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How do states overcome mistrust? Scholars argue that costly foreign policy signals build trust. But when trust is low, such as during rivalries, states are unwilling to use these signals for fear of being cheated. We argue that domestic policies can also build trust by revealing information about a state’s likelihood of cooperating internationally when there is a correlation between domestic and international preferences. We further argue that domestic policies have a distinct advantage: the value states accrue from them depends less on international reciprocation. As a result, domestic choices can reassure counterparts at moments when trust is so low that costly international signals appear prohibitively risky. We test the implications of our theory in case studies of the Cold War’s end and United States–South Korea trust-building post-coup, illuminating several phenomena the current literature struggles to explain: initial trust-building between enduring rivals, asymmetric trust-building, and trust-building through illiberal domestic policies.
In a recent article, Evan Criddle argues that states’ “authority to make extraterritorial law is narrower than the international law of prescriptive jurisdiction alone would suggest.”1 This is because “the right of peoples to self-determination … limits when states may resort to extraterritoriality.”2 Extraterritoriality, he contends, is intrinsically connected with imperial rule and must be resisted.3 In my previous work on this topic, I have shared Criddle’s concerns about how certain forms of extraterritorial prescriptive jurisdiction are normatively unwarranted, and should be abrogated.4 More recently, I have even defended a general presumption against extraterritoriality that can be overridden only by sufficiently strong considerations.5 In this piece, by contrast, I examine the intricate relationship between extraterritoriality and empire in the context of Argentina’s experience with universal jurisdiction for serious crimes under international law.
In 2021, the cultural heritage nonprofit organization Archaeology Southwest received a Human Networks and Data Science grant from the US National Science Foundation to update its long-running archaeological research database, cyberSW. Central to this process was the creation of a Tribal Working Group (TWG) to advise the cyberSW team on how to make the database more relevant/useful to Native American communities in the region. Over the next three years, the TWG collaboration led to new approaches to database management and the hiring of a Native American fellow, as well as an expansion of the project to engage with traditional knowledge about plants and animals. This article recounts the history of the cyberSW 2.0 database project and TWG’s role within this process, with the goal of sharing lessons learned for others interested in developing similar collaborative programs with Native American communities.
Sister groups (two clades sharing a common ancestor) often differ greatly in taxonomic, phenotypic, and ecologic diversity, but explanations for these differences remain elusive. One hypothesis is that mate choice involving display promotes genetic isolation and thus speciation. We test this and other hypotheses by analyzing individual-level phenotypes that evolved in one but not the other of the two great molluscan sister clades Aculifera (chitons and relatives) and the much more diverse Conchifera (snails, clams, squid, and their relatives). The key difference lies in the morphological relationship between body and shell, which in Aculifera are tightly coupled, greatly limiting locomotion, activity, and mate choice. In Conchifera (especially in the major subclade Megalopodifera), the body and shell are more decoupled, facilitating a wide range of activity, modular evolution, and ecological expansion. Contrary to the primacy of mate choice as an engine of diversification, display-related mate choice is part of a larger theme of evolutionary feedbacks among habitat (including mate) choice, locomotor and other activity, and speciation. Some conchiferan clades never diversified and remain phenotypically conservative, highlighting the fact that the only unifying feature of a clade is its retrospective monophyly.
Human interactions, in any group or social setting, rely on and generate shared knowledge and social understandings. These shared intellectual resources are just as important to the efficient operation of markets and organizations as are their shared legal and material infrastructures. Governing Corporate Knowledge Commons focuses on the formal and informal arrangements that govern the creation and community management of intellectual resources within and across organizational boundaries. It demonstrates how the Governing Knowledge Commons (GKC) framework can be fruitfully combined with existing theoretical work on firms and corporate governance found in economics, management, and sociology. The volume also proposes a new set of case studies, ranging from old industrial enterprises to modern venture capital, investor alliances, and decentralized autonomous organizations. Chapters explore the benefits of participatory approaches to the management of genomic or financial data, online gaming communities, and organic waste. This title is also available as open access on Cambridge Core.
We develop a general relativistic, one-dimensional model of advection-dominated accretion flows (ADAFs) around Schwarzschild black holes, incorporating the full viscous shear tensor and all components of the heat flux four vector. This framework allows for a consistent treatment of anisotropic conduction in curved space time. Our results highlight the dominant role of radial and temporal heat flux components, while the vertical component, which is commonly emphasised in earlier studies, has negligible impact. Thermal conduction is found to significantly modify the disc structure in inner regions, enhancing thermal pressure and vertical expansion while reducing density. At larger radii, conduction effects fade and disc properties converge. The energy budget remains advection-dominated, with viscous heating exceeding radiative cooling and a substantial portion of energy carried inward by advection. Additionally, stronger inflow and higher angular momentum intensify all thermal processes through enhanced compression and shear. Our results affirm that realistic modelling of ADAFs around black holes demands inclusion of both anisotropic and fully general relativistic effects in heat transport and viscosity. We further show that the accretion flow exhibits transonic behaviour, characterised by a relativistic Mach number that increases inward and crosses unity as the flow approaches the black hole, marking the transition from subsonic to supersonic regimes. Moreover, the weak Coulomb coupling in such radiatively inefficient flows leads naturally to a two-temperature plasma, in which ions and electrons evolve quasi-independently, with the ion component dominating the thermodynamic structure.
The physical mechanism of low-frequency unsteadiness in shock-wave/turbulent boundary layer interaction (STBLI) is studied using direct numerical simulations at Mach 2.9 with momentum-thickness Reynolds number ${\textit{Re}}_\theta \approx 2400$ over three ramp configurations with varying corner curvature. The configurations include a sharp $24^\circ$ compression ramp (R24) and two curved ramps with radii of 7 (C7) and 14 (C14) times the boundary layer thickness. By varying the ramp curvature, the extent of separation is controlled while maintaining sufficient streamline concavity to ensure that the Görtler number remains above its critical threshold. Cases R24 and C7 exhibit a mean separation with a detached shear layer accompanied by pronounced low-frequency unsteadiness, whereas C14 shows only incipient separation with markedly attenuated low-frequency unsteadiness. Sparsity-promoting dynamic mode decomposition reveals the emergence and downstream growth of counter-rotating structures in both low- and mid-frequency bands in all cases. In R24 and C7, these structures undergo growth and merging within the detached shear layer, giving rise to large-scale low-frequency motion, while in C14, their growth remains gradual and largely frequency-independent. The interactions between the counter-rotating structures and detached shear layer redistribute energy toward lower wavenumbers with a reduction at mid-wavenumbers. During this phase, the streamwise enstrophy dominates the enstrophy magnitude. Enstrophy transport analysis shows that the wall-normal-to-streamwise enstrophy tilting dominates the initial generation of streamwise enstrophy, whereas stretching is the primary source of the subsequent downstream growth and alignment. The results suggest that the interaction between the detached shear layer and counter-rotating structures develops into large-scale structures that govern the low-frequency unsteadiness in STBLI.
Our quasi-experimental study at four Veterans Affairs Medical Centers evaluates whether clinician-centered education, audit, and feedback could reduce unnecessary preoperative urine cultures in asymptomatic neurosurgical, orthopedic, and vascular surgery patients. Urine culture rates decreased from 20.7% to 12.9% (P < .01), with orthopedic surgery showing the largest improvements (18.7% to 7.4%; P < .01).
We consider the problem of estimating and deriving confidence intervals for change points in linear models with heteroscedastic errors. A CUSUM process-based estimator is proposed, and we establish its asymptotic properties when the linear regression model exhibits change points in both the regression parameters and the distribution of the errors. This theory motivates the construction of confidence sets for multiple change points by refining preliminary change point estimators and approximating their distribution in a way that is robust to heteroscedasticity. Monte Carlo experiments indicate that the proposed confidence intervals achieve accurate empirical coverage for change-point locations under both homoscedastic and heteroscedastic error structures. In two data applications, we apply the proposed confidence intervals to examine changes in the flattening of the New Keynesian Phillips curve and in cryptocurrency risk factors.
Census counts of Pygoscelis penguins on the Antarctic Peninsula and Scotia Arc are conducted both regularly around field stations and opportunistically from ships with the goal of assessing the breeding abundances and trends of these indicator species. Regional trends and abundances are often more policy-relevant than population-specific metrics, but survey patterns in the area have not been planned to optimize regional inference. We evaluated the ability of several monitoring schemes to describe regional trends and abundances of Pygoscelis penguins. Using a ‘pseudo-true’ time series as a starting point, we simulated time series of ‘observed’ census data for the period of 2000–2024. We then fit a hierarchical Bayesian population model to each dataset to assess how well each monitoring scheme recovered the known regional trends and abundances. Simulations were repeated across combinations of survey efforts, variances in inter-population abundances and census uncertainties. We found that implementing structured monitoring schemes would improve our ability to recover regional trends and abundances compared to the actual distribution of surveys conducted during the 2000–2024 period. For scenarios characterized by low variance in abundance such as the gentoo penguins on the central-west Antarctic Peninsula, we could recover trend and abundance estimates with considerably less survey effort if we deployed a monitoring scheme that cycled through all populations at an equal interval. For scenarios characterized by high variance in abundance such as the Adélie penguins on the north-east Antarctic Peninsula, surveys were optimized by splitting effort between satellite monitoring of the largest populations and cycling through the other populations. These findings are strongly influenced by the rapid increase in uncertainty regarding population abundance in the seasons after a census count, highlighting the importance of prioritizing sites where abundances are highly uncertain due to long intervals since the last survey.
Fast radio bursts (FRBs) are bright (Jansky-level) and short-duration ($\sim$1 ms) flashes of extragalactic origin. Observations of single events have now been complemented by large-area surveys, delivering FRB catalogues and enabling the first population studies. The Northern Cross (NC) radio interferometer is one of the instruments performing observations of FRBs. In this work, we present the Italian Northern Cross Atlas of Radio Transients (INCART), a public platform for the distribution of data products from the NC. INCART makes available to the community the FRBs observed by the NC through manageable frequency-time series datasets and catalogues with best-fit physical parameters. The design of INCART guarantees the possibility of scientific re-analysis of the FRB properties, in view also of future releases of the processing pipeline. Furthermore, INCART focuses on long-term storage optimisation, which is a key aspect of state-of-the-art instrumentation. Public access to the FRB data from the NC maximises the legacy value of the collection, facilitates the synergy with other publicly available catalogues, and fosters research group collaborations.
This paper examines the impact of low-carbon transition risks on sovereign borrowing costs. Using two unbalanced panel datasets covering 125 countries from 1995 to 2019, we estimate extended models of the macroeconomic determinants of short- and long-term sovereign debt costs. We include key indicators capturing exposure to transition risks, such as fossil resource abundance, the carbon intensity of GDP, and the share of renewable energy in total energy consumption. Results show that fossil resource abundance and a higher renewable energy share are associated with lower borrowing costs, whereas greater carbon intensity raises sovereign debt costs. Financial markets therefore appear to reward fossil resource endowments while penalizing carbon-intensive uses of these resources. This reveals a contradictory signal: fossil resource wealth lowers the cost of public borrowing, as it is perceived as a form of implicit collateral, while the actual use of these resources increases borrowing costs, reflecting a carbon risk premium.
This study documents a behavioral dimension of the persistent contradiction between democratic ideals and racial exclusion by examining patterns of everyday spatial avoidance among minoritized groups in shared public spaces. By drawing on systematic observational data from 428 dyadic encounters on Seattle public transit platforms, the analysis identifies patterns of behavioral segregation that may bear on the prospects for multiracial cooperation. Results reveal consistent asymmetrical avoidance: East Asian and Hispanic individuals maintain 18–19 additional feet from Black first-arrivers, a pattern that Black individuals do not reciprocate. In contrast, interaction models show that Black–Black dyads have less interpersonal distance that contrasts with broader aversion by outgroups. By shifting from attitudinal to behavioral measures, this study captures intergroup dynamics that surveys may not detect.
Twin studies provide a powerful framework to identify genetic and environmental influences on health and development, particularly during infancy, childhood, and adolescence. Although twin research has expanded globally, evidence from South Asia remains limited and poorly characterized. This systematic review aimed to synthesize health research involving infant, child, and adolescent twins conducted in South Asia and to identify methodological patterns and research gaps relevant to future twin research in the region. A systematic review was conducted according to a registered protocol (PROSPERO: CRD42018105704) using the PICOS framework. Multiple international and regional databases were searched from inception to September 2025. Studies recruiting twins aged 0–19 years within the South Asian Association for Regional Cooperation (SAARC) countries were included. Study selection, data extraction, and quality appraisal were conducted independently, with study quality assessed using Joanna Briggs Institute critical appraisal tools. Results were synthesized narratively due to heterogeneity across study designs and outcomes. Eighteen studies were included from 1245 identified records. Most studies focused on twin pregnancy and neonatal outcomes (61%), followed by dentistry, ocular health, and gut microbiota. Twin pregnancies were consistently associated with increased risks of low birth weight, preterm birth, and perinatal morbidity and mortality. A limited number of studies applied classical twin designs to investigate genetic and environmental contributions. Twin research involving infants, children, and adolescents in South Asia remains limited in scope and methodological depth. Strengthening twin registries, methodological standardization, and collaborations is essential to advance genetically informative research and enhance the global representativeness of twin studies.
This lecture considers conserving and upholding Anishinaabe law as it relates to the more-than-human world. It suggests that we must continually renew our broadest legal commitments to protect and preserve what sustains us. Protecting clans and the animals from which they derive is close to the heart of Anishinaabe law (ode’naakonige). This law is embodied through Anishinaabe treaties with our evolutionary progenitors, our clan relatives. These treaties with the more-than-human world were incorporated into treaties with other First Nations. From an Anishinaabe perspective, these obligations were, in turn, eventually imported into treaties with the Crown. Anishinaabe treaties with the more-than-human world continue to inform how Anishinaabe people practice constitutional law through consultation protocols, legislation, and participation in court proceedings.
The shear rheology of suspensions is important in material manufacturing, biophysics and environmental processes. Particle geometry impacts rheology in a manner that depends on the particles’ individual rotational dynamics and interparticle interactions. In this work, we investigate the rheology of a suspension of self-aligning particles (SAPs), a class of rigid particles that, in a low Reynolds number simple shear flow, remain permanently aligned near the fluid lamellae without application of external torques. We focus on ring-shaped SAPs, which are robust against secondary effects such as perturbations to the shear flow, interparticle interactions and weak Brownian motion (Borker et al. 2024 Phys. Rev. Fluids9, 043301). Using dynamic simulations under a slender-body theory framework, we demonstrate that SAP suspensions generate specific viscosities an order of magnitude smaller than those generated by tumbling particles of the same aspect ratio. As a result, SAP suspensions make only modest alterations to the suspension viscosity even at $O(1)$ values of the number density $\bar {n}$ non-dimensionalized by the in-plane radial extent of the ring. This reduction in the shear stress arises from persistent alignment, which suppresses the short tumbling events that dominate the rheology of conventional high-aspect ratio particles. Our results indicate a distinct hydrodynamic mechanism governing shear stresses in SAPs, including a regime near a critical aspect ratio that is dominated by dipoles per unit circumference and has no analogue in tumbling-particle suspensions. As a consequence, ring-shaped SAPs with different cross-sectional shapes impart shear stress of comparable magnitude at a given aspect ratio. In contrast to their weak contribution to shear stresses, SAP suspensions generate comparatively large normal stress differences due to the intrinsic asymmetry of their equilibrium orientation. This fundamentally differs from tumbling-particle suspensions which need collisions to generate normal stresses. Therefore, normal stresses in SAP suspensions scale linearly with $\bar {n}$ and are significantly larger than the $O(\bar {n}^2)$ normal stresses observed in tumbling-particle suspensions. Consequently, SAP suspensions exhibit non-Newtonian behaviour at lower volume fractions and may exhibit the Weissenberg effect at moderate number densities. Our findings highlight that SAPs offer access to rheological properties that are challenging to replicate in suspensions of conventional rigid particles. Overall, these findings offer new insight into tuning the bulk rheology of particle suspensions by controlling the orientational dynamics of individual particles.
The goal of this study was a re-analysis of a randomized controlled trial evaluating the effectiveness of Attachment and Biobehavioral Catchup (ABC), an early childhood parenting intervention. We compared the effectiveness of ABC for enhancing parental sensitivity and child behavior among 79 dyads who received the intervention as delivered by peer support specialists (n = 49 dyads) or master’s-level clinicians (n = 30 dyads). Peer support parent coaches were non-inferior at enhancing parental sensitivity and parental intrusiveness as parent coaches with a master’s degree. This research has important clinical implications for increasing access to ABC for parents involved in the child welfare system.
Global environmental crises, including climate change, biodiversity loss and resource depletion disproportionately affect communities in the Global South, where environmental vulnerability intersects with social and cultural inequalities. In rural North Sindh, Pakistan, these pressures shape everyday livelihoods and community practices through which environmental knowledge is transmitted across generations. Yet formal environmental education often overlooks these informal learning spaces. This study examines how family and community-based environmental and sustainability education cultivates action competence by integrating knowledge, motivation and action skills in a non-Western agrarian context. Guided by the Action Competence Approach as a theoretical and conceptual framework, the research employed a convergent parallel mixed-methods design within participatory action research. Data from 120 participants in Sukkur and Shikarpur were collected through surveys, interviews, focus groups and workshops. Findings show moderate-to-high action competence (M = 3.82/5), with strong environmental motivation and knowledge fostered through intergenerational storytelling, while action skills remain constrained by infrastructural and rural–urban disparities.