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<doi_batch version="4.4.2" xmlns="http://www.crossref.org/schema/4.4.2" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xmlns:jats="http://www.ncbi.nlm.nih.gov/JATS1" xsi:schemaLocation="http://www.crossref.org/schema/4.4.2 http://www.crossref.org/schema/deposit/crossref4.4.2.xsd">
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<doi_batch_id>-5171ffc0182b6af927f-691a</doi_batch_id>
<timestamp>20220909143448916</timestamp>
<depositor>
  <depositor_name>hyperscienceij@gmail.com:rcrl</depositor_name> 
  <email_address>hyperscienceij@gmail.com</email_address>
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<registrant>WEB-FORM</registrant> 
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<journal>
<journal_metadata>   <full_title>Hyperscience International Journals</full_title>   <abbrev_title>HIJ</abbrev_title>   <issn media_type='electronic'>28213300</issn> </journal_metadata> <journal_issue>  <publication_date media_type='online'>     <month>09</month>     <year>2022</year>   </publication_date>   <journal_volume>     <volume>2</volume>   </journal_volume>   <issue>3</issue> </journal_issue><!-- ============== --> <journal_article publication_type='full_text'>   <titles>     <title>Mathematical-Physical Approach to Prove that the Navier-‎Stokes Equations Provide a Correct Description of Fluid ‎Dynamics</title>   </titles>   <contributors>      <organization sequence='first' contributor_role='author'>Postfach (PO Box ) 2102, 26655 Westerstede, Germany‎</organization>    <person_name sequence='first' contributor_role='author'>      <given_name>Andreas</given_name>      <surname>Martin ‎</surname>      <ORCID>https://orcid.org/0000-0002-2684-9702</ORCID>    </person_name>  </contributors>    <jats:abstract xml:lang='en'>         <jats:p>This publication takes a mathematical approach to a general solution to the Navier-Stokes equations. The basic idea is a ‎mathematical analysis of the unipolar induction according to Faraday with the help of the vector analysis. The vector analysis ‎enables the unipolar induction and the Navier-Stokes equations to be related physically and mathematically since both ‎formulations are mathematically equivalent. Since the unipolar induction has proven itself in practice, it can be used as a ‎reference for describing the Navier-Stokes equations‎.</jats:p>     </jats:abstract>  <publication_date media_type='online'>     <month>09</month>     <year>2022</year>   </publication_date>   <pages>     <first_page>97</first_page>     <last_page>102</last_page>   </pages>   <doi_data>     <doi>10.55672/hij2022pp97-102</doi>     <resource>https://hscience.org/index.php/hij/article/view/53</resource>   </doi_data> </journal_article>
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