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Computer Programming Summer Jobs in Santa Clara, CA

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Computer Programming Summer information

See Santa Clara, CA salary details

$38.8K

$76.3K

$112.2K

How much do computer programming summer jobs pay per year?

As of Aug 20, 2026, the average yearly pay for computer programming summer in Santa Clara, CA is $76,308.00, according to ZipRecruiter salary data. Most workers in this role earn between $59,300.00 and $94,000.00 per year, depending on experience, location, and employer.

What is a computer programming summer?

Computer Programming Summer jobs are short-term positions, internships, or programs offered during the summer months for students or individuals interested in learning or gaining experience in computer programming. These roles often involve tasks like coding, software development, debugging, and collaborating on projects under the guidance of experienced professionals. Summer programming jobs are commonly available through tech companies, startups, educational programs, and research institutions, and they are designed to help participants build practical skills, expand their professional network, and explore potential career paths in technology.

What types of projects or tasks can I expect to work on during a computer programming summer position?

In a Computer Programming Summer role, you'll typically be involved in hands-on projects such as coding small applications, debugging existing software, or contributing to ongoing development tasks under the guidance of experienced engineers. You may also participate in team meetings, code reviews, and collaborate with peers on group assignments. This experience is designed to help you build practical skills, learn industry-standard tools, and gain exposure to real-world development workflows, all while receiving mentorship from professionals in the field.

What are the key skills and qualifications needed to thrive as a computer programming summer intern, and why are they important?

To excel as a Computer Programming Summer Intern, you need a solid understanding of programming languages (such as Python, Java, or C++), problem-solving abilities, and coursework or experience in computer science fundamentals. Familiarity with version control systems like Git, basic software development tools, and sometimes knowledge of specific frameworks or APIs is often required. Strong communication, eagerness to learn, and teamwork skills make candidates stand out in collaborative, fast-paced environments. These competencies enable interns to contribute effectively, adapt quickly, and gain valuable hands-on experience during their internship.

What is the difference between Computer Programming Summer vs Software Development Intern?

AspectComputer Programming SummerSoftware Development Intern
Required CredentialsHigh school or college students, basic programming knowledgeCollege students, relevant coursework or projects
Work EnvironmentSummer programs, tech companies, coding bootcampsTech firms, startups, corporate offices
Employer & Industry UsageEducational programs, internships for skill-buildingProfessional internships, industry experience
Common Search & ComparisonYesYes

Computer Programming Summer roles typically target students gaining initial coding experience during summer breaks, often through educational programs. Software Development Internships are more advanced, involving real-world project work within tech companies. Both roles serve as stepping stones into the tech industry but differ mainly in experience level and scope.

What are the most commonly searched types of Computer Programming jobs in Santa Clara, CA?

The most popular types of Computer Programming jobs in Santa Clara, CA are:

What cities near Santa Clara, CA are hiring for Computer Programming Summer jobs?

Cities near Santa Clara, CA with the most Computer Programming Summer job openings:

Infographic showing various Computer Programming Summer job openings in Santa Clara, CA as of August 2026, with employment types broken down into 1% As Needed, 82% Full Time, 13% Part Time, 3% Contract, and 1% Nights. Highlights an 80% Physical, 1% Hybrid, and 19% Remote job distribution, with an average salary of $76,308 per year, or $36.7 per hour.

Engineering Instructor - Elementary - One week Summer Camp - 2026

Education Unlimited

Palo Alto, CA โ€ข On-site

$1.4K - $1.5K/wk

Temporary

Re-posted 24 days ago


Job description

Education Unlimitedยฎ provides academic summer camps & pre-college summer programs for students entering grades 4-12. Our summer programs include public speaking camps, college admissions prep programs, science camps, summer acting camp, writing camps, computer camp, leadership camp, video production camp, and college tours.
Enginering Camp Instructor
Education Unlimited seeks energetic and experienced science instructors for our fun, activity-based summer program.
Available sessions: Please indicate your availability on your application. Instructors may be hired for one or more sessions based on availability. Housing, meals, salary and travel stipend provided for correct candidate.
  • Stanford University (Grades 4-6)
    July 19 - July 24, 2026
    July 26 - July 31, 2026

Education Unlimited offers two levels of Engineering Courses:
* Intro to Engineering for rising 4th to 6th graders (Available)
* Engineering 9th - 12th for rising 9th to 12th graders (Positions have been filled)
Course descriptions can be found below for both courses.
Intro to Engineering Course Description:
In Intro to Engineering, students will learn the basic principles of engineering design and use this process to solve a variety of build challenges, which must survive performance trials and unexpected obstacles along the way! Students will work collaboratively with one another and our amazing instructors to study the principles of force, energy, mass, and other fundamental properties in Newtonian physics.
Using real-world buildings and other edifices as inspiration, campers will start the week by defying gravity to build the tallest skyscrapers and strongest bridges. Then, they will move onto air resistance and density and study how different types of planes, boats, and cars operate, seeking out unique ways to build them all and optimize their designs. Students learn how engineers have to build with earth's forces in mind; from gravity, to air resistance, to friction, to buoyancy and even centripetal force, students will be learning how scientists both work against and with those forces in their designs.
As the week continues, our engineering challenges get even more elaborate! Campers will be faced with tasks that combine their knowledge of physics with ingenuity and an ability to work together within a budget! Students will learn how to use air resistance to create windmills and helicopters as well as fight against that force when they create rockets and planes. They will even learn how to keep a top spinning as they create their own toy that uses centripetal force. The camp finale will be a demonstration of campers' final invention, an egg drop - whose team will succeed and get their precious cargo to safety, and who will crack under pressure?sing real-world buildings and other edifices as inspiration, campers will start the week by defying gravity to build the tallest skyscrapers and strongest bridges. Then, they will move onto air resistance and density and study how different types of planes, boats, and cars operate, seeking out unique ways to build them all and optimize their designs.
As the week continues, our engineering challenges get even more elaborate! Campers will be faced with tasks that combine their knowledge of physics with ingenuity and an ability to work together within a budget! The camp finale will be a demonstration of campers' final invention, an egg drop - whose team will succeed and get their precious cargo to safety, and who will crack under pressure?
High School Engineering Course Description
This immersive camp gives students a hands-on introduction to diverse fields of engineering, guiding them through the full design process across multiple specialties. The week begins with a human-centered design challenge - creating a functional wallet - and progresses into electrical engineering with basic circuitry involving switches and light bulbs.
Midweek, students tackle an environmental challenge by designing and building water filtration systems, followed by a biomedical engineering project where they construct a prosthetic hand and explore biomechanics. Mechanical engineering is next, with rubber band-powered car builds that emphasize force, motion, and design iteration.
The camp wraps up with an exciting Engineering Olympics - a friendly, fast-paced competition that brings together all the skills students have built throughout the week. Along the way, students practice budgeting, build bills of materials, and present their projects, gaining skills that extend far beyond the classroom.
RESPONSIBILITIES
In-person Camp Responsibilities include teaching the Education Unlimited curriculum, supervising campers both in and out of the classroom, organizing and leading classroom labs, and executing a finale showcasing student work at the end of camp. Instructors will also be responsible for tracking student work and handing in any deliverables to the camp director and EU home office.
In addition to teaching responsibilities, instructors should be available and willing to assist the camp director with active supervision, recreational activities, and some administrative tasks. Instructors should be mature, reliable, and able to work well with fellow staffers. Instructors are also expected to act as mentors and will be asked to assist with field trips and guide students on excursions. With the support of the entire staff, instructors are responsible for the health and safety of students, in addition to fulfilling instructional objectives.
At all overnight programs, instructors have the option of commuting to camp each day or staying overnight on campus. Overnight staff members will receive full room and board and will be expected to help with evening supervision duties.
Qualifications:
Instructors are usually year-round science teachers, are studying science at the graduate level, or have some other significant teaching/mentoring experience in the area of cardiology.
  • 2+ years experience teaching experience or significant subject matter knowledge.
  • Experience working with middle, high school or college age students in an academic setting.
  • Preference given to those with an advanced degrees.
  • A passion for science education.
  • A calm and professional demeanor.
  • Self-motivation and follow-through.
  • Strong organizational skills and attention to detail.