After completing a broad idea for the design, we played around with our available materials and came up with something that satisfied the need of the project. The design is simply a guitar tuning key that is attached to a pair of "L" shaped shelf brackets. The plan is to suspend the brackets from something so that we are able to hang the mass to create the tension. The mass will rest on the scale and will slowly be lifted as the tension increases rather than constantly changing the mass completely.
Monday, April 26, 2010
Setup Completed
After completing a broad idea for the design, we played around with our available materials and came up with something that satisfied the need of the project. The design is simply a guitar tuning key that is attached to a pair of "L" shaped shelf brackets. The plan is to suspend the brackets from something so that we are able to hang the mass to create the tension. The mass will rest on the scale and will slowly be lifted as the tension increases rather than constantly changing the mass completely.
Friday, April 23, 2010
New Design Idea
After discovering that our original idea of string length vs. frequency was linear, we decided to attempt testing tension of the string vs. frequency. The hardest part of this new proposal is designing a setup that can accurately measure the tension of the string. After brainstorming for a large portion of the weekend, we think we have designed a setup that can accurately measure the tension of the string. Knowing some basic physical principals, we figured that the tension could be calculated when an object of a known mass is hung from the string to create the tension. Basically, our setup will utilize this knowledge to obtain accurate data. We hope to begin and finish creating the setup soon. Once we finish we will share some photos online.
Thursday, April 22, 2010
The heartbreak of linear-ness
Today lots of progress was made. As previously discussed, we did manage to get our hands on a frequency measurer which allowed us to get to testing. We used a standard acoustic guitar and measured the frequency of the low E string for each fret. Comparing the frequency with the length from the fret to the top bracers, we obtained data that appeared to be frighteningly linear. Not all has gone to waste thus far however. We plan to keep the experiment very similar with one small change. Rather than using length as our independent variable, we will vary the tension off the string in hopes of non-linear results! We're in the process of bouncing ideas off each other of a way to accurately measure the tension in a fairly feasible way.
Tuesday, April 20, 2010
The search for a frequency measurer!
So we have been looking all over for a device that we can use to accurately measure the frequency emitted by a vibrating string in our experiment. We've searched all over an if everything comes together we should be getting our hands on one tomorrow. Once we get this we can finally kick off the testing and get some data.
Saturday, April 17, 2010
Idea approved
Our proposal for the FSE has been approved by Mr. Hnidei. Basically, our idea is to experiment on the relationship between the frequency of the sound emitted by a resonating guitar/violin string and the length of the string in question. We plan to test whether this relationship is non-linear as soon as possible.
Thursday, April 15, 2010
MHF4U/MCV4U FSE Topic
Just as a brief introduction, this blog has been created to record and display publicly the results and data accumulated for our MHF4U/MCV4U final summative evaluation. The group to which this blog belongs to consists of Spencer Gardner, Iyad Al-Nasri, and Chris Chesnik.
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