ILW A certain radioactive (parent) nucleus transforms to a different (daughter) nucleus by emitting an electron and a neutrino. The parent nucleus was at rest at the origin of an xy coordinate system. The electron moves away from the origin with linear momentum (−1.2 × 10 − 22 kg·m/s) i ^ ; the neutrino moves away from the origin with linear momentum (−6.4 × 10 − 23 kg·m/s) j ^ . What are the (a) magnitude and (b) direction of the linear momentum of the daughter nucleus? (c) If the daughter nucleus has a mass of 5.8 × 10 − 26 kg, what is its kinetic energy?
ILW A certain radioactive (parent) nucleus transforms to a different (daughter) nucleus by emitting an electron and a neutrino. The parent nucleus was at rest at the origin of an xy coordinate system. The electron moves away from the origin with linear momentum (−1.2 × 10 − 22 kg·m/s) i ^ ; the neutrino moves away from the origin with linear momentum (−6.4 × 10 − 23 kg·m/s) j ^ . What are the (a) magnitude and (b) direction of the linear momentum of the daughter nucleus? (c) If the daughter nucleus has a mass of 5.8 × 10 − 26 kg, what is its kinetic energy?
ILW A certain radioactive (parent) nucleus transforms to a different (daughter) nucleus by emitting an electron and a neutrino. The parent nucleus was at rest at the origin of an xy coordinate system. The electron moves away from the origin with linear momentum (−1.2 × 10−22 kg·m/s)
i
^
; the neutrino moves away from the origin with linear momentum (−6.4 × 10−23 kg·m/s)
j
^
. What are the (a) magnitude and (b) direction of the linear momentum of the daughter nucleus? (c) If the daughter nucleus has a mass of 5.8 × 10−26 kg, what is its kinetic energy?
At point A, 3.20 m from a small source of sound that is emitting uniformly in all directions, the intensity level is 58.0 dB. What is the intensity of the sound at A? How far from the source must you go so that the intensity is one-fourth of what it was at A? How far must you go so that the sound level is one-fourth of what it was at A?
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