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Summary
Podcast

Private physics classes recently held in New York City
Students near Harlem, Venice, Midtown dive in Physics Concepts
Harjinder taught 9 days ago
The session focused on the academic concept of free fall in Physics, covering its definition, the trajectory of objects in free fall, and the relationship between velocity and acceleration. Student and Tutor also analyzed the graphical representation of free fall using velocity-time graphs. They practiced two kinematics problems involving dropped and vertically thrown objects. The Student expressed interest in discussing Newton's laws and forces in the upcoming session.
Understanding Free Fall
Trajectory and Velocity Changes in Free Fall
Velocity-Time Graphs for Free Fall
Kinematic Formula Application in Free Fall
The Meaning of Negative Acceleration in Free Fall
AMAN taught about 1 month ago
The tutor and student reviewed Newton's Laws of Motion, focusing on the third law (action-reaction pairs) and its application in free-body diagrams and problem-solving. They practiced setting up equations of motion for systems on inclined planes and with pulleys, and discussed impulse and the law of conservation of momentum, with the student working through several practice problems.
Newton's Third Law of Motion
Free Body Diagrams (FBD)
Applying Newton's Second Law with FBDs
Impulse and Momentum
Law of Conservation of Momentum
Garima taught 2 months ago
The Student and Tutor focused on understanding and applying the principles of electromagnetic induction, magnetic flux, Faraday's Law, and Lenz's Law. They practiced determining the direction of induced currents in various physical scenarios. The Student was assigned to complete more homework questions on these topics, including forces, and bring any new challenges to the next session.
Applying Lenz's Law for Current Direction
Lenz's Law: Opposing the Change
Magnetic Flux (Φ) and Faraday's Law
Magnetism vs. Electromagnetic Induction
Bipin taught 4 months ago
The student and tutor worked on refining a lesson plan for electrostatics, focusing on core concepts like static electricity, charge, the triboelectric effect, and atomic structure. They discussed how to best explain these topics to students and practiced solving problems related to charge transfer. The session also included a detailed discussion on the historical definitions of physical units.
Static Electricity and Charge Transfer
Electric Fields and Forces
Structure of the Atom and Charge
Fundamental Forces in Physics
Hugo taught 5 months ago
The Tutor and Student reviewed several physics concepts including celestial mechanics (center of mass, gravitational force, orbital period), kinematics (escape velocity), fluid dynamics (Bernoulli's equation, hydrostatic pressure), and oscillatory motion (simple harmonic motion). The session involved problem-solving and formula derivation, with plans to send practice problems with answer keys.
Center of Mass Calculation
Simple Harmonic Motion (SHM)
Bernoulli's Principle in Fluid Dynamics
Centripetal Force and Orbital Period
Newton's Law of Universal Gravitation
Escape Velocity
Zahoor Ahmad taught 6 months ago
The tutor and student reviewed concepts related to sound waves, including calculating distance using the echo method. They also explored the electromagnetic spectrum, wave equations, and radiation dosimetry. The session included practice problems and discussions on wave diagrams and light refraction through lenses.
Echo Location and Distance Calculation
Electromagnetic Spectrum Order and Properties
Wave Equation and Its Applications
Absorbed Dose and Equivalent Dose in Radiation
Diffraction of Waves
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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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