πŸš… Hi people, time for another train! πŸš…

Things have been going overall great in my life recently, even though there have been some brief downs.

  • I finished my traineeship and graduated a third school, because who doesn't like doing three final exam phases? πŸ˜‹

Even though my final oral exam went rather disappointing, after I anxiously forgot half of what I wanted to say, my written exams and overall grades turned out to be the best I've achieved in the three schools I graduated.

  • I reached 300 followers + my first 5 subs on my twitch channel and my little community is growing πŸ’•

I've been investing lots of time, money, heart and soul in my stream for the last 6 months and there's really nothing more rewarding than seeing how people enjoy my content. Some are even in the chat before I start the stream and wait for me. For a small streamer like me things like this means the world.

If any of you guys is interested in a fun and community-focused stream I'd be happy to have you β™₯
I'm definitely not the best player, but I'm doing what I love and want to share it with anyone who wants to see and be a part of it~

  • I got the job I really really wanted today πŸ˜‡

I just got the call today and I'm beyond excited! I'll be starting in September want to focus the remaining free time on travels and my stream~

  • I had some amazing personal stuff happening ✨

So yeah, I'm super happy and thankful for everything right now! 😍
And I want to share that happiness with you guys, so have some games! πŸŽ‰

πŸ’•Click here to enter Landyra's Train of HappinessπŸ’•
Level 0 up to 4 β™₯ 10 Carts β™₯ The giveaways are running until July 31st.

6 years ago

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In mathematics, a bump function is a function f : Rn β†’ R on a Euclidean space Rn which is both smooth (in the sense of having continuous derivatives of all orders) and compactly supported. These are also called test functions [Ο†]. The space of all bump functions on Rn is denoted {\displaystyle C{0}^{\infty }(\mathbf {R} ^{n})} C{0}^{\infty }(\mathbf {R} ^{n}) or {\displaystyle C{c}^{\infty }(\mathbf {R} ^{n})} C{c}^{\infty }(\mathbf {R} ^{n}). The dual space of this space endowed with a suitable topology is the space of distributions.

6 years ago
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You sure learn something new everyday o:

6 years ago
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Glad things are going well for you, good luck, congrats and Bump. ^^

6 years ago
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Thanks and bump

6 years ago
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Bump

6 years ago
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Congrats!

6 years ago
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<3

6 years ago
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Bump

6 years ago
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BUMP!

6 years ago
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thanks a lot for chooooo chooooo!

6 years ago
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Looks like things are looking up!
Thanks for the train and cheers for the RL achievements! :D

6 years ago
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Bump and congrats!

6 years ago
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have a bump!
Choo Choooo

6 years ago
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Bump :3

6 years ago
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Thanks bump

6 years ago
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Congratulations on all your happy stuff and thanks for the train. I hope your happiness and luck continues.
And I must commend you on your English pronunciation. I'm a bit jelly, to tell the truth.

6 years ago
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thanks a lot, happy to hear it's not as bad as it feels like :P

6 years ago
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Congrats on all your success :P
Bump!

6 years ago
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bump :)

6 years ago
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Bump

6 years ago
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Bump :D

6 years ago
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bump, gz ^^

6 years ago
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Woohoo, ultra congratulations! xB

6 years ago
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ultra thanks! :D

6 years ago
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bump

6 years ago
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Deleted

This comment was deleted 5 years ago.

6 years ago
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Bump. Thank you!

6 years ago
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bamp

6 years ago
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