Answer:
50000N
Explanation:
Force = mass × acceleration
= 2500 × 20
= 50000N
Complete Question
The complete question is shown on the first uploaded image
Answer:
The answer is
% higher than
% lower than
Explanation:
From the question we are told that
The first string has a frequency of
The period of the beat is
Generally the frequency of the beat is
Substituting values
From the question
for having a higher tension
So
From the question
Substituting values
% higher than
For having a lower tension
So
From the question
Substituting values
% lower than
48,800 mi/h2 is the right answer
Answer:
The vapor pressure at 60.0°C is 2.416 atm
Explanation:
To solve this problem, we use Clausius-Clapeyron equation
where;
Initial pressure P₁ = 0.703 atm
Initial Temperature T₁ = 25+273 = 298K
Final temperature T₂ = 60+273 = 333K
Change in enthalpy of vaporization ΔH = 29.1 KJ/mol = 29100J/mol
R is Boltzman constant = 8.314 J/K.mol
⇒
P₂ = P₁ (3.43663) = (0.703 atm)(3.43663) = 2.416 atm
P₂ = 2.416 atm
Therefore, the vapor pressure at 60.0°C is 2.416 atm.
Answer:
a) TB = m2 * w^2 * 2*d
b) TA = m1 * w^2 * d + m2 * w^2 * 2*d
Explanation:
The tension on the strings will be equal to the centripetal force acting on the boxes.
The centripetal force is related to the centripetal acceleration:
f = m * a
The centripetal acceleration is related to the radius of rotation and the tangential speed:
a = v^2 / d
f = m * v^2 / d
The tangential speed is:
v = w * d
Then
f = m * w^2 * d
For the string connecting boxes 1 and 2:
TB = m2 * w^2 * 2*d
For the string connecting box 1 to the shaft
TA = m1 * w^2 * d + m2 * w^2 * 2*d
The car, accelerating at a constant rate of 2.0 m/s2 from rest, will travel a distance of 144 meters in 12 seconds.
The question pertains to the concept of motion in physics, specifically how distances travelled are influenced by an object's acceleration. The car is accelerating at a constant rate of 2.0 m/s2 from rest. It means that the initial velocity of the car is 0. We can use the formula of motion, s = ut + 0.5at2, where u is the initial velocity, a is the acceleration and t is the time.
In this case, u = 0 (as the car starts from rest), a = 2.0 m/s2 (constant acceleration) and t = 12 seconds. Substituting these values into the formula, we get:
s = 0*12 + 0.5*2*122
Therefore, the car will travel 144 meters in 12 seconds assuming it accelerates at a constant rate.
#SPJ2
The length of the chain such that the gate is just on the verge of opening is mathematically given as
l=8.58m
Generally, the equation for the is mathematically given as
Therefore
Fh= 77048 N
Where
ycp-y=0.00625
In conclusion, resultant force
x = F'' - W
x = 9810* 10*( \pi/4 )*0.25^2 *(10-l)-200
x = 4615.5-481.5 l
Therefore
77048* 0.00625 - 1 *(4615.5-481.5 l) = 0
l=8.58m
Read more about Lenght
Answer:
Explanation:
given,
length of lever = 1 m
diameter of cylinder = 25 cm
weight of cylinder = 200 N
hydrostatic force
=
= 77048 N
now,
=
= 0.00625 m
Finding the resultant force
F = 4615.5-481.5 l
taking moment about hinge
l = 8.58 m