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1 | Physics 4AL List of Final Projects - Winter 2023 | ||||||||||||||||||||||||
2 | Session | Group | Abstract | Slides | Project Title | Member 1 | Member 2 | Member 3 | Member 4 | ||||||||||||||||
3 | 1 | ||||||||||||||||||||||||
4 | 2 | Abstract | Slides | On the correlation of angular frequency and spring-mass oscillators | Tejas Kamtam | Yara Abi Karam | Zahra Abdullah Alsadeg | ||||||||||||||||||
5 | 3 | Abstract | Slides | Coefficient of Kinetic Friction with Varying Surface Areas | Edwin Montalvo | Emily Griffin | Kevin Xia | Peter Nguyen | |||||||||||||||||
6 | 4 | Abstract | Slides | Barrier Collision Lab | Rakesh Selvaraj | Jayden Zwern | Phoebe Stringfield Joseph | ||||||||||||||||||
7 | 5 | Abstract | Slides | Analyzing Centripetal Motion | Madhavi Vivek | Chloe Gupta | Julia Wright | ||||||||||||||||||
8 | 8 | Abstract | Slides | Measuring Friction of Different Surfaces | Kevin Yuan | Brian Yeu | |||||||||||||||||||
9 | 10 | Abstract | Slides | Conservation of Energy with Springs | Jared Velasquez | Alicia Yu | |||||||||||||||||||
10 | |||||||||||||||||||||||||
11 | 2 | 2 | Abstract | Slides | Measuring How Surface Area Effects Dampened Oscillation Lifetime | Le Huang | Justin Bou | ||||||||||||||||||
12 | 3 | Abstract | Slides | Conservation of Energy Using a Spring-Cart System | Elliot Lin | Melissa Trisna | Nanako Tanisaka | ||||||||||||||||||
13 | 4 | Abstract | Slides | Exploring the Relationship Between Linear and Angular Between Linear and Angular Momentum | Rohil Kalra | Ramaditya Kotha | |||||||||||||||||||
14 | 5 | Abstract | Slides | Conserving Constants | Bradyn Klein | Connor Choi | Katherine Sohn | ||||||||||||||||||
15 | 6 | Abstract | Slides | Acceleration of Arduino on Pulley with Different Masses | Lakshmi Mohan | Norah Moran | Yulenny Vidana | ||||||||||||||||||
16 | 7 | Abstract | Slides | Conservation of Mechanical Energy | Murtadha Al Msari | William Wu | Lucy Zises | ||||||||||||||||||
17 | 8 | Abstract | Slides | Analyzing Human Reaction | Eli Foerst | Fabian Del Villar | |||||||||||||||||||
18 | 9 | Abstract | Slides | Damped Oscillatory Motion Through Water With Different Concentrations of Sugar | Anthony Rodriguez | Sebastian Galicia | Krish Patel | ||||||||||||||||||
19 | 10 | Abstract | Slides | “Damped” Oscillation with Constant Friction | Cian Gonzales | Kaden Fernando-Ignacio | Dawit Taddese | ||||||||||||||||||
20 | |||||||||||||||||||||||||
21 | 3 | ||||||||||||||||||||||||
22 | 2 | Abstract | Slides | An Analysis of the Effect of Springs on the Motion of a Pulley-Drawn Cart | Sam Perrott | Jack Reid | Byron Karlen | ||||||||||||||||||
23 | 3 | Abstract | Slides | Deviation of a Pendulum from a Damped Harmonic Oscillator | Harry Levinson | Jack Phillips | Orchid Pyone | ||||||||||||||||||
24 | 4 | Abstract | Slides | Conservation of Energy for Rolling Balls | Brenna Kjorness | Emma Dickinson | Elsa Kronen | ||||||||||||||||||
25 | 5 | Abstract | Slides | Complex Spring System Constants | Conley Ball | Jessica C Hongarta | Tyler Cho | ||||||||||||||||||
26 | 6 | Abstract | Slides | Measuring Restitution, Energy Absorption, and Impulse of Collisions with Various | Siddharth Khillon | Eric Du | Jacob Ursua | ||||||||||||||||||
27 | 7 | Abstract | Slides | Damping Oscilation in Water and Shape to Reduce Fluid Friction | Zichun Liao | Ryan Swartzentruber | Liam Meagher | ||||||||||||||||||
28 | 8 | Abstract | Slides | Friction and Tennis Shoes | Ziyi Zhu | Oscar Orantes | |||||||||||||||||||
29 | 9 | Abstract | Slides | Finding acceleration due to gravity with a simple pendulum | Natalie Tsubamoto | Maya Balakrishnan | Owen Lin | ||||||||||||||||||
30 | 10 | Abstract | Slides | Modeling Energy Loss of Ball Bounces on Surfaces of Varying Materials | Ximeng (Simon) Guo | Shreedevi Rao | Emily Sun | ||||||||||||||||||
31 | 4 | ||||||||||||||||||||||||
32 | 3 | Abstract | Slides | Simulating Acceleration and Energy Transfer in Vehicle Collisions Using Air Track Carts | George Grigoryan | Jose Victor Ramos | Justin Tang | ||||||||||||||||||
33 | 4 | Abstract | Slides | Measuring Acceleration Due to Gravity with a Pendulum | Krisha Chokshi | Shawn Zhuang | Aryaman Ladha | ||||||||||||||||||
34 | 5 | Abstract | Slides | Balls, Energy, and Finding the "Bounciest" of them All | Natalie Nielsen | Shilpa Rao | April Smith | ||||||||||||||||||
35 | 6 | Abstract | Slides | Verifying Moment of Inertia Equations using Simple Harmonic Motion | Heran Yang | Charles Zhang | Georgia Trentalange | ||||||||||||||||||
36 | 7 | Abstract | Slides | Investigating Conservation of Energy and Momentum of an Inelastic Collusion Down an Inclined Plance on a Damped Oscillator | Kelsey Greenberg | Matheo Irazabal | Andrew Wang | ||||||||||||||||||
37 | 8 | Abstract | Slides | Determing Drag Coefficient with Sails | Lukas Ostien | Marcus Sivayavirojna | Gavin Trent | ||||||||||||||||||
38 | 9 | Abstract | Slides | Quantifying the Relationship Between Sponge Water Absorption and Kinetic Energy Absorption | Kenan Cackovic | Thomas Freedman | Saachi Bhayani | ||||||||||||||||||
39 | 10 | Abstract | Slides | Analysis of Centripetal Acceleration for Uniform Circular Motion | Ryan Teoh | Arshnoor Dhaliwal | |||||||||||||||||||
40 | 5 | ||||||||||||||||||||||||
41 | 2 | Abstract | Slides | Spring Force and Linear Acceleration | Dianne Mutia | Ian Dicks | |||||||||||||||||||
42 | 3 | Abstract | Slides | Effects of differing mass on damping constant in oscillations | Alexis Lee | Emily Orozco | |||||||||||||||||||
43 | 4 | Abstract | Slides | Moment of Inertia in a Pulley System | Jake Xie | Ethan Peng | |||||||||||||||||||
44 | 8 | Abstract | Slides | Bicycle Odometer | Mark Avila | Ved Joshi | Akhiniyet Makhsat | ||||||||||||||||||
45 | 9 | Abstract | Slides | Motion of mass pulley system with varying angles of incline | Tejas Bharadwaj | Shreyas Kaasayp | |||||||||||||||||||
46 | |||||||||||||||||||||||||
47 | 6 | ||||||||||||||||||||||||
48 | 2 | Abstract | Slides | Parachute Material Analysis | Chong, Pierce | Anand, Juskeerat | |||||||||||||||||||
49 | 3 | Abstract | Slides | Kinetic Energy Loss in Material Collisions | Murtagh, Adam | Jacob, Megan | |||||||||||||||||||
50 | 4 | Abstract | Slides | Magnetic damping on an oscillating system | Shaikh, Nabeel | Kim, Michelle | Randhawa, Gurbir | ||||||||||||||||||
51 | 5 | Abstract | Slides | Comparing Theoretical & Experimental Terminal Velocity of Parachute-Mass System | Sissoko, Hannah | Basu, Samprikta | Wang, Chris | ||||||||||||||||||
52 | 6 | Abstract | Slides | Launching Arduino Gliders | Babcock, Wyatt | MacLaren, Scott | Gathoo, Urja | ||||||||||||||||||
53 | 7 | Abstract | Slides | Analyzing the Effect of Cross-Sectional Area of Sails on Energy Loss in Damped Collisions | Zhu, Ming | Taeudomkul, Rahut | Lord, Natalie | ||||||||||||||||||
54 | 8 | Abstract | Slides | Testing the Effect of 3 Variables on the Energy of a Damped Oscillator | Sankhe, Dhruva | Ofitserova, Nina | Cortez, Gabriel | ||||||||||||||||||
55 | 9 | Abstract | Slides | Analyzing the Effects of Mass on Damped Oscillations in Water | Fenson, Camille | Yuan, Michael | Agarwal, Rit | ||||||||||||||||||
56 | 10 | Abstract | Slides | Determination of Robot Car Stopping Distance | Seyed Makki, Armeen | Xie, Luke | |||||||||||||||||||
57 | 7 | ||||||||||||||||||||||||
58 | 2 | Abstract | Slides | Autoparametric Resonance in Pendulum-Spring System | Nagle, Henry | Hilger, Quinn | |||||||||||||||||||
59 | 3 | Abstract | Slides | Effects of Friction, Mass, and Spring Constant on a Damped Oscillator | Shiller, Joseph | Rice, Nolan | Kim, Joshua | ||||||||||||||||||
60 | 4 | Abstract | Slides | Analyzing the Damped Oscillation of a Rectangular Box Floating in Various Liquids | Berrios , Josselyne | Wang, Shade | Rosen, Zachary | ||||||||||||||||||
61 | 5 | Abstract | Slides | Damped Oscillations with a Changing Surface Area | Sengupta, Shayona | Homberg Reissmeier, Isabel | Choi, Michael | ||||||||||||||||||
62 | 6 | Abstract | Slides | Analyzing Harmonic Motion in Fluids of Varying Salinities | Li, Bill | Wang, Olivia | Haldar, Rishab | ||||||||||||||||||
63 | 7 | Abstract | Slides | Does ball size (shape, and material) matter? | Agarwal, Sonav | Santos, Cristian | Shull, Ethan | ||||||||||||||||||
64 | 8 | Abstract | Slides | Conservation of Momentum Inelastic Collisions with Spring Potential Energy | Wang, Daniel | Knight, Robert | Koka, Ganesh | ||||||||||||||||||
65 | 9 | Abstract | Slides | Predicting Final Pendulum Height Using Conservation of Momentum and Energy | Shim, Rachel | Kornfield, Kyan | Lee, Steve | ||||||||||||||||||
66 | 10 | Abstract | Slides | Demonstrating Conservation of Momentum with Pendulum Cart Collision | Huang, Howard | Michael, Alan | Mihalache, Beatrice | ||||||||||||||||||
67 | 8 | ||||||||||||||||||||||||
68 | 2 | Abstract | Slides | Kinetic Energy and Elastic Collsions | Anna Moulds | Savannah Tran | Ellisha Reyes | ||||||||||||||||||
69 | 3 | Abstract | Slides | SHM in Complex Spring Configurations | Bruce Chang | Bryan Liu | Aautum Anad | ||||||||||||||||||
70 | 4 | Abstract | Slides | Spring Constant from SHM from Parallel and Series Configurations | Marianne Gutierrez | Charmaine Tan | Athena Tea | ||||||||||||||||||
71 | 5 | Abstract | Slides | Vertical Coupled Harmonic Spring Oscillation | Rahul Khanna | Madina Entezar | |||||||||||||||||||
72 | 6 | Abstract | Slides | Wind Sail Shape and Drag Coefficient | Andrew Ternet | Aryan Kohli | Mia Irvin-Pollard | ||||||||||||||||||
73 | 7 | Abstract | Slides | Crash Barriers of VariousMaterials and Shapes | Ashwath Nayagadurai | Ryan Chaiyakul | Michelle Zhao | ||||||||||||||||||
74 | 8 | Abstract | Slides | Spring Canstant from Damped Multi Mass Spring System | Kimmy Fang | Jennie Gao | Krithi Koodli | ||||||||||||||||||
75 | 9 | Abstract | Slides | Analysis of Damping Constantsand Impact of Damping of Spring Oscillator on an Inclined Plane | Allison Liu | Yash Kothari | Arjun Loomba | ||||||||||||||||||
76 | 10 | Abstract | Slides | Effect of Varying String Length and Mass on Motion of a Simple Pendelum | Adam Hurst | Rishabh Sharma | Anbu Vajuravel | ||||||||||||||||||
77 | 9 | ||||||||||||||||||||||||
78 | 2 | Abstract | Slides | Measuring Centripetal Acceleration of Apparatus in Circular Motion | Seth Ferrell | Jingchao Luo | Abhinav Nalla | ||||||||||||||||||
79 | 3 | Abstract | Slides | Proving the Function of an Atwood Machine in an Elevator | Joseph Moon | Clara Kang | William Dennehy | ||||||||||||||||||
80 | 4 | Abstract | Slides | Modeling Damped Harmonic Motion of an object due to the drag force of air resistance | Scott Park | Ying Chou | Lawrence Lee | ||||||||||||||||||
81 | 5 | Abstract | Slides | The Study of Damping and Oscillatory Motion on Vertical and Inclined Mass-Spring Systems | Katherine Chou | Levi Marin | Sebastian Caid | ||||||||||||||||||
82 | 6 | Abstract | Slides | Moment of Inertia of a Physical Pendulum | Andrew Tan | Simon Traub | Michael Wang | ||||||||||||||||||
83 | 7 | Abstract | Slides | Varying Angles on a Mass-Spring System | Natalia Cuartas | Naketris Kirk | Matthew Risley | ||||||||||||||||||
84 | 8 | Abstract | Slides | Measuring Downward Acceleration Using A Pendulum | Izak Bunda | Kaeshav Chandrasekar | Richard Li | ||||||||||||||||||
85 | 9 | Abstract | Slides | Predicting Effective Spring Constant in Series and Parrallel | Nachiketa Mishra | Julie Lee | Jiaheng Cai | ||||||||||||||||||
86 | 10 | Abstract | Slides | Studying the Effectiveness of Different Materials at Absorbing Shock from High Speed Collisions | Ryan Phua | Tobin Lee | Ryan Yeo | ||||||||||||||||||
87 | 10 | ||||||||||||||||||||||||
88 | 2 | Abstract | Slides | Determining the Combined Spring Constant in a Simple Harmonic Oscillation System | Venkat Bollapragada | Vivian Le | Kshitij Jhunjhunwala | ||||||||||||||||||
89 | 3 | Abstract | Slides | Relationship Between Area and Damping Coefficient in Horizontal Spring-Mass Oscillator Damped by Air Resistance | Jeffrey Weng | Stephanie Wu | Alexander Zhang | ||||||||||||||||||
90 | 4 | Abstract | Slides | Analyzing Drag Force on 1D Motion on an Air Track | Parthiv Nair | Rahul Swaminathan | Jiayu Yao | ||||||||||||||||||
91 | 5 | Abstract | Slides | Predicting the Density of Air from a Constant Coefficient of Drag | Ryan Oh | Bryan Choy | Christopher Le | ||||||||||||||||||
92 | 6 | Abstract | Slides | Investigating the Relationship Between Surface Area and Force of Air Drag | Abdulaziz Al Jaloud | Zhaoyan Sun | Yan Hauw | ||||||||||||||||||
93 | 7 | Abstract | Slides | Examining the Relationship among Damping and Harmonic Oscillation | Evan Li | Anders Hundeby | |||||||||||||||||||
94 | 8 | Abstract | Slides | Moment of Inertia of Objects Rolling Down An Inclined Plane | Henry Huang | Joshua Yin | Jordan Jiang | ||||||||||||||||||
95 | 9 | Abstract | Slides | ||||||||||||||||||||||
96 | 10 | Abstract | Slides | Determining g from Pendulum Motion | Sanjana Kale | Amy Lee | Kate Johnson | ||||||||||||||||||
97 | 11 | ||||||||||||||||||||||||
98 | 2 | Abstract | Slides | Experimentation with K-Effective in a Mass-Spring System | William Chen | Krish Patel | Leah George | ||||||||||||||||||
99 | 3 | Abstract | Slides | Damped Oscillatory Motion Through Fluids of Various Viscosities | Artyom Sapa | Patrycja Maciak | Zeckria Kamrany | ||||||||||||||||||
100 | 4 | Abstract | Slides | Conservation of Energy in a Mass-Pulley System | Dhruv Pareek | Isabelle Wang | |||||||||||||||||||