The measure of a force is known as the magnitude of the force. When two or more forces act on a body, the total sum of the forces acting on it is known as the magnitude of the resultant force.
In simpler terms, the sum of the total force is the resultant force.
The magnitude of the resulting forces can be calculated by
[tex]R = \frac{Couple}{Position}[/tex] where R is the resultant force.
Forces at
(a) A and B
AB = 0.45m
R * (0.45m) = 12 N-m
R = [tex]\frac{12}{0.45}[/tex]
R = 26.66 N
(b) B and C
BC = 0.24m
R * (0.24m) = 12 N-m
R = [tex]\frac{12}{0.24}[/tex]
R = 50 N
(c) A and C
AC = [tex]\sqrt{AB^{2} +BC^{2} }[/tex]
AC = [tex]\sqrt{(0.45)^{2} + (0.24)^{2} }[/tex]
AC = 0.51m
R * (0.51m) = 12 N-m
R = [tex]\frac{12}{0.51}[/tex]
R = 23.9 N
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An iron ring is magnetized by placing it near the north pole of a bar magnet. How would the magnetic field lines of the iron ring appear once it is magnetized?.
The magnetic field lines of the magnetized iron ring are concentrated near the north and south poles of the ring.
When an iron ring is put near the north pole of a bar magnet, the bar magnet's magnetic field lines are drawn to it. As a result, the iron ring gets magnetic, and its field lines become concentrated towards the ring's north and south poles.
By matching the north pole of the iron ring with the north pole of the bar magnet, the iron ring is magnetized. This produces a strong magnetic field between the two poles, magnetizing the iron ring. The iron ring's magnetic field lines will be visible as a series of concentric circles around the bar magnet's north pole.
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meaning of quantity survey
Explanation:
quantity surveying is the action or profession of a person who estimates the cost of the materials and labour necessary for a construction job.
help what does this mean
String instruments have different thicknesses of strings. This allows for the instrument to have different notes that give off different __________.
a. amplitude
b. pitch
c. wavelengths
d. rarefaction
Give an example of what it means to say mass and weight are proportional to each other?.
The example of mass and weight being proportional is Force = mass * acceleration.
The proportionality can be direct or inverse proportionality.
Direct proportionality can be defined as the increase in the second quantity if there is an increase in the first quantity when both quantities are related.
Inverse proportionality can be defined as a decrease in the second quantity when the first quantity is increased when both quantities are related.
Mass and weight are proportional to each other.
For that we can consider the example given below:
weight is the force exerted by the earth's gravity on the particle.
we know that
force = Mass * acceleration
as weight = force
weight = mass * acceleration
so if the acceleration is constant the increasing weight mass also increases.
so at constant acceleration weight and mass are directly proportional.
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what is the mass of an object that requires 15.0N to accelrate it at rate of 3 m/s2
i need the givens and equation
The mass of an object that requires 15.0N to accelerate it at rate of 3 m/s² is 1.17 kg.
What is the mass of an object that requires 15.0N to accelerate it at rate of 3 m/s²?The mass of an object is the quantity of matter present in an object.
The mass of an object is related to its acceleration and the applied force by the given formula below:
force = mass * acceleration
mass = force/acceleration
From the data provided:
force applied = 15.0 N
acceleration = 3 m/s²
The force applied overcomes the weight of the body.
Total force applied = weight + net force
Total force = mg + ma
Total force = m(g + a)
m = force/(g + a)
mass = 15(9.8 + 3)
m = 1.17 kg
Therefore, the mass of the object is 1.17 kg.
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What is the
law of universal gravitation?
Answer:
Newton's Universal Law of Gravitation is a law created by Newton (obviously). It is the equation [tex]F=G\frac{m1m2}{r^{2} }[/tex] where F is the force of gravity, G is the gravitational constant (varies between places), m1 and m2 are the masses of the 2 objects and r is the distance between the centers of the 2 masses.
Newton's law of gravitation, states that any particle of matter in the universe attracts any other with a force varying directly as the product of the masses and inversely as the square of the distance between them.
Hope that provides a basic overview
When multiple radio telescopes are used for interferometry, resolving power is most improved by increasing.
Resolving power is most improved by increasing the distance between telescopes.
Relatively close objects, such binary stars or individual galaxies’ stars, occupy very small angles on telescopes. We require really huge apertures to resolve them. The resolving power of telescope is calculated by Rayleigh's formula,
∆ θ = 1.22λ/d
So, resolving power = 1/∆θ = d/1.22λ
The reciprocal of the smallest angle occupied at the telescope’s objective lens by two point objects that can just be recognised as distinct is the definition of a telescope’s resolving power.
A telescope Is an optical equipment that uses lenses, curved mirrors, or a combination of the two to view distant objects. Other tools can be used to view distant objects by their electromagnetic radiation emission, absorption, or reflection.
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Which measurement has three significant digits?
0.050 kg
0.205 s
500 m
1.030 g
the power rating of the resistors in our kits are 1/4 watt. that means the power dissipated by any resistor of resistance r should not exceed 250 mw. using the power formula p
Statement 1 and 3 are correct.
According to Ohm's law,
P = V I
V = I R
where,
P = Power
V = Voltage
I = Current
R =Resistance
Given that,
P = 250 * [tex]10^{-3}[/tex] W
If R = 10 Ω
P = [tex]I^{2}[/tex] R
[tex]I^{2}[/tex] = P / R
[tex]I^{2}[/tex] = 250 * [tex]10^{-3}[/tex] / 10
I = 15.81 * [tex]10^{-2}[/tex] A
V = 15.81 * [tex]10^{-2}[/tex] * 10
V = 1.581 V < 50 V
So statement 1 is correct
If the same method is applied for 100 Ω, the voltage would be 50 V which is greater than 5 V. So statement 2 is wrong
V = P / I
V = P R / V
V = [tex]\sqrt{0.25*R}[/tex]
According to this, statement 3 is correct and statement 4 is wrong.
Ohm's law states that, when two points have a potential difference, the current passing through the resistance is directly proportional to the voltage across the two points.
The given question is incomplete. The complete question is :
The power rating of the resistors in our kits are 1/4 watt. That means the power dissipated by any resistor of resistance R should not exceed 250 mW. Using the power formula P = Vxl and Ohm's law, which of the following is true? V is the voltage across the resistor and I is the current through it. (check all that apply)
The voltage V across a resistor of resistance 10 Ohms should be less than 50V The voltage V across a resistor of resistance 100 Ohms should be less than 5V The voltage V (in Volts) across a resistor of resistance R (in Ohms) should be less than √250 x R The voltage V (in Volts) across a resistor of resistance R (in Ohms) should be less than √0.25 XRTherefore, the statements 1 and 3 are true.
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Suppose a 100-gram mass, when attached to a spring, causes the spring to stretch 8 cm.
What would you expect a 25-gram mass to do when attached to the same spring?
(1 point)
O Stretch the spring 4 cm.
O Stretch the spring 8 cm.
O Stretch the spring 32 cm.
O Stretch the spring 2 cm.
Answer:Apparently the further displacement should be of other 3 cm; but, let's consider the development of the spring on one vertical plain, and fixed on a wall by the upper end.
Now the spring doesn't look circular; but as a stick fixed on the wall. Before placing the first 100 grams weight, the stick is not horizontal; but its overhanging end is lower by the measured length of the spring at rest. The length line of the spring with its horizontal projection line forms an angle.
The first 100 grams load is decomposed in function of the new angle: one component in line with the stick, the other one perpendicularly respect to it. The same happens with 200 grams.
The flection momentum is given by the perpendicular component of the load with respect to the stick line in overload, and the measure of the stick itself. Such component is inversely proportional to the other component, and decreases in relation to higher load while the other component (that doesn't produce flexion) encreases.
I assume that I can't calculate the new displacement because is not given the height of the spring at rest, the length of the development of the spring. Accordingly, I cannot calculate all various angles of the stick in relation with gravity.
Explanation:
When a 25 g mass is attached to the same spring, the spring is stretched by 2 cm.
What is Hook's law?Hooke's law states that the applied force [F] equals a constant k times the displacement or change in length [x].
Mathematically - F = - Kx
Given is a situation in which a stretch of 8 cm is caused by a 100g mass.
From this, we can write -
Mass [m] = 100 g = 0.1 Kg
Displacement [x] = 8 cm = 0.08 m
According to the question -
The spring constant [K] can be calculated using Hook's law as -
F = -Kx
mg = -Kx
K = - mg/x
K = - (0.1 x 9.8) / 0.08
K = - 12.25 N/m
|K| = 12.25 N/m
Now, when mass [M] = 25g = 0.025 Kg, using Hook's law -
|F| = |- kx| = kx
Mg = 12.25x
x = Mg/12.25
x = (0.025 x 9.8)/12.25
x = 0.02
x = 2 cm
Therefore, when a 25 g mass is attached to the same spring, the spring is stretched by 2 cm.
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A gust of wind blows an apple from a tree.
As the apple falls, the force of gravity on the apple is 9.16 N downward, and the force of the wind on the apple is 1.87 N to the right.
What is the direction of the net external force on the apple (measured from the downward vertical, so that the angle to the right of downward is positive)?
Answer in units of degrees
The direction of the apple is 78.5 degrees.
What is force?We know that force is that which brings about motion. Force acts on an object when it is stationary and makes it to move or makes a moving object to change direction.
The magnitude and the direction of the vector is regarded as very important when we are trying to solve for a particular vector.
Now we can see that the force of gravity acts vertically while the force that is exerted by the wind acts horizontally. This implies that we now have right angled triangle and the direction of the force could be obtained geometrically as;
tan^-1(9.16 N/ 1.87 N)
= 78.5 degrees
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An electric car is being driven through a town at 22 m/s. The kinetic energy of the car is 222640 J. Calculate the mass of the car.
The mass of the electric car moving at the given speed and kinetic energy is determined as 920 kg.
What is kinetic energy?The kinetic energy of an object is the energy possessed by the object due to the motion of the object. The kinetic energy of an objects is determined from the product of object's mass and its velocity.
The mass of the electric car is calculate by applying kinetic energy formula as follows;
K.E = 0.5 mv²
where;
m is mass of the objectv is the velocity of the objectK.E is the kinetic energySubstitute the given parameters and solve for the mass of the electric car.
m = (K.E)/(0.5v²)
m = (222640) / (0.5 x 22²)
m = 920 kg
Thus, the mass of the electric car moving at the given speed and kinetic energy is determined as 920 kg.
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A body of mass 6kg falls under action of gravity at initial position a its pe is 480 j and ke is 0j during its downwards journey at point b its energies will be
During its downward journey at point b, its kinetic and potential energies will be mgh and 6gx respectively.
Kinetic energy will be mg × ( total height = x ) and potential energy will be 6 g x. Let's assume that point B is located at height x unit from the surface,
As we know , potential energy = m g h ( where m = mass of the body , g = gravitational acceleration and h = height from the surface )
so potential energy at point A = 480 j or 6gh ( h = total height from surface )and for the point B it is , 6gx ( where g = 9.8 m/s²) .
At point A , total kinetic energy is 0 or, 1/2 mu² = 0
∵ u = 0,
So, initial velocity is zero ,
Now we will apply Newton's formula ,
and we will get , v² = u² + 2as
or, v² = 0 + 2 g h ( as acceleration = gravitational acceleration = g ; s = height h )
[ multiplying both side with 1/2 m ]
or , 1/2 m v² = m g h
Kinetic energy = 1/2 m v² = m g h
[ h = ( total height - x ) at point B . ]
Kinetic energy = m g ( total height - x ).
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An object is projected horizontally at 8.0m/s from he top of a 122.5m cliff. How far from the base of the cliff will the object strike the ground?
The object strikes 40.0 meters far from the base of the cliff on the ground.
Let us assume that the object strikes the ground after a time equal to 't' seconds. And horizontal distance covered by it in 't' seconds is x meters. The vertical distance traveled by it in 't' second would be equal to the height of the cliff.
Now for finding time 't' secondsVertical distance traveled = s = 122.5m
Initial vertical speed = u = 0 m/s
Acceleration due to gravity = g = 9.8 m/s²
By using the second equation of motion:
s = ut + 1/2gt²
Put in the value
122.5 = (0)t + 1/2(9.8)t²
122.5 = 0 + 4.9t²
t² = 122.5/4.9
t² = 25
t =√25
t = 5 seconds
For finding the distance x metersHorizontal speed = v = 8.0 m/s
Time taken = t = 5 s
Acceleration = 0 m/s
Using the formula, distance = speed × time
x = v × t
x = 8.0 × 5
x = 40.0 m
Therefore the object strikes 40.0 meters far from the base of the cliff on the ground.
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An electron moving in a straight line has an initial speed of 2.320 x 10^7 m/s. It undergoes an acceleration of 2.20 x 10^10 m/s^2 [Bwd].
a. How long will it take to reach a speed of 3.42 x 10^5 m/s [Bwd]?
b. How far will it have travelled in this time?
KKdkekskAnswer:
Explanation:
consider a long cylindrical charge distribution of radius r with a uniform charge density rho. find the electric field at distance r from the axis where r < r . assume the charge density is positive (rho > 0).
The electric field at distance r from the axis where r < r . assume the charge density is positive E = p× r / 2 ×e₀
Given:
- Volume of cylinder V = pi×r² ×L
- area A = 2× pi ×r ×L
- permittivity of space : e₀
Finding :
Electric field E at distance r from the axis, where r < R.
Solution:
Step 1: Application of Gauss Law
Form a Gaussian surface within the cylinder with r < R. Th cylinder has two surfaces i.e curved surfaces and end caps. thanks to long charge distribution the flux through is zero, since the surface dA of end cap and E are at 90 degree angle to at least one another; hence, E . dA = E× dA ×cos(90) = 0.
For the curved surface we have:
(surface integral) E.dA = Q_enclosed / e₀
Step 2: The charge enclosed (Q_enclosed) is function of r and proportional density:
Q_enclosed = p ×V
Q_enclosed = p ×pi ×r² ×L
Step 3: the world of the curved surface:
dA = 2× pi ×r ×L
Step 4: Computing E:
E×(2 ×pi ×r ×L) = p× pi ×r^2× L / e₀
E = p×r / 2×e₀
Charge density :The charge density is that the measure of electric charge per unit area of a surface, or per unit volume of a body or field. The charge density tells us what proportion charge is stored in a particular field. Charge density are often determined in terms of volume, area, or length.
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If the green house effect did not exist at all,what would Erath would be like?
The heat generated by the Earth would keep passing radially outward from the Earth's surface into space if the natural greenhouse effect did not exist, and the Earth would have an average temperature of about -20°C.
What is greenhouse effect?The greenhouse effect describes how "greenhouse gases" trap heat near the Earth's surface.
These heat-trapping gases act like a blanket wrapped around Earth, keeping it warmer than it would be without them.
Earth would turn into an icy wasteland if greenhouse gases were not present.
Greenhouse gases maintain our planet habitable by retaining some of the Earth's heat energy, preventing it from escaping into space. The greenhouse effect is the sequestration of heat.
Thus, the greenhouse effect can decrease the temperature of the Earth below average.
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How do gender roles differ from gender stereotypes?:
The attitudes and expectations around gender roles are often founded on gender stereotypes, or oversimplified ideas about the attitudes, attributes, and behavior patterns of males and females, rather than on any inherent or natural gender distinctions.
Gender stereotypes are broadly accepted ideas about traits that are considered suitable for males and females. There really are gender stereotypes regarding character, profession, and skills. These prejudices are reflected in gender roles, which are commonplace actions.
Hence Understanding these beliefs and their origins is essential to conquering them even if they are typically damaging to society.
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the escape speed from the earth is 1.12 ⇥104 m s 1, so that a gas molecule travelling away from the earth near the outer boundary of the earth’s atmosphere would, at this speed, be able to escape from the earth’s gravitational field and be lost to the atmosphere. at what temperature is the average speed of (a) oxygen molecules, and (b) helium atoms equal to 1.12 ⇥104 m s 1? (c) can you explain why our atmosphere contains oxygen but not helium?
Given Quantity
v esc =1.12×10 4 m/s: escape speed from the Earth =1.12×10 m/s: escape speed from the Earth
m = 2(1.66 \times 10^{-27}) = 3.32 \times 10^{-27}{kg}m=2(1.66×10 −27)=3.32×10 −27 kg: molecular mass of helium
We calculate the temperature at which helium atoms has an rms speed equal to the escape speed.
The rms speed is equal to the following
v rms = 3kT/m (1)
where kk is the Boltzmann constant, TT is the temperature, and mm is the molecular mass.
Manipulating Equation (1)(1) to be equal to the escape speed, we can calculate the temperature to be
v esc= 3kT/m esc
v esc= = 3kT/m esc
Tesc=mv2esc/3k
What is gravitational field?
A gravitational field is a framework used in physics to explain the effects that a large thing has on the area surrounding it, exerting a force on smaller, less massive bodies. As a result, a gravitational field, which is measured in n. per kilogram, is employed to describe gravitational phenomena.
Therefore,
the escape speed from the earth is 1.12 ⇥104 m s 1, so that a gas molecule travelling away from the earth near the outer boundary of the earth’s atmosphere would, at this speed, be able to escape from the earth’s gravitational field and be lost to the atmosphere. at what temperature is the average speed of (a) oxygen molecules, and (b) helium atoms equal to 1.12 ⇥104 m s 1? (c) can you explain why our atmosphere contains oxygen but not helium?
Given Quantity
v esc =1.12×10 4 m/s: escape speed from the Earth =1.12×10 m/s: escape speed from the Earth
$ k= 1.38 \times 10^{-3}$: Boltzmann constant
m = 2(1.66 \times 10^{-27}) = 3.32 \times 10^{-27}{kg}m=2(1.66×10 −27)=3.32×10 −27 kg: molecular mass of helium
We calculate the temperature at which helium atoms has an rms speed equal to the escape speed.
The rms speed is equal to the following
v rms = 3kT/m (1)
where kk is the Boltzmann constant, TT is the temperature, and mm is the molecular mass.
Manipulating Equation (1)(1) to be equal to the escape speed, we can calculate the temperature to be
v esc= 3kT/m esc
v esc= = 3kT/m esc
Tesc=mv2esc/3k
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You push horizontally on a 120 N box that is initially resting on a horizontal table. The coefficient of static friction between the box and the table is 0.75 and the coefficient of kinetic friction is 0.40. Find the friction force on the box if push is equal to 84 N.
The frictional force acting on the block is completely static in nature and is equal to 90 Newton's.
What is Friction?
Friction is a force that acts opposite to the direction of motion of body in order to oppose its motion.
Given in the question is a box of weight 120 N initially resting on a horizontal table. From the data given, we can write -
Weight of box [W] = 120 Newton
Coefficient of static friction (μ[s]) = 0.75
Coefficient of Kinetic friction (μ[k]) = 0.40
Horizontal push (F[h]) = 84 N
The frictional force is given by -
For Static friction - F[s] = μ[s] N
For Kinetic friction - F[k] = μ[k] N
Now, initially the box is at rest. When a horizontal force of 84 Newton is applied on it, the static friction will try to oppose the motion. For forward motion of the block -
F[h] - F[s] ≥ 0
F[h] - μ[s] N ≥ 0
84 - 0.75 x 120 ≥ 0 (Normal Reaction [N] = Weight)
84 - 90 ≥ 0
- 6 ≥ 0
which is false.
This means that the static frictional force is greater than horizontal push and opposes the motion. The force due to static friction will only exist since, the body was able to move, so kinetic friction is of no use here.
So, the frictional force on the block will be = F[s] = μ[s] N = 90 Newtons.
Therefore, the frictional force acting on the block is completely static in nature and is equal to 90 Newton's.
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A car accelerates from rest at -3m/s^2
1. What is the velocity at the end of 5 seconds?
2. What is the displacement after 5 seconds?
Answer: 1. -15m/s
2. -37.5m
Explanation:
1. -3m*5=-15m/s
2. v=velocity. d=displacement. t=time. a=acceleration
d=vt+(1/2)at^2
d=0*5+(1/2)(-3)(5)^2 ==> car was at rest before accelerating
d=0+(1/2)(-3)(25)
d=(1/2)(-75)
d=-37.5 meters
When performing a voltage drop test on a 12v blower motor circuit, the reading is 2.7 volts across the fan switch when closed. what is the maximum voltage available at the fan?
When performing a voltage drop test on a 12v blower motor circuit, the reading is 2.7 volts across the fan switch when closed. the maximum voltage available at the fan is
V=9.3 volts
This is further explained below.
What is voltage?Generally, Electric potential difference, also known as voltage, electric pressure, or electric tension, is the amount of labor required per unit of charge to transfer an electrostatic test charge from one location to another.
In conclusion, When testing the voltage drop across the fan switch on a circuit with a 12v blower motor, the measurement is 2.7 volts. V=9.3 volts is the maximum power supply for the fan.
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An enemy ship appears on your radar screen! You send out a radar ping, which is a signal
that travels through space at a constant velocity, bounces off an object, and then returns to
your ship. The radar ping moves at 300,000,000 m/s. You send out the signal and it takes
0.00026667 seconds for the signal to return; how far away is the enemy ship?
Answer:d=80,001 m
Explanation:df = di + Vave(t)
d = 0 + 300,000,000(0.00026667)
d = 80,001 m
before pushing down the piston, the pressure of the gas is 1.0 x 105 pa.pushinbg the piston reduces the volume of the gas from 500cm3 to 240cm3. calculate the final pressure of the gas
The final pressure of the gas is p2 = 2.085 * 10^5 pa.
Boyle's law is a gas law that states that the pressure exerted by a gas (of a given mass at a constant temperature) is inversely proportional to the volume it occupies. That is, if the temperature and quantity of gas are constant, the pressure and volume of the gas are inversely proportional.
Boyle's Law states that a change in the volume occupied by a gas (at a constant amount and temperature) leads to a change in the pressure exerted by the gas. The following mathematical formulation of this law is possible:
P1V1 = P2V2
Given,
Initial Volume, v1 = 500 cm3
Final Volume, v2 = 240 cm3
Initial Pressure, p1 = 1.0 * 10^5 pa
Final Pressure, p2
We know that,
p1 v1 = p2 v2
1.0 * 10^5 * 500 = p2 * 240
p2 = 2.085 * 10^5 pa
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The experimental setup shown in the picture has a fixed ramp and an adjustable ramp. Students roll a ball down the fixed ramp and measure how far up the adjustable ramp the ball travels. During
the experiment, they change the slope of the adjustable ramp and record their data in the table
1
8) The students concluded that the lower the slope of the adjustable ramp, the greater the distance the ball continued to roll. What other conclusion can also be drawn from the findings?
A) The ball stops because there is some force acting on it
B) The only force acting on the ball during its journey is gravity
The ball stops eventually because there is no force acting on it
D) The slope of the ramp has no role to play in the stopping of the ball
A. Another conclusion that can be drawn from the student experiment is the ball stops because there is some force acting on it.
What are the forces acting on an object moving on inclined plane?There are several forces that will act on an object moving on an inclined plane. These forces include the following;
gravitational forcefrictional forceapplied forceWhen the object is moving up, gravitational force will tend to pull the object downwards and the frictional force will tend to oppose this downward motion of the object.
When the object is rolled down the plane, gravitational force tends to aid the motion of the object while frictional force tends to slow the object down.
Eventually, the object stops because the frictional force opposing the object motion is greater than the gravitational force pushing the object downwards.
Thus, another conclusion that can be drawn from the student experiment is the ball stops because there is some force acting on it.
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If at some point along the straight line directly between two charges the strength of the electric field at that point is found to be zero what can we say for sure about those two charges?.
Answer: The charges must be like charges (both positive or both negative).
Explanation:
An interior designer is choosing a paint color for a room and has two samples that are both blue, however one blue is described as brighter than the other. Both would have the same wavelength, but would differ based on what physical property of light?.
An interior designer is choosing a paint color for a room and has two samples that are both blue, however one blue is described as brighter than the other. Both would have the same wavelength but would differ due to the amplitude property of light.
The amplitude plays an important part in differentiating the same colors of the same wavelength. It tells us about the brightness or intensity of a certain light wave as compared to others of the same wavelength. So, whenever two same colors look different due to brightness, it is due to the amplitude property of the light.
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When is the best time to stretch?
A.
After a workout session
B.
Before you exercise
C.
In the middle of a workout
D.
You don't need to stretch
Answer: B
Explanation:
calculate the deceleration of a bullet initially travelling at 360 m/s, if it is brought to rest after travelling 8.5 cm into a tree trunk which it has struck.
The de - acceleration of bullet from 360 m/s after it struck the tree trunk and was brought to rest is -152.54 x 10⁴ m/s².
What is Acceleration in Kinematics?Acceleration is defined as the rate of change of velocity with respect to time. Mathematically -
a = Δv/ΔtGiven is a bullet initially travelling at 360 m/s struck into a tree trunk 8.5 cm inside and comes to rest. From this, we can write
initial velocity [u] = 360 m/s
final velocity [v] = 0 m/s
distance travelled [d] = 8.5 cm = 0.085 m
The time span after which bullet comes to rest will be -
Δt = d/u
Δt = 0.085/360 = 2.36 x 10 ⁻⁴ seconds
a = Δv/Δt
Δv = 0 - 360 = - 360 m/s
a = (v - u)/Δt
a = - 360/(2.36 x 10 ⁻⁴)
a = - 152.54 x 10⁴ m/s²
Therefore, the de - acceleration of bullet from 360 m/s after it struck the tree trunk and was brought to rest is -152.54 x 10⁴ m/s².
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1) A man walks 10km north and then 10km west.
a) What distance has he covered?
b) How would you measure his
displacement?
c) What angle would his displacement be at compared to
north?
The distance covered by man was 20 km, his total displacement would be 14.14 km and the angle of his displacement would be 45° compared to the north.
What is displacement?Displacement is defined as changes in an object's position referred to as displacement. It is a vector quantity that has both a direction and a magnitude.
As per the given condition,
Distance covered by man = 10 km + 10 km = 20 km
Total displacement will be the hypotenuse of two north and west sides.
⇒ Total displacement = √(10²+10²)
⇒ Total displacement = √(100+100)
⇒ Total displacement = √200
⇒ Total displacement = 10√2
⇒ Total displacement = 14.14 km
The angle of his displacement would be : tan⁻¹(10/10) = 45°
Hence, the distance covered by the man was 20 km, his total displacement would be 14.14 km and the angle of his displacement would be 45° compared to the north.
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