Browsing by Author Puttharugsa C.

Jump to: 0-9 A B C D E F G H I J K L M N O P Q R S T U V W X Y Z

or enter first few letters:  
Showing results 7 to 26 of 29 < previous   next >
Issue DateTitleAuthor(s)
2022Demonstrating birefringence using a smartphone cameraPuttharugsa C.; Bintachitt P.; Wicharn S.; Plaipichit S.
2020Demonstration of light absorption and light scattering using smartphonesMalisorn K.; Wicharn S.; Plaipichit S.; Pipatpanukul C.; Houngkamhang N.; Puttharugsa C.
2020Determination of the coefficient of rolling friction of a hollow cylinder rolling on a curved track using a smartphone's sensorsLaotreephet P.; Khemmani S.; Puttharugsa C.
2019Determination of the coefficient of static friction from circular motion using a smartphone's sensorsPuttharugsa C.; Khemmani S.; Wicharn S.; Plaipichit S.
2021Determining the coefficient of kinetic friction using smartphone sensorsPuttharugsa C.; Wicharn S.; Plaipichit S.; Khemmani S.
2018Development of instructional manual encouraging student active learning for high school teaching on fluid mechanics through Torricelli's tank experimentApiwan S.; Puttharugsa C.; Khemmani S.
2018Fabrication of highly uniform gold nanoparticles-titanium dioxide nanotube arrays for H 2 O 2 sensingPuttharugsa C.; Aeimbhu A.
2017Facile preparation of gold nanoparticle modified pencil graphite electrodePuttharugsa C.; Limnonthakul P.
2020Gold nanorod-optical fiber for sensing biomolecular interactionChueaiarrom C.; Loedsapchinda N.; Puttharugsa C.; Pipatpanukul C.; Srikhirin T.; Houngkamhang N.
2021Hybrid nanowire-hyperbolic metamaterial based broadband absorber for the visible and near-infrared regionsBuranasiri P.; Plaipichit S.; Puttharugsa C.; Wicharn S.
2017Influence of oxygen flow rate on electrochromic property of WO3 nanorods prepared by glancing reactive magnetron sputteringLimnonthakul P.; Luangtip W.; Puttharugsa C.; Lutchanont I.; Chananonnawathorn C.; Eiamchai P.; Limwichean S.; Pattantsetakul V.; Horprathum M.
2021Investigating the large angle of a physical pendulum using a smartphone's sensorsChatchawaltheerat T.; Khemmani S.; Puttharugsa C.
2016Investigation of the rolling motion of a hollow cylinder using a smartphonePuttharugsa C.; Khemmani S.; Utayarat P.; Luangtip W.
2017Investigation of the rolling motion of a hollow cylinder using a smartphone's digital compassWattanayotin P.; Puttharugsa C.; Khemmani S.
2021LED gates for measuring kinematic parameters using the ambient light sensor of a smartphoneNamchanthra W.; Puttharugsa C.
2023Measuring the average velocity and acceleration of a moving object on an inclined plane using a magnetic sensor on a smartphoneDumrongkitpakorn P.; Khemmani S.; Plaipichit S.; Wicharn S.; Puttharugsa C.; Srinakharinwirot University
2019Measuring the coefficient of restitution for tennis and golf balls using smartphone sensorsChaisuwan P.; Khemmani S.; Wicharn S.; Plaipichit S.; Pipatpanukul C.; Puttharugsa C.
2023Measuring the kinematic parameters of a rotating object in circular motion using the magnetometer of a smartphonePuttharugsa C.; Khemmani S.; Pimanpang S.; Srinakharinwirot University
2018Predict-share-observe-explain learning activity for the Torricelli's tank experimentPanich C.; Puttharugsa C.; Khemmani S.
2022Recursive-formula for second-harmonic generation problem in photonic hypercrystalBuranasiri P.; Plaipichit S.; Puttharugsa C.; Wicharn S.