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Nifty Lifting Machine

Sixth meeting (Tuesday, February 23). We brought our completed nifty lifting machine to school, and we started experimenting with how much input force it required to lift the output force, 600g, up 5 cm to find the actual mechanical advantage. We carefully placed colored pencils in the input force can, and as a result, we found that 103g was needed to complete work. These are the calculations we did:. Actual Mechanical Advantage = Output force divided by Input force. 83 divided by 18 = about 4.6. If we c...

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Nifty Lifting Machine | niftyliftingmachine.blogspot.com Reviews
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Sixth meeting (Tuesday, February 23). We brought our completed nifty lifting machine to school, and we started experimenting with how much input force it required to lift the output force, 600g, up 5 cm to find the actual mechanical advantage. We carefully placed colored pencils in the input force can, and as a result, we found that 103g was needed to complete work. These are the calculations we did:. Actual Mechanical Advantage = Output force divided by Input force. 83 divided by 18 = about 4.6. If we c...
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1 nifty lifting machine
2 done
3 completed machine
4 calculating
5 weights
6 final touches
7 fulcrum
8 ashley
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Nifty Lifting Machine | niftyliftingmachine.blogspot.com Reviews

https://niftyliftingmachine.blogspot.com

Sixth meeting (Tuesday, February 23). We brought our completed nifty lifting machine to school, and we started experimenting with how much input force it required to lift the output force, 600g, up 5 cm to find the actual mechanical advantage. We carefully placed colored pencils in the input force can, and as a result, we found that 103g was needed to complete work. These are the calculations we did:. Actual Mechanical Advantage = Output force divided by Input force. 83 divided by 18 = about 4.6. If we c...

INTERNAL PAGES

niftyliftingmachine.blogspot.com niftyliftingmachine.blogspot.com
1

Nifty Lifting Machine: Second Meeting (Monday, January 31)

http://niftyliftingmachine.blogspot.com/2011/02/second-meeting-monday-january-31.html

Second Meeting (Monday, January 31). 1st design: Wheel and axle and Pulley. 2nd design: Lever and Pulley. This second meeting was all about setting the machine up. We tried to construct the machine according to our plan, but we quickly ran into many problems. Although we set up our original plan fairly well, we found out that actually building the machine and seeing it work is different from seeing the design on paper. Next time, we plan to create the new design and see what happens.

2

Nifty Lifting Machine: Third Meeting (Friday, February 4)

http://niftyliftingmachine.blogspot.com/2011/02/third-meeting-friday-february-4.html

Third Meeting (Friday, February 4). This meeting was short, but it was a time when we decided our future meetings and plans for the machine. We decided to stick to the schedule and try and build the lever - and- pulley nifty lifting machine. We also gathered new materials and thought of what items could act as the lever and fulcrum. We planned to bring tubes to act as the lever, wire ties to act as the fulcrum, and strong tape for next time. Sixth meeting (Tuesday, February 23).

3

Nifty Lifting Machine: Fourth Meeting (Saturday, February 5)

http://niftyliftingmachine.blogspot.com/2011/02/4th-meeting-saturday-february-5.html

Fourth Meeting (Saturday, February 5). Setting up the Inclined plane-and-pulley design. 3rd design: Inclined Plane-and-Pulley. Done with the inclined plane-and-pulley! Inclined plane and pulley design. Today we met at Ashley’s house, and we ended up experimenting with two different designs. This meeting taught us how different a design on paper and an actual machine is. There was so much friction, and we learned that it can hurt our machine because lots of energy is being wasted. Next meeting, we...

4

Nifty Lifting Machine: 2月 2011

http://niftyliftingmachine.blogspot.com/2011_02_01_archive.html

Sixth meeting (Tuesday, February 23). We brought our completed nifty lifting machine to school, and we started experimenting with how much input force it required to lift the output force, 600g, up 5 cm to find the actual mechanical advantage. We carefully placed colored pencils in the input force can, and as a result, we found that 103g was needed to complete work. These are the calculations we did:. Actual Mechanical Advantage = Output force divided by Input force. 83 divided by 18 = about 4.6. If we c...

5

Nifty Lifting Machine: First Meeting (Friday, January 28)

http://niftyliftingmachine.blogspot.com/2011/02/first-meeting-friday-january-28.html

First Meeting (Friday, January 28). Wheel and Axle-and-Pulley Design. Today, we met in the cafeteria to start working on our nifty lifting project. It was a brief meeting, but we accomplished a lot. During class, we decided to use a wheel and axle-and-pulley design for our machine. Attached above is a design of our machine. Next meeting, we plan on bringing the materials to actually start constructing the machine. Us working on the blog. Sixth meeting (Tuesday, February 23).

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Sixth meeting (Tuesday, February 23). We brought our completed nifty lifting machine to school, and we started experimenting with how much input force it required to lift the output force, 600g, up 5 cm to find the actual mechanical advantage. We carefully placed colored pencils in the input force can, and as a result, we found that 103g was needed to complete work. These are the calculations we did:. Actual Mechanical Advantage = Output force divided by Input force. 83 divided by 18 = about 4.6. If we c...

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