Miho Hatanaka - Profile and Journalist Details
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Get connected with journalists todayMiho Hatanaka
Verified
Contributor, Freelance
Osaka
Beats
Wine , Wine Business, Travel, Lifestyle , Leadership, Executive Development, AI, Consumer Behavior, Human resources, Business Strategy , Wine , Lifestyle, Food , Luxury Products
new product launches, weight loss products, restaurant reviews
Content
By Taichi Inagaki, Miho Hatanaka, Riho Somaki, Hiyoshi Kohoku-ku| Wiley Online Library Verified 1 Introduction Geometry optimization is an essential technique for studying the chemical properties of molecules. Conventional geometry optimization uses energy gradients obtained from quantum mechanical (QM) calculations 1-3. Geometry optimization using energy gradients is applicable not only to the global minimum (GM) but also to local minima (LMs), transition states (TSs), and conical intersections (CIs).
Quantum computing quantum Monte Carlo with hybrid tensor network for electronic structure calculations - npj Quantum Information
By Shu Kanno, Hajime Nakamura, Takao Kobayashi, Miho Hatanaka, Naoki Yamamoto| Nature Verified AbstractQuantum computers have a potential for solving quantum chemistry problems with higher accuracy than classical computers. Quantum computing quantum Monte Carlo (QC-QMC) is a QMC with a trial state prepared in quantum circuit, which is employed to obtain the ground state with higher accuracy than QMC alone. We propose an algorithm combining QC-QMC with a hybrid tensor network to extend the applicability of QC-QMC beyond a single quantum device size.
By Taichi Inagaki, Miho Hatanaka, Riho Somaki, Hiyoshi Kohoku-ku| Wiley Online Library Verified 1 Introduction Geometry optimization is an essential technique for studying the chemical properties of molecules. Conventional geometry optimization uses energy gradients obtained from quantum mechanical (QM) calculations 1-3. Geometry optimization using energy gradients is applicable not only to the global minimum (GM) but also to local minima (LMs), transition states (TSs), and conical intersections (CIs).
Company Info
Freelance
Freelancer.com is the largest freelancing and crowdsourcing marketplace in the world, connecting over 81 million employers and freelancers across more than 247 countries. Founded in 2009 and based in Sydney, Australia, the platform allows employers to post jobs while freelancers can bid on these projects. It is publicly traded on the Australian Securities Exchange under the ticker ASX:FLN. The platform supports a variety of work categories, including software development, writing, design, and marketing. Freelancer.com also offers contests for creative work, where employers can award prize money to winning entries. Users can choose from different membership plans, including free and paid subscriptions, which provide various benefits. The mobile app enhances project management and communication for users on the go. With a diverse customer base that includes individuals, small businesses, and large enterprises, Freelancer.com plays a significant role in the global online economy.
De Pere, Wisconsin, United States