update seis activity
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@ -16,13 +16,13 @@ Engineering: In this project, you will build your own seismograph micro:bit from
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* Tape
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* Scissors
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## Step 1.
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## 1.
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Prepare Tape: Measure and cut approximately 10mm of tape. The tape will be fastened to a micro USB cable.
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![](/static/mb/lessons/seismograph1.png)
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## Step 2.
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## 2.
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Fasten Tape: Fasten tape to the micro USB cable and to the plate. Attach the micro:bit to the micro:bit USB cable.
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@ -34,14 +34,14 @@ Computer Science: The seismograph has been built. We are ready to program the mi
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### ~
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## Step 1.
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## 1.
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Go to Codemicrobit.com
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* Click or tap New Project
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* Click or tap Blocks
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## Step 2.
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## 2.
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We will measure `acceleration (mg)` in terms of strength or Magnitude. Get the acceleration value (milli g-force), as measured in strength or Magnitude.
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@ -49,7 +49,7 @@ We will measure `acceleration (mg)` in terms of strength or Magnitude. Get the a
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input.acceleration(Dimension.Strength);
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```
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## Step 3.
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## 3.
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Use the plot bar chart to visualize the acceleration on the LED screen of the micro:bit in the specified range. You implement forever and plot Bar Graph to constantly display a vertical bar graph, which will be based on the "value" and "high" value. Then measure the acceleration based on the strength or Magnitude.
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@ -60,7 +60,7 @@ basic.forever(() => {
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```
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## Step 4.
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## 4.
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Finally, we subtract the gravity from acceleration strength.
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@ -80,20 +80,20 @@ Science: We now need to use the micro:bit to chart the strength of the accelerat
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### ~
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## Step 1.
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## 1.
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First, notice that making moving the micro:bit simulator in any direction will change the values from a flat horizontal line to a waving line to display the value of the strength as measured in milli-gravities. Next, notice that by moving the micro:bit simulator below, there is a changing acceleration value. Finally, notice that the LED display will fluctate based on the movement of the micro:bit simulator.
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![](/static/mb/data4.png)
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## Step 2.
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## 2.
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Vigorously move the micro:bit in the micro:bit simulatator by moving the micro:bit image from side to side. Every time the micro:bit moves in any direction in the simulator, you are generating data points that can be reviewed in Excel. The more attempts to move the micro:bit from side to side, the more data being saved in Excel. After you have vigarously moved the micro:bit simulator from side to side for a sufficient amount of time, you are ready to graph or chart the accceleration of the micro:bit. We want a printout of our acceleration on Excel that can be graphed in Excel.
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### ~
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## Step 3.
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## 3.
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* Connect a micro:bit to your computer using your USB cable
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@ -111,7 +111,7 @@ Run the acceleration experiment by moving the actual micro:bit and observe the c
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First, notice that by moving the actual micro:bit in any direction, you will change the values of the black, flat horizontal line. The black line will change from being flat to being a waving black line. The changing values of the micro:bit accelereration is being measured in milli-gravities. Next, notice that by moving the micro:bit below, there is a changing acceleration value. Finally, notice that the LED display will fluctate based on the movement of the micro:bit.
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## Step 4.
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## 4.
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We want to chart the data collected by using a tool in Excel.
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@ -122,7 +122,7 @@ First, click or tap on the first two columns (A, B) to include the time of the
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![](/static/mb/data7.png)
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## Step 5.
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## 5.
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![](/static/mb/chart1.png)
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@ -140,14 +140,14 @@ When you find the chart type that you want, click it, and then click OK. We want
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Tip: If you don’t see a chart type that you want, click the All Charts tab to see all of the available chart types.
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## Step 6.
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## 6.
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![](/static/mb/chart_title.png)
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* Use the Chart Elements, Chart Styles, and Chart Filters buttons next to the upper-right corner of the chart to add chart elements like axis titles or data labels, to customize the look of your chart
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## Step 7.
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## 7.
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![](/static/mb/elements_styles_filters.png)
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