Victoria

SHB60118

Advanced Diploma of Intense Pulsed Light and Laser for Hair Reduction in Shepparton

Nationally Recognised Vocational Education and Training (VET)
Study mode Blended / On Campus
Duration 9 months
Estimated fee* Unavailable
* Fees are indicative only and vary based on your circumstances and eligibility for government funding.

Entry requirements

Entry requirements set by ASQA are the basic qualifications and criteria that students must meet before enrolling in a nationally recognised course.

These requirements ensure students have the skills and knowledge needed to undertake this course.

Domestic Students

You must meet ONE of the following requirements:
  • Are employed as a Registered Nurse or Enrolled Nurse OR
  • At least 12 months work experience in a related field OR
  • Completed Diploma of Beauty Therapy or equivalent qualifications
As well as ALL of the following requirements:
  • At least 12 months work experience in a related field

Course fees

The estimated fee reflects the price range across training providers in Shepparton.

The course fee is determined by each individual provider and may vary depending on factors like study mode and student support availability.

Estimated Fee* Unavailable Fees are based on full-time study.
* Showing course fees for all providers. Some providers may not offer this course in your area.

Career opportunities

The Advanced Diploma of Intense Pulsed Light and Laser for Hair Reduction will prepare you for the following roles.

Find a course provider

Compare all providers for the available in Shepparton to find the right fit for you.

More about Advanced Diploma of Intense Pulsed Light and Laser for Hair Reduction

Embarking on the path to an Advanced Diploma of Intense Pulsed Light and Laser for Hair Reduction in Shepparton is an exciting opportunity for those looking to excel in the beauty and wellness industry. This qualification equips students with in-depth knowledge and practical skills needed to operate advanced laser technology for hair reduction treatments. In addition to the essential technical competencies, pursuing this diploma opens doors to a variety of rewarding career opportunities in the local area.

One of the leading training providers in Shepparton is BTTA. Offering comprehensive training through an online delivery mode, BTTA blends theoretical knowledge with practical applications effectively. By studying under a recognised provider, students can ensure they receive quality education that adheres to industry standards. Additionally, the convenience of online learning allows students in Shepparton to manage their studies more flexibly, making it easier to balance work and personal commitments.

Upon completing the Advanced Diploma, graduates are well-prepared to step into various exciting roles. Positions such as a Laser Therapist, Beauty Therapist, or IPL and Laser Technician are just a few potential pathways. Not only will these roles allow you to specialise in beauty therapy, but they also offer a chance to make a positive impact on clients' confidence and self-esteem, creating rewarding job satisfaction in your career.

Furthermore, the Advanced Diploma also opens up opportunities for positions such as a Brand Ambassador, Product Specialist, or an Electrologist. These roles often involve addressing clients' needs and helping them choose appropriate hair reduction services, further enhancing your suitability for the beauty and wellness field. Shepparton is growing, and with a demand for qualified professionals, there will be a wealth of opportunities waiting for you.

By choosing to pursue the Advanced Diploma of Intense Pulsed Light and Laser for Hair Reduction, you will gain not only the skills necessary for success but also the confidence to thrive in various aspects of the beauty industry. To learn more about this exciting course and its potential in Shepparton, visit the full course details at Courses.com.au. With the support of reputable training providers like BTTA, you are well on your way to achieving your career goals in this dynamic field.