How marketable is a BS in Applied Mathematics degree?

Click For Summary

Discussion Overview

The discussion revolves around the marketability of a Bachelor of Science in Applied Mathematics degree, exploring potential job opportunities, the importance of skills versus the degree itself, and personal experiences within academic programs. Participants share insights on the relevance of programming skills and the perceived value of the degree in various fields such as finance, consulting, and engineering.

Discussion Character

  • Debate/contested
  • Conceptual clarification
  • Technical explanation

Main Points Raised

  • Some participants suggest that while the BS in Applied Mathematics may not be directly marketable, the skills acquired during the program, particularly programming, are valuable to employers.
  • Others argue that the degree itself can serve as a positive signal to employers looking for analytical abilities in fields like finance and consulting.
  • A participant expresses the view that an engineering degree may provide more applicable skills than a degree in applied mathematics.
  • Another participant shares a personal experience of dissatisfaction with the applied mathematics curriculum, indicating a preference for pure mathematics and expressing concerns about the quality of instruction in applied courses.
  • One participant mentions the potential for applied mathematics in social sciences, specifically in modeling economic phenomena, highlighting a personal interest in agent-based and predictive modeling.
  • There is a discussion about the nature of differential equations courses, with some participants noting that they often focus on techniques rather than underlying theory, which may not reflect the overall quality of the applied mathematics department.

Areas of Agreement / Disagreement

Participants do not reach a consensus on the marketability of the degree. While some believe it is marketable due to the analytical skills it represents, others contend that the skills gained during the degree are what truly matter. There are also differing opinions on the quality of the applied mathematics curriculum and its relevance to job readiness.

Contextual Notes

Participants express varying levels of satisfaction with their educational experiences, noting that the perceived value of the degree may depend on individual career goals and the specific skills acquired during the program. There are also references to the need for additional qualifications or certifications to enhance job prospects.

EntropicLove
Messages
45
Reaction score
1
Out of curiosity, what jobs could someone with a BS in applied mathematics apply for with a reasonable chance of getting? Additional skillsets would be programming...

Thank you!
 
Physics news on Phys.org
The conclusion I have come to is that it is something more of an intellectual foundation and/or more certifications or a grad degree is required to have a more professional options/potential?

Can anyone confirm...or offer any knowledge...or feedback..

I fear my question was insufficient and/or shallow.
 
The BS isn't marketable. The skills you picked up in the process are marketable. Programming is good, but it depends on whether you can convince an employer you can apply it.

Degrees aren't marketable. Skills are.
 
It is marketable in the sense that when submitting your application, employers looking for analytical ability (finance, consulting, engineering, etc) will see your degree, say "ok, no issues here", and continue reading the rest of your resume.
 
ozmotion said:
It is marketable in the sense that when submitting your application, employers looking for analytical ability (finance, consulting, engineering, etc) will see your degree, say "ok, no issues here", and continue reading the rest of your resume.

Sure. In that sense, Applied Mathematics is arguably the most marketable degree you could ever ask for.
 
Medwell said:
Sure. In that sense, Applied Mathematics is arguably the most marketable degree you could ever ask for.

I more or less agree, though I'm not really one for superlatives. To look at the issue more objectively, you could turn to the job outlook report by the National Association of Colleges and Employers. You have to pay for a copy, but the gist of it is summarized by various news outlets reporting on it. (one source: http://www.schools.com/articles/nace-ranks-most-in-demand-majors-and-lucrative-degrees-2011.html )

The most marketable majors (both in terms of compensation and number of firms hiring) are those in engineering (applied math, basically) and finance/accounting.

In otherwords, strong quantitative and analytical skills are valued.
 
This is somewhat unrelated but this semester has made me hate the applied math department at my school. My DE/LA class is the biggest plug and chug class ever, I learned much more from the pure math department. The applied math classes have programming projects but the programming is the least of your concerns because you spend so much time trying to figure out what the math is really saying after having poor explanations and problem sets. I'll get some skills from this class but it's not math skills. I could see a cross of CS and Math being pretty useful in terms of understanding and skills but only when they are separated. If they are combined early on then one will cave and unfortunately, in my case, it's the math. Maybe things change at the grad level, and I hope so for your sake.

I agree with Locrian that skills make the degree and with that said I'm convinced that an engineering degree will give you more than enough skills, including working in teams. I've also considered applied math before but an engineering degree will teach enough "applied math" for my taste. What are your reasons for wanting to go into applied math? What do you want to do with the degree?
 
I would like to apply to to the social sciences, my greatest interest being economics. Thomas Schelling modeled many social phenomenon, such as, segregation through mathematical algorithms. I found some of his work namely this one very inspiring to me, I'm hoping to model similar phenomena.

http://www.youtube.com/watch?v=vv5EJzkFApk&feature=related

Also agent-based modelling and predictive modelling is something that is attractive to me. My original post question, however, is more of a practical question.
 
DrummingAtom said:
This is somewhat unrelated but this semester has made me hate the applied math department at my school. My DE/LA class is the biggest plug and chug class ever, I learned much more from the pure math department.

Yeah, but that doesn't really reflect as much on the department as it does on that subject in general! That class is plug and chug EVERYWHERE. It's really just the nature of a first course in Diff Eq. The theory behind much of it is just a little too advanced for the flocks of aspiring engineers and applied scientists who have to take that course. Not to say it's above their head, just that they have no need to learn it. So the course is really just a cookbook of techniques.

Having at least some sort of clue how to solve differential equations is important to basically any scientist. Understanding why those techniques work is not. The course is more of a survey than a rigorous introduction. You need prerequisites in Real Analysis and Algebra to understand the theory. For instance, just the basic existence theorem for ODE's relies on the contraction mapping principle. And to really understand contraction mapping, you need to understand compactness, completeness, Cauchy sequences, etc.etc.etc...
 
Last edited:

Similar threads

  • · Replies 15 ·
Replies
15
Views
3K
  • · Replies 1 ·
Replies
1
Views
3K
  • · Replies 7 ·
Replies
7
Views
4K
  • · Replies 3 ·
Replies
3
Views
5K
  • · Replies 18 ·
Replies
18
Views
4K
  • · Replies 3 ·
Replies
3
Views
2K
  • · Replies 12 ·
Replies
12
Views
3K
  • · Replies 7 ·
Replies
7
Views
3K
  • · Replies 3 ·
Replies
3
Views
7K
  • · Replies 5 ·
Replies
5
Views
2K