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Atmospheric Science Jobs in Quebec (NOW HIRING)

Use data science techniques to find data patterns, anomalies, and optimization opportunities ... A fun, diverse, open and fast-paced environment focused on family atmosphere and creating an off ...

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Atmospheric Science information

What are the key skills and qualifications needed to thrive as an Atmospheric Scientist, and why are they important?

To thrive as an Atmospheric Scientist, you need a solid background in meteorology, mathematics, physics, and often an advanced degree in atmospheric or environmental science. Proficiency with data analysis tools, weather modeling software, remote sensing technologies, and programming languages like Python or MATLAB is typically required. Strong analytical thinking, problem-solving, and effective communication skills help you interpret data and share findings with diverse audiences. These skills and qualifications are crucial for accurately predicting weather patterns, understanding climate phenomena, and informing public safety and policy decisions.

Is atmospheric science a good degree?

Atmospheric science is a valuable degree for careers in weather forecasting, climate research, and environmental consulting. It typically requires strong skills in mathematics, physics, and computer modeling, and may involve certifications or advanced degrees for certain roles.

What are some common challenges atmospheric scientists face when conducting field research?

Atmospheric scientists often encounter unpredictable weather, difficult terrain, and logistical hurdles when conducting field research. These challenges can impact the deployment of instruments, data collection, and project timelines. Effective planning, adaptability, and teamwork are essential for overcoming these obstacles and ensuring safety while gathering high-quality data. Collaborating closely with other scientists, engineers, and local stakeholders also helps in addressing unexpected issues and achieving research objectives.

Does NASA hire meteorologists?

NASA employs atmospheric scientists and meteorologists to support climate research, weather prediction, and space missions. These roles often require expertise in atmospheric data analysis, remote sensing, and programming, with some positions requiring advanced degrees and security clearances.

What jobs can you get with atmospheric science?

Atmospheric science graduates can pursue careers as meteorologists, climate analysts, weather forecasters, atmospheric researchers, and environmental consultants. These roles often require skills in data analysis, computer modeling, and knowledge of weather and climate systems, with many positions involving work in research institutions, government agencies, or private companies.

What is the difference between Atmospheric Science vs Meteorology?

AspectAtmospheric ScienceMeteorology
Required CredentialsBachelor's or higher in atmospheric science, meteorology, or related fieldsBachelor's degree in meteorology or atmospheric sciences often required
Work EnvironmentResearch labs, universities, government agenciesWeather forecasting centers, TV stations, government agencies
Industry UsageResearch, academia, environmental consultingWeather prediction, broadcasting, operational forecasting

Atmospheric Science and Meteorology share overlapping credentials and work environments, but Atmospheric Science has a broader focus on research and environmental studies, while Meteorology is more oriented toward weather forecasting and operational services.

Do atmospheric scientists get paid well?

Atmospheric scientists typically earn a median annual salary that is above the national average, with salaries varying based on experience, education, and location. They often work for government agencies, research institutions, or private companies, and advanced degrees or specialized skills can lead to higher compensation.

What is atmospheric science?

Atmospheric science is the study of the Earth's atmosphere, its processes, and how it interacts with the planet's surface and oceans. This field includes the investigation of weather patterns, climate change, air quality, and the transfer of energy within the atmosphere. Atmospheric scientists use observations, experiments, and computer models to predict weather, understand climate trends, and analyze environmental impacts. Careers in atmospheric science can include meteorology, climatology, and research on atmospheric chemistry and physics.

What Are the Qualifications to Get a Job in Atmospheric Science?

The qualifications to get a job in atmospheric science depend on the level and complexity of your responsibilities and the specific field in which you work. For many entry-level jobs, such as field workers, site researchers, and assistants, you need an associate or bachelor’s degree in climate science, meteorology, or atmospheric science. More advanced research or analytical work may require a master’s degree or Ph.D. Many atmospheric science jobs now include a significant data analysis component, so knowledge of R and other statistical software is essential. Strong analytical thinking and study skills are essential.

What are popular job titles related to Atmospheric Science jobs in Quebec? For Atmospheric Science jobs in Quebec, the most frequently searched job titles are:
What job categories do people searching Atmospheric Science jobs in Quebec look for? The top searched job categories for Atmospheric Science jobs in Quebec are:
Infographic showing various Atmospheric Science job openings in Quebec as of July 2026, with employment types broken down into 93% Full Time, and 7% Part Time. Highlights an 86% In-person, 7% Hybrid, and 7% Remote job distribution.

Full-time

Posted 21 days ago


Job description

We're Building Autonomous Flight Intelligence

Drones that think for themselves. Not pre-programmed routes-true autonomy where aircraft make intelligent decisions onboard, adapting to weather, obstacles, and airspace in real-time without human intervention.

We're building weather-aware flight optimization that delivers outcome-driven autonomy for the real world-increasing mission success by extending range, endurance, safety, and reliability.

You'll architect the geospatial brain that makes this possible

The Opportunity

You'll be our first geospatial hire, building the data processing systems that enable autonomous flight decisions. Working with our CTO, you'll architect how our systems evolve from initial implementation to production-grade infrastructure that handles real-world operational demands.

What you'll own:
  • Design geospatial processing pipelines that balance performance, accuracy, and extensibility
  • Build GIS analysis algorithms for weather-aware route optimization
  • Integrate multi-source datasets (elevation, obstacles, airspace, meteorological models)
  • Create APIs that enable real-time flight decision-making
  • Establish patterns and tooling that evolve as our platform matures

Why this matters: Operators deploy missions in challenging conditions. Your work directly determines whether autonomous systems can navigate safely, optimize for changing weather, and complete objectives-or get grounded.

You Might Be a Fit If...

You think in trade-offs.
You can explain why you chose PostGIS over alternative spatial databases, or when to pre-process vs. compute on-demand. You know the geospatial database landscape and select tools based on requirements, not trends. You're comfortable defending your decisions and pivoting when new constraints emerge.

You stay current and execute rigorously.
You follow modern geospatial best practices and understand OGC standards. You keep up with evolving tools and approaches instead of relying on outdated tooling.

You've shipped production GIS systems.
You've wrestled with coordinate transformations, spatial indexing, and raster processing. You know the common GIS tools and libraries-GDAL/OGR, various spatial databases, processing frameworks-and understand when each fits. Bonus: you've worked with meteorological data (NetCDF, GRIB) or atmospheric models.

You're comfortable with ambiguity.
Requirements evolve. Priorities shift. You ask clarifying questions, propose solutions, and deliver incrementally rather than waiting for perfect specs.

You communicate clearly.
You can explain technical trade-offs to non-engineers and translate vague product needs into concrete implementation plans. Ego doesn't enter the room when someone questions your approach.

Technical Foundation We're Looking For

Core GIS competency:

  • 4+ years building geospatial software (or 3 years if you've shipped impressive systems)
  • Strong knowledge of common GIS tools and libraries (QGIS, GDAL/OGR)
  • Experience with geospatial algorithms (visibility analysis, spatial operations, terrain analysis)
  • Deep understanding of coordinate systems, projections, and spatial data structures

Python ecosystem:

  • Strong Python with scientific computing stack (NumPy, Pandas, SciPy)
  • Geospatial libraries: GeoPandas, Rasterio, Xarray, Dask

Data infrastructure:

  • Experience with spatial databases (PostGIS, Apache Sedona, etc)
  • Comfortable with cloud infrastructure (GCP preferred), Docker, Git
  • Ability to set up automated data ingestion workflows

Nice to have:

  • C/C++ for performance-critical processing
  • Meteorology, atmospheric science, or aviation background
  • Degree in GIS, Computer Science, Engineering, or related field. Master's is a plus, but we'll prioritize what you've built over credentials.
What We Offer

Equity ownership - You're building foundational systems. You should own a meaningful piece of what we're creating.

Architectural influence - This isn't "implement the spec." You'll shape technical decisions alongside the CTO as we define what autonomous flight infrastructure looks like.

Hybrid flexibility - Work where you're most productive. We're in Montreal but value focus time and thoughtful collaboration over face-time.

Growth with the platform - You'll evolve systems as we mature from initial architecture to production-hardened infrastructure. The foundations you establish will scale with increasing mission complexity, data volumes, and operational demands-and you'll architect that evolution.

Direct impact - Your code runs onboard aircraft making critical flight decisions. You'll see your work enable missions that weren't possible before, extending operational capabilities in real-world conditions.

Apply

We're looking for problem-solvers who thrive when building systems from first principles in a domain that matters.

Strong foundation in geospatial engineering but don't check every box? We want to hear from you. We value learning agility and problem-solving ability over credential collection.

Employment Type: FULL_TIME