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leads to total design of quantum computers, namely, quantum computer architecture. We also aim at cooperating systems of quantum and classical computers towards early realization of useful quantum
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? Yes Offer Description We study the regulatory control of neuron specification and differentiation. These processes build the nervous system, and their disruption causes neurodevelopmental disorders. We
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manipulate the signaling pathways that initiate and control the neuron differentiation process. It uses a combination of genomics, molecular biology, and live imaging to understand molecular mechanisms
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of the project] * Background of the recruitment and description of the project [Research Field] We are working on the ultrafast shaping of free-electron beams and the application to the ultrafast imaging
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, structural biology, computational science, imaging, multi-omics, theory, stem cell biology, organoids, and the use of diverse animal models. In addition to striving to understanding the life cycle, the BDR
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, structural biology, computational science, imaging, multi-omics, theory, stem cell biology, organoids, and the use of diverse animal models. In addition to striving to understanding the life cycle, the BDR
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by the combination of imaging, sequencing, and machine learning. Using this system, we would like to understand biological systems, and to contribute to medical sciences. We have developed other
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-correlation systems by means of atomic-resolution electron microscopy. We use various microscopy techniques, such as the electron tomography, in-situ imaging, differential phase contrast microscopy, electron
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to design and develop a Quantum-HPC Hybrid platform, which will serve as a new computational infrastructure to extend the computable domain by highly linking a Quantum Computer (QC) and a supercomputer (HPC
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of quantum technologies. Our research group has been studying quantum information processing, quantum state control, and the quantum physical properties (coherence, spin correlations, many-body effects, etc