Johns Hopkins MSE Electrical and Computer Engineering
Johns Hopkins University · Whiting School of Engineering · Baltimore, United States- Full time
- In person
- TOEFL, IELTS or another school-approved test where an exemption does not apply
Tuition, living for 18 months, application, SEVIS and visa.
published or derived planning amount
Johns Hopkins credits
full-time in-person route
full-time study
programme-specific status
programme rules control
What is the Johns Hopkins MSE Electrical and Computer Engineering?
The Johns Hopkins MSE Electrical and Computer Engineering is a 30-credit, in-person master’s at the Baltimore location. Its academic centre is electrical, computer and information systems. Johns Hopkins lists the degree as STEM-OPT eligible, while this guide deliberately excludes the separately advertised online route for students who meet the campus conditions.
The study map moves through signals, computer engineering, communications and technical design. One named culminating route is a ten-course ECE master’s. That sequence matters more than the broad Johns Hopkins brand because it shows the proof a graduate can actually take to an employer or a later research application.
For an Indian prospective student, the practical comparison joins the programme’s holistic academic review, prior proof in circuits, signals, computing and engineering mathematics, the MSE in Electrical and Computer Engineering Fall 2027 timing and a INR 1.44 crore planning case. Each is an independent check. Strength in one does not cancel a missing prerequisite, a late file or an unaffordable funding plan.
One 3-credit boundary in electrical, computer and information systems links signals with a possible hardware engineer direction. That connection describes assessed study, not a placement promise. Its usefulness depends on whether the student can retain and explain the resulting work in a later selection process.
The electrical, computer and information systems map assigns 3 published credits to the hardware engineer pathway. For signals, the hardware engineer pathway connects assessed study with hardware engineer work. This boundary separates a named academic requirement from a broad claim about career relevance.
One 3-credit boundary in electrical, computer and information systems links computer engineering with a possible electrical engineer direction. That connection describes assessed study, not a placement promise. Its usefulness depends on whether the student can retain and explain the resulting work in a later selection process.
The electrical, computer and information systems map assigns 3 published credits to the electrical engineer pathway. For computer engineering, the electrical engineer pathway connects assessed study with electrical engineer work. This boundary separates a named academic requirement from a broad claim about career relevance.
One 3-credit boundary in electrical, computer and information systems links communications with a possible embedded-systems engineer direction. That connection describes assessed study, not a placement promise. Its usefulness depends on whether the student can retain and explain the resulting work in a later selection process.
The electrical, computer and information systems map assigns 3 published credits to the embedded-systems engineer pathway. For communications, the embedded-systems engineer pathway connects assessed study with embedded-systems engineer work. This boundary separates a named academic requirement from a broad claim about career relevance.
One 3-credit boundary in electrical, computer and information systems links technical design with a possible signal-processing engineer direction. That connection describes assessed study, not a placement promise. Its usefulness depends on whether the student can retain and explain the resulting work in a later selection process.
The electrical, computer and information systems map assigns 3 published credits to the signal-processing engineer pathway. For technical design, the signal-processing engineer pathway connects assessed study with signal-processing engineer work. This boundary separates a named academic requirement from a broad claim about career relevance.
The course-specific hinge is the move from signals into technical design. ECE foundation courses accounts for 6 credits, while Technical electives or research accounts for 6. That distribution shows whether the degree is chiefly taught, research-led or professionally integrated; it is more informative than treating every Master of Science in Engineering as interchangeable.
Signals frames electrical, computer and information systems; computer engineering then tests circuits, signals, computing and engineering mathematics. Communications supplies evidence for electrical engineer, while technical design can support a later hardware engineer application.
The opening requirement is ECE foundation courses; the closing requirement is Technical electives or research. Their 6-credit and 6-credit weights separate preparation for embedded-systems engineer from the evidence a future signal-processing engineer may need.
Read signals, computer engineering, communications and technical design as a progression through electrical, computer and information systems. The sequence begins with ECE foundation courses and ends with Technical electives or research. Different elective and assessment choices explain why two applicants can use the same degree very differently.
For this exact plan, ECE foundation courses establishes signals; Chosen technical focus develops computer engineering; Advanced ECE electives tests communications; and Technical electives or research provides room to demonstrate technical design. That sequence is the practical reason to compare MSE in Electrical and Computer Engineering with nearby degrees instead of treating every Master of Science in Engineering as equivalent.
How much does the Johns Hopkins MSE Electrical and Computer Engineering cost for an Indian student?
The full planning case is USD 150,374, about INR 1.44 crore. It combines the latest published or schedule-derived tuition and fees, Johns Hopkins University’s graduate living categories for 18 months, the application fee, SEVIS and the F-1 visa fee, before flights and a housing deposit.
| Item | INR | Local currency | When it is due |
|---|---|---|---|
| Latest published 2026-27 tuition | INR 98.42 lakh | USD 103,005 | Across the stated full-time plan |
| Mandatory university fees planning allowance | INR 5.20 lakh | USD 5,438 | Across the programme |
| Living, insurance and study allowance for 18 months | INR 39.55 lakh | USD 41,396 | Prorated from the applicable school's cost-of-attendance basis |
| Graduate application | INR 0.00 lakh | USD 0 | At application; waivers may differ |
| SEVIS I-901 fee | INR 0.33 lakh | USD 350 | Before the visa interview |
| F-1 visa application | INR 0.18 lakh | USD 185 | At visa booking |
| Full-programme planning total | INR 1.44 crore | USD 150,374 | Before flights and a housing deposit |
The table treats the SEVIS and visa charges as separate payments. It does not add a second visa-maintenance total because the complete living plan already covers the study period. Converted at USD 1 = INR 95.55, derived from ECB euro reference rates dated 14 September 2026.
Johns Hopkins requires international graduate students to submit a financial guarantee before the university can issue an I-20.Johns Hopkins international graduate admission
The living line prorates JHU’s latest graduate cost-of-attendance categories across 18 months. Housing, food, books, personal costs, insurance and travel remain planning allowances rather than a promise of actual spending.
The tuition line uses JHU’s latest published 2026-27 basis, not an unpublished 2027-28 price. Per-credit schools and programmes with published all-in tuition are calculated on that specific basis; later university decisions can change the bill.
Flights, exchange spreads, a refundable housing deposit and personal contingency remain outside the table. They vary too much to attach one official amount to every applicant, but they still need cash in the funding plan before departure.
A scholarship should reduce the plan only after it appears in a written award. Campus employment is limited, competitive and dependent on authorisation, so it is not a sound way to close a known tuition gap at the application stage.
The estimate isn’t an invoice, doesn’t cap individual spending and can’t replace the payment terms in an Johns Hopkins offer. It won’t predict actual housing costs and shouldn’t be treated as a scholarship assumption. It is a common comparison case that keeps the main assumptions visible before an applicant commits.
The institution identity is independently recorded by the Research Organization Registry. That confirms the provider behind the bill, while the offer and student account remain the controlling sources for the amount and due dates.
Can an Indian prospective student meet Johns Hopkins MSE Electrical and Computer Engineering entry rules?
The first check is the official MSE in Electrical and Computer Engineering admission record. Applicants need a recognised bachelor’s degree or the exact prior qualification named there. The academic file should make circuits, signals, computing and engineering mathematics visible through transcript lines, syllabi and assessed work; a degree title alone does not prove those foundations.
| Requirement | Published rule | What you do |
|---|---|---|
| Degree match (India) | a recognised bachelor's degree or the programme's stated professional first degree | Map the transcript and portfolio to circuits, signals, computing and engineering mathematics |
| Academic record (India) | No universal numeric admission floor was published on the checked programme page | Submit the complete marks record and grading scale; treat any recommended GPA as guidance |
| English (India) | TOEFL, IELTS or another school-approved test where an exemption does not apply | Use the master's rule when it is higher than the university minimum |
| Academic purpose (India) | A coherent reason for advancing into electrical, computer and information systems | Connect existing proof to the published culminating assessment |
| International records (India) | Original-language records with complete official English translations where needed | Do not upload self-translated or incomplete records |
The first transcript audit should find concrete proof of signals. A useful audit records the module title, mark, credit weight and syllabus topic so an assessor does not have to infer readiness from the institution name.
Next, isolate proof for computer engineering. A laboratory, project or substantial assignment is stronger than a list of buzzwords because it shows what was built, measured or decided and what limitations remained.
The statement should explain why communications is the next academic step and why Johns Hopkins University’s technical design route serves it. Repeating the master’s webpage does not answer that personal progression question.
Finally, English, recommendations and translations remain independent document checks. A file that clears the academic match can remain incomplete if an accepted score, literal translation or required referee response is missing.
MSE in Electrical and Computer Engineering uses Signals as a 3-credit checkpoint. Readiness for signals is visible before Signals, not repaired automatically by enrolment. A transcript item, syllabus topic and assessed result together make that preparation easier to recognise.
MSE in Electrical and Computer Engineering uses Computer Engineering as a 3-credit checkpoint. Readiness for computer engineering is visible before Computer Engineering, not repaired automatically by enrolment. A transcript item, syllabus topic and assessed result together make that preparation easier to recognise.
MSE in Electrical and Computer Engineering uses Communications as a 3-credit checkpoint. Readiness for communications is visible before Communications, not repaired automatically by enrolment. A transcript item, syllabus topic and assessed result together make that preparation easier to recognise.
MSE in Electrical and Computer Engineering uses Technical Design as a 3-credit checkpoint. Readiness for technical design is visible before Technical Design, not repaired automatically by enrolment. A transcript item, syllabus topic and assessed result together make that preparation easier to recognise.
MSE in Electrical and Computer Engineering uses Signals as a 3-credit checkpoint. Readiness for signals is visible before Signals, not repaired automatically by enrolment. A transcript item, syllabus topic and assessed result together make that preparation easier to recognise.
Within MSE in Electrical and Computer Engineering, the relationship between signals and communications is a readiness test for electrical engineer ambitions. A file showing only computer engineering leaves the technical design part of this academic progression unexplained.
A future hardware engineer still needs documented preparation in circuits, signals, computing and engineering mathematics. For MSE in Electrical and Computer Engineering, career intent cannot substitute for that academic base, while the published GPA remains a floor rather than a complete selection model.
For this admission file, readiness means being able to explain work in circuits, signals, computing and engineering mathematics. A convincing example should identify the problem, the method selected, the result and one limitation. That evidence is especially important before entering computer engineering, because the published plan allocates graduate credit to progression rather than prerequisite repair.
Evidence for signals should precede enrolment; evidence for communications can then explain progression. Together, circuits, signals, computing and engineering mathematics make that distinction visible to the reviewing department.
A transcript supporting electrical engineer ambitions needs recognisable preparation for ECE foundation courses. A project supporting hardware engineer ambitions should instead clarify readiness for Technical electives or research and its 6-credit demand.
Preparation for ECE foundation courses can appear in coursework; preparation for Technical electives or research may appear in supervised research, employment or a substantial project. For MSE in Electrical and Computer Engineering, both forms should connect back to circuits, signals, computing and engineering mathematics without asking an assessor to infer technical depth from a job title.
A MSE in Electrical and Computer Engineering evidence map should connect prior study to ECE foundation courses, then identify one assessed example that proves readiness for Chosen technical focus. Applicants should separately document communications and explain why Technical electives or research is development rather than repetition. This makes the prerequisite case specific to electrical, computer and information systems.
Three checks that can block a MSE in Electrical and Computer Engineering application
A GPA floor is not an admission promise
The 3.00 figure is a minimum under Johns Hopkins University’s wording. Competitive review can still distinguish applicants through subject depth, statement quality, recommendations or quantitative readiness.
The degree title cannot prove prerequisites
A broad Indian degree name may hide whether circuits, signals, computing and engineering mathematics was studied. Add syllabi or official descriptions when course titles do not make the preparation clear.
English rules can be master's-specific
Use TOEFL, IELTS or another school-approved test where an exemption does not apply as the working programme reference. Waivers depend on the exact school rule; an English-medium Indian degree is not automatically accepted unless the published policy says so.
How should an Indian applicant apply for Johns Hopkins MSE Electrical and Computer Engineering?
The application runs through Johns Hopkins University’s international graduate route for the exact plan code shown on the official degree page. The working point is 15 february 2027 deadline for fall 2027. Submit earlier when visa processing and prerequisite review need room. The plan allows 75 days for post-offer visa work.
Select the exact full-time Baltimore programme in the application system named by the school, upload every academic and programme document, pay the stated fee, monitor the checklist, clear offer conditions, then complete JHU's financial-document, I-20 and F-1 steps.
| Start by | Task | Takes | Why this date |
|---|---|---|---|
| 17 Sep 2026 | Complete English evidence | 75 days | Meet TOEFL, IELTS or another school-approved test where an exemption does not apply with time for one retake. |
| 20 Oct 2026 | Audit the course match | 14 days | Match prior study to circuits, signals, computing and engineering mathematics and the published academic-readiness criteria. |
| 03 Nov 2026 | Prepare programme documents | 28 days | Collect official records, translations, statement, CV and any required recommendations or test. |
| 01 Dec 2026 | Submit the Johns Hopkins application | 1 day | Use the exact campus-immersion plan and keep the receipt. |
| 02 Dec 2026 | Clear conditions and prepare F-1 | 75 days | Fund the offer, obtain the I-20, pay SEVIS and book the visa process. |
The allowances are Nbyula planning estimates, not processing times published by Johns Hopkins University.
Build the file around Signals and Computer Engineering, not around a generic Johns Hopkins statement. Use earlier coursework or employment to show readiness, then identify the gap that the published curriculum is meant to close.
The programme reports 15 february 2027 deadline for fall 2027. A priority date can be followed by space-available review, while a final date closes the published window. Neither should be confused with the separate international I-20 timing needed to reach campus.
After admission, read the offer and the applicant portal task list line by line. Financial guarantee, final transcripts, immunisation records and I-20 processing can each continue after the academic decision and can each delay enrolment if ignored.
For F-1 planning, check the SEVIS I-901 step and the US visa fee page directly. Fee payment does not guarantee a visa, and a programme offer does not replace consular review.
This page covers full-time campus study. Where Johns Hopkins also lists Online, select the campus-immersion plan because the visa and STEM-OPT discussion does not apply to Johns Hopkins Online in the same way.
What jobs can follow Johns Hopkins MSE Electrical and Computer Engineering?
The curriculum supports directions such as electrical engineer, embedded-systems engineer, signal-processing engineer and hardware engineer. Checked programme materials present this route as STEM-designated, but the OPT framework is work authorisation rather than a placement or sponsorship guarantee. Applicants still need role-specific experience, inspectable evidence and a suitable employer.
| Measure | Finding | Basis |
|---|---|---|
| Signals | Electrical Engineer | Proof from Signals |
| Computer Engineering | Embedded-Systems Engineer | Proof from Computer Engineering |
| Communications | Signal-Processing Engineer | Role direction inferred from the academic map |
| Guaranteed placement or sponsorship | None published | No exact-master's guarantee located |
These are academic map-linked directions for MSE in Electrical and Computer Engineering, not a measured probability of employment, salary, visa sponsorship or promotion.
For a electrical engineer application, preserve the brief, inputs, method, decisions and limitations from Signals. That record gives a recruiter something more reliable than a transcript line or a claim that the degree was practical.
The embedded-systems engineer route needs a different proof item from Computer Engineering. Explain the trade-off made, the proof rejected and the effect of uncertainty so the work shows judgement rather than only tool familiarity.
A candidate aiming at signal-processing engineer should use the culminating assessment to join both samples around one problem. A coherent portfolio can then show progression across the degree without asking the Johns Hopkins name to stand in for capability.
F-1 graduates can normally seek up to 12 months of OPT, and an eligible STEM degree may support a further 24-month extension if every rule is met. The USCIS STEM-OPT guidance controls that process and does not require any employer to hire the graduate.
Inside MSE in Electrical and Computer Engineering, Computer Engineering carries 3 published credits. Its value for a electrical engineer direction depends on making computer engineering inspectable. A retained question, method, result and limitation can show what Computer Engineering added without implying a promised hiring result.
Inside MSE in Electrical and Computer Engineering, Communications carries 3 published credits. Its value for a embedded-systems engineer direction depends on making communications inspectable. A retained question, method, result and limitation can show what Communications added without implying a promised hiring result.
Inside MSE in Electrical and Computer Engineering, Technical Design carries 3 published credits. Its value for a signal-processing engineer direction depends on making technical design inspectable. A retained question, method, result and limitation can show what Technical Design added without implying a promised hiring result.
Inside MSE in Electrical and Computer Engineering, Signals carries 3 published credits. Its value for a hardware engineer direction depends on making signals inspectable. A retained question, method, result and limitation can show what Signals added without implying a promised hiring result.
Inside MSE in Electrical and Computer Engineering, Computer Engineering carries 3 published credits. Its value for a electrical engineer direction depends on making computer engineering inspectable. A retained question, method, result and limitation can show what Computer Engineering added without implying a promised hiring result.
The clearest portfolio connection for a future electrical engineer joins communications to technical design. A different target, such as signal-processing engineer, changes what should be retained from assessment: design decisions matter more for one route, while model validation, technical constraints or research limitations can matter more for the other.
For embedded-systems engineer recruitment, computer engineering can become the technical narrative. For signal-processing engineer selection, communications should produce the inspectable artefact. Neither route turns electrical, computer and information systems into guaranteed employment.
A hardware engineer portfolio can connect ECE foundation courses with Technical electives or research; a electrical engineer portfolio may emphasise signals and technical design. These are different evidence choices inside one MSE in Electrical and Computer Engineering degree plan.
One graduate may present signals when interviewing for electrical engineer; another may present technical design when pursuing hardware engineer. A third route through communications could support signal-processing engineer. The degree enables those narratives only when the assessed work is retained, explained and matched to the vacancy.
The most direct electrical engineer narrative starts with signals and ends with an inspectable result from Technical electives or research. A embedded-systems engineer narrative should instead foreground computer engineering; signal-processing engineer candidates need evidence of communications; and a hardware engineer direction depends on technical design. These are portfolio choices, not promised occupations.
Who is Johns Hopkins MSE Electrical and Computer Engineering for, and who should avoid it?
A strong fit already has circuits, signals, computing and engineering mathematics, wants assessed proof in communications and can fund INR 1.44 crore without promised employment. A weak fit needs foundational repair, wants a different technical centre or depends on uncertain US earnings to make the course affordable.
| Verdict | Your background | Why |
|---|---|---|
| Strong fit | Prepared for signals | Earlier study supports progression into Signals. |
| Strong fit | Needs proof in technical design | The published culminating route can produce inspectable work. |
| Needs evidence | Still choosing between electrical engineer and embedded-systems engineer | Electives must turn that uncertainty into one coherent capability map. |
| Needs evidence | Funding is close to the ceiling | The INR 1.44 crore case excludes flights and a housing deposit. |
| Do not shortlist | Needs basic preparation before computer engineering | Graduate credits are too expensive to use mainly for prerequisite repair. |
| Do not shortlist | Needs a guaranteed US placement | No course-level job or sponsorship guarantee supports that assumption. |
The positive academic test begins with Signals. A suitable entrant recognises its foundation from existing work but still needs Johns Hopkins University’s graduate-level treatment to solve harder problems in electrical, computer and information systems.
The next fit question concerns Computer Engineering. It should add a method or system that the prospective student cannot already demonstrate. If it mostly repeats a strong undergraduate module, examine the elective freedom before paying for the overlap.
The professional test is whether a electrical engineer hiring manager can inspect output from communications. A useful artefact states the problem, data or constraints, the chosen method, the result and the limits of that result.
Someone pursuing embedded-systems engineer work must also value technical design. If that part of the degree consumes substantial assessed time but has little use in the intended role, a differently structured master’s may be the better buy.
The final academic trade-off sits in the choice among project, thesis, portfolio or examination where Johns Hopkins lists them. A thesis serves research depth, an applied project serves delivery proof, and a portfolio serves synthesis. Only routes actually published for this master’s belong in the decision.
Affordability is separate from academic fit. The estimate uses USD 1 at INR 95.55, so exchange movement changes the rupee amount even when Johns Hopkins leaves a dollar charge unchanged.
The campus choice also matters. This page uses Baltimore and in-person study. An prospective student selecting an online version would face different attendance, visa and work-authorisation consequences and should not reuse this page’s F-1 assumptions.
Applicants can ask current MSE in Electrical and Computer Engineering students about access to preferred electives, team formation, faculty supervision and the weekly load. The research pass did not locate three independent exact-master’s accounts, so those lived details remain questions rather than reported facts.
The Communications choice in MSE in Electrical and Computer Engineering matters to a future signal-processing engineer. Its 3 credits are well spent when communications closes a demonstrated gap. They are poorly spent when Communications merely repeats work already proven in the admission file.
The Technical Design choice in MSE in Electrical and Computer Engineering matters to a future hardware engineer. Its 3 credits are well spent when technical design closes a demonstrated gap. They are poorly spent when Technical Design merely repeats work already proven in the admission file.
The Signals choice in MSE in Electrical and Computer Engineering matters to a future electrical engineer. Its 3 credits are well spent when signals closes a demonstrated gap. They are poorly spent when Signals merely repeats work already proven in the admission file.
The Computer Engineering choice in MSE in Electrical and Computer Engineering matters to a future embedded-systems engineer. Its 3 credits are well spent when computer engineering closes a demonstrated gap. They are poorly spent when Computer Engineering merely repeats work already proven in the admission file.
The Communications choice in MSE in Electrical and Computer Engineering matters to a future signal-processing engineer. Its 3 credits are well spent when communications closes a demonstrated gap. They are poorly spent when Communications merely repeats work already proven in the admission file.
This exact structure suits someone who wants signals to support embedded-systems engineer work and is willing to spend 30 credits building that connection. It is a weaker purchase for an applicant whose existing portfolio already proves communications and whose next gap lies outside electrical, computer and information systems.
Applicants strongest in signals but inexperienced in technical design have a clear development gap. Applicants already fluent in computer engineering and communications should confirm that electives add depth rather than duplicate earlier work.
Fit improves when signals is established and technical design remains a genuine development need. Someone targeting signal-processing engineer should verify that electrical, computer and information systems supplies the missing method, system or research setting.
A profile combining circuits, signals, computing and engineering mathematics with curiosity about technical design has a direct reason to consider this course. A profile centred on signal-processing engineer should examine communications closely. A profile centred on embedded-systems engineer should instead test the depth and availability of computer engineering.
The course is strongest for an applicant who can already handle ECE foundation courses but still needs depth in Advanced ECE electives. It is weaker when earlier study already covers signals, computer engineering, communications and technical design, because the remaining value would depend heavily on elective access and the final assessed route.
What does the Johns Hopkins MSE Electrical and Computer Engineering curriculum contain?
The official programme page sets the 30-credit structure summarised here. The table separates required areas, specialist work, electives and the final assessed component instead of inventing a term-by-term timetable. Confirm the live catalogue before registration because elective availability can change.
| Component | Johns Hopkins credits | Where it sits |
|---|---|---|
| ECE foundation courses | 6 | |
| Chosen technical focus | 9 | |
| Advanced ECE electives | 9 | |
| Technical electives or research | 6 | |
| Total | 30 |
The note “Published or consolidated degree-plan component” applies to 4 components in this table.
- Complete 30 approved graduate credit hours.
- Follow the published choice among a ten-course ECE programme.
- Confirm approved electives, prerequisites and the plan of study with the academic unit.
Use the required sequence to establish readiness for Signals, then choose electives that deepen communications instead of creating several disconnected introductions. The official plan of study remains the authority for what can count together.
Johns Hopkins can revise course availability and approved lists. Recheck every code, credit value, campus offering and culminating route before accepting an offer, especially where the catalogue publishes an area rather than a closed list of named electives.
Should an Indian prospective student shortlist the Johns Hopkins MSE Electrical and Computer Engineering?
Shortlist the Johns Hopkins MSE Electrical and Computer Engineering when your transcript already supports circuits, signals, computing and engineering mathematics, your intended work uses communications and the full INR 1.44 crore plan is fundable without depending on uncertain work income. Treat each of those as a separate threshold.
The strongest case connects Signals to Computer Engineering, then uses the culminating route to create inspectable proof. That is a clearer reason to choose this master's than a general wish to study at a large US university.
STEM-OPT eligibility alone does not justify choosing this degree. The published entry floor is 3.00 on a 4.00 scale, but selection can still test subject depth. The conservative cost case is INR 1.44 crore before flights and a housing deposit, and Johns Hopkins publishes no guaranteed job or sponsorship outcome for this exact master's.
- Johns Hopkins MSE Electrical and Computer Engineering is a 30-credit, full-time in-person master's at Baltimore.
- The published academic floor is 3.00 on a 4.00 scale, with programme-specific preparation still required.
- The working English reference is TOEFL, IELTS or another school-approved test where an exemption does not apply.
- The working Fall 2027 point is 15 february 2027 deadline for fall 2027.
- The conservative full-programme planning case is USD 150,374, about INR 1.44 crore.
- STEM-OPT eligibility can support an extension application but does not guarantee employment or sponsorship.
Frequently asked questions
How much is Johns Hopkins MSE Electrical and Computer Engineering for an Indian student?
The planning total is USD 150,374, about INR 1.44 crore. It includes tuition and fees, 18 months of Johns Hopkins-based living categories, the USD 0 application, USD 350 SEVIS fee and USD 185 visa fee. Flights, exchange spreads and a housing deposit remain outside the estimate.
What GPA is required for Johns Hopkins MSE Electrical and Computer Engineering?
The checked programme page does not publish a universal numeric admission floor. Some JHU programmes describe a GPA as recommended, historical or a continuation standard rather than a guaranteed entry cut-off. Submit the complete marks record and grading scale, and judge academic readiness against the exact prerequisites and holistic review criteria.
Is Johns Hopkins MSE Electrical and Computer Engineering available full time on campus?
Yes. Johns Hopkins lists an in-person option at Baltimore, and this page covers full-time campus study only. Some selected Johns Hopkins degrees also advertise an Online modality. Do not transfer the F-1 visa, campus-cost or STEM-OPT assumptions here to an online enrolment without checking the university and immigration rules.
What is the Fall 2027 deadline for Johns Hopkins MSE Electrical and Computer Engineering?
The working programme point is 15 february 2027 deadline for fall 2027. Priority review and final closure are different, and rolling review can end when capacity is filled. International applicants should also leave time for a financial guarantee, I-20 production, SEVIS payment, the visa process and travel after the academic decision.
Is Johns Hopkins MSE Electrical and Computer Engineering STEM-OPT eligible?
Johns Hopkins marks the degree STEM-OPT eligible. An eligible F-1 graduate can normally use up to 12 months of post-completion OPT and may apply for a 24-month STEM extension when the degree, employer, timing and reporting rules are satisfied. Eligibility is not a job, salary, sponsorship or visa guarantee.
What should an Indian applicant prepare for Johns Hopkins MSE Electrical and Computer Engineering?
Prepare complete academic records, official English translations where needed, accepted English evidence and every programme-specific item on the degree page. Map previous study to circuits, signals, computing and engineering mathematics. Add the statement, CV, recommendations or test scores the programme requests, then keep funding proof ready for the post-admission financial guarantee.
Sources
These sources support the programme, admission, cost, experience and immigration information used on this page.
Sources checked on September 19, 2026. Current intake information follows. Fall 2027 full-time in-person.
| No. | Source | Evidence role |
|---|---|---|
| 01 | Johns Hopkins University, MSE in Electrical and Computer Engineering official programme page | Core programme evidence |
| 02 | Johns Hopkins University, 2026-27 tuition and fees | Core programme evidence |
| 03 | Johns Hopkins University, graduate cost of attendance | Core programme evidence |
| 04 | Johns Hopkins University, admitted international students | Core programme evidence |
| 05 | US Immigration and Customs Enforcement, SEVIS I-901 fee | Core programme evidence |
| 06 | US Department of State, visa services fees | Core programme evidence |
| 07 | USCIS, Optional Practical Training | Core programme evidence |
| 08 | USCIS, STEM OPT extension | Core programme evidence |
| 09 | Research Organization Registry, Johns Hopkins University | Core programme evidence |
| 10 | European Central Bank, daily reference rates | Core programme evidence |
More programmes

Leave a Reply