a four-quark state in the SU(3)(F) 15 representation with the quark content 1/2root2 (ds (d) over bar +sd (d) over bar +su (u) over bar -2ss (s) over bar)(c) over bar. We discuss its partners in the same multiplet and the similar four-quark states composed of a bottom quark B-sJ(0)(5832). Experimental searches of other members especially those exotic ones are strongly called for.Astronomy & AstrophysicsPhysics, Particles & FieldsSCI(E)22ARTICLE9null7
Art. 2632. Formazione fittizia del capitale.
Il contributo analizza la fattispecie prevista all'art. 2632 c.c., alla luce dell'interpretazione dottrinale e del formante giurisprudenziale, sistematizzandola all'interno del sistema dei reati a tutela del capitale sociale
[IO Islamic 2632] پدماوت
<ul>
<li>Padmâwat</li>
<li>This manuscript is now IO Islamic 1583 in the India Office collections.</li>
<li>[metadata: Hermann Ethé, Catalogue of Persian Manuscripts in the Library of the India Office, 2 vols. (Oxford: India Office, 1903): volume 1, number 2632 here with notations and hyperlinks].</li>
</ul>
<p><span>1583</span></p>
<p><span>Another copy of the same.</span></p>
<p><span>Beginning as in the preceding copy. The date appears here on fol. 96</span><sup><span>b</span></sup><span>, last line. This copy was finished the 27th of Sha’bân, A.H. 1195 (A.D. 1781, August 18).</span></p>
<p><span>No. 2632, ff. 97, 2 coll., each ll. 9-16; very unequal </span><span>Nasta’lîḳ; size, 8¾ in. by 4</span><sup><span>7/8 </span></sup><span>in. </span></p>
<p> </p>
From STEM-EDXS data to phase separation and quantification using physics-guided NMF
ISSN:2632-215
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