Imagine that we discovered a new planet that has the potential to support life. This planet has plenty of water on its surface and carbon dioxide in its atmosphere, and a nice, comfortable temperature similar to Earth. The only difference is that this planet orbits a star that produces green light only. If we took some plants from Earth and planted them on this new planet, would our plants be able to grow? Explain your answer.
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A: Please see the next step for solution:-
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A: We use Ampere's circuital law to get the field in the different regions.
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Q: Please circle your answers. Thank you
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A: Please see the next step for solution:-
Q: Suppose D = r2sinq a, + sinqcosf a; C/m². Determine the charge density at the point (1.0m, 45°, 90°)...
A: We have given that- D→=r2sinq a^r+sinqcosf a^fFor finding charge density we know that-ρv=∇→·D→ =1...
Q: Please show all work and circle your final answers for all both parts. Thank you
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Q: A 6.50 g of a gas is trapped in a cylinder at 1.00 atm and 60 °C, what volume does the gas occupy (4...
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Q: 24.39 Four capacitors with capacitances C = 3.50 nF, C, = 2.10 nF, C, = 1.30 nF, and C = 4.90 nF are...
A: NOTE: As per Bartleby Guidelines only one part has to be solved at a time. Kindly upload other parts...
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A: Given data r=4.25 mB=0.96×10-5 T
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A: We represent all the forces and apply translational equilibrium to get the required quantities.
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A: Since it contains more than 3 sub parts, solution for the first three is provided here.
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A: Given,frequency f=4.57 x 1014 Hz
Q: solve the question
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A: Solution: Given Values, θ1=θB=55.40εr2=34As θB=tan-1εr2εr1tan θB=εr2εr1
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