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distributions_of_shocks_in_simulations [2020/06/18 15:50] tr |
distributions_of_shocks_in_simulations [2020/06/19 10:38] (current) tr |
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| **Thibaud**: | **Thibaud**: | ||
| I am actually doing it, but it's a lot of data and my internet connection is not very fast here... I'll tell you if is bimodal too. | I am actually doing it, but it's a lot of data and my internet connection is not very fast here... I'll tell you if is bimodal too. | ||
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| + | [Update :] | ||
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| + | {{:abc_b_scan.png?540 |}} | ||
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| + | {{:ot_b_scan.png?540 |}} | ||
| **Andrew**: | **Andrew**: | ||
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| So as usual higher shock velocities lead to higher shear velocities. But for a fixed shock velocity lower magnetic field strength gives higher shear velocity. | So as usual higher shock velocities lead to higher shear velocities. But for a fixed shock velocity lower magnetic field strength gives higher shear velocity. | ||
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| + | **__Magnetic field increments__** | ||
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| + | {{:abc_b_perp.png?540 |}} | ||
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| + | {{:ot_b_perp.png?540 |}} | ||
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| + | {{:abc_b_perp1.png?540 |}} | ||
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| + | {{:ot_b_perp1.png?540 |}} | ||
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| + | {{:abc_bperp_norm.png?540 |}} | ||
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| + | {{:ot_bperp_norm.png?540 |}} | ||