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A European Benchmarking Framework for Hybrid Quantum-Classical Computing is a grant from the European Commission under Horizon Europe (HORIZON-EUROHPC-JU-2024-BENCHMARK-05-03) that funds the development of a unified, open-source benchmarking framework for quantum-accelerated and hybrid HPC-QC supercomputing systems.
The program aims to enhance EU quantum competitiveness through transparent, reproducible benchmarking that improves procurement decisions and system performance. Eligible applicants are legal entities established in EU Member States or countries associated to Horizon Europe. The total budget is approximately €4 million (~$4.
3M USD), with individual projects expected to receive between €500,000 and €1 million. Approximately one grant is expected. The deadline was March 24, 2026.
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# EU Funding & Tenders Portal EU Funding & Tenders Portal * Results & Innovation support * SME Self-assessment tool Home Funding Calls for proposals A European Benchmarking Framework for hybrid quantum-classical computing A European Benchmarking Framework for hybrid quantum-classical computing HORIZON-EUROHPC-JU-2024-BENCHMARK-05-03 * Conditions and documents * Partner search announcements A European HPC-centric Benchmark Framework (HORIZON-EUROHPC-JU-2024-BENCHMARK-05) HORIZON-RIA HORIZON Research and Innovation Actions HORIZON Action Grant Budget-Based [HORIZON-AG] 24 March 2026 17:00:00 Brussels time * Enhanced evidence-based decision making through comprehensive system comparison that improves the procurement process for quantum-accelerated supercomputers (hybrid HPC-QC).
This will enable more informed choices regarding the acquisition of new systems and upgrades of existing ones * Overall improved operation and fine-tuning of hybrid HPC-QC systems leading to improved performance, throughput and energy optimization, and improved end-user experience * Enhancing the competitiveness of EU quantum suppliers through transparent benchmarking of industrially relevant workflows * A unified, extensible and well-documented **benchmarking framework** to easily accommodate new, community-contributed benchmarks with common standards, versioning and control * A well-maintained and continuously updated **benchmarking suite** for QC- and hybrid HPC-QC workflows with **open-source reference implementations** for every benchmark, SDK-agnostic specifications and sample datasets * **Active contributions to European and global standardisation** on QC-, and hybrid HPC-QC benchmarking, certification and sustainability via standardisation bodies such as IEEE P7130/P7131, CEN-CENELEC JTC22-WG3, IEC/ISO JTC3 etc. A.)
Development of a **benchmarking framework** addressing the following aspects: * offer a fine grained and **fair comparison methodology** among different systems and integration approaches, i.e. all benchmarks, benchmark run rules[1] and benchmark submission rules must be designed to ensure reproducibility, repeatability and replicability of metrics on the same system, ensuring fairness and comparability of metrics across different systems * define and continuously update a precise and relevant **performance metrics catalogue** * **standardise** all benchmarking input- and output formats * **collect and report** all benchmarking results while offering statistically sound result analyses * ensure that all benchmarks are **executable** on the respective target environment(s) * offer a standardized **structured workflow** capturing and streamlining the entire benchmarking process * offer a standardised **repository** with transparent **version control** * provide at least one **reference implementation** based on an EU SDK for each benchmark * is of **production-quality** and ready to assess all of EuroHPC’s QC- and hybrid HPC-QC systems * provide all required templates with relevant input data to properly execute the benchmarking suite on every EuroHPC system.
The benchmarking framework along with its workflows will **be realised in a software implementation** that offers to the end-user a dynamic workspace for the entire workflow. B.) Establishing a comprehensive QC- and hybrid HPC-QC **benchmarking suite** utilizing the framework developed in the first objective.
This benchmarking suite, with its associated performance metrics, will be designed to measure and assess the performance of QC- and hybrid HPC-QC systems.
The envisioned **benchmarking suite** is expected to: * be generally **hardware agnostic**, enabling cross-device verification (e.g. via entangled-state comparisons, or distributed inner-product tests) * provide thorough documentation for developers and end-users * develop **novel hybrid** HPC-QC benchmarks within the following three key areas: * **Throughput**: capturing true end-to-end performance including queue-to-result latency, provisioning delays and data movement overhead * **Latency**: queue-to-solution time, end-to-end (i.e. submission-to-result) * **Energy**: per-shot energy, cryogenic overhead, control-electronics draw, classic-compute share, energy-to-solution (incl.
all contributions, i.e. quantum-core, cryogenic, control electronics, classical compute) * catalogue relevant, **well-established** QC benchmarks from across the entire software stack, e.g.: * **Component level/ Gate level**: gate fidelities, connectivity, energy-state relaxation time, coherence (T1/T2), randomized benchmarking (RB), cross-talk RB, error-per-layered-gate (EPLG), logical-error rate, logical error scaling (Λ) * **System level**: Clifford-volume, cross-entropy (XEB), CLOPS/ rQOPS, MegaQuOp, GHZ-state fidelity (single shot read-out) * **Software/ Compiler level**: error-syndrome mapping, decoding-throughput metrics, quantum compilation volumetric benchmarks * **Application layer**: VQE, QAOA, MaxCut, Q-Score, quantum-enhanced ML, Monte Carlo sampling, workload-specific benchmarks, quantum application score * support of both noisy-intermediate-scale-quantum (NISQ) and fault-tolerant-quantum-computing (FTQC) regimes (e.g. logical-error rates, logical-clock rate, decoding throughput) * ensure that each benchmark produces at least one metric * define reliable and **common metrics** to compare different qubit modalities, as well as the depth of the HPC-QC integration based on pre-defined criteria (e.g. efficiency) * ensure the **scalability** of each benchmark by identifying relevant scale parameters Proposals should provide a thorough justification for the selection of each benchmark and performance metric, clearly explaining how they align with the specific requirements and priorities of the European HPC-QC landscape.
The inclusion or integration of existing benchmarks under the umbrella of this initiative is clearly foreseen, provided there are prior agreements with the benchmark owners and compatibility with licensing conditions. The proposal must also outline a clear IP plan and licensing strategy under the European Union Public Licence (EUPL-1.
2) to safeguard openness and promoting European industrial uptake enabling first exploitation within EU- and Participating States. The project will also propose and maintain a detailed **strategic development roadmap** for the action, which: 1. anticipates future developments in QC and hybrid HPC-QC, including emerging technologies 2.
foresees the hardware agnostic and hardware inclusive support of hybrid HPC-QC systems The consortium will actively engage with industry and research communities through workshops, working groups, and feedback loops to receive continuous feedback ensuring that all benchmarks are relevant and up to date. 1. The proposal shall take into consideration the state of the art of development quantum computing benchmarking 2.
Define a mechanism to monitor the benchmarking framework and pool appropriate existing benchmark suites, relevant for architectures of all participating HPC-QC centres for deployment in a common data repository 3. The benchmarking framework and the encompassing benchmarking suite will be made available to the user communities under the European Union Public Licence (EUPL).
[1] run rules define required and forbidden hardware, software, optimization, tuning, and procedures. FAQ for the call: HORIZON-EUROHPC-JU-2024-BENCHMARK | The European High Performance Computing Joint Undertaking (EuroHPC JU) The submission session is now available for: HORIZON-EUROHPC-JU-2024-BENCHMARK-05-02, HORIZON-EUROHPC-JU-2024-BENCHMARK-05, HORIZON-EUROHPC-JU-2024-BENCHMARK-05-03 Topic conditions and documents #### 1.
Admissibility Conditions: Proposal page limit and layout The conditions are described in the General Annex A of the Horizon Europe Work Programme 2023-2025. The page limit of the application is **70** pages. #### 2.
Eligible Countries described in Annex B of the Work Programme General Annexes. A number of non-EU/non-Associated Countries that are not automatically eligible for funding have made specific provisions for making funding available for their participants in Horizon Europe projects. See the information in the Horizon Europe Programme Guide.
#### 3. Other Eligible Conditions The conditions are described in the General Annex B of the Horizon Europe Work Programme 2023-2025. A number of non-EU/non-Associated Countries that are not automatically eligible for funding have made specific provisions for making funding available for their participants in Horizon Europe projects.
See the information in the Horizon Europe Programme Guide. In order to achieve the expected outcomes, and safeguard the Union’s strategic assets, interests, autonomy, and security, participation in this topic is limited to legal entities established in Member States, associated countries, to Horizon Europe and EuroHPC JU Participating States.
Proposals including legal entities which are not established in these countries[Albania, Armenia, Austria, Belgium, Bosnia-Herzegovina, Bulgaria, Croatia, Cyprus, Czechia, Denmark, Estonia, Faroe Islands, Finland, France, Germany, Georgia, Greece, Hungary, Iceland, Ireland, Israel, Italy, Kosovo, Latvia, Lithuania, Luxembourg, Malta, Moldova, Montenegro, Netherlands, North Macedonia, Norway, Poland, Portugal, Romania, Serbia, Slovakia, Slovenia, Spain, Sweden, Switzerland, Türkiye, United Kingdom, all countries that automatically eligible for funding under Horizon Europe as provided in [list-3rd-country-participation_horizon-euratom_en.
pdf (V3. 5 – 20. 08.
2025).]] will be ineligible. This decision has been taken on the grounds that, in the area of research covered by this topic, EU open strategic autonomy is particularly at stake.
It is important to avoid a situation of technological dependency on a non-EU source, in a global context that requires the EU to take action to build on its strengths, and to carefully assess and address any strategic weaknesses, vulnerabilities and high-risk dependencies which put at risk the attainment of its ambitions. #### 4.
Financial and operational capacity and exclusion The criteria are described in Annex C of the Work Programme General Annexes. #### 5a. Evaluation and award: Award criteria, scoring and thresholds The procedure is described in General Annex F of the Horizon Europe Work Programme 2023-2025.
The granting authority can fund a maximum of one project. The criteria are are described in Annex D of the Work Programme General Annexes. #### 5b.
Evaluation and award: Submission and evaluation processes The criteria are described in of the General Annex D of the Horizon Europe Work Programme 2023-2025. #### 5c. Evaluation and award: Indicative timeline for evaluation and grant agreement The criteria are described in Annex F of the Work Programme General Annexes.
#### 6. Legal and financial set-up of the grants As an exception from General Annex G of the Horizon Europe Work Programme, the EU-funding rate for eligible costs in grants awarded by the JU for this topic will be up to **50%** of the eligible costs. The rules are described in General Annex G of the of the Horizon Europe Work Programme 2023-2025.
The documents are described in General Annex E of the Horizon Europe Work Programme 2023-2025.
#### Application and evaluation forms and model grant agreement (MGA): **Application form templates**_— the application form specific to this call is available in the Submission System_ Standard application form (HE RIA, IA) Standard application form (HE RIA IA Stage 1) Standard application form (HE RIA IA Stage 1 BLIND) Standard application form (HE CSA) Standard application form (HE CSA Stage 1) Standard application form (HE CSA Stage 1 BLIND) Standard application form (HE RI) Standard application form (HE PCP) Standard application form (HE PPI) Standard application form (HE COFUND) Standard application form (HE FPA) Standard application form (HE MSCA PF) Standard application form (HE MSCA DN) Standard application form (HE MSCA SE) Standard application form (HE MSCA COFUND) Standard application form (HE MSCA COFUND CE) Standard application form (HE ERC STG) Standard application form (HE ERC COG) Standard application form (HE ERC ADG) Standard application form (HE ERC POC) Standard application form (HE ERC SYG) Standard application form (HE EIC PATHFINDER CHALLENGES) Standard application form (HE EIC PATHFINDER OPEN) Standard application form (HE EIC TRANSITION) Standard application form (HE EIC STEP) Standard application form (HE EIC Accelerator stage 2 - full proposal) Standard application form (HE EIC Accelerator stage 1 - short proposal) **Evaluation form templates**_— will be used with the necessary adaptations_ Standard evaluation form (HE RIA, IA) Standard evaluation form (HE CSA) Standard evaluation form (HE RIA, IA and CSA Stage 1) Standard evaluation form (HE RIA, IA and CSA Stage 1 BLIND) Standard evaluation form (HE PCP PPI) Standard evaluation form (HE COFUND) Standard evaluation form (HE FPA) Standard evaluation form (HE MSCA) Standard evaluation form (HE EIC PATHFINDER CHALLENGES) Standard evaluation form (HE EIC PATHFINDER OPEN) Standard evaluation form (HE EIC TRANSITION) Standard evaluation form (HE EIC Accelerator stage 1 - short proposal) Standard evaluation form (HE EIC Accelerator stage 2 - full proposal) **Model Grant Agreements (MGA)** Framework Partnership Agreement FPA **Call-specific instructions** Detailed budget table (HE LS) Information on financial support to third parties (HE) Information on clinical studies (HE) Guidance: "Lump sums - what do I need to know?"
#### Additional documents: HE Main Work Programme 2025 – 1. General Introduction HE Main Work Programme 2023–2025 – 2. Marie Skłodowska-Curie Actions HE Main Work Programme 2025 – 3.
Research Infrastructures HE Main Work Programme 2025 – 4. Health HE Main Work Programme 2025 – 5. Culture, creativity and inclusive society HE Main Work Programme 2025 – 6.
Civil Security for Society HE Main Work Programme 2025 – 7. Digital, Industry and Space HE Main Work Programme 2025 – 8. Climate, Energy and Mobility HE Main Work Programme 2025 – 9.
Food, Bioeconomy, Natural Resources, Agriculture and Environment HE Main Work Programme 2025 – 10. European Innovation Ecosystems (EIE) HE Main Work Programme 2025 – 11. Widening participation and strengthening the European Research Area HE Main Work Programme 2025 – 12.
Missions HE Main Work Programme 2025 – 13. New European Bauhaus Facility (NEB) HE Main Work Programme 2025 – 14. General Annexes HE Main Work Programme 2023–2025 – 13.
General Annexes HE Framework Programme 2021/695 HE Specific Programme Decision 2021/764 EU Financial Regulation 2024/2509 Decision authorising the use of lump sum contributions under the Horizon Europe Programme Rules for Legal Entity Validation, LEAR Appointment and Financial Capacity Assessment EU Grants AGA — Annotated Model Grant Agreement Funding & Tenders Portal Online Manual Funding & Tenders Portal Terms and Conditions Funding & Tenders Portal Privacy Statement | HORIZON-EUROHPC-JU-2024-BENCHMARK-05 - HORIZON-RIA HORIZON Research and Innovation Actions HORIZON-EUROHPC-JU-2024-BENCHMARK-05-03 - HORIZON-RIA HORIZON Research and Innovation Actions | €2,000,000.
00 | Single-stage | 11 December 2025 | 24 March 2026 | €500,000. 00 to €1,000,000. 00 €500,000.
00 to €1,000,000. 00 | 1 1 | Partner search announcements **Searches of partners to collaborate on this topic** LEARs, Account Administrators or self-registrants can publish partner requests for open and forthcoming topics after logging into this Portal, as well as any user having an active public Person profile.
To access the Electronic Submission Service, please click on the submission-button next to the **type of action** and the **type of model grant agreement** that corresponds to your proposal. You will then be asked to confirm your choice, as it cannot be changed in the submission system. Upon confirmation, you will be linked to the correct entry point.
To access existing draft proposals for this topic, please login to the Funding & Tenders Portal and select the My Proposals page of the My Area section. **Please select the type of your submission:** HORIZON Research and Innovation Actions [HORIZON-RIA], HORIZON Action Grant Budget-Based [HORIZON-AG] Topic Q&As**0** item(s) found Please read carefully all provisions below before the preparation of your application.
Online Manual is your guide on the procedures from proposal submission to managing your grant. Horizon Europe Programme Guide contains the detailed guidance to the structure, budget and political priorities of Horizon Europe. Funding & Tenders Portal FAQ – find the answers to most frequently asked questions on submission of proposals, evaluation and grant management.
Research Enquiry Service – ask questions about any aspect of European research in general and the EU Research Framework Programmes in particular. National Contact Points (NCPs) – get guidance, practical information and assistance on participation in Horizon Europe. There are also NCPs in many non-EU and non-associated countries (‘third-countries’).
Enterprise Europe Network – contact your EEN national contact for advice to businesses with special focus on SMEs. The support includes guidance on the EU research funding. IT Helpdesk – contact the Funding & Tenders Portal IT helpdesk for questions such as forgotten passwords, access rights and roles, technical aspects of submission of proposals, etc. European IPR Helpdesk assists you on intellectual property issues.
CEN-CENELEC Research Helpdesk and ETSI Research Helpdesk – the European Standards Organisations advise you how to tackle standardisation in your project proposal. The European Charter for Researchers and the Code of Conduct for their recruitment – consult the general principles and requirements specifying the roles, responsibilities and entitlements of researchers, employers and funders of researchers.
Partner Search help you find a partner organisation for your proposal.
According to the current listing, eligibility includes: Open to legal entities established in EU Member States and countries associated to Horizon Europe (including EEA/EFTA countries, and other associated third countries). Confirm the full requirements in the official notice before applying.
The current listing shows €4M total budget (~$4.3M USD) ; €500K–€1M per project ; ~1 grant expected. Verify award ceilings, matching requirements, and allowable costs in the official notice.
The published deadline was March 24, 2026, which has passed. Check the official notice for any future application windows before investing time in a proposal.
A European Benchmarking Framework for hybrid quantum-classical computing is funded by European Commission — Horizon Europe. Verify program details on the funder's official page before applying.
Start from the official opportunity page linked in this listing — it carries the sponsor's submission instructions.
Reinforcing EU autonomous access to space through EU-based spaceports is sponsored by European Commission — Horizon Europe. Expected Outcome: Project results are expected to contribute to all of the following outcomes: Reinforcing EU strategic autonomy by reducing non-EU dependencies for accessing space; Providing an EU access to space necessary for EU space missions through state of the art and innovative solutions; Diversifying the access to space providers in the EU; Contributing to expand commercial access to space offers and services in the EU; Reinforcing Access to Space to ensure that Europe maintains and improve autonomous, reliable and cost-effective access to space. Scope: The EU needs to improve the resilience of its access to space for the implementation of EU space programme. New entrants will contribute to this endeavour. Projects are expected to support EU launch service providers to set up launch pad(s) in the EU territory enabling to perform EU launch services. Projects are expected to contribute to the development of necessary ground facilities to conduct launch services from the EU territory; e.g. launch integration, storage and operation facilities, launch pad and complex, control command facility, payload processing and integration facilities, tracking means, safety means, propellant storage... EU launch service provider(s) are expected to be part of the project consortium and be the ultimate users of the resulting facilities making use of EU launch vehicles for providing EU launch services. Proposals under this topic should explore synergies and be complementary to past actions related to ground segment for launch services, in particular the topics: HORIZON-CL4-2023-SPACE-01-23 and HORIZON-CL4-2025-02-SPACE-11. All the activities should be complementary with national and ESA on-going or future activities, in particular those decided at the ESA council Ministerial Meeting in November 2025. In this topic, the integration of the gender dimension (sex and gender analysis) in research and innovation content should be addressed only if relevant in relation to the objectives of the research effort. Technology Readiness Level - Technology readiness level expected from completed projects Activities are expected to achieve TRL 8 by the end of the project. The reference TRL definition is the ISO 16290:2013 applicable to the space sector. Programme areas: Horizon Europe (HORIZON), Global Challenges and European Industrial Competitiveness, Digital, Industry and Space
Space critical Equipment for EU non-dependence – Space Refuelling Interface is sponsored by European Commission — Horizon Europe. Expected Outcome: Project results are expected to contribute to all of the following expected outcomes: Reinforcing EU strategic autonomy by reducing non-EU dependencies on critical space Equipment and related technologies across their entire supply chain; Providing unrestricted access to critical space Equipment and related technologies relevant for EU space missions and pilots (e.g. In-Orbit Space Operations); Developing or regaining capacity to operate independently in space by developing resilient space Equipment and related technologies supply chains, relying on EU supply chains and/or trustable and reliable supply chains not affected by non-EU export restrictions; Enhancing competitiveness by developing products and capabilities reaching equivalent or superior performance level than those from outside the EU and compete at worldwide level. Scope: Unrestricted access to state-of-art space equipment and related technologies is a pre-requisite for the EU space industry responding to EU space missions. However, especially for some families of equipment, the available solutions in EU do not meet the current high-performance space requirements. Currently, alternative products sourced from outside EU, are either affected by non-EU export control, that limits its use, or present challenges in terms of trustable supply chains for the implementation of EU space missions with a security dimension. Within the frame of this topic, it is expected to finance and implement a development project aiming at maturing critical equipment with the final goal of lowering the dependency from outside EU. This will be done by establishing a long-term sustainable supply chain for supporting EU strategic autonomy in the space sector. The selection of the supply chains shall reflect this objective. Therefore, the supply chain shall preferably be built fully based in EU and when this can only be achieved partially, services procured from outside EU shall nevertheless ensure that the overall supply chain will remain trustable and not affected by non-EU export control. The latest scenario is subject to the approval of the granting authority (i.e. DG-DEFIS and HaDEA). The space equipment and related technologies relevant for this topic represent a direct implementation of the EU Observatory of Critical Technologies (OCT) Technology Roadmap, named Robotics Manipulators for Space Applications: Space Refuelling Interface . Further details will be provided at the latest at the opening of the Call, in a Guidance document published on the Funding & Tenders Portal. Space is a low volume market affected by a dynamic industrial landscape compared to the terrestrial market therefore, technological spin in and/or bilateral collaborations should be enhanced between European non-space and space industries. Furthermore, proposed activities should be complementary to relevant national or other activities at EU level. Complementary activities should be clearly identified, described and the proposal should report how the complementarity is ensured. To achieve the non-dependence objective, applicants are expected to include a dedicated proposal’s paragraph covering: The description of the technology and/or technology processes used for developing the equipment and high-level breakdown of the supply chain to be used. Applicants should demonstrate that the supply chain and final product are free of any legal export restrictions or limitations, such as those established in the International Traffic in Arms Regulations (ITAR) or equivalent instruments applicable in other non-EU jurisdictions. Applicants shall also report, in a dedicated subsection, if and which part of the supply chain is affected by non-EU export controls such as the Export Administration regulation (EAR) i.e. EAR99. The description of the suitable technology development process that has been identified and set up within the consortium for avoiding export restrictions of non-EU states and assess vulnerab Programme areas: Horizon Europe (HORIZON), Global Challenges and European Industrial Competitiveness, Digital, Industry and Space, Space, including Earth Observation
IA Resilience call reinforcing Europe's strenght in health is sponsored by European Commission — Horizon Europe. Expected Outcome: the proposals under this call are expected to address one or more of the following subjects : • Enhanced personalized monitoring, care and treatments, focusing on the development of highly customized healthcare solutions, including the required research and diagnostic tools, tailored to individual needs, covering various scenarios such as chronic disease management, physiotherapy, precision diagnosis, personalized medicine/treatment, pre- and postoperative care, and daily assistance in homes and common spaces. It also targets effective management of chronic diseases and elderly care through personalized monitoring and interventions facilitated by advanced sensor technologies and edge-to-cloud solutions. This includes the development and integration of solutions for Hospitalization at Home, enabling patients to receive complex, remotely supervised care using intelligent medical devices capable of sensing, analysing, and transmitting real-time data. This requires a continuum, from in-hospital diagnostics to robust, long-term patient support at home via AI-driven care pathways and hospitalization at home. • Prevention and treatment of diseases, allowing the improved scientific understanding, early detection and proactive prevention of diseases through scientific research, continuous monitoring, predictive analytics, and timely alerts, possibly powered by AI algorithms. This preventive approach enables early intervention and significantly reduces risks associated with many illnesses such as viral infections (e.g. epi- and pan demics), cardiovascular diseases, diabetes complications affecting the health of the young and old. • Efficient, scalable, and cost-effective healthcare, demonstrating how ECS-based technologies can streamline clinical workflows, reduce administrative burdens, and improve resource allocation in healthcare systems. This includes automation and intelligent operations management across clinical, diagnostic, and homecare settings, ultimately improving cost-effectiveness and scalability. • Secure and compliant healthcare continuum, including solutions that ensure robust data protection and regulatory compliance (e.g. GDPR), particularly in handling sensitive health data. Projects should adopt privacy-by-design principles and implement secure data handling architectures using localized edge computing, encryption, authentication, and anonymization strategies within both clinical and assisted living environments. • Seamless interoperability across devices, systems, and platforms, addressing the integration of heterogeneous systems across the edge-to-cloud continuum. Solutions should rely on open standards and modular architectures to ensure interoperability, flexibility, and adaptability across various healthcare settings and use cases, fostering a unified European health-tech ecosystem. Programme areas: Horizon Europe (HORIZON), Global Challenges and European Industrial Competitiveness, Digital, Industry and Space
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