Recent content by Nigsia
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Angular momentum & Energy using Yukawa's potential
In theory L=(-mkr_0(1+\alpha r_0)e^{-\alpha r_0})^{1/2}- Nigsia
- Post #16
- Forum: Introductory Physics Homework Help
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Angular momentum & Energy using Yukawa's potential
Could you please give me another hint? I'm really struggling to get anything clear.- Nigsia
- Post #15
- Forum: Introductory Physics Homework Help
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Angular momentum & Energy using Yukawa's potential
The potential is twice the kinetic, so \left| E\right| = \left| \frac{U}{2} \right| = \left| K \right|- Nigsia
- Post #13
- Forum: Introductory Physics Homework Help
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Angular momentum & Energy using Yukawa's potential
Kinetic and potential.- Nigsia
- Post #11
- Forum: Introductory Physics Homework Help
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Angular momentum & Energy using Yukawa's potential
I really don't know. Can you give me a hint?- Nigsia
- Post #9
- Forum: Introductory Physics Homework Help
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Angular momentum & Energy using Yukawa's potential
I don't really know that formula. The only thing that I can think of is E=\frac{U}{2}- Nigsia
- Post #7
- Forum: Introductory Physics Homework Help
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Angular momentum & Energy using Yukawa's potential
Do you mean that the Potential is twice the kinetic?- Nigsia
- Post #5
- Forum: Introductory Physics Homework Help
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Angular momentum & Energy using Yukawa's potential
Okay, I have it differentiated. How do I find angular momentum? As far as I know, I only find the energy with what I've done.- Nigsia
- Post #3
- Forum: Introductory Physics Homework Help
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Angular momentum & Energy using Yukawa's potential
Hello there! I was doing my Gravitation problems and I found this problem that I'm unable to solve. Yukawa's theory for nuclear forces states that the potential energy corresponding to the attraction force produced by a proton and a neutron is: U(r) = \frac{k}{r}e^{-\alpha r},\ k<0,\ \alpha > 0...- Nigsia
- Thread
- Angular Angular momentum Energy Momentum Potential Potential energy Yukawa potential
- Replies: 15
- Forum: Introductory Physics Homework Help