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  1. Free, publicly-accessible full text available December 1, 2026
  2. Self-regulation positively impacts learning, which has prompted efforts to detect and foster SRL strategies. We used Gaussian Mixture Modeling to cluster students on five SRL strategies in problem solving (PS)—measured via SRL detectors grounded in Winne’s SMART model (2017). Seven distinct SRL profiles emerged from the data, which were examined for their relation to math beliefs, anxiety, and PS measures. Findings show that SRL profiles with high proficiency across multiple SRL skills achieved higher accuracy, spent more time on pre-tests, and reported more opportunities to share their math thinking. These students also frequently engaged in monitoring and translation. Notably, profiles with strong assembling skills underperformed peers who balanced SRL strategies with relatively higher monitoring and translating. Overall, these results highlight the dynamic relationship between SRL and math beliefs in PS, and suggest emerging profiles to design tailored interventions. 
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    Free, publicly-accessible full text available December 1, 2026
  3. Alternative splicing is a prevalent gene-regulatory mechanism, with over 95% of multi-exon human genes estimated to be alternatively spliced. Here, we describe a tissue-specific, developmentally regulated, highly conserved, and disease-associated alternative splicing event in exon 7 of the eyes absent homolog 3 (Eya3) gene. We discovered that EYA3 expression is vital to the proliferation and differentiation of myoblasts. Genome-wide transcriptomic analysis and mass spectrometry-based proteomic studies identified SIX homeobox 4 (SIX4) and zinc finger and BTB-domain containing 1 (ZBTB1), as major transcription factors that interact with EYA3 to dictate gene expression. EYA3 isoforms differentially regulate transcription, indicating that splicing aids in temporal control of gene expression during muscle cell differentiation. Finally, we identified RNA-binding fox-1 homolog 2 (RBFOX2) as the main regulator of EYA3 splicing. Together, our findings illustrate the interplay between alternative splicing and transcription during myogenesis. 
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  4. A new technique is developed to identify dielectrons ( e+e ) with Lorentz boost γL>20 that produce one single merged cluster in the electromagnetic calorimeter of the CMS detector. The identification uses two multivariate models: one for the case where both electron tracks are reconstructed, and another where only one of the tracks is reconstructed. The efficiency is determined using proton-proton collision data collected at a center-of-mass energy of 13 TeV. Boosted J/ψ mesons decaying into e+e pairs are used to estimate the efficiency of the model with two tracks, yielding an overall efficiency of 80%. The Zμ+μγ events, where the photon converts into a collimated dielectron, are used for the model with a single track, yielding an efficiency of about 60%. A dedicated energy correction for dielectron candidates is also developed using B±J/ψK±e+eK± data. 
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    Free, publicly-accessible full text available September 1, 2027
  5. A search for Higgs boson ( H ) production in association with two vector bosons ( V=W , Z ) via vector-boson scattering (VBS) is presented using proton-proton collision data collected at s=13TeV by the CMS experiment, corresponding to an integrated luminosity of 138fb1 . Events containing two forward jets consistent with VBS, a large-radius jet from the decay of a boosted H to a pair of b quarks, and zero, one, or two charged leptons coming from V decays are selected. The process is excluded at 95% confidence level for observed (expected) values of the VVHH coupling modifier κ2V outside the interval 0.40< κ2V <1.60 ( 0.34< κ2V <1.66 ), assuming standard model values for all other couplings, thus establishing a novel probe of the VVHH interaction. Constraints are also set on the individual κ2W and κ2Z coupling modifiers and on the allowed region in the κ2W κ2Z plane. 
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    Free, publicly-accessible full text available September 1, 2027
  6. Free, publicly-accessible full text available September 1, 2027
  7. A<sc>bstract</sc> A search for Higgs boson (H) production at high transverse momentum (pT) in the WW decay channel is presented. The analysis uses proton-proton collisions at$$ \sqrt{s}=13 $$ s=13 TeV recorded by the CMS experiment in 2016–2018, corresponding to an integrated luminosity of 138 fb−1. The visible decay products of the Higgs boson are reconstructed as a single large-radius jet with one isolated lepton or none (1ℓand 0ℓ, respectively;ℓ= e,μ). The H-candidate jets are identified using an advanced transformer-based algorithm and are calibrated with the Lund jet plane reweighting technique. The 1ℓchannel is further split into gluon fusion, vector boson fusion, and associated production with hadronically decaying vector boson categories, while the 0ℓchannel considers all production processes inclusively. The measured cross section times the H→WW branching fraction relative to the standard model expectation is$$ \mu =-{0.19}_{-0.46}^{+0.48} $$ μ= 0.190.46+0.48 , indicating no evidence of a signal above the background. This measurement represents the first dedicated study of highly Lorentz-boosted H→WW decays, complementing earlier searches for high-pTHiggs boson in other decay channels. 
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    Free, publicly-accessible full text available July 27, 2027
  8. A search for the pair production of heavy spin- 1/2 or spin- 3/2 resonances ( t* ) in proton-proton collisions at s=13TeV is presented. Data collected with the CMS detector at the CERN LHC from 2016 to 2018 corresponding to an integrated luminosity of 138fb1 are used. The analysis targets benchmark signal scenarios where one t* decays into a top quark ( t ) and a photon ( γ ), and the other into a t quark and a gluon ( g ), i.e., ppt* t*¯ ttγg . All-hadronic final states from the t pair decay chain are selected using jet substructure techniques. The signal is probed as a function of the t* candidate mass, which is reconstructed using the photon and a top quark candidate jet. No significant deviation from the background-only hypothesis is found. Observed (expected) upper limits on the signal cross section at 95% confidence level are set, excluding masses of spin- 1/2 t* particles below 930 (930) GeV and spin- 3/2 t* particles below 1330 (1390) GeV. This analysis marks the first search for heavy resonances in the t t¯ γg channel. Exploiting the high-energy photon to reduce the backgrounds, this search achieves sensitivity competitive with ppt* t*¯ t t¯ gg searches for spin- 1/2 t* despite the small expected t*tγ branching fraction. 
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    Free, publicly-accessible full text available June 9, 2027
  9. Free, publicly-accessible full text available June 1, 2027
  10. Free, publicly-accessible full text available February 1, 2027