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Private physics classes recently held in New York City
Students near Harlem, Venice, Midtown dive in Physics Concepts
Shivani taught Hashim 4 months ago
Shivani tutored Zara on physics, covering rotational motion, moment of inertia, torque, and simple harmonic motion, as Zara prepared for her final exam. They worked through practice problems and reviewed relevant formulas. They scheduled another session for the next day to continue exam preparation, adjusting the time to accommodate Zara's schedule.
Angular vs. Linear Relationships
Rotational Motion
Equations of Motion (Angular)
Moment of Inertia
Torque
Parallel Axis Theorem
Angular Momentum
Spring Mass System
Ismail taught Clarence 4 months ago
Ismail worked with Clarence on physics, focusing on rotational motion, angular momentum, and problem-solving strategies. Clarence reviewed concepts and worked through problems from previous quizzes, and Ismail provided tailored explanations and notes. They agreed to continue weekly sessions and Ismail will send Clarence additional practice problems and the course book title.
Angular vs. Linear Momentum
Energy vs. Forces
Units and Conversions
F=ma as a Foundation
Multiple Perspectives
Note-Taking as Art
Ismail taught Samantha 4 months ago
Ismail tutored Samantha on various thermal physics topics, including thermal radiation, conduction, linear expansion, calorimetry, and kinetic energy of gases. Samantha practiced applying relevant equations to solve problems, particularly focusing on textbook questions. Ismail offered to provide further assistance and answer questions via Wingy as Samantha prepares for her exam.
RMS Speed and Kinetic Energy
Molar Mass
Conduction Equation
Thermal Radiation
Calorimetry
Ismail taught Samantha 4 months ago
Ismail tutored Samantha, reviewing physics concepts including buoyancy, simple harmonic motion, Snell's Law, lenses, electromagnetic waves, Young's double-slit experiment, thermodynamics, and ideal gas laws. Samantha practiced problem-solving, and Ismail provided strategies for avoiding overcomplication. They agreed to focus on ideal gas laws in the next session and scheduled it for the following day.
Snell's Law & Refraction
Brewster's Angle
Thin Lens Equation
Magnification
Nearsightedness vs. Farsightedness
EM Waves
Double Slit Experiment
Fundamental Frequency
Sarthak taught Samia 4 months ago
Sarthak is tutoring Haroon on one-dimensional motion, covering velocity, acceleration, and displacement. They analyze motion using displacement-time and velocity-time graphs, focusing on the relationship between slope and acceleration/velocity. Sarthak explains the first and second equations of motion, emphasizing the constant acceleration assumption and using integration to derive the second equation. They then work through a problem involving a velocity-time graph to determine displacement, direction changes, and acceleration, also reviewing relevant trigonometric concepts.
Equations of Motion
Vector Components
Displacement vs. Distance
Position-Time Graphs
Velocity-Time Graphs
Integration and Differentiation
Katharine taught Anneli 5 months ago
Kate tutored Anneli in physics, covering half-life, work, energy, power, and kinetic energy, as Anneli prepares for a test and creates a cheat sheet. Kate provided explanations, problem-solving guidance, and calculator tips. Kate also offered help with statistics.
Half-life Formula
Kinetic Energy
Work Formula
Problem Solving Tips
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Physics Education in New York: Key Resources, Challenges, and Opportunities
Physics learning landscape in New York
New York offers one of the most diverse academic environments in the U.S., with over 480 high schools and 120 colleges, including physics in their curriculum. STEM-focused schools such as Stuyvesant High School consistently produce students who excel in the New York State Regents Physics Exam and AP Physics courses.
At the university level, institutions like Columbia University and New York University (NYU) lead in research areas such as quantum mechanics, material science, and climate modelling. Many programs combine rigorous classroom instruction with hands-on lab experiences, giving students access to facilities like the Nevis Laboratories in Irvington, a major centre for particle physics experiments.
Despite these opportunities, a common challenge is bridging the gap between theoretical concepts and real-world applications in fields such as renewable energy, biomedical engineering, and AI-driven technology.
Major physics related institutions and initiatives in New York
- American Museum of Natural History – Rose Centre for Earth and Space: Located on Manhattan’s Upper West Side, the Rose Center offers an immersive exploration of astronomy, astrophysics, and cosmology. Its Hayden Planetarium features visually stunning presentations on topics like black holes, dark matter, and the evolution of the universe. Interactive exhibits explain gravitational forces, planetary motion, and the life cycles of stars, making advanced physics concepts more accessible to learners of all ages.
- Columbia Nano Initiative: This interdisciplinary research hub at Columbia University focuses on nanotechnology, materials science, and quantum devices. The initiative regularly hosts public lectures, lab tours, and workshops, allowing students and educators to engage directly with groundbreaking research. Topics range from quantum computing to nanoscale energy storage, bridging theoretical physics with real-world applications.
- CUNY Graduate Center, Physics Program: The City University of New York Graduate Center offers advanced programs in condensed matter physics, photonics, and computational physics. Collaborating with other CUNY campuses, the program provides access to specialized laboratories and research opportunities for graduate students, often partnering with industry and government research agencies.
- Brookhaven National Laboratory: Located in Upton, New York, Brookhaven is a leader in nuclear and high-energy physics. It operates facilities like the Relativistic Heavy Ion Collider (RHIC), where scientists study the fundamental forces of nature. Collaborations with NYC universities ensure students and researchers can participate in experiments at the forefront of particle physics.
- NYC Science & Engineering Fair: This annual citywide competition invites high school students to present physics-based and other STEM projects. Finalists often move on to national and international science fairs, gaining valuable experience in research presentation, experimental design, and scientific communication.
Local opportunities and challenges
Opportunities:
- Join NYC Physics Meetups and peer study networks for collaborative learning.
- Apply for the New York State STEM Incentive Program, covering tuition for top-performing science students at SUNY and CUNY schools.
- Explore internships at companies like Con Edison and Siemens, where physics knowledge supports engineering solutions.
Challenges:
- High academic competition in selective schools.
- Limited lab time in some public schools due to budget constraints.
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