Optometry, Bachelor of Science Pre-Professional

Program Information
Credential: 
Pre-Professional Study
Duration: 

2 years at RDC - 1 year at most universities

Delivery: 
Main Campus
Program Cost Estimates: 

Contact Information

Contact Name: 
Dr. Jane MacNeil
Contact Title: 
Associate Dean
Contact Phone: 
403.342.3400 OR 1.888.732.4630
Contact Email: 
inquire@rdc.ab.ca
University Transfer Program

Two Year Pre-Professional Program:

Please note that course work for pre-professional programs varies as per university. It is the student's responsibility to ensure they are taking correct pre-professional coursework when applying the a University other than specified in the Calendar.

For the most current university program and transfer information, see the Planning Guides in Academic Advising.

International Students and Students applying outside of their home province are advised to consult the calendar of the institution to which you will be applying regarding its policy on admitting international and out-of-province students. This may vary between institutions.

Related Careers
  • clinical practice
  • private clinics
  • partnerships
  • public health units
  • education services
  • public or industrial consultants
  • research and advanced study
The Program

The Pre-Optometry program at RDC is the first two years of the three year pre-professional program required for admission to Doctor of Optometry at University of Waterloo in Waterloo, Ontario. Your third year of study will be completed at a university of your choice. You must make sure you meet admission and minimum course load requirements for the professional program as well as your alternate degree program.

Program Admission Features

Admission to the Pre-Optometry program at RDC does not guarantee admission to Doctor of Optometry at University of Waterloo. You should meet the admission requirements of the professional school, and also design your program so that you can complete a Bachelor of Science degree. Competitive admission to professional programs requires a high grade point average. You should check with universities to be aware of specific admission requirements.

Requirements
Admission Requirements: 

Minimum average of 60% with no mark below 50% in:

  1. Biology 30
  2. Chemistry 30
  3. ELA 30-1
  4. Mathematics 30-1
  5. Physics 30

Note: In addition to the program admission requirements applicants, whose first language is not English, must demonstrate English language proficiency.

Graduation Requirements: 

You must pass 20 term university transfer courses or a minimum of 60 credit hours, and achieve a minimum cumulative GPA of 2.00 to receive a Diploma in University Transfer Studies.

Program Content

Suggested Pattern Year 1

  • BIOL 217/BIOL 218 (6 credits)
  • CHEM 211/CHEM 351 (3 credits)
  • MATH 202 or MATH 203 (3 credits)
  • STAT 251 (3 credits)
  • ENGL 219 (3 credits)
  • PSYC 260 (3 credits
  • Free Electives (6 credits)
Year 1 Course Descriptions

BIOL 217

An introduction to cellular and molecular biology. Topics include: biological macromolecules; membrane stucture and function; cellular structure; bioenergetics and energy flow; respiration and photosynthesis; cell division and the cell cycle; DNA structure and replication; transcription and translation; recombinant DNA and genetic regulation. Prerequisite: Biology 30 and Chemistry 30 Note: BIOL 217 and 218 can be taken in either order.

BIOL 218

An introduction to how the diverse organisms on this planet have been affected by their ennvironment and how the current environment is the product of the activities or organisms. The course also examines how evolution has operated over long time periods to produce major groups of organisms and how evolutionary origins are reflected in their classsification. The principles that underlie our understanding of the major lineages will be discussed using examples from bacteria; fungi; protists; animals; and plants. A description of the involvement of organisms in major ecosystem processes leads to an evaluation of the stability of those systems and of human impact on the processes. Prerequisite: Biology 30 Note: BIOL 217 and 218 can be taken in either order

CHEM 211

Stoichiometry; ideal gases; atomic structure and bonding; thermochemistry; chemical equilibrium; acids and bases; buffers; titrations. Prerequisite: Chem 30 and Math 30-1

CHEM 351

An introduction to the chemistry of carbon compounds. The molecular structure; nomenclature; reactions; reaction mechanisms; structure determination and stereochemistry of alkanes; alkenes; alkynes and alkyl halides is discussed. Important organic compounds related to industry; agriculture and everyday use (polymers; fats; soaps; pesticides; medicinals; etc) are introduced. Prerequisite: CHEM 211 Note: You can only get credit for one of CHEM 241; CHEM 251 and CHEM 351.

CHEM 351

An introduction to the chemistry of carbon compounds. The molecular structure; nomenclature; reactions; reaction mechanisms; structure determination and stereochemistry of alkanes; alkenes; alkynes and alkyl halides is discussed. Important organic compounds related to industry; agriculture and everyday use (polymers; fats; soaps; pesticides; medicinals; etc) are introduced. Prerequisite: CHEM 211 Note: You can only get credit for one of CHEM 241; CHEM 251 and CHEM 351.

ENGL 219

The focus is on formal preparation for university level essay writing and the skills related to critical reading; interpretation; and argument. Prerequisite: ELA 30-1 or English 095 NOTE: Credit will not be granted for both ENGL 219 and ENGL 210.

MATH 202

Review of analytical geometry; differentiation and integration of simple functions; and applications. Prerequisite: Math 30-1 Note: You should take MATH 203 if you have at least 70% in Math 31.

MATH 203

Review of analytical geometry; differentiation and intergration of simple functions; and applications. Prerequisite: Math 30-1 and 31 or the equivalent. Note: Not recommended if you have less than 70% in Math 31.

STAT 251

Data collection and presentation; descriptive statistics. Probability distributions; sampling distributions and the central limit theorem. Point estimation and hypothesis testing. Correlation and regression analysis. Goodness-of- fit and contingency table. Prerequisite: Math 30-1 or Math 30-2 Note: This course may not be taken for credit if credit has already been obtained in any of STAT 241; PSYC 309; SOCI 311; or BUS 306.

Year 2

See an academic advisor for details.