关注
SANJOY KUMAR PAL
SANJOY KUMAR PAL
Institute of Astronomy Space and Earth Science (IASES)
在 iases.org.in 的电子邮件经过验证 - 首页
标题
引用次数
引用次数
年份
Determination of the magnetic moment of a magnet by letting it fall through a conducting pipe
SK Pal, S Sarkar, P Panchadhyayee
Physics Education 59 (1), 015022, 2023
62023
An accurate determination of the refractive indices of water and glass by smartphone photography
S Chakrabarti, SK Pal, S Sarkar
Physics Education 58 (3), 035010, 2023
62023
Determination of the transverse width and distance of an object with a smartphone camera
S Sarkar, SK Pal, S Chakrabarti
The Physics Teacher 61 (1), 58-61, 2023
62023
Smartphone-based measurement of magnetic force and demonstration of Newton’s third law of motion
SK Pal, S Sarkar, P Panchadhyayee
The Physics Teacher 62 (5), 404-405, 2024
32024
LiDAR-Based Determination of Spring Constant Using Smartphones
SK Pal, S Sarkar, P Panchadhyayee
The Physics Educator, 2450001, 2024
32024
Experimental Determination of the Transverse Width and Position of the Virtual Images Produced by Thin Lenses and a Plane Mirror with Smartphone Photography
SK Pal, S Sarkar, S Chakrabarti
The Physics Teacher 62 (5), 366-369, 2024
22024
Determination of the refractive index of water and glass using smartphone cameras by estimating the apparent depth of an object
SK Pal, S Chakrabarti
arXiv preprint arXiv:2111.06735, 2021
22021
Determination of the acceleration due to gravity by studying magnet's motion through a conducting pipe
SK Pal, S Sarkar, P Panchadhyayee
The Physics Educator, 2024
12024
Study of the effect of electromagnetic damping force on a magnet oscillating near a non-ferromagnetic conducting plate
SK Pal, S Sarkar, P Panchadhyayee, D Syam
European Journal of Physics 45 (4), 045203, 2024
12024
Use of a smartphone camera to determine the focal length of a thin lens by finding the transverse magnification of the virtual image of an object
SK Pal, S Sarkar, S Chakrabarti
arXiv preprint arXiv:2210.08751, 2022
12022
Determining viscosity of a liquid with smartphone sensors: A classroom-friendly approach using damped oscillations
SK Pal, P Panchadhyayee
The Physics Teacher 63 (1), 64-65, 2025
2025
Optical Illusion: Capturing Light Interactions via a Semi-reflective Glass Window
SK Pal, P Panchadhyayee
Resonance 29 (12), 1709-1712, 2024
2024
Use of a smartphone as a density-measuring device
SK Pal, S Sarkar, P Panchadhyayee
The Physics Teacher 62 (9), 786-787, 2024
2024
Demonstration of Magnetic Dipole–Dipole Interaction Using a Smartphone Pressure Sensor
SK Pal, P Panchadhyayee
Resonance 29 (11), 1573-1581, 2024
2024
A re-visit to a classroom demo for showing variation of pressure at a point within a liquid depends on its depth
Ranjan Kumar Maishal, Sanjoy Kumar Pal, Pradipta Panchadhyayee, Subhash ...
IAPT Bulletine 16 (10), 282-285, 2024
2024
A smartphone-based simple method for determination of the permeability of free space
SK Pal, S Sarkar, P Panchadhyayee
The Physics Teacher 62 (6), 532-533, 2024
2024
A new method for determination of the dispersive power of the material of a lens
Sanjoy Kumar Pal, Pradipta Panchadhyayee, Soumen Sarkar, Shinjnee Das Gupta ...
Bulletin of The Indian Association of Physics Teachers 16 (8), 217-224, 2024
2024
Use of magnetic sensor of a smartphone as a measuring knob to study the variation of magnetic field in a current-carrying circular coil
PP Sanjoy Kumar Pal, Soumen Sarkar
IAPT Bulletine 15 (10), 223-226, 2023
2023
Estimation of the error matrix in a linear least square fit to the data from an experiment performed by smartphone photography
SK Pal, S Sarkar, S Chakrabarti
arXiv preprint arXiv:2307.12312, 2023
2023
VISUALIZATION OF SOME CONCEPTS IN BASIC PHYSICS AND MATHEMATICS THROUGH EXPERIMENTS
Soumen Sarkar, Sanjoy Kumar Pal, Anirban Samanta, Pradipta Panchadhyayee ...
IAPT 14 (8), 289, 2022
2022
系统目前无法执行此操作,请稍后再试。
文章 1–20