ALBERT PINDER

Real Estate Broker at eXp Realty
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Contact Information
us****@****om
(386) 825-5501
Location
Greenville, North Carolina, United States, US
Languages
  • English Full professional proficiency
  • Italian Professional working proficiency
  • Persian Native or bilingual proficiency
  • Spanish Limited working proficiency

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Credentials

  • Commercial Real Estate Designation
    The National Commercial Real Estate Association
    Jul, 2022
    - Oct, 2024
  • Data Analysis with Python
    IBM
    Apr, 2021
    - Oct, 2024
  • Databases and SQL for Data Science
    IBM
    Apr, 2021
    - Oct, 2024
  • Data Science Methodology
    IBM
    Mar, 2021
    - Oct, 2024
  • Open Source Tools for Data Science
    IBM
    Mar, 2021
    - Oct, 2024
  • Python Project for Data Science
    IBM
    Mar, 2021
    - Oct, 2024
  • Python for Data Science and AI
    IBM
    Mar, 2021
    - Oct, 2024
  • SQL for Data Science
    University of California, Davis
    Mar, 2021
    - Oct, 2024
  • What is Data Science
    IBM
    Mar, 2021
    - Oct, 2024
  • Artificial Intelligence Foundations: Thinking Machines
    LinkedIn
    Feb, 2021
    - Oct, 2024
  • Become a Financial Analyst
    LinkedIn
    Feb, 2021
    - Oct, 2024
  • Bracketology Club: Using March Madness to Learn Data Science
    LinkedIn
    Feb, 2021
    - Oct, 2024
  • Corporate Financial Statement Analysis
    LinkedIn
    Feb, 2021
    - Oct, 2024
  • Data Science & Analytics Career Paths & Certifications: First Steps
    LinkedIn
    Feb, 2021
    - Oct, 2024
  • Data Science Foundations: Fundamentals
    LinkedIn
    Feb, 2021
    - Oct, 2024
  • Data Visualization: Storytelling
    LinkedIn
    Feb, 2021
    - Oct, 2024
  • Excel 2016: Managing and Analyzing Data
    LinkedIn
    Feb, 2021
    - Oct, 2024
  • Excel: Analyzing and Visualizing Cash Flows
    LinkedIn
    Feb, 2021
    - Oct, 2024
  • Excel: Economic Analysis and Data Analytics
    LinkedIn
    Feb, 2021
    - Oct, 2024
  • Excel: Tracking Data Easily and Efficiently
    LinkedIn
    Feb, 2021
    - Oct, 2024
  • Financial Accounting Foundations
    LinkedIn
    Feb, 2021
    - Oct, 2024
  • Financial Modeling Foundations
    LinkedIn
    Feb, 2021
    - Oct, 2024
  • Financial Modeling and Forecasting Financial Statements
    LinkedIn
    Feb, 2021
    - Oct, 2024
  • Learning Data Governance
    LinkedIn
    Feb, 2021
    - Oct, 2024
  • Managerial Economics
    LinkedIn
    Feb, 2021
    - Oct, 2024
  • Running a Profitable Business: Understanding Financial Ratios
    LinkedIn
    Feb, 2021
    - Oct, 2024
  • Statistics Foundations: 1
    LinkedIn
    Feb, 2021
    - Oct, 2024
  • Strategic Planning Foundations
    LinkedIn
    Feb, 2021
    - Oct, 2024
  • What is Data Science
    IBM
    Feb, 2021
    - Oct, 2024
  • Algorithmic Trading and Stocks Essential Training
    LinkedIn
    Jan, 2021
    - Oct, 2024
  • Interview Master Class
    Lynda.com
    Sep, 2018
    - Oct, 2024
  • Initial Certification
    The American Board of Radiology
    Sep, 2017
    - Oct, 2024
  • Novalis, Stereotactic Radiosurgery Platforms (IPlan)
    Brainlab
    Mar, 2005
    - Oct, 2024

Experience

    • United States
    • Consumer Services
    • 1 - 100 Employee
    • Real Estate Broker
      • Oct 2021 - Present

  • Love in a Book
    • Greenville, North Carolina, United States
    • Data Scientist
      • Mar 2021 - Sep 2021

    • United States
    • Higher Education
    • 700 & Above Employee
    • Instructor/Resident
      • Oct 2020 - Feb 2021

    • United Kingdom
    • Book and Periodical Publishing
    • 1 - 100 Employee
    • Peer Reviewer
      • Jul 2012 - Dec 2020

      Acknowledging the positive aspects of the material under review, identify negative aspects constructively, and indicate the improvements needed. Key Achievements: 1- Explain and support my judgment clearly enough that editors and authors can understand the basis of the comments. 2- Ensure that an observation or argument that has been previously reported be accompanied by a relevant citation and should immediately alert the editor when he or she becomes aware of duplicate publication 3. Provide authors with the opportunity to improve the quality and clarity of their manuscripts. And this guides the journal's editorial staff in making publication decisions and identifying substandard manuscripts that should not be published. 4. Identify strengths and provide constructive comments to help the author resolve weaknesses in the work. 5- Provide a constructive and appropriate assessment for the submitted manuscripts in the field of Nuclear Medicine Imaging 6- Provide an assessment that includes an analysis of the strengths and weaknesses of the study 7- Ask specific questions for the authors to address to make any revision of the manuscript acceptable and useful to the intended audience. Provide a complete citation for important work that has been omitted. Show less

    • United States
    • Hospitals and Health Care
    • 200 - 300 Employee
    • Medical Physics Trainee
      • Aug 2019 - Aug 2020

    • United States
    • Higher Education
    • 700 & Above Employee
    • Clinical Research Fellow-Algorithm Developer
      • Aug 2017 - Aug 2019

      During my education at the graduate level, I took courses in data analysis and computational techniques, which help me to perform research at the university and industry setting. I came to appreciate these skills and they gave me analytical intuition. For example, regression analysis is an important variable that would lead to changes in various market’s value. I learned how by using regression analysis, I could make forecasts based on key performance indicators like product sales. I have done all this based on hard data. Another important subject that I faced during my career in the industry was Risk management, which is crucial to making sure that a company portfolio will do well under a variety of market conditions. During my work in the industry, I provided technical support to the production team. I reflected on the customer feedback, identified areas that could be improved in operation. I developed work instructions for the team to resolve product-related issues. I presented our work and product prototype in the company meeting. Working as a part of a multidisciplinary group helped me to understand complex systems. I participated in product development and design also testing complex platforms. We conducted experiments to validate, diagnose and improve the performance of our systems. Created quantitative mathematical analytical models on a population of patients to assess their lung function. Applying the models to predict the risk factors. Helping with the other 4 institutions with sorting, analyzing, and making a prediction based on the outcome of the mathematical algorithm. Also correlating risk factors of the population for the future risk indication. Developed a system interface for a multi-institutional project. The system development helped to demonstrate the progress of the project and make us coordinate the work road maps to meet deadlines. Show less

    • United States
    • Higher Education
    • 700 & Above Employee
    • Visiting Faculty
      • Jan 2015 - Aug 2017

      Developed Syllabi and curricula for different levels of educations. I taught a wide range of courses in engineering physics such as Mechanics, Electromagnetism, and Optics with their associated labs, Astronomy, Life Sciences Courses, Engineering courses such as thermodynamics ranging from the introductory undergraduate level to the Post Graduate level. 1. Advised graduate students regarding their education plans. I assisted student to choose right elective, pre-requisite, and mandatory courses, according to the institution's policy. I performed administrative functions, as required, to support the department, and institute operations. 2. Mentored Graduate students. I followed up with them in their educational progress. I provided them feedbacks. 3. Actively participated in the faculty committees to report the students’ research activities and their progress. 4. Prepared and delivered lectures to undergraduate and/or graduate students on topics such as Radiological medical physics (including ultrasound imaging, MRI imaging, CT-Scan imaging, SPECT imaging, and PET imaging), optics, mechanics, and electromagnetism. 5. Employed differentiated teaching methods, incorporating, audio and visual activities to address all learning styles. 6. Developed discipline plans and work closely with at-risk students 7. Provided individualized instruction to keep all students at expected skill level 8. Supervised students’ laboratory work 9. Prepared course materials such as syllabi, homework assignments, and handouts 10. Evaluated and grade students’ class work, laboratory work, assignments, and papers. Show less

    • United States
    • Higher Education
    • 700 & Above Employee
    • Senior Lecturer
      • Aug 2012 - Aug 2016

      Developed Syllabi and curricula for different levels of educations. I taught a wide range of courses in engineering physics such as Mechanics, Electromagnetism, and Optics with their associated labs, Astronomy, Life Sciences Courses, Engineering courses such as thermodynamics ranging from the introductory undergraduate level to the Post Graduate level. 1. Advised graduate students regarding their education plans. I assisted student to choose right elective, pre-requisite, and mandatory courses, according to the institution policy. I performed administrative functions, as required, to support the department, and institute operations. 2. Established roadmaps for various learning methods for students to understand the physic/engineer concepts. 3. Mentored Graduate students. I followed up with them in their educational progress. I provided them feedbacks. 4. Actively participated in the faculty committees to report the students’ research activities and their progress. 5. Since the students had a variety of background information. I used a wide spectrum of resources to demonstrate or lecture to insure students master their learning. 6. Followed the instructions and attended a monthly meeting with the head of the department where we insured that learning objectives are met. Demonstrated and designed models relating to physical phenomenon. 7. Conducted course assessment tests and provided test feedbacks. Designed various curricular and non-curricular assessment tests for students. Show less

    • United States
    • Hospitals and Health Care
    • 700 & Above Employee
    • Clinical Research Associate
      • Feb 2014 - Jun 2014

      This position was a volunteer position. Used Data Science techniques to understand and analyze the large data sets available from EMR patients' records. Used predictive analytics developed from data modeling and statistics to examine all known risk factors for disease, including associated conditions, and environmental factors to provide prognostic values. Provided targeted information and recommendations for doctors regarding their patients based on the data finding so that they can be prepared for procedures. Show less

    • Higher Education
    • 700 & Above Employee
    • Postdoctoral Research Fellow
      • Jan 2012 - Aug 2012

      Upgraded Hardware and Software of a PET-scanner prototype, which was designed to monitor and reconstruct the radiation dose for the patients who underwent radiation Proton Therapy treatment machine. This development aimed to optimize the quality of patient care and make sure to get the right amount of radiation dose. The initial patients' population had Ocular Melanoma and breast cancer. Key Achievements: 1. Developed front-end electronics of the detection system for Gamma-Ray-Based Multi-Anode Photomultipliers and scintillator matrices. 2. Optimized the acquisition system of Multi-Anode Photomultipliers. 3. Tested the performance of the PET-scanner prototype (such as physical characteristics: energy resolution, spatial resolution, dead time, temporal timing resolution, coincidence timing resolution, and sensitivity). 4. Reconstructed the radiation dose during the measurements (where our detection system was irradiated by the beam produced by the proton and carbon-ion radiation machines). 5. Built the final stage of detection and data acquisition systems for the PET-scanner, Based on the measurements. Show less

    • Germany
    • Medical Equipment Manufacturing
    • 700 & Above Employee
    • Technical Support Engineer, Clinical Solution Specialist
      • Nov 2005 - Dec 2008

      Conducted on-site clinical evaluations for hospitals and health centers to demonstrate the use of Radiotherapy Treatment Planning software and Image-Guided Surgery products and its services to increase the frequency and quality of product usage. Modernized their center with modern radiation therapy systems and surgical navigators to treat patients with better quality. Key Achievements: 1. Led installations in a hospital and established functionality at their sites and assisted them with the first and second stereotactic neurosurgery. 2. Installed six Radiation-Therapy Treatment Planning, surgical platforms of ENT, Orthopedic, and neurosurgical navigator systems in several hospitals. 3. Resolved product issues in hospitals through detailed analysis and utilization of engineering expertise. 4. Educated, trained physicians, and healthcare staff on how to use Radiation-Therapy Treatment Planning and Frameless Image-Guided Radiosurgery. 5. Attended various certificates and maintained competency on radiosurgery treatment planning, Frameless Image-Guided Radiosurgery, and stereotactic radiosurgery. 6. Provided on-site consulting, guidance, and assistance to physicians and OR personnel by evaluating options and problem-solving during surgery to maximize Frameless Image-Guided Radiosurgery efficiency and usage. 7. Maintained site visits and regular contact with customers, assessing satisfaction and usage levels, and working to increase revenue via the sale of service contracts, spare/wear parts, upgrades. 8. Provided a detailed assessment of customer’s initial and ongoing training needs, and proposed solutions to address the issues that arose. Show less

    • Germany
    • Medical Equipment Manufacturing
    • 700 & Above Employee
    • Technical Support Engineer, Education Solution Specialist
      • Nov 2004 - Nov 2005

      Accomplished On-Site implementation to install hardware and associated third-party products and trained customers on the Carl Zeiss laser machines. Professional working experience with a broad spectrum of lasers such as solid-state, gas, and semiconductor lasers. Our solid-state lasers including ultraviolet laser sources and frequency combs, ultra-high vacuum technology, and sophisticated experimental control. Key Achievements: 1. My work included planning and implementing strategies for improving the precision of our laser machine for the surgeries. 2. Provided training and education for healthcare staff, and medical doctors 3. Designed and developed assigned session goals and objectives for user meetings 4. Established implementation procedures (e.g. documenting scheduled training on the calendar, completing post-training correspondence). Show less

    • Iran
    • Hospitals and Health Care
    • 700 & Above Employee
    • Medical Physics Assistant
      • Nov 2003 - Nov 2004

      Assured the best possible treatment given the state of technology and the skills of the other members of the radiation oncology department. Key Achievements: 1. Performed Daily, Monthly, Annual QA of Varian Clinac 2100C 2. GYN Brachytherapy 3. Performed TG-51 of Varian Clinac 2100C 4. Treatment planning for the Cobalt Theratron-780 Machine Assured the best possible treatment given the state of technology and the skills of the other members of the radiation oncology department. Key Achievements: 1. Performed Daily, Monthly, Annual QA of Varian Clinac 2100C 2. GYN Brachytherapy 3. Performed TG-51 of Varian Clinac 2100C 4. Treatment planning for the Cobalt Theratron-780 Machine

    • Iran
    • Higher Education
    • 700 & Above Employee
    • Nuclear Physicist
      • Sep 1999 - May 2000

      The project had 2 experimental purposes. One of the objectives was developing thin-film technology where we can use the system for hardening materials that can be used for drilling equipment. The second purpose was to use the system for laser and molecular ion spectroscopy experiments. Built a high vacuum system. Designed and fabricated the system. Test the vacuum system. The project had 2 experimental purposes. One of the objectives was developing thin-film technology where we can use the system for hardening materials that can be used for drilling equipment. The second purpose was to use the system for laser and molecular ion spectroscopy experiments. Built a high vacuum system. Designed and fabricated the system. Test the vacuum system.

Education

  • University of Florida
    Postgraduate Degree, Engineering Physics
    2015 - 2017
  • Università di Pisa
    Doctor of Philosophy - PhD, Applied Physics
    2009 - 2012
  • The European School for Physics Expert (ESMPE), CERN, France
    Graduate Certificate, Health/Medical Physics
    2009 - 2010
  • Isfahan University of Technology
    Master's Degree, Engineering Physics
    2003 - 2006
  • Shahid Beheshti University
    Bachelor's Degree, Nuclear Physics
    1996 - 2001

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