Sami Shokrana, 𝗠𝗜𝗦𝗧 (𝗖𝗘) graduate has joined Massachusetts Institute of Technology (𝗠𝗜𝗧) as 𝐏𝐨𝐬𝐭𝐝𝐨𝐜𝐭𝐨𝐫𝐚𝐥 𝐑𝐞𝐬𝐞𝐚𝐫𝐜𝐡 𝐀𝐬𝐬𝐨𝐜𝐢𝐚𝐭𝐞 – (𝐑𝐞𝐬𝐞𝐚𝐫𝐜𝐡 𝐒𝐜𝐢𝐞𝐧𝐭𝐢𝐬𝐭) at Cambridge, Massachusetts, USA.
He graduated from the 𝐂𝐢𝐯𝐢𝐥 𝐄𝐧𝐠𝐢𝐧𝐞𝐞𝐫𝐢𝐧𝐠 (𝐂𝐄) department of Military Institute of Science and Technology (𝗠𝗜𝗦𝗧). He passed his HSC from 𝐃𝐡𝐚𝐤𝐚 𝐂𝐨𝐥𝐥𝐞𝐠𝐞 and SSC from 𝐈𝐝𝐞𝐚𝐥 𝐒𝐜𝐡𝐨𝐨𝐥 𝐚𝐧𝐝 𝐂𝐨𝐥𝐥𝐞𝐠𝐞, 𝐃𝐡𝐚𝐤𝐚.
He has worked as a 𝐆𝐫𝐚𝐝𝐮𝐚𝐭𝐞 𝐑𝐞𝐬𝐞𝐚𝐫𝐜𝐡 𝐀𝐬𝐬𝐢𝐬𝐭𝐚𝐧𝐭 at Michigan State University
(January 2018 – December 2022) under the following role –
1. 𝘗𝘳𝘦𝘥𝘪𝘤𝘵𝘪𝘯𝘨 𝘵𝘩𝘦 𝘧𝘭𝘰𝘸 𝘢𝘯𝘥 𝘯𝘶𝘵𝘳𝘪𝘦𝘯𝘵 𝘵𝘳𝘢𝘯𝘴𝘱𝘰𝘳𝘵 (𝘯𝘪𝘵𝘳𝘰𝘨𝘦𝘯 𝘢𝘯𝘥 𝘱𝘩𝘰𝘴𝘱𝘩𝘰𝘳𝘶𝘴) 𝘧𝘳𝘰𝘮 𝘢
𝘴𝘶𝘣𝘴𝘶𝘳𝘧𝘢𝘤𝘦-𝘥𝘳𝘢𝘪𝘯𝘦𝘥 𝘧𝘪𝘦𝘭𝘥 𝘶𝘴𝘪𝘯𝘨 𝘵𝘩𝘦 𝘙𝘰𝘰𝘵 𝘡𝘰𝘯𝘦 𝘞𝘢𝘵𝘦𝘳 𝘘𝘶𝘢𝘭𝘪𝘵𝘺 𝘔𝘰𝘥𝘦𝘭 (𝘙𝘡𝘞𝘘𝘔2)
2. 𝘋𝘦𝘵𝘦𝘳𝘮𝘪𝘯𝘪𝘯𝘨 𝘵𝘩𝘦 𝘦𝘧𝘧𝘪𝘤𝘪𝘦𝘯𝘤𝘺 𝘰𝘧 𝘤𝘰𝘯𝘵𝘳𝘰𝘭𝘭𝘦𝘥 𝘥𝘳𝘢𝘪𝘯𝘢𝘨𝘦 𝘪𝘯 𝘵𝘩𝘦 𝘧𝘢𝘵𝘦 𝘢𝘯𝘥 𝘵𝘳𝘢𝘯𝘴𝘱𝘰𝘳𝘵 𝘰𝘧
𝘯𝘶𝘵𝘳𝘪𝘦𝘯𝘵𝘴 (𝘯𝘪𝘵𝘳𝘢𝘵𝘦, 𝘱𝘩𝘰𝘴𝘱𝘩𝘰𝘳𝘶𝘴, 𝘦𝘵𝘤.) 𝘧𝘳𝘰𝘮 𝘴𝘶𝘣𝘴𝘶𝘳𝘧𝘢𝘤𝘦-𝘥𝘳𝘢𝘪𝘯𝘦𝘥 𝘸𝘢𝘵𝘦𝘳
3. 𝘔𝘦𝘢𝘴𝘶𝘳𝘦𝘮𝘦𝘯𝘵 𝘰𝘧 𝘴𝘰𝘪𝘭 𝘸𝘢𝘵𝘦𝘳 𝘤𝘩𝘢𝘳𝘢𝘤𝘵𝘦𝘳𝘪𝘴𝘵𝘪𝘤 𝘤𝘶𝘳𝘷𝘦𝘴 (𝘚𝘞𝘊𝘊) 𝘶𝘴𝘪𝘯𝘨 𝘏𝘠𝘗𝘙𝘖𝘗2
4. 𝘋𝘦𝘷𝘦𝘭𝘰𝘱𝘮𝘦𝘯𝘵 𝘰𝘧 𝘢 𝘥𝘳𝘢𝘪𝘯𝘢𝘨𝘦 𝘥𝘪𝘴𝘤𝘩𝘢𝘳𝘨𝘦 𝘦𝘲𝘶𝘢𝘵𝘪𝘰𝘯 𝘧𝘰𝘳 𝘢𝘯 𝘈𝘨𝘳𝘪𝘋𝘳𝘢𝘪𝘯 𝘮𝘦𝘵𝘢𝘭-𝘦𝘥𝘨𝘦
𝘴𝘩𝘢𝘳𝘱-𝘤𝘳𝘦𝘴𝘵 45° 𝘝-𝘯𝘰𝘵𝘤𝘩 𝘸𝘦𝘪𝘳
5. 𝘈𝘯𝘢𝘭𝘺𝘻𝘪𝘯𝘨 𝘸𝘢𝘵𝘦𝘳 𝘲𝘶𝘢𝘭𝘪𝘵𝘺 (𝘥𝘪𝘴𝘴𝘰𝘭𝘷𝘦𝘥 𝘳𝘦𝘢𝘤𝘵𝘪𝘷𝘦 𝘱𝘩𝘰𝘴𝘱𝘩𝘰𝘳𝘶𝘴, 𝘵𝘰𝘵𝘢𝘭 𝘱𝘩𝘰𝘴𝘱𝘩𝘰𝘳𝘶𝘴,
𝘢𝘯𝘥 𝘯𝘪𝘵𝘳𝘢𝘵𝘦-𝘯𝘪𝘵𝘳𝘰𝘨𝘦𝘯) 𝘶𝘴𝘪𝘯𝘨 𝘎𝘢𝘭𝘭𝘦𝘳𝘺 𝘥𝘪𝘴𝘤𝘳𝘦𝘵𝘦 𝘢𝘯𝘢𝘭𝘺𝘻𝘦𝘳
6. 𝘌𝘷𝘢𝘭𝘶𝘢𝘵𝘪𝘯𝘨 𝘵𝘩𝘦 𝘱𝘦𝘳𝘧𝘰𝘳𝘮𝘢𝘯𝘤𝘦 𝘰𝘧 𝘢 𝘴𝘢𝘵𝘶𝘳𝘢𝘵𝘦𝘥 𝘣𝘶𝘧𝘧𝘦𝘳 𝘪𝘯 𝘳𝘦𝘮𝘰𝘷𝘪𝘯𝘨 𝘯𝘶𝘵𝘳𝘪𝘦𝘯𝘵𝘴 𝘢𝘯𝘥
𝘣𝘢𝘤𝘵𝘦𝘳𝘪𝘢 (𝘦.𝘤𝘰𝘭𝘪) 𝘧𝘳𝘰𝘮 𝘢 𝘴𝘶𝘣𝘴𝘶𝘳𝘧𝘢𝘤𝘦-𝘥𝘳𝘢𝘪𝘯𝘦𝘥 𝘧𝘪𝘦𝘭𝘥.
He worked as a 𝐆𝐫𝐚𝐝𝐮𝐚𝐭𝐞 𝐑𝐞𝐬𝐞𝐚𝐫𝐜𝐡 𝐀𝐬𝐬𝐢𝐬𝐭𝐚𝐧𝐭 at South Dakota State University at Brookings, South Dakota, USA(August 2016 – December 2017) on the following role –
1. 𝘗𝘳𝘦𝘥𝘪𝘤𝘵𝘪𝘯𝘨 𝘵𝘩𝘦 𝘪𝘮𝘱𝘢𝘤𝘵𝘴 𝘰𝘧 𝘸𝘰𝘰𝘥𝘤𝘩𝘪𝘱 𝘣𝘪𝘰𝘳𝘦𝘢𝘤𝘵𝘰𝘳𝘴 𝘪𝘯 𝘳𝘦𝘥𝘶𝘤𝘪𝘯𝘨 𝘯𝘶𝘵𝘳𝘪𝘦𝘯𝘵𝘴 𝘭𝘰𝘢𝘥 𝘪𝘯
𝘢 𝘚𝘰𝘶𝘵𝘩 𝘋𝘢𝘬𝘰𝘵𝘢 𝘸𝘢𝘵𝘦𝘳𝘴𝘩𝘦𝘥 𝘶𝘴𝘪𝘯𝘨 𝘵𝘩𝘦 𝘴𝘰𝘪𝘭 𝘢𝘯𝘥 𝘸𝘢𝘵𝘦𝘳 𝘢𝘴𝘴𝘦𝘴𝘴𝘮𝘦𝘯𝘵 𝘵𝘰𝘰𝘭 (𝘚𝘞𝘈𝘛)
2. 𝘗𝘦𝘳𝘧𝘰𝘳𝘮𝘢𝘯𝘤𝘦 𝘦𝘷𝘢𝘭𝘶𝘢𝘵𝘪𝘰𝘯 𝘰𝘧 𝘢 𝘯𝘶𝘮𝘣𝘦𝘳 𝘰𝘧 𝘭𝘢𝘣-𝘴𝘤𝘢𝘭𝘦 𝘣𝘪𝘰𝘳𝘦𝘢𝘤𝘵𝘰𝘳𝘴 𝘣𝘢𝘴𝘦𝘥 𝘰𝘯 𝘵𝘩𝘦𝘪𝘳
𝘳𝘦𝘮𝘰𝘷𝘢𝘭 𝘦𝘧𝘧𝘪𝘤𝘪𝘦𝘯𝘤𝘺 𝘰𝘧 𝘯𝘪𝘵𝘳𝘢𝘵𝘦-𝘯𝘪𝘵𝘳𝘰𝘨𝘦𝘯, 𝘱𝘩𝘰𝘴𝘱𝘩𝘰𝘳𝘶𝘴, 𝘢𝘯𝘥 𝘦.𝘤𝘰𝘭𝘪 𝘣𝘢𝘤𝘵𝘦𝘳𝘪𝘢 𝘧𝘳𝘰𝘮
𝘸𝘢𝘵𝘦𝘳.
3. 𝘈𝘴𝘴𝘦𝘴𝘴𝘪𝘯𝘨 𝘵𝘩𝘦 𝘪𝘮𝘱𝘢𝘤𝘵𝘴 𝘰𝘧 𝘳𝘢𝘪𝘯𝘧𝘢𝘭𝘭 𝘪𝘯𝘵𝘦𝘯𝘴𝘪𝘵𝘺 𝘢𝘯𝘥 𝘥𝘶𝘳𝘢𝘵𝘪𝘰𝘯 𝘰𝘯 𝘵𝘩𝘦 𝘱𝘦𝘳𝘧𝘰𝘳𝘮𝘢𝘯𝘤𝘦
𝘰𝘧 𝘧𝘪𝘦𝘭𝘥-𝘴𝘤𝘢𝘭𝘦 𝘥𝘦𝘯𝘪𝘵𝘳𝘪𝘧𝘪𝘤𝘢𝘵𝘪𝘰𝘯 (𝘸𝘰𝘰𝘥𝘤𝘩𝘪𝘱) 𝘣𝘪𝘰𝘳𝘦𝘢𝘤𝘵𝘰𝘳𝘴
4. 𝘋𝘦𝘵𝘦𝘳𝘮𝘪𝘯𝘪𝘯𝘨 𝘵𝘩𝘦 𝘪𝘮𝘱𝘢𝘤𝘵𝘴 𝘰𝘧 𝘢𝘨𝘳𝘪𝘤𝘶𝘭𝘵𝘶𝘳𝘢𝘭 𝘵𝘪𝘭𝘦 𝘥𝘳𝘢𝘪𝘯𝘢𝘨𝘦 𝘰𝘯 𝘥𝘰𝘸𝘯𝘴𝘵𝘳𝘦𝘢𝘮 𝘧𝘭𝘰𝘰𝘥𝘪𝘯𝘨
𝘢𝘯𝘥 𝘱𝘳𝘰𝘣𝘢𝘣𝘭𝘦 𝘧𝘭𝘰𝘰𝘥 𝘢𝘵𝘵𝘦𝘯𝘶𝘢𝘵𝘪𝘰𝘯 𝘮𝘦𝘢𝘴𝘶𝘳𝘦𝘴
5. 𝘊𝘰𝘭𝘭𝘦𝘤𝘵𝘪𝘰𝘯, 𝘴𝘢𝘮𝘱𝘭𝘪𝘯𝘨, 𝘢𝘯𝘥 𝘢𝘯𝘢𝘭𝘺𝘴𝘪𝘴 𝘰𝘧 𝘸𝘢𝘵𝘦𝘳 𝘴𝘢𝘮𝘱𝘭𝘦𝘴 𝘧𝘳𝘰𝘮 𝘸𝘰𝘰𝘥𝘤𝘩𝘪𝘱
𝘣𝘪𝘰𝘳𝘦𝘢𝘤𝘵𝘰𝘳𝘴
He worked at 𝐈𝐧𝐬𝐭𝐢𝐭𝐮𝐭𝐞 𝐨𝐟 𝐔𝐫𝐛𝐚𝐧 𝐖𝐚𝐭𝐞𝐫 𝐌𝐚𝐧𝐚𝐠𝐞𝐦𝐞𝐧𝐭, Technische Universität Dresden
at Dresden Area, Germany. (October 2012 – January 2015) on the following role –
• 𝘓𝘰𝘯𝘨-𝘵𝘦𝘳𝘮 𝘢𝘯𝘥 𝘭𝘢𝘳𝘨𝘦-𝘴𝘤𝘢𝘭𝘦 𝘢𝘯𝘢𝘭𝘺𝘴𝘦𝘴 𝘰𝘯 𝘵𝘩𝘦 𝘧𝘢𝘵𝘦 𝘢𝘯𝘥 𝘵𝘳𝘢𝘯𝘴𝘱𝘰𝘳𝘵 𝘰𝘧 𝘩𝘦𝘢𝘷𝘺 𝘮𝘦𝘵𝘢𝘭
𝘤𝘰𝘯𝘤𝘦𝘯𝘵𝘳𝘢𝘵𝘪𝘰𝘯 𝘸𝘪𝘵𝘩 𝘳𝘪𝘷𝘦𝘳 𝘥𝘪𝘴𝘤𝘩𝘢𝘳𝘨𝘦 𝘶𝘴𝘪𝘯𝘨 𝘙
• 𝘈𝘱𝘱𝘭𝘪𝘤𝘢𝘵𝘪𝘰𝘯 𝘰𝘧 𝘘𝘎𝘐𝘚 𝘵𝘰 𝘪𝘥𝘦𝘯𝘵𝘪𝘧𝘺 𝘸𝘢𝘵𝘦𝘳𝘴𝘩𝘦𝘥 𝘤𝘩𝘢𝘳𝘢𝘤𝘵𝘦𝘳𝘪𝘴𝘵𝘪𝘤𝘴
• 𝘊𝘰𝘳𝘳𝘦𝘭𝘢𝘵𝘪𝘯𝘨 𝘸𝘢𝘵𝘦𝘳𝘴𝘩𝘦𝘥 𝘴𝘤𝘢𝘭𝘦 𝘨𝘦𝘰𝘱𝘩𝘺𝘴𝘪𝘤𝘢𝘭 𝘢𝘵𝘵𝘳𝘪𝘣𝘶𝘵𝘦𝘴 𝘸𝘪𝘵𝘩 𝘩𝘦𝘢𝘷𝘺 𝘮𝘦𝘵𝘢𝘭
𝘱𝘳𝘰𝘱𝘦𝘳𝘵𝘪𝘦𝘴
• 𝘓𝘪𝘯𝘬𝘪𝘯𝘨 𝘙 𝘸𝘪𝘵𝘩 𝘔𝘚 𝘈𝘤𝘤𝘦𝘴𝘴 𝘋𝘢𝘵𝘢𝘣𝘢𝘴𝘦 𝘧𝘰𝘳 𝘢𝘶𝘵𝘰𝘮𝘢𝘵𝘪𝘤 𝘦𝘹𝘵𝘳𝘢𝘤𝘵𝘪𝘰𝘯, 𝘲𝘶𝘢𝘭𝘪𝘵𝘺 𝘤𝘰𝘯𝘵𝘳𝘰𝘭
𝘢𝘯𝘥 𝘱𝘰𝘴𝘵-𝘱𝘳𝘰𝘤𝘦𝘴𝘴𝘪𝘯𝘨 𝘰𝘧 𝘸𝘢𝘵𝘦𝘳 𝘲𝘶𝘢𝘭𝘪𝘵𝘺 𝘥𝘢𝘵𝘢 𝘧𝘳𝘰𝘮 𝘭𝘰𝘯𝘨-𝘵𝘦𝘳𝘮 𝘳𝘦𝘱𝘰𝘴𝘪𝘵𝘰𝘳𝘺
• 𝘋𝘦𝘷𝘦𝘭𝘰𝘱𝘪𝘯𝘨 𝘢𝘯 𝘙-𝘣𝘢𝘴𝘦𝘥 𝘷𝘪𝘴𝘶𝘢𝘭𝘪𝘻𝘢𝘵𝘪𝘰𝘯 𝘢𝘭𝘨𝘰𝘳𝘪𝘵𝘩𝘮 𝘵𝘰 𝘦𝘷𝘢𝘭𝘶𝘢𝘵𝘦 𝘵𝘩𝘦 𝘥𝘪𝘴𝘵𝘳𝘪𝘣𝘶𝘵𝘪𝘰𝘯𝘢𝘭
𝘱𝘳𝘰𝘱𝘦𝘳𝘵𝘪𝘦𝘴 𝘰𝘧 𝘩𝘦𝘢𝘷𝘺 𝘮𝘦𝘵𝘢𝘭 𝘤𝘰𝘯𝘤𝘦𝘯𝘵𝘳𝘢𝘵𝘪𝘰𝘯𝘴
• 𝘗𝘳𝘪𝘯𝘤𝘪𝘱𝘢𝘭 𝘊𝘰𝘮𝘱𝘰𝘯𝘦𝘯𝘵 𝘈𝘯𝘢𝘭𝘺𝘴𝘪𝘴 𝘵𝘰 𝘦𝘷𝘢𝘭𝘶𝘢𝘵𝘦 𝘵𝘩𝘦 𝘮𝘶𝘭𝘵𝘪𝘷𝘢𝘳𝘪𝘢𝘵𝘦 𝘱𝘳𝘰𝘱𝘦𝘳𝘵𝘪𝘦𝘴 𝘰𝘧 𝘩𝘦𝘢𝘷𝘺
𝘮𝘦𝘵𝘢𝘭𝘴
• 𝘚𝘵𝘢𝘵𝘪𝘴𝘵𝘪𝘤𝘢𝘭 𝘢𝘯𝘢𝘭𝘺𝘴𝘪𝘴 (𝘗𝘳𝘪𝘯𝘤𝘪𝘱𝘢𝘭 𝘊𝘰𝘮𝘱𝘰𝘯𝘦𝘯𝘵 𝘈𝘯𝘢𝘭𝘺𝘴𝘪𝘴) 𝘰𝘧 𝘮𝘪𝘤𝘳𝘰 𝘱𝘰𝘭𝘭𝘶𝘵𝘢𝘯𝘵
𝘤𝘰𝘯𝘤𝘦𝘯𝘵𝘳𝘢𝘵𝘪𝘰𝘯𝘴 𝘪𝘯 𝘚𝘰𝘶𝘵𝘩𝘦𝘳𝘯 𝘚𝘢𝘹𝘰𝘯 𝘳𝘪𝘷𝘦𝘳 𝘤𝘢𝘵𝘤𝘩𝘮𝘦𝘯𝘵𝘴 𝘶𝘴𝘪𝘯𝘨 𝘙 𝘢𝘯𝘥 𝘚𝘗𝘚𝘚
• 𝘋𝘦𝘵𝘦𝘳𝘮𝘪𝘯𝘪𝘴𝘵𝘪𝘤 𝘢𝘯𝘢𝘭𝘺𝘴𝘪𝘴 (𝘔𝘖𝘕𝘌𝘙𝘐𝘚 𝘔𝘰𝘥𝘦𝘭) 𝘰𝘧 𝘮𝘪𝘤𝘳𝘰 𝘱𝘰𝘭𝘭𝘶𝘵𝘢𝘯𝘵 𝘦𝘮𝘪𝘴𝘴𝘪𝘰𝘯 𝘣𝘢𝘴𝘦𝘥
𝘰𝘯 𝘣𝘰𝘵𝘩 𝘱𝘰𝘪𝘯𝘵 𝘢𝘯𝘥 𝘥𝘪𝘧𝘧𝘶𝘴𝘦 𝘱𝘢𝘵𝘩𝘸𝘢𝘺𝘴.
He worked as 𝐀𝐬𝐬𝐢𝐬𝐭𝐚𝐧𝐭 𝐒𝐭𝐫𝐮𝐜𝐭𝐮𝐫𝐚𝐥 𝐄𝐧𝐠𝐢𝐧𝐞𝐞𝐫 at 𝗦𝘁𝗮𝗿 𝗘𝗹𝗲𝗰𝘁𝗿𝗼 𝗖𝗶𝘃𝗶𝗹 𝗧𝗲𝗰𝗵 𝗟𝘁𝗱. (April 2012 – October 2012) on the following area–
• 𝘗𝘳𝘦𝘱𝘢𝘳𝘪𝘯𝘨 𝘉𝘪𝘭𝘭 𝘰𝘧 𝘘𝘶𝘢𝘯𝘵𝘪𝘵𝘺 (𝘉𝘖𝘘) 𝘰𝘧 𝘰𝘯-𝘨𝘰𝘪𝘯𝘨 𝘱𝘳𝘰𝘫𝘦𝘤𝘵𝘴
• 𝘋𝘦𝘴𝘪𝘨𝘯 𝘰𝘧 𝘤𝘰𝘯𝘤𝘳𝘦𝘵𝘦 𝘴𝘵𝘳𝘶𝘤𝘵𝘶𝘳𝘦𝘴
• 𝘚𝘪𝘵𝘦 𝘴𝘶𝘱𝘦𝘳𝘷𝘪𝘴𝘪𝘰𝘯.
He worked as an Intern at Advanced Development Technologies Ltd from December 2010 – January 2011 in the following role –
• 𝘊𝘰𝘮𝘱𝘳𝘦𝘩𝘦𝘯𝘥𝘪𝘯𝘨 𝘴𝘵𝘳𝘶𝘤𝘵𝘶𝘳𝘢𝘭 𝘥𝘳𝘢𝘸𝘪𝘯𝘨𝘴
• 𝘔𝘰𝘯𝘪𝘵𝘰𝘳𝘪𝘯𝘨 𝘤𝘰𝘯𝘴𝘵𝘳𝘶𝘤𝘵𝘪𝘰𝘯𝘴 𝘰𝘧 𝘤𝘰𝘯𝘤𝘳𝘦𝘵𝘦 𝘴𝘵𝘳𝘶𝘤𝘵𝘶𝘳𝘦𝘴
•𝘗𝘳𝘦𝘱𝘢𝘳𝘪𝘯𝘨 𝘉𝘪𝘭𝘭 𝘰𝘧 𝘘𝘶𝘢𝘯𝘵𝘪𝘵𝘪𝘦𝘴,
𝘴𝘶𝘳𝘷𝘦𝘺𝘪𝘯𝘨, 𝘱𝘪𝘭𝘪𝘯𝘨, 𝘴𝘭𝘢𝘣 𝘤𝘢𝘴𝘵𝘪𝘯𝘨, 𝘣𝘢𝘳 𝘱𝘭𝘢𝘤𝘦𝘮𝘦𝘯𝘵 𝘦𝘵𝘤.
His words regarding his professional experiences and area of interest,
“𝐼 𝑎𝑚 𝑎 𝑤𝑎𝑡𝑒𝑟 𝑟𝑒𝑠𝑜𝑢𝑟𝑐𝑒𝑠 𝑒𝑛𝑔𝑖𝑛𝑒𝑒𝑟 𝑤𝑖𝑡ℎ 𝑚𝑜𝑟𝑒 𝑡ℎ𝑎𝑛 𝑓𝑜𝑢𝑟 𝑦𝑒𝑎𝑟𝑠 𝑜𝑓 𝑒𝑥𝑝𝑒𝑟𝑖𝑒𝑛𝑐𝑒 𝑖𝑛 ℎ𝑦𝑑𝑟𝑜𝑙𝑜𝑔𝑖𝑐 𝑎𝑛𝑑 𝑤𝑎𝑡𝑒𝑟 𝑞𝑢𝑎𝑙𝑖𝑡𝑦 𝑚𝑜𝑑𝑒𝑙𝑖𝑛𝑔. 𝐸𝑥𝑝𝑒𝑟𝑖𝑒𝑛𝑐𝑒𝑑 𝑖𝑛 𝑓𝑖𝑒𝑙𝑑 𝑤𝑜𝑟𝑘, 𝑤𝑎𝑡𝑒𝑟 𝑞𝑢𝑎𝑙𝑖𝑡𝑦 𝑑𝑎𝑡𝑎 𝑚𝑎𝑛𝑎𝑔𝑒𝑚𝑒𝑛𝑡, 𝑎𝑛𝑑 𝑎𝑛𝑎𝑙𝑦𝑠𝑖𝑠.
𝑇ℎ𝑒 𝑜𝑏𝑗𝑒𝑐𝑡𝑖𝑣𝑒 𝑜𝑓 𝑚𝑦 𝑑𝑜𝑐𝑡𝑜𝑟𝑎𝑙 𝑑𝑖𝑠𝑠𝑒𝑟𝑡𝑎𝑡𝑖𝑜𝑛 𝑤𝑎𝑠 𝑡𝑜 𝑒𝑣𝑎𝑙𝑢𝑎𝑡𝑒 𝑡ℎ𝑒 𝑒𝑓𝑓𝑒𝑐𝑡 𝑜𝑓 𝑤𝑒𝑖𝑟 𝑚𝑎𝑛𝑎𝑔𝑒𝑚𝑒𝑛𝑡 𝑜𝑓 𝑎 𝑐𝑜𝑛𝑡𝑟𝑜𝑙𝑙𝑒𝑑 𝑑𝑟𝑎𝑖𝑛𝑎𝑔𝑒 𝑠𝑦𝑠𝑡𝑒𝑚 𝑜𝑛 𝑠𝑢𝑏𝑠𝑢𝑟𝑓𝑎𝑐𝑒 𝑑𝑟𝑎𝑖𝑛𝑎𝑔𝑒 𝑑𝑖𝑠𝑐ℎ𝑎𝑟𝑔𝑒 𝑖𝑛 𝑎 𝑐𝑙𝑖𝑚𝑎𝑡𝑒 𝑐ℎ𝑎𝑛𝑔𝑒 𝑠𝑐𝑒𝑛𝑎𝑟𝑖𝑜. 𝑃𝑟𝑒𝑣𝑖𝑜𝑢𝑠𝑙𝑦, 𝐼 𝑤𝑜𝑟𝑘𝑒𝑑 𝑜𝑛 𝑎 𝑚𝑒𝑡ℎ𝑜𝑑𝑜𝑙𝑜𝑔𝑦 𝑡𝑜 𝑎𝑐𝑐𝑢𝑟𝑎𝑡𝑒𝑙𝑦 𝑑𝑒𝑣𝑒𝑙𝑜𝑝 𝑡ℎ𝑒 𝑠𝑜𝑖𝑙 𝑤𝑎𝑡𝑒𝑟 𝑐ℎ𝑎𝑟𝑎𝑐𝑡𝑒𝑟𝑖𝑠𝑡𝑖𝑐 𝑐𝑢𝑟𝑣𝑒𝑠 (𝑆𝑊𝐶𝐶) 𝑓𝑜𝑟 𝑑𝑖𝑓𝑓𝑒𝑟𝑒𝑛𝑡 𝑠𝑜𝑖𝑙 𝑡𝑦𝑝𝑒𝑠 𝑢𝑠𝑖𝑛𝑔 𝑡ℎ𝑒 𝐻𝑌𝑃𝑅𝑂𝑃2 𝑖𝑛𝑠𝑡𝑟𝑢𝑚𝑒𝑛𝑡.
𝐴𝑑𝑑𝑖𝑡𝑖𝑜𝑛𝑎𝑙𝑙𝑦, 𝐼 ℎ𝑎𝑣𝑒 𝑐𝑎𝑙𝑖𝑏𝑟𝑎𝑡𝑒𝑑 𝑎𝑛 𝐴𝑔𝑟𝑖𝐷𝑟𝑎𝑖𝑛 𝑚𝑒𝑡𝑎𝑙-𝑒𝑑𝑔𝑒 𝑠ℎ𝑎𝑟𝑝-𝑐𝑟𝑒𝑠𝑡 45° 𝑉-𝑛𝑜𝑡𝑐ℎ 𝑤𝑒𝑖𝑟 𝑖𝑛𝑠𝑖𝑑𝑒 𝑎 𝑐𝑜𝑛𝑡𝑟𝑜𝑙 𝑠𝑡𝑟𝑢𝑐𝑡𝑢𝑟𝑒 𝑡𝑜 𝑑𝑒𝑣𝑒𝑙𝑜𝑝 𝑎 𝑠𝑡𝑎𝑔𝑒-𝑑𝑖𝑠𝑐ℎ𝑎𝑟𝑔𝑒 𝑟𝑒𝑙𝑎𝑡𝑖𝑜𝑛𝑠ℎ𝑖𝑝 𝑢𝑛𝑑𝑒𝑟 ℎ𝑖𝑔ℎ 𝑓𝑙𝑜𝑤. 𝐹𝑟𝑒𝑞𝑢𝑒𝑛𝑡 𝑓𝑖𝑒𝑙𝑑 𝑣𝑖𝑠𝑖𝑡𝑠 𝑓𝑜𝑟 𝑖𝑛𝑠𝑡𝑟𝑢𝑚𝑒𝑛𝑡𝑎𝑡𝑖𝑜𝑛 𝑎𝑛𝑑 𝑤𝑎𝑡𝑒𝑟 𝑠𝑎𝑚𝑝𝑙𝑒 𝑐𝑜𝑙𝑙𝑒𝑐𝑡𝑖𝑜𝑛 𝑎𝑟𝑒 𝑎𝑛 𝑖𝑛𝑡𝑒𝑔𝑟𝑎𝑡𝑒𝑑 𝑝𝑎𝑟𝑡 𝑜𝑓 𝑚𝑦 𝑤𝑜𝑟𝑘. 𝐼 ℎ𝑎𝑣𝑒 𝑔𝑎𝑖𝑛𝑒𝑑 𝑒𝑥𝑝𝑒𝑟𝑡𝑖𝑠𝑒 𝑖𝑛 𝑎𝑛𝑎𝑙𝑦𝑧𝑖𝑛𝑔 𝑤𝑎𝑡𝑒𝑟 𝑠𝑎𝑚𝑝𝑙𝑒𝑠 𝑓𝑜𝑟 𝑛𝑖𝑡𝑟𝑎𝑡𝑒-𝑛𝑖𝑡𝑟𝑜𝑔𝑒𝑛, 𝑑𝑖𝑠𝑠𝑜𝑙𝑣𝑒𝑑 𝑟𝑒𝑎𝑐𝑡𝑖𝑣𝑒 𝑝ℎ𝑜𝑠𝑝ℎ𝑜𝑟𝑢𝑠, 𝑎𝑛𝑑 𝑡𝑜𝑡𝑎𝑙 𝑝ℎ𝑜𝑠𝑝ℎ𝑜𝑟𝑢𝑠 𝑏𝑦 𝑢𝑠𝑖𝑛𝑔 𝐺𝑎𝑙𝑙𝑒𝑟𝑦 𝑑𝑖𝑠𝑐𝑟𝑒𝑡𝑒 𝑎𝑛𝑎𝑙𝑦𝑧𝑒𝑟. 𝐼 𝑎𝑚 𝑎𝑙𝑠𝑜 𝑐𝑜𝑚𝑓𝑜𝑟𝑡𝑎𝑏𝑙𝑒 𝑤𝑜𝑟𝑘𝑖𝑛𝑔 𝑤𝑖𝑡ℎ ℎ𝑖𝑔ℎ-𝑟𝑒𝑠𝑜𝑙𝑢𝑡𝑖𝑜𝑛 𝑙𝑜𝑛𝑔-𝑡𝑒𝑟𝑚 𝑑𝑎𝑡𝑎 𝑎𝑛𝑑 𝑝𝑒𝑟𝑓𝑜𝑟𝑚𝑖𝑛𝑔 𝑑𝑖𝑓𝑓𝑒𝑟𝑒𝑛𝑡 𝑠𝑡𝑎𝑡𝑖𝑠𝑡𝑖𝑐𝑎𝑙 𝑎𝑛𝑎𝑙𝑦𝑠𝑒𝑠 𝑜𝑛 𝑡ℎ𝑜𝑠𝑒 𝑑𝑎𝑡𝑎 𝑠𝑒𝑡𝑠.”
He has accomplished 𝐏𝐡.𝐃. Degree from two of the top-ranked public universities in the USA simultaneously.
He started his 𝐏𝐡.𝐃. on 𝐌𝐞𝐜𝐡𝐚𝐧𝐢𝐜𝐚𝐥
𝐄𝐧𝐠𝐢𝐧𝐞𝐞𝐫𝐢𝐧𝐠 𝐚𝐧𝐝 𝐁𝐢𝐨𝐬𝐲𝐬𝐭𝐞𝐦𝐬 (2016 – 2017) from 𝗦𝗼𝘂𝘁𝗵 𝗗𝗮𝗸𝗼𝘁𝗮 𝗦𝘁𝗮𝘁𝗲 𝗨𝗻𝗶𝘃𝗲𝗿𝘀𝗶𝘁𝘆, USA. He worked there for a year (2016 – 2017).
His Research Area includes the following –
1. 𝘎𝘳𝘰𝘶𝘯𝘥 𝘞𝘢𝘵𝘦𝘳 𝘌𝘯𝘨𝘪𝘯𝘦𝘦𝘳𝘪𝘯𝘨 𝘪𝘯 𝘈𝘨𝘳𝘪𝘤𝘶𝘭𝘵𝘶𝘳𝘦 (𝘈𝘉𝘌-733)
2. 𝘌𝘯𝘷𝘪𝘳𝘰𝘯𝘮𝘦𝘯𝘵𝘢𝘭 𝘚𝘰𝘪𝘭 𝘗𝘩𝘺𝘴𝘪𝘤𝘴 (𝘗𝘚-743)
3. 𝘎𝘳𝘢𝘥𝘶𝘢𝘵𝘦 𝘚𝘦𝘮𝘪𝘯𝘢𝘳 (𝘈𝘉𝘔𝘌-790) 4. 𝘚𝘵𝘢𝘵𝘪𝘴𝘵𝘪𝘤𝘢𝘭 𝘔𝘦𝘵𝘩𝘰𝘥𝘴 𝘐𝘐 (𝘚𝘛𝘈𝘛-541)
4. 𝘚𝘵𝘢𝘵𝘪𝘴𝘵𝘪𝘤𝘢𝘭 𝘔𝘦𝘵𝘩𝘰𝘥𝘴 𝘐𝘐 (𝘚𝘛𝘈𝘛-541)
5. 𝘚𝘵𝘢𝘵𝘪𝘴𝘵𝘪𝘤𝘢𝘭 𝘗𝘳𝘰𝘨𝘳𝘢𝘮𝘮𝘪𝘯𝘨 (𝘚𝘛𝘈𝘛-700)
6. 𝘐𝘯𝘴𝘵𝘳𝘶𝘮𝘦𝘯𝘵𝘢𝘵𝘪𝘰𝘯 (𝘈𝘉𝘌-763)
7. 𝘊𝘰𝘮𝘱𝘶𝘵𝘦𝘳 𝘔𝘰𝘥𝘦𝘭𝘴 𝘪𝘯 𝘞𝘢𝘵𝘦𝘳 𝘙𝘦𝘴𝘰𝘶𝘳𝘤𝘦𝘴 𝘔𝘢𝘯𝘢𝘨𝘦𝘮𝘦𝘯𝘵 (𝘈𝘉𝘌-738)
8. 𝘙𝘦𝘴𝘦𝘢𝘳𝘤𝘩 𝘙𝘦𝘨𝘶𝘭𝘢𝘵𝘪𝘰𝘯𝘴 𝘊𝘰𝘮𝘱𝘭𝘪𝘢𝘯𝘤𝘦 (𝘎𝘚𝘙-601)
He continued his 𝐏𝐡.𝐃. destination from the year 2018 at 𝗠𝗶𝗰𝗵𝗶𝗴𝗮𝗻 𝗦𝘁𝗮𝘁𝗲 𝗨𝗻𝗶𝘃𝗲𝗿𝘀𝗶𝘁𝘆. He obtained his 𝐏𝐡.𝐃. Degree on 𝐁𝐢𝐨𝐬𝐲𝐬𝐭𝐞𝐦𝐬 𝐄𝐧𝐠𝐢𝐧𝐞𝐞𝐫𝐢𝐧𝐠 (January 2018 – December 2022) from 𝗠𝗶𝗰𝗵𝗶𝗴𝗮𝗻 𝗦𝘁𝗮𝘁𝗲 𝗨𝗻𝗶𝘃𝗲𝗿𝘀𝗶𝘁𝘆.
His Research Area includes the following –
1. 𝘌𝘹𝘱𝘦𝘳𝘪𝘮𝘦𝘯𝘵 𝘢𝘯𝘥 𝘐𝘯𝘴𝘵𝘳𝘶𝘮𝘦𝘯𝘵𝘢𝘵𝘪𝘰𝘯 𝘉𝘪𝘰-𝘌𝘯𝘨𝘪𝘯𝘦𝘦𝘳𝘪𝘯𝘨 (𝘉𝘌-815)
2. 𝘚𝘰𝘪𝘭 𝘊𝘩𝘦𝘮𝘪𝘴𝘵𝘳𝘺 (𝘊𝘚𝘚-850)
3. 𝘍𝘰𝘶𝘯𝘥𝘢𝘵𝘪𝘰𝘯𝘴 𝘪𝘯 𝘊𝘩𝘦𝘮𝘪𝘤𝘢𝘭 𝘌𝘯𝘨𝘪𝘯𝘦𝘦𝘳𝘪𝘯𝘨-𝘭 (𝘊𝘏𝘌-804)
4. 𝘋𝘺𝘯𝘢𝘮𝘪𝘤𝘴 𝘰𝘧 𝘌𝘯𝘷𝘪𝘳𝘰𝘯𝘮𝘦𝘯𝘵𝘢𝘭 𝘚𝘺𝘴𝘵𝘦𝘮𝘴 (𝘌𝘕𝘌-801)
5. 𝘚𝘵𝘳𝘦𝘢𝘮 𝘌𝘤𝘰𝘭𝘰𝘨𝘺 (𝘍𝘞 420)
6. 𝘚𝘵𝘢𝘵𝘪𝘴𝘵𝘪𝘤𝘢𝘭 𝘔𝘦𝘵𝘩𝘰𝘥𝘴 𝘐 (𝘚𝘛𝘛 863)
7. 𝘙𝘦𝘴𝘦𝘢𝘳𝘤𝘩 𝘔𝘦𝘵𝘩𝘰𝘥𝘴 𝘪𝘯 𝘉𝘪𝘰𝘴𝘺𝘴𝘵𝘦𝘮𝘴 𝘌𝘯𝘨𝘪𝘯𝘦𝘦𝘳𝘪𝘯𝘨 (𝘉𝘌 820)
8. 𝘔𝘰𝘥𝘦𝘭𝘭𝘪𝘯𝘨 𝘔𝘦𝘵𝘩𝘰𝘥𝘴 𝘪𝘯 𝘉𝘪𝘰𝘴𝘺𝘴𝘵𝘦𝘮𝘴
9. 𝘉𝘪𝘰𝘴𝘺𝘴𝘵𝘦𝘮𝘴 𝘌𝘯𝘨𝘪𝘯𝘦𝘦𝘳𝘪𝘯𝘨 𝘚𝘦𝘮𝘪𝘯𝘢𝘳 (𝘉𝘌 892)
10. 𝘛𝘦𝘤𝘩𝘯𝘪𝘤𝘢𝘭 𝘞𝘳𝘪𝘵𝘪𝘯𝘨 𝘧𝘰𝘳 𝘌𝘯𝘨𝘪𝘯𝘦𝘦𝘳𝘴 𝘢𝘯𝘥 𝘚𝘤𝘪𝘦𝘯𝘵𝘪𝘴𝘵𝘴 (𝘌𝘎𝘙 891)
11. 𝘍𝘰𝘶𝘯𝘥𝘢𝘵𝘪𝘰𝘯𝘴 𝘪𝘯 𝘊𝘩𝘦𝘮𝘪𝘤𝘢𝘭 𝘌𝘯𝘨𝘪𝘯𝘦𝘦𝘳𝘪𝘯𝘨 (𝘊𝘏𝘌 805)
He completed his 𝐌.𝐒𝐜. 𝐄𝐧𝐠𝐢𝐧𝐞𝐞𝐫𝐢𝐧𝐠 in 𝐇𝐲𝐝𝐫𝐨 𝐒𝐜𝐢𝐞𝐧𝐜𝐞 𝐚𝐧𝐝 𝐄𝐧𝐠𝐢𝐧𝐞𝐞𝐫𝐢𝐧𝐠 at 𝗧𝗲𝗰𝗵𝗻𝗶𝘀𝗰𝗵𝗲 𝗨𝗻𝗶𝘃𝗲𝗿𝘀𝗶𝘁𝗮̈𝘁 𝗗𝗿𝗲𝘀𝗱𝗲𝗻. His Research Area includes the following-
– 𝘊𝘭𝘪𝘮𝘢𝘵𝘰𝘭𝘰𝘨𝘺 𝘢𝘯𝘥 𝘏𝘺𝘥𝘳𝘭𝘰𝘨𝘺
– 𝘚𝘵𝘢𝘵𝘪𝘴𝘵𝘪𝘤𝘴
– 𝘎𝘦𝘰𝘥𝘦𝘴𝘺
– 𝘚𝘰𝘪𝘭𝘴
– 𝘚𝘵𝘶𝘥𝘺 𝘗𝘳𝘰𝘫𝘦𝘤𝘵 𝘐𝘞𝘙𝘔
– 𝘌𝘤𝘰𝘭𝘰𝘨𝘺
– 𝘏𝘺𝘥𝘳𝘰𝘤𝘩𝘦𝘮𝘪𝘴𝘵𝘳𝘺
– 𝘐𝘯𝘵𝘦𝘨𝘳𝘢𝘵𝘦𝘥 𝘞𝘢𝘵𝘦𝘳 𝘙𝘦𝘴𝘰𝘶𝘳𝘤𝘦𝘴 𝘔𝘢𝘯𝘢𝘨𝘦𝘮𝘦𝘯𝘵
– 𝘞𝘢𝘵𝘦𝘳𝘴𝘩𝘦𝘥 𝘔𝘢𝘯𝘢𝘨𝘦𝘮𝘦𝘯𝘵 𝘐
– 𝘞𝘢𝘵𝘦𝘳𝘴𝘩𝘦𝘥 𝘔𝘢𝘯𝘢𝘨𝘦𝘮𝘦𝘯𝘵 𝘐𝘐
– 𝘉𝘪𝘰𝘵𝘦𝘤𝘩𝘯𝘰𝘭𝘰𝘨𝘺
– 𝘊𝘭𝘪𝘮𝘢𝘵𝘦 𝘊𝘩𝘢𝘯𝘨𝘦
– 𝘎𝘳𝘰𝘶𝘯𝘥 𝘞𝘢𝘵𝘦𝘳
– 𝘏𝘺𝘥𝘳𝘰𝘥𝘺𝘯𝘢𝘮𝘪𝘤𝘴
– 𝘍𝘭𝘰𝘰𝘥 𝘙𝘪𝘴𝘬 𝘔𝘢𝘯𝘢𝘨𝘦𝘮𝘦𝘯𝘵 𝘐
– 𝘜𝘳𝘣𝘢𝘯 𝘞𝘢𝘵𝘦𝘳 𝘐
– 𝘜𝘳𝘣𝘢𝘯 𝘞𝘢𝘵𝘦𝘳 𝘐𝘐
– 𝘞𝘢𝘵𝘦𝘳 𝘘𝘶𝘢𝘭𝘪𝘵𝘺 𝘢𝘯𝘥 𝘞𝘢𝘵𝘦𝘳 𝘛𝘳𝘦𝘢𝘵𝘮𝘦𝘯𝘵
He participated in the “𝐓𝐔𝐌 𝐌𝐞𝐡𝐫𝐰𝐚𝐬𝐬𝐞𝐫 𝐂𝐡𝐚𝐥𝐥𝐞𝐧𝐠𝐞 𝟐𝟎𝟏𝟑” held at the Technical University of Munich (𝐓𝐔𝐌) where he made a prototype of a desalination plant.
His undergrad courses in 𝗠𝗜𝗦𝗧 include the following –
1. Engineering Mechanics (CE 101)
2. Civil Engineering Drawing (CE-100)
3. Surveying (CE 103)
4. Details of Constructions (CE 200)
5. Engineering Materials (CE 201)
6. Materials Sessional (CE 202)
7. Engineering Geology and Geomorphology (CE 203)
8. Mechanics of Solids (CE 211)
9. Numerical Methods and Computer Programming (CE 205)
10. Fluid Mechanics (CE 261)
11. Mechanics of Solids II (CE 213)
12. Structural Analysis and Design (CE-311) 13. Design of Concrete Structures (CE 315)
14. Environmental Engineering (CE 331)
15. Geotechnical Engineering (CE 341)
16. Open Channel Flow (CE 361)
17. Transportation Engineering (CE 353)
18. Hydrology (CE 363) 19. Project Planning and Management (CE- 401)
20. Irrigation and Flood Control (CE 461)
21. Professional Practices and Communication (CE 403)
22. Prestressed Concrete (CE 415)
23. Design of Steel Structures (CE 417)
During his undergrad days in 𝗠𝗜𝗦𝗧, he achieved different scholarships for outstanding academic results.
He has numerous publications as follows-
1. “𝑨𝒏 𝑬𝒎𝒑𝒊𝒓𝒊𝒄𝒂𝒍 𝑽-𝒏𝒐𝒕𝒄𝒉 𝑾𝒆𝒊𝒓 𝑬𝒒𝒖𝒂𝒕𝒊𝒐𝒏
𝒂𝒏𝒅 𝑺𝒕𝒂𝒏𝒅𝒂𝒓𝒅 𝑷𝒓𝒐𝒄𝒆𝒅𝒖𝒓𝒆 𝒕𝒐
𝑨𝒄𝒄𝒖𝒓𝒂𝒕𝒆𝒍𝒚 𝑬𝒔𝒕𝒊𝒎𝒂𝒕𝒆 𝑫𝒓𝒂𝒊𝒏𝒂𝒈𝒆 𝑫𝒊𝒔𝒄𝒉𝒂𝒓𝒈𝒆” (Published by 𝙏𝙝𝙚 𝘼𝙢𝙚𝙧𝙞𝙘𝙖𝙣 𝙎𝙤𝙘𝙞𝙚𝙩𝙮 𝙤𝙛 𝘼𝙜𝙧𝙞𝙘𝙪𝙡𝙩𝙪𝙧𝙖𝙡 𝙖𝙣𝙙 𝘽𝙞𝙤𝙡𝙤𝙜𝙞𝙘𝙖𝙡 𝙀𝙣𝙜𝙞𝙣𝙚𝙚𝙧𝙨 (𝘼𝙎𝘽𝙀) at St. Joseph, Michigan on October 6, 2021
www.asabe.org
https://doi.org/10.13031/aea.14617
2. “𝑪𝒂𝒍𝒊𝒃𝒓𝒂𝒕𝒊𝒐𝒏 𝒂𝒏𝒅 𝑽𝒂𝒍𝒊𝒅𝒂𝒕𝒊𝒐𝒏 𝒐𝒇
𝑹𝒁𝑾𝑸𝑴2-𝑷 𝑴𝒐𝒅𝒆𝒍 𝒕𝒐 𝑺𝒊𝒎𝒖𝒍𝒂𝒕𝒆
𝑷𝒉𝒐𝒔𝒑𝒉𝒐𝒓𝒖𝒔 𝑳𝒐𝒔𝒔 𝒊𝒏 𝒂 𝑪𝒍𝒂𝒚 𝑳𝒐𝒂 𝑺𝒐𝒊𝒍 𝒊𝒏 𝑴𝒊𝒄𝒉𝒊𝒈𝒂𝒏.” (Published by 𝙏𝙝𝙚 𝘼𝙢𝙚𝙧𝙞𝙘𝙖𝙣 𝙎𝙤𝙘𝙞𝙚𝙩𝙮 𝙤𝙛 𝘼𝙜𝙧𝙞𝙘𝙪𝙡𝙩𝙪𝙧𝙖𝙡 𝙖𝙣𝙙 𝘽𝙞𝙤𝙡𝙤𝙜𝙞𝙘𝙖𝙡 𝙀𝙣𝙜𝙞𝙣𝙚𝙚𝙧𝙨 (𝘼𝙎𝘽𝙀) at St. Joseph, Michigan on Jan 5, 2023
https://doi.org/10.13031/ja.15283
3. “𝑴𝒆𝒂𝒔𝒖𝒓𝒆𝒎𝒆𝒏𝒕 𝒐𝒇 𝑺𝒐𝒊𝒍 𝒘𝒂𝒕𝒆𝒓
𝒄𝒉𝒂𝒓𝒂𝒄𝒕𝒆𝒓𝒊𝒔𝒕𝒊𝒄 𝒄𝒖𝒓𝒗𝒆 𝒖𝒔𝒊𝒏𝒈 𝑯𝒀𝑷𝑹𝑶𝑷2” (Published from 𝙇𝙎𝙚𝙫𝙞𝙚𝙧 𝙈𝙚𝙩𝙝𝙤𝙙𝙨𝙓 on February 17, 2020.
https://doi.org/10.1016/j.mex.2020.100840


