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     <title><![CDATA[NUST Institutions Library Catalogue Search for 'au:&quot;Nasir,Muhammad&quot;']]></title>
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     <description><![CDATA[ Search results for 'au:&quot;Nasir,Muhammad&quot;' at NUST Institutions Library Catalogue]]></description>
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       <title>
    Mathematics for Engineers and Scientists (Vol-I)






</title>
       <dc:identifier>ISBN:</dc:identifier>
        
        <link>http://catalogue.nust.edu.pk:8081/cgi-bin/koha/opac-detail.pl?biblionumber=267918</link>
        
       <description><![CDATA[









	   <p>By Nasir,Muhammad. 
	   Lahore Allied Book Centre
                        
                        
                        
                        
       </p>

<p><a href="http://catalogue.nust.edu.pk:8081/cgi-bin/koha/opac-reserve.pl?biblionumber=267918">Place Hold on <em>Mathematics for Engineers and Scientists (Vol-I)</em></a></p>

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       <guid>http://catalogue.nust.edu.pk:8081/cgi-bin/koha/opac-detail.pl?biblionumber=267918</guid>
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       <title>
    MS/Thesis:Model Reduction of Large Scale Gas Distribution Networks






</title>
       <dc:identifier>ISBN:</dc:identifier>
        
        <link>http://catalogue.nust.edu.pk:8081/cgi-bin/koha/opac-detail.pl?biblionumber=531489</link>
        
       <description><![CDATA[









	   <p>By  Nasir Muhammad Junaid. 
	   Islamabad RCMS NUST 2018
                        
                        
                        
                        
       </p>

<p><a href="http://catalogue.nust.edu.pk:8081/cgi-bin/koha/opac-reserve.pl?biblionumber=531489">Place Hold on <em>MS/Thesis:Model Reduction of Large Scale Gas Distribution Networks</em></a></p>

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       <title>
    Development of Anti UV Emulsion and Self-Assembled Multilayers Thin Films Coatings for Biomedial Textile Applications /






</title>
       <dc:identifier>ISBN:</dc:identifier>
        
        <link>http://catalogue.nust.edu.pk:8081/cgi-bin/koha/opac-detail.pl?biblionumber=534447</link>
        
       <description><![CDATA[









	   <p>By Habib, Sehrish. 
	   Islamabad: SCME - NUST, 2014
                        . 58 p. :
                        
                         30cm.. 
                        
       </p>

<p><a href="http://catalogue.nust.edu.pk:8081/cgi-bin/koha/opac-reserve.pl?biblionumber=534447">Place Hold on <em>Development of Anti UV Emulsion and Self-Assembled Multilayers Thin Films Coatings for Biomedial Textile Applications /</em></a></p>

						]]></description>
       <guid>http://catalogue.nust.edu.pk:8081/cgi-bin/koha/opac-detail.pl?biblionumber=534447</guid>
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     <item>
       <title>
    EFFECTS of CORPORTISM ON ENGINEERING ECONOMICS 






</title>
       <dc:identifier>ISBN:</dc:identifier>
        
        <link>http://catalogue.nust.edu.pk:8081/cgi-bin/koha/opac-detail.pl?biblionumber=540534</link>
        
       <description><![CDATA[









	   <p>By Ali Aoun Yahya, Sayed, Junaid Khalid, Syed Ali Nayyar Nasir, Muhammad Ali Bajwa, Imran Tahir . 
	   Islamabad : SEECS - NUST, 2008
                        . iii, 26 p. : ill. ;
                        
                         30cm.. 
                        
       </p>

<p><a href="http://catalogue.nust.edu.pk:8081/cgi-bin/koha/opac-reserve.pl?biblionumber=540534">Place Hold on <em>EFFECTS of CORPORTISM ON ENGINEERING ECONOMICS </em></a></p>

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       <title>
    PR-SOF-1461-DESIGN AND DEVELOPMENT OF SOLAR BATCH COLLECTOR






</title>
       <dc:identifier>ISBN:</dc:identifier>
        
        <link>http://catalogue.nust.edu.pk:8081/cgi-bin/koha/opac-detail.pl?biblionumber=577994</link>
        
       <description><![CDATA[









	   <p>By Abdul Samad Nasir, Muhammad Waqas, Zia Ud Din Taj. 
	   ISLAMABAD NUST COLLEGE OF EME 2015
                        
                        
                        
                        
       </p>

<p><a href="http://catalogue.nust.edu.pk:8081/cgi-bin/koha/opac-reserve.pl?biblionumber=577994">Place Hold on <em>PR-SOF-1461-DESIGN AND DEVELOPMENT OF SOLAR BATCH COLLECTOR</em></a></p>

						]]></description>
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       <title>
    PR-SOF-2124-Development of an IOT Platform for Condition Monitoring of Industrial Motors






</title>
       <dc:identifier>ISBN:</dc:identifier>
        
        <link>http://catalogue.nust.edu.pk:8081/cgi-bin/koha/opac-detail.pl?biblionumber=591329</link>
        
       <description><![CDATA[









	   <p>By Muhammad Luqman Nasir Muhammad Hamza Sarwar Noor ul Hassan Syed Wajahat Ali Bukhari. 
	   ISLAMABAD: NUST COLLEGE OF EME, 2022
                        
                        
                        
                        
       </p>

<p><a href="http://catalogue.nust.edu.pk:8081/cgi-bin/koha/opac-reserve.pl?biblionumber=591329">Place Hold on <em>PR-SOF-2124-Development of an IOT Platform for Condition Monitoring of Industrial Motors</em></a></p>

						]]></description>
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       <title>
    PR-SOF-2152-Efficiency Enhancement of PV Solar Panels By Passive Cooling






</title>
       <dc:identifier>ISBN:</dc:identifier>
        
        <link>http://catalogue.nust.edu.pk:8081/cgi-bin/koha/opac-detail.pl?biblionumber=591826</link>
        
       <description><![CDATA[









	   <p>By Izhar Sultan Nasir Muhammad Nazim Umair Babar . 
	   ISLAMABAD 2022. NSUT COLLEGE OF EME,
                        
                        
                        
                        
       </p>

<p><a href="http://catalogue.nust.edu.pk:8081/cgi-bin/koha/opac-reserve.pl?biblionumber=591826">Place Hold on <em>PR-SOF-2152-Efficiency Enhancement of PV Solar Panels By Passive Cooling</em></a></p>

						]]></description>
       <guid>http://catalogue.nust.edu.pk:8081/cgi-bin/koha/opac-detail.pl?biblionumber=591826</guid>
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       <title>
    Tribological Performance Analysis of Grey Cast-Iron against 52100 Steel Ball Bearing with Poly-alpha olefin Lubricant with Nano Additives under Reciprocating Motion /






</title>
       <dc:identifier>ISBN:</dc:identifier>
        
        <link>http://catalogue.nust.edu.pk:8081/cgi-bin/koha/opac-detail.pl?biblionumber=608264</link>
        
       <description><![CDATA[









	   <p>By Nasir, Muhammad Anas. 
	   
                        . 70p.
                        , This study is based on nano-particle based lubricants and their role in enhancement of
tribological performance of base oil. CuO, ZnO and MoS2 nanoparticles are added to
PAO-10 in 1wt% concentration along with 2wt.% oleic acid as a dispersant, these three
mixtures are then set up for testing with a tribo-pair of ASTM-52100 steel ball and SAEJ431 (G-3000) gray cast iron. The tests are carried out on a computer controlled
reciprocating tribometer and all the lubricants are subjected to 10N, 20N and 30N loading
conditions. Test duration is 7200 seconds, at 50 rpm and ambient temperature. Under
these conditions and a sliding point contact the test rig is designed to test lubricant
performance under boundary lubrication regime. To study the wear scar, a digital optical
microscope was used and dimensions for each wear scar were recorded along with the
surface roughness before and after the testing.
The reciprocating tribometer tests were also conducted on SAE-40 and SAE-0W20 fully
formulated oils to compare the results with nano-particle based lubricants. The results
from the tribometer tests suggest that ZnO nanoparticles showed positive results by
slightly improving CoF values and showed a significant reduction in wear volume. CuO
nanoparticles showed improvement in CoF values for lower loading conditions but could
not improve performance for higher loading conditions. The MoS2 nanoparticles were
observed to be most effective in reducing the CoF and wear scar volume when added to
PAO-10. The lowest CoF value was observed with PAO+MoS2 at 20N load, which is a
93% improvement as compared to PAO-10. The lowest value for wear scar volume was
observed for PAO+MoS2 at 10N load which was 92% improvement as compared with
PAO-10 only.
This study further discusses the mechanism that physically changes the sliding conditions
and play part in reducing the CoF and wear due to presence of nanoparticles and tries to
relate them with the results of this study.
                         30cm. 
                        
       </p>

<p><a href="http://catalogue.nust.edu.pk:8081/cgi-bin/koha/opac-reserve.pl?biblionumber=608264">Place Hold on <em>Tribological Performance Analysis of Grey Cast-Iron against 52100 Steel Ball Bearing with Poly-alpha olefin Lubricant with Nano Additives under Reciprocating Motion /</em></a></p>

						]]></description>
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       <title>
    Optimization of FDM Printing Parameters to Enhance Mechanical Properties in Z-Direction /






</title>
       <dc:identifier>ISBN:</dc:identifier>
        
        <link>http://catalogue.nust.edu.pk:8081/cgi-bin/koha/opac-detail.pl?biblionumber=611043</link>
        
       <description><![CDATA[









	   <p>By Haris Ali Nasir, Muhammad . 
	   
                        . 88p.
                        , Fused deposition modeling (FDM) is a commonly used additive manufacturing process that offers
new opportunities for creating complex geometries that are difficult to produce using traditional
production methods. However, the use of FDM technology in practical goods is limited due to
anisotropic strength concerns. This means that the strength of parts created using FDM in the build
direction (Z direction) can be much lower than in the X-Y directions. The objective of this study
is to specifically examine a polymer called Polycarbonate (PC). The effects of layer height,
printing temperature, and printing speed on the Z-direction tensile characteristics of 3D-printed
PC samples were systematically explored using Taguchi design and response surface methodology
(RSM). The RSM results indicate that the thickness of the layers has the greatest impact on the
bonding between interlayers during printing. The optimal tensile characteristics for 3D-printed
polycarbonate (PC) parts were obtained using parts generated with a layer thickness of A = 0.1288
mm, a printing angle of B = 270 °C, and a printing speed of C = 40 mm/s. The results confirm that
printing PC material with the optimal conditions significantly enhances the bonding between
interlayers in the build direction. An increase of 39.23% in the tensile strength of 3D printed parts
was achieved
                         30cm.. 
                        
       </p>

<p><a href="http://catalogue.nust.edu.pk:8081/cgi-bin/koha/opac-reserve.pl?biblionumber=611043">Place Hold on <em>Optimization of FDM Printing Parameters to Enhance Mechanical Properties in Z-Direction /</em></a></p>

						]]></description>
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       <title>
    Experimental and Techno-Economic Analysis of Direct/Indirect Evaporative Cooling System Incorporated with Desiccant Wheel Dehumidifier in Hot and Humid Climate /






</title>
       <dc:identifier>ISBN:</dc:identifier>
        
        <link>http://catalogue.nust.edu.pk:8081/cgi-bin/koha/opac-detail.pl?biblionumber=615562</link>
        
       <description><![CDATA[









	   <p>By Nasir, Muhammad Abdullah (361095). 
	   
                        . xiv, 53 p.
                        
                        
                        
       </p>

<p><a href="http://catalogue.nust.edu.pk:8081/cgi-bin/koha/opac-reserve.pl?biblionumber=615562">Place Hold on <em>Experimental and Techno-Economic Analysis of Direct/Indirect Evaporative Cooling System Incorporated with Desiccant Wheel Dehumidifier in Hot and Humid Climate /</em></a></p>

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