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Mid Level Defensible Space Inspector Jobs in Alabama

$100 - $125/hr

RF/Radar Engineer - Mid Level Location: Huntsville, AL; Denver, CO Clearance: Active Top Secret/SCI ... defensible threat-system parametrics for U.S. Air Force intelligence and mission-planning ...

MDW Associates is seeking Mid-level Financial Analysts to work in support of our Missile Defense ... Experience building accurate and defensible budgets for DoW offices * Knowledge of funding ...

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Mid Level Defensible Space Inspector information

What is a mid level defensible space inspector?

Mid Level Defensible Space Inspectors are professionals responsible for evaluating and ensuring that properties meet local and state regulations for wildfire risk reduction. They assess vegetation, structures, and landscaping around homes and buildings to confirm compliance with defensible space standards. These inspectors typically have experience in fire prevention, environmental safety, or code enforcement and may provide guidance to property owners on how to create safer environments. Their work is vital in reducing wildfire hazards and protecting communities from fire damage.

What are the key skills and qualifications needed to thrive as a mid level defensible space inspector?

To thrive as a Mid Level Defensible Space Inspector, you need a strong understanding of fire safety codes, vegetation management practices, and relevant environmental regulations, often supported by experience or certifications in fire prevention or forestry. Familiarity with GIS mapping tools, inspection checklists, mobile data collection systems, and state or local compliance software is typically required. Strong attention to detail, effective communication, and the ability to educate property owners about compliance are essential soft skills. These competencies ensure accurate assessments, promote public safety, and help communities reduce wildfire risks through effective defensible space enforcement.

What are some common challenges faced by mid level defensible space inspectors, and how can they be managed effectively?

Mid Level Defensible Space Inspectors often encounter challenges such as navigating varied terrain, communicating with property owners who may be unfamiliar with defensible space requirements, and staying updated on evolving regulations. To manage these effectively, inspectors should prioritize strong interpersonal skills, maintain a thorough understanding of local and state codes, and utilize digital tools for efficient documentation. Regular training and collaboration with fire prevention teams also help inspectors stay prepared and effective in the field.

What is the difference between Mid Level Defensible Space Inspector vs Entry Level Defensible Space Inspector?

AspectMid Level Defensible Space InspectorEntry Level Defensible Space Inspector
CertificationsTypically requires basic certifications in fire safety and inspection proceduresMay have minimal or no certifications, on-the-job training provided
Work EnvironmentPerforms inspections in residential and commercial areas, often with more independenceAssists senior inspectors, more supervised, learning on the job
Employer & Industry UsageCommonly employed by fire departments, local government, or environmental agenciesOften entry-level roles within similar organizations, focusing on learning and support

In summary, the Mid Level Defensible Space Inspector has more experience, certifications, and independence compared to the Entry Level Defensible Space Inspector, who is typically in a learning phase with more supervision and fewer credentials.

What are popular job titles related to Mid Level Defensible Space Inspector jobs in Alabama?

For Mid Level Defensible Space Inspector jobs in Alabama, the most frequently searched job titles are:

What job categories do people searching Mid Level Defensible Space Inspector jobs in Alabama look for?

The top searched job categories for Mid Level Defensible Space Inspector jobs in Alabama are:

What cities in Alabama are hiring for Mid Level Defensible Space Inspector jobs?

Cities in Alabama with the most Mid Level Defensible Space Inspector job openings:

Infographic showing various Mid Level Defensible Space Inspector job openings in Alabama as of August 2026, with employment types broken down into 74% Full Time, 19% Part Time, 1% Temporary, 5% Contract, and 1% Nights. Highlights an 88% Physical, 3% Hybrid, and 9% Remote job distribution.

RF/Radar Engineer - Mid Level

Phasedn

On-site

$100 - $125/hr

Other

Posted 26 days ago


Job description

RF/Radar Engineer – Mid Level


Location: Huntsville, AL; Denver, CO


Clearance: Active Top Secret/SCI


Position Type: Full-Time


About the Role

Phased n Research is seeking multiple mid-level RF/Radar Engineers to support radar engineering analysis and production of technically defensible threat-system parametrics for U.S. Air Force intelligence and mission-planning applications. The engineers will perform radar analysis, physics-based modeling, engineering derivation, and technical validation while helping translate proven radar engineering methods into repeatable, AI-assisted analytic workflows.


You will work with senior engineers, intelligence analysts, and software developers on physics-based radar modeling and simulation (M&S), engineering analysis, algorithm application and validation, and automated analytic workflows. You will apply radar engineering methods to accelerate threat-data production while ensuring calculated and automated results remain grounded in source information, established engineering methods, and technically defensible analysis.


Radar Engineering & Analysis Responsibilities

  • Perform radar engineering analysis to characterize foreign radar systems, operating modes, and mission-planning threat parameters in support of threat-data package production.

  • Analyze and derive radar parameters including transmitter power, antenna characteristics, receiver sensitivity, detection range, waveform and PRI/PRF characteristics, Doppler and velocity performance, integration gain, scan behavior, and related system performance.

  • Apply established radar equations, signal-processing relationships, antenna theory, electromagnetic principles, and physics-based models to calculate or assess parameters when source information is incomplete, inconsistent, or indirect.

  • Research, interpret, and reconcile technical information from intelligence reports, measurements, drawings, schematics, databases, and other approved sources to support manual and AI-assisted threat-data production.

  • Perform radar modeling, simulation, and reference calculations to assess detection, SNR, waveform, antenna, signal-processing, and mode-specific radar performance.

  • Document source provenance, engineering assumptions, calculations, uncertainty, confidence, and technical rationale supporting calculated or assessed values.

  • Perform technical checks and cross-parameter consistency assessments; identify incomplete, inconsistent, or unsupported results and recommend cases requiring senior SME adjudication.



  • Support technical validation of calculated, modeled, and automated radar parameters against approved engineering methods, reference results, and expected physical behavior.


Modeling, Simulation & Engineering Method Development Responsibilities

Operate radar modeling, simulation, and analysis tools to characterize radar performance and derive required threat parameters.



  • Develop and execute MATLAB and/or Python calculations and scripts supporting radar performance, antenna, receiver, waveform, signal-processing, and related parametric analysis.

  • Apply established algorithms and physics-based models to generate engineering assessments, reference calculations, and test cases supporting threat-data production and automated engineering workflows.

  • Compare modeled and calculated results against available source data, reported performance, and approved reference cases; investigate discrepancies and elevate significant fidelity or consistency issues to senior engineers.


Support testing and validation of radar algorithms and engineering workflows by executing representative cases, evaluating results against established tolerances, and documenting findings.


AI-Assisted Analytic Workflow Responsibilities

  • Support translation of approved radar engineering methods, calculations, parameter relationships, and consistency checks into repeatable automated engineering playbooks and analytic workflows.

  • Develop and execute engineering reference cases, expected results, and test data under approved engineering methods to verify automated radar-analysis workflows.

  • Evaluate AI-generated radar parameters and assessments against source information, approved engineering methods, physics-based calculations, cross-parameter relationships, and established acceptance tolerances.

  • Identify and document unsupported, inconsistent, or anomalous automated results; investigate likely causes and elevate significant discrepancies for senior technical disposition.

  • Support regression testing of automated engineering workflows and radar algorithms following implementation changes, method updates, or identified discrepancies.


Collaboration & Program Execution Responsibilities

  • Develop and maintain engineering documentation, analysis records, model descriptions, reference calculations, test results, and other technical artifacts supporting program deliverables and Government reviews.

  • Prepare and contribute to technical briefings, analysis results, and engineering recommendations for U.S. Air Force stakeholders.

  • Participate in technical interchange meetings (TIMs), engineering reviews, and program working groups as required.



  • Collaborate with radar engineers, intelligence analysts, and software/AI developers to resolve technical issues and ensure approved engineering methods are accurately represented in implemented workflows.

  • Work with senior radar SMEs on complex or novel technical assessments and support resolution of technical issues affecting threat-data production and validation.


Position Requirements

  • Bachelor's degree in Electrical Engineering, Computer Engineering, Physics, or a closely related technical discipline with 5+ years of relevant experience; a relevant advanced degree may substitute for a portion of the experience requirement.

  • Demonstrated foundation in radar engineering or radar-system analysis, with experience in one or more related areas such as RF engineering, electromagnetics, digital signal processing, or modeling and simulation.

  • Experience applying engineering principles and physics-based analytical methods to radar, RF, or related system-performance problems.

  • Experience using MATLAB and/or Python for engineering analysis, modeling, simulation, or data analysis.

  • Ability to independently perform assigned technical analyses, document assumptions and results, and recognize issues requiring senior technical review.

  • Ability to communicate technical concepts and analysis results clearly in written and verbal formats.

  • Active Top Secret/SCI clearance required.


Preferred Qualifications

  • Experience with radar performance analysis, including detection, transmitter/receiver characteristics, antenna performance, waveform/PRI/PRF characteristics, Doppler processing, integration, scanning, or related radar parameters.

  • Experience with radar modeling and simulation, signal processing, antennas, electromagnetics, electronic warfare, or threat-system characterization.

  • Experience applying physics-based methods to characterize radar or RF system performance from incomplete, indirect, or conflicting technical information.

  • Experience supporting technical intelligence, foreign radar analysis, or DoD/Intelligence Community missions.

  • Familiarity with, or experience applying, ICD 203 and ICD 206 principles to analytic tradecraft and technical intelligence production.

  • Familiarity with CSDB, EWIRDB, JMPS, TERF, USELMS, or related threat-parametric or mission-planning workflows.

  • Experience developing or validating engineering models, reference calculations, test cases, acceptance criteria, or regression tests.

  • Familiarity with AI/ML-assisted engineering, automated analytic workflows, or validation of AI-generated technical results.

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