Applications
Rolling admissions
The verified cycle used rolling admissions.
Physics & Quantum Computing High School Course
A hands-on introduction to quantum mechanics, circuits and computation, combining technical projects with expert teaching and career exploration.

A hands-on introduction to quantum mechanics, circuits and computation, combining technical projects with expert teaching and career exploration.

What Succeed checks
We review public program details such as eligibility, age range, cost, duration, location, format, accommodation, meals and application timing.
What Last verified means
Last verified is the latest date Succeed checked the public details shown on this page. Program dates, prices and availability can still change.
How official sources are used
Succeed uses official provider information where available, then rewrites it into a student-facing summary for comparison and planning.
Why some dates are reference dates
If the current cycle is not available, Succeed may show the latest verified cycle dates so you can understand typical timing.
Succeed is independent from this provider unless a partnership is clearly stated.
Current status
Applications open
Eligibility
Grades 9-12; 3.0 GPA
Age range / Year group
Grades 9-12
Location / Region
Berkeley; Washington, DC
Cost
From $2,998
Duration
2 weeks
Format
In-person
Application deadline
Rolling · Next cycle not announced yet. These dates are from the latest verified cycle and should be used as a reference only.
Save programAccommodation: Residential and commuter options
Meals: All meals residential; lunch commuter
Latest verified cycle: 2026
Campus experience: Dorms, excursions and college workshops
Tutors / faculty: Physics and quantum experts
This is an introductory but academically challenging course in physics and quantum computing, with a focus on superposition, entanglement, quantum circuits and computation.
Students learn through individual and group activities such as basic quantum programming, circuit visualization and analysis of applications including cryptography, healthcare and engineering.
It suits students considering physics, computer science or emerging-technology pathways who want technical study alongside campus life and career exploration.
The Physics & Quantum Computing High School Course is a Summer Springboard academic program introducing high school students to quantum mechanics, information science, computation and hardware. Students examine concepts such as superposition, entanglement and quantum circuits through accessible but rigorous teaching.
The experience combines theory with individual and group activities, including basic quantum programming and circuit visualization. Career exploration connects the subject with cryptography, healthcare, public policy, national defense, technology and engineering.
It makes advanced quantum concepts approachable without removing academic challenge.
Students apply ideas through programming, circuit visualization and collaborative projects.
The course connects quantum technology with real applications and emerging careers.
Named instructors bring substantial experience in physics, quantum research and secondary education.
Residential and commuter routes let families choose between full campus life and daytime study.
Students curious about physics, computer science or quantum technology who want hands-on academic exploration and a taste of university life.
You want a formal qualification, a fully online course or a narrowly exam-focused physics revision program.
The course can be worthwhile for a student who wants to test a serious interest in quantum science before committing to a university pathway. Practical activities and career exposure make the subject more concrete than independent reading alone.
The limitation is value for money: tuition is substantial, and participation does not provide a stated academic qualification. Families should judge whether the campus, residential and enrichment elements justify the price, rather than paying for the university setting alone.
A practical overview of cost, accommodation, meals, dates and provider details to review before deciding.
Cost and what is included
From $2,998; includes Residential: academic course, lodging and all meals, Residential: excursions and weekend excursions, Commuter: academic course and lunch, Commuter: excursions and weekday programming, Orientation, college preparation and enrichment activities.
Accommodation
Residential and commuter options
Meals
All meals residential; lunch commuter
Provider details
Review the Summer Springboard provider page and official sources before making a final decision.
Dates and logistics
2 weeks; Berkeley; Washington, DC.
What to check before committing
Confirm current dates, payment terms, travel arrangements, cancellation rules and what is included with the provider.
Compare this program with similar options before deciding on dates, cost, format and fit.
Compare with similar programsEffort level
Moderate to high academic engagement.
Best started
Begin six to eight weeks before your preferred admission point to compare campuses, prepare short answers and organize payment and documents.
Main challenge
Building intuition for quantum concepts that differ sharply from classical computing.
Review basic ideas from waves, probability and computing vocabulary.
Write down why quantum computing interests you before completing the short-answer questions.
Compare residential and commuter inclusions before choosing a tuition type.
Discuss any health, dietary, travel or support needs early with the admissions team.
Useful if
You already enjoy mathematics, physics, coding or conceptual problem-solving.
Students combine introductory teaching with practical quantum-computing activities, career exploration and wider campus programming. The academic course is the central focus across the two-week experience.
Build an introduction to quantum mechanics and classical-versus-quantum computing.
Study superposition, entanglement, quantum information, circuits and hardware.
Create and run basic quantum programs individually and in groups.
Visualize quantum circuits and explore applications such as cryptography.
Learn how quantum technology connects with healthcare, defense, policy and engineering.
Join college-readiness workshops, excursions and campus activities.
Next cycle not announced yet. These dates are from the latest verified cycle and should be used as a reference only.
Applications
Rolling admissions
The verified cycle used rolling admissions.
Final admission deadline
17 May 2026
Final general deadline for 2026 programs.
Berkeley Session 2
21 June-3 July 2026
Two-week course run.
Georgetown Session 1
21 June-3 July 2026
Two-week course run.
Berkeley Session 4
5-17 July 2026
Two-week course run.
Berkeley Session 6
19-31 July 2026
Two-week course run.
| Milestone | Date | Timezone | Status | |
|---|---|---|---|---|
Applications | Rolling admissions | Local | Reference date | |
Final admission deadline | 17 May 2026 | Local | Reference date | |
Berkeley Session 2 | 21 June-3 July 2026 | Local | Reference date | |
Georgetown Session 1 | 21 June-3 July 2026 | Local | Reference date | |
Berkeley Session 4 | 5-17 July 2026 | Local | Reference date | |
Berkeley Session 6 | 19-31 July 2026 | Local | Reference date |
Students in Grades 9-12
Minimum 3.0 GPA or local equivalent
Rising ninth graders may enroll
Spring high school graduates may enroll
International students must demonstrate English proficiency
Students must meet essential eligibility criteria
Students must follow staff instructions in English
Georgetown tuition
$2,998-$5,798 — Commuter or residential tuition.
Funding or discounts
What's included
Residential: academic course, lodging and all meals, Residential: excursions and weekend excursions, Commuter: academic course and lunch, Commuter: excursions and weekday programming, Orientation, college preparation and enrichment activities
A parent or guardian creates an account in the application portal.
Confirm the registration email and complete the account details.
Choose Create New Application from the dashboard.
Select the campus, session, course and tuition type.
Enter student details and complete the short-answer questions and agreements.
Pay the $600 deposit and applicable application fee.
Submit any additional forms or supporting documents requested.
Wait for the enrollment decision by email.
The program covers the following focus areas.
Quantum foundations
Study superposition, entanglement and differences between classical and quantum computing.
Quantum circuits
Explore quantum information, computation and circuit visualization through practical activities.
Quantum hardware
Build foundational understanding of processors, hardware principles and quantum phenomena.
Real-world applications
Examine implications for cryptography, healthcare, defense, policy and engineering.
Curriculum may be adjusted based on participant interests and current developments.
A typical day during the program.
The selected course generally runs from 9:00am until lunch.
Students join a recreational activity or course-connected academic excursion.
College-readiness workshops or the True You curriculum typically follow.
Residential students have dinner, clubs or social activities before room checks.
The course is taught by educators and practitioners selected for subject expertise and their ability to challenge and engage students. Named instructors include experienced physics teachers and quantum researchers with backgrounds spanning university teaching, quantum software, industry research and high school curriculum development.
Instructor assignments can vary by campus and session.
Residential rooms are shared and use common bathrooms; arrangements vary by campus.
After completing this program, participants often pursue:
Develop a foundation for further physics or quantum-computing study.
Explore university pathways in physics, computer science and engineering.
Gain practical examples to reflect on in future applications.
Understand careers across quantum research, technology and public policy.
Build confidence discussing emerging quantum technologies.
The course does not state that it awards academic credit or a formal qualification.
Students can study in Berkeley, California, near Silicon Valley’s quantum-computing companies and research facilities, or on the Georgetown University campus in Washington, DC. Both settings combine campus life with local activities, excursions and access to wider academic or professional contexts.
Summer Springboard operates the programs independently of its campus hosts.
Compare these related physics, science and engineering programs if you want a different academic emphasis or campus experience.
Physics and astronomy study in Cambridge
Best for
Students wanting broader physical science rather than a quantum specialization.
Modern science methods and questions
Best for
Younger students exploring several STEM directions before specializing.
Engineering-focused academic summer study
Best for
Students more interested in applied engineering than theoretical quantum physics.
Save this program in Succeed to compare it with similar programs, dates, costs and formats in one place.
Compare with other programs
Content reviewed by
Co-founder, Succeed | Founder, Immerse Education (2012–2026)
Sean works at the intersection of academic enrichment, program quality and university preparation, with expertise in evaluating pre-university experiences for ambitious secondary school students.
Succeed uses official provider information where available, but keeps this public page focused on comparison and planning inside Succeed.
Course details checked
Campus options verified
Session dates reviewed
Tuition compared
Eligibility reviewed
Application process checked
Accommodation details reviewed
Refund terms checked
We use source material to verify core facts, then show older cycle dates as reference when a current cycle is not available. Always check current application instructions before applying.