Tim Philp
- Indexed articles, last 90 days
- 44
- Latest publication
- Sep 17, 2026
- Outlet visibility, for Simcoereformer
- Top 500K sites
- Earliest in this view
- Jul 30, 2026
Latest articles
The impact of falling stars (opens the original)
Read excerpt
Ever watch a ‘falling star’? Most of this material is just microscopic dust. However, sometimes, the rocks are much larger. The results of an impact depend entirely on the size of the rock. The kinetic energy involved grows exponentially with mass. Imagine, if you will, what happens if the rocks are larger. Let’s start with a rock one meter across. This is roughly the size of a large boulder. It travels at tens of thousands of kilometers per hour. As it hits our atmosphere, friction generates im
The impact of falling stars (opens the original)
Read excerpt
Ever watch a ‘falling star’? Most of this material is just microscopic dust. However, sometimes, the rocks are much larger. The results of an impact depend entirely on the size of the rock. The kinetic energy involved grows exponentially with mass. Imagine, if you will, what happens if the rocks are larger. Let’s start with a rock one meter across. This is roughly the size of a large boulder. It travels at tens of thousands of kilometers per hour. As it hits our atmosphere, friction generates im
The impact of falling stars (opens the original)
Read excerpt
Ever watch a ‘falling star’? Most of this material is just microscopic dust. However, sometimes, the rocks are much larger. The results of an impact depend entirely on the size of the rock. The kinetic energy involved grows exponentially with mass. Imagine, if you will, what happens if the rocks are larger. Let’s start with a rock one meter across. This is roughly the size of a large boulder. It travels at tens of thousands of kilometers per hour. As it hits our atmosphere, friction generates im
The impact of falling stars (opens the original)
Read excerpt
Ever watch a ‘falling star’? Most of this material is just microscopic dust. However, sometimes, the rocks are much larger. The results of an impact depend entirely on the size of the rock. The kinetic energy involved grows exponentially with mass. Imagine, if you will, what happens if the rocks are larger. Let’s start with a rock one meter across. This is roughly the size of a large boulder. It travels at tens of thousands of kilometers per hour. As it hits our atmosphere, friction generates im
The impact of falling stars (opens the original)
Read excerpt
Ever watch a ‘falling star’? Most of this material is just microscopic dust. However, sometimes, the rocks are much larger. The results of an impact depend entirely on the size of the rock. The kinetic energy involved grows exponentially with mass. Imagine, if you will, what happens if the rocks are larger. Let’s start with a rock one meter across. This is roughly the size of a large boulder. It travels at tens of thousands of kilometers per hour. As it hits our atmosphere, friction generates im
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Top 500K sites
For Simcoereformer, the outlet · Measured Aug 1, 2026
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