The net force acting on an object is - mbv? F = -mg - where the drag force f = -mbv², m is the mass of an object, (b andg are constants), (The initial condition are: at to = 0; xo = 0; vo =0) Find an expression represents a relation between the velocity and the position. g V = 7 (е-2bx — 1) b g (е-bx — 1) b v = F
The net force acting on an object is - mbv? F = -mg - where the drag force f = -mbv², m is the mass of an object, (b andg are constants), (The initial condition are: at to = 0; xo = 0; vo =0) Find an expression represents a relation between the velocity and the position. g V = 7 (е-2bx — 1) b g (е-bx — 1) b v = F
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![The net force acting on an object is
- mbv?
F = -mg -
where the drag force f = -mbv², m is the mass of an
object, (b andg are constants),
(The initial condition are: at to = 0; xo = 0; vo =0)
Find an expression represents a relation between
the velocity and the position.
g
v = 7
(e-2bx – 1)
b
v = 7
(e-bx – 1)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F591976ff-af35-43ee-b866-e6bdfac185a4%2F5edeaa89-74ff-4da0-b23c-855747c5b37f%2Fkfojkwf_processed.jpeg&w=3840&q=75)
Transcribed Image Text:The net force acting on an object is
- mbv?
F = -mg -
where the drag force f = -mbv², m is the mass of an
object, (b andg are constants),
(The initial condition are: at to = 0; xo = 0; vo =0)
Find an expression represents a relation between
the velocity and the position.
g
v = 7
(e-2bx – 1)
b
v = 7
(e-bx – 1)
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