10.46243/jst.2021.v6.i06.pp41-50 registered
HIGHER-ORDER SLIP CHARACTERISTICS, ACTIVATION ENERGY, AND BIOCONVECTION IN REINER–PHILIPPOFF NANOFLUID FLOW WERE STUDIED NUMERICALLY
Resolves to https://www.jst.org.in/index.php/pub/article/view/397
Held by Longman Publishers (India) · prefix 10.46243 live · DOI address https://doi.org/10.46243/jst.2021.v6.i06.pp41-50
Registered 29 Sep 2026 via crossref · record version 2 · last change 29 Sep 2026, 11:59 PM · record sha256 be2007592f31c4ae…
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JournalArticle — an article in a journal · Digital · Visual · en
HIGHER-ORDER SLIP CHARACTERISTICS, ACTIVATION ENERGY, AND BIOCONVECTION IN REINER–PHILIPPOFF NANOFLUID FLOW WERE STUDIED NUMERICALLY (PrincipalTitle)
Published 2021-11-01
Part of Journal of Science & Technology · ISSN 2456-5660 · volume 06 · issue 06 · pages 41–50
Agents
- Dr.KhasimAli (author)
- Osman Toufiq (author)
- Longman Publishers (publisher)
Identifiers DOI 10.46243/jst.2021.v6.i06.pp41-50
Abstract
Research into nanofluids' enhanced thermal mechanisms, which may be used in heat transfer devices, cooling procedures, and energy generation, is the most exciting. Their significance in biomedical engineering and biotechnology is shown by nanofluids containing mobile microorganisms. Reiner–Philippoff nanofluid's accessible dynamic property is shown in this study using bioconvection applications. The magnetic force impact and activation energy properties of Reiner–Philippoff nanomaterial are also meant to undertake radiative analysis. To better understand the flow, higher-order relations are included in the slip. Thermal radiation with a nonlinear connection is used to propose changes to the energy equation. In order to solve the flow equations numerically, a shooting system is used. Analysis of the recommended parameters is provided in full. In order to study the variation in heat, mass and motile density function, numerical data is obtained With Philippoff fluid parameter, velocity profile improves but slip parameter decreases in the simulations. Temperature and concentration profiles decreased when the Philippoff fluid parameter was raised. Higher order slip is more efficient in boosting temperature, concentration, and the profiles of microorganisms
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| Element | Value | In the record |
|---|---|---|
| DOI Name DOI name | 10.46243/jst.2021.v6.i06.pp41-50 | doi |
| Referent Type referentType | Creation | referent |
| Referent Sub-Type referentSubType | JournalArticle — an article in a journal | type |
| Referent Name(s) referentName(s) | HIGHER-ORDER SLIP CHARACTERISTICS, ACTIVATION ENERGY, AND BIOCONVECTION IN REINER–PHILIPPOFF NANOFLUID FLOW WERE STUDIED NUMERICALLY (PrincipalTitle, en) | titles |
| Basic Metadata basicMetadata | author: Dr.KhasimAli author: Osman Toufiq publisher: Longman Publishers published: 2021-11-01 part of: Journal of Science & Technology · ISSN 2456-5660 · vol. 06 · no. 06 · pp. 41–50 language: en form: Digital · Visual · Language | agents, dates, container, language, structural_type, modes, characters |
| Referent Identifier(s) alternateIdentifier(s) | none besides the DOI | identifiers, relations (IsSameAs) |
| Registration Authority registrationAuthorityCode | Crossref — issued by Crossref (member 25296); held here as a copy | record.source_agency (our code, ra_doi_name, for names issued here once appointed) |
| Created Date issueDate | 2026-09-08 | record.registered (when the DOI name was first registered) |
| relatedIdentifiers | none needed — the descriptive metadata is in this record | container, relations (only where the descriptive metadata lives at another identifier) |
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| # | When | What | By | Changes |
|---|---|---|---|---|
| 1 | 29 Sep 2026, 10:00 PM | register registered at Crossref; record read from api.crossref.org | Administrator (admin) | 114 fields set · sha256 df8bb01e72d3… |
| 2 | 29 Sep 2026, 11:59 PM | update record re-read from api.crossref.org | Administrator (admin) | container.titles.0.value: |
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