A 1.35 kg falcon catches a 0.355 kg dove from behind in midair. What is their velocity after impact if the falcon's velo

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answerhappygod
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A 1.35 kg falcon catches a 0.355 kg dove from behind in midair. What is their velocity after impact if the falcon's velo

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A 1 35 Kg Falcon Catches A 0 355 Kg Dove From Behind In Midair What Is Their Velocity After Impact If The Falcon S Velo 1
A 1 35 Kg Falcon Catches A 0 355 Kg Dove From Behind In Midair What Is Their Velocity After Impact If The Falcon S Velo 1 (21.98 KiB) Viewed 46 times
Q2
A 1 35 Kg Falcon Catches A 0 355 Kg Dove From Behind In Midair What Is Their Velocity After Impact If The Falcon S Velo 2
A 1 35 Kg Falcon Catches A 0 355 Kg Dove From Behind In Midair What Is Their Velocity After Impact If The Falcon S Velo 2 (44.97 KiB) Viewed 46 times
Q3
A 1 35 Kg Falcon Catches A 0 355 Kg Dove From Behind In Midair What Is Their Velocity After Impact If The Falcon S Velo 3
A 1 35 Kg Falcon Catches A 0 355 Kg Dove From Behind In Midair What Is Their Velocity After Impact If The Falcon S Velo 3 (23.52 KiB) Viewed 46 times
A 1.35 kg falcon catches a 0.355 kg dove from behind in midair. What is their velocity after impact if the falcon's velocity is initially 27.5 m/s and the dove's velocity is 5.55 m/s in the same direction? velocity: Question Credit: OpenStax College Physics m/s
An unfortunate astronaut loses his grip during a spacewalk and finds himself floating away from the space station, carrying only a rope and a bag of tools. First he tries to throw a rope to his fellow astronaut, but the rope is too short. In a last ditch effort, the astronaut throws his bag of tools in the direction of his motion, away from the space station. The astronaut has a mass of m₁ = 113 kg and the bag of tools has a mass of my = 19.0 kg. If the astronaut is moving away from the space station at v₁ = 1.50 m/s initially, what is the minimum final speed bf of the bag of tools with respect to the space station that will keep the astronaut from drifting away forever? Ub.f= m/s
Consider the information in the table regarding a perfectly elastic collision between two objects. Given the data, what is the final velocity of object 2? U2f = m/s mass (kg) initial velocity (m/s) final velocity (m/s) Object 1 11 5.0 1.9 Object 2 2.0 -5.0 ?
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