Answer:
k =
![5* 10^(4)\ N/m](https://img.qammunity.org/2020/formulas/physics/college/n1rheusbn5y5s8pkdk1usf174xhkatu68p.png)
b =
![0.707* 10^(3)](https://img.qammunity.org/2020/formulas/physics/college/ibqgkufidekmmumlna1czwbrxdmlaimcdk.png)
t =
![7.1* 10^(- 5)\ s](https://img.qammunity.org/2020/formulas/physics/college/9gaiqz6jlx7575b1cm10ccioy9g0tio6tz.png)
Solution:
As per the question:
Mass of the block, m = 1000 kg
Height, h = 10 m
Equilibrium position, x = 0.2 m
Now,
The velocity when the mass falls from a height of 10 m is given by the third eqn of motion:
![v^(2) = u^(2) + 2gh](https://img.qammunity.org/2020/formulas/physics/college/3q3t4b7n0xwi42fir9chc645i76sosfwki.png)
where
u = initial velocity = 0
g = 10
![m/s^(2)](https://img.qammunity.org/2020/formulas/physics/college/ly9imylv9g1hak6osq348ju6yz7futp9t3.png)
Thus
![v = √(2* 10* 10) = 10√(2)\ m/s](https://img.qammunity.org/2020/formulas/physics/college/vomcxgcsyhcmbqepv4s163in47gpnkb2og.png)
Force on the mass is given by:
F = mg =
![1000* 10 = 10000 N = 10\ kN](https://img.qammunity.org/2020/formulas/physics/college/bdemt7w59uy20j8lbs7175pjku4sb7dcbu.png)
Also, we know that the spring force is given by:
F = - kx
Thus
![k = (F)/(x) = (10000)/(0.2) = 5* 10^(4)\ N/m](https://img.qammunity.org/2020/formulas/physics/college/b3x9smzqvlpi5dpa149gb64tvb5v6r6cnp.png)
Now, to find the damping constant b, we know that:
F = - bv
![b = (F)/(v) = (10000)/(10√(2)) = 0.707* 10^(3)](https://img.qammunity.org/2020/formulas/physics/college/i3e7zzc9cl5r2vvgyyxtrx83j5dgykejur.png)
Now,
Time required for the platform to get settled to 1 mm or 0.001 m is given by:
![t = (0.001)/(v) = (0.001)/(10√(2)) = 7.1* 10^(- 5)\ s](https://img.qammunity.org/2020/formulas/physics/college/fss5zdqazg353e2y00d0si0enjlgnlh00d.png)