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Pleas HelpQuestions Are In The Picture

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Answer 1

Writing by hand as opposed to printing is referred to as handwriting. The term "handwriting" has been more or less limited to denote the distinctive writing style that is unique to each individual.

What is Handwriting?

Schools placed a strong emphasis on teaching handwriting before the common usage of typewriters, when it had more practical value.

At the elementary schools, scales for evaluating the quality of the script from grade to grade were developed, and a number of meticulous investigations of the handwriting movements were conducted.

Research have shown that during writing, both the grip pressure on the penholder and the tip pressure on the paper change continuously. Moreover, the speed of writing is not constant and is dependent on the type of stroke being used.

Therefore, Writing by hand as opposed to printing is referred to as handwriting. The term "handwriting" has been more or less limited to denote the distinctive writing style that is unique to each individual.

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Related Questions

What causes the abundance of gold in California?


Midas' Touch


Tectonic Plates


The ocean


Weathering

Answers

California has an abundance of gold due to tectonic plate movement. Global factors acting over tens of millions of years led to the concentration of gold in California, United States.

Where does the gold in California originate from?

Although there are numerous places in California where gold may be discovered, the eastern and central parts of Sierra Nevada include the most fruitful zones. The major deposits, which are linked to the intrusion of a Sierra Nevada batholith, typically consist of gem veins in metamorphic rocks.

What makes gold so plentiful?

Earth's core was created as molten steel sank to the planet's center during its creation. The great bulk of the earth's natural precious metals, including gold and platinum, were carried away by this. In truth, there are sufficient.

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2.4.5 conservation of energy lab Describe at least one part of the experimental procedure that you thought was essential to getting good results. Did you find that certain steps in the procedure had to be followed carefully in order to get consistent results? If you wanted better results, do you think there is a step that could have been added to the procedure?

Answers

This may involve carefully measuring and recording the initial and final energies of the system, controlling for external factors such as friction and air resistance, and using appropriate instruments and equipment with minimal energy loss.

What is Energy?

It is a scalar quantity that can be transferred between objects or converted into different forms, such as kinetic, potential, thermal, or electrical energy. Energy cannot be created or destroyed, but it can be transformed from one form to another. The SI unit of energy is the joule (J), but other units such as calories, electronvolts, or British thermal units (BTU) are also commonly used depending on the context. Energy is a fundamental concept in physics and plays a crucial role in many fields, including mechanics, thermodynamics, chemistry, and astronomy.

It is also important to follow the experimental procedure carefully and consistently to ensure that the results are reproducible and consistent. This may involve controlling for variables such as the angle of release, the height of the release, and the distance traveled by the object.

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Find the distance between two charges according to Coulomb's Law if F
= 460 N
, Q1=2.8×10−5
C
, and Q2=3.1×10−7
C
.

Answers

0.16*10^-3m is the distance between two charges according to Coulomb's Law

How does Coulomb's law work?

Coulomb listed the following characteristics of the electric field for charges in a resting state: Unlike charges draw each other while like charges repel one another. As a result, a positive charge pulls a negative charge toward it while two negative charges resist one another.

We can determine the electric force produced between two electrical charges using Coulomb's Law. In particular, it enables the determination of the direction and strength of electric energy. Coulomb's law states that the force of attraction or repulsion between two charged bodies is inversely proportional to the cube of the distance between them and directly proportional to the product of their charges. It operates on the segment connecting the two charges regarded as point charges.

F = kq1q2/r^2

460 = 9*10^9 *2.8*10^-5 *3.1*10^-7 / r^2

r = sqrt ( 9*10^9 *2.8*10^-5 *3.1*10^-7 / 460)

r = 0.16*10^-3m

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If the energy released by an electron making a transition from one hydrogen atom orbit to another is 3.02 ✕ 10^−19 J, what is the wavelength (in nm) of the photon?

Answers

Answer:

The wavelength of the photon can be calculated using the equation E = hc/λ, where E is the energy, h is Planck's constant (6.626 ✕ 10^−34 J s), c is the speed of light (2.998 ✕ 10^8 m/s), and λ is the wavelength.

λ = hc/E = (6.626 ✕ 10^−34 J s) (2.998 ✕ 10^8 m/s) / (3.02 ✕ 10^−19 J) = 656.4 nm

Explanation:

What happens to the atoms
that make up hydrogen fuel
as it burns?

Answers

When the hydrogen molecule is burned (hydrogen combustion) with oxygen gas, the bonds between two hydrogen atoms are broken as well as those between oxygen atoms to make up bonds between hydrogen and oxygen atoms. simplified it’s basically hydrogen reacts to oxygen to form water with the release of energy!

what total capacitances can you make by connecting a 5.04 µf and 8.02 µf capacitor together?

Answers

The capacitor can be used in various home appliances like ceiling fan, electric motor, etc. The total capacitance by connecting a 5.04 µf and 8.02 µf capacitor together in parallel is  13.06 µf.

What is a capacitor?

A two terminal electrical device which is used to store energy in the form of an electric charge is defined as the capacitor. It contains two electrical conductors separated by a distance.

When two capacitors are connected in parallel, then the total capacitance is given as:

C total = C₁ + C₂

C total = 5.04 µf + 8.02 µf

C total = 13.06 µf

Thus the total capacitance is 13.06 µf.

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If the diameter of the space station is 770 m, how many revolutions per minute are needed for the "artificial gravity" acceleration to be 9.80m/s^2 ?

Answers

Revolutions per minute are needed for the space station which is at 385m from center of the planet is 1.52 rev/min

What is Orbital Velocity ?

Orbital velocity is also called as critical velocity. It is minimum velocity must be given to the satellite or the body, so that it can revolve around the planet. i.e. orbital velocity is minimum velocity of body to revolve in stable orbit around a planet.

Orbital velocity is given by,

[tex]v_{c} = \sqrt{\frac{GM}{R+h}}[/tex] where  G = Gravitational constant (6.673×10⁻¹¹ Nm²/kg²

                               M = Mass of the planet

                               R = Radius of the planet

                                h = height of the object(satellite)

Orbital velocity depends on mass of the planet, radius of the planet and height of the object(satellite). It is independent of mass of the body(satellite).

Given,

Diameter of space station, D = 770m {Radius (R+h) = 385m}

Acceleration due to gravity [tex]g_{h}[/tex]= 9.8 m/s²

our given equation is,

[tex]v_{c} = \sqrt{\frac{GM}{R+h}}[/tex]

[tex]v_{c}^{2} = \frac{GM}{R+h}}[/tex].........1)

we know that v=rω

v²=r²ω²

where r = (R+h) = Radius of planet + height of space station from surface of the planet.

v²=(R+h)²ω²......2)

with equation 2), equation 1 becomes.

(R+h)²ω² = [tex]\frac{GM}{R+h}}[/tex]

ω² = GM÷ (R+h)³.............3)

we know that [tex]g_{h} = \frac{GM}{(R+h)^{2} }[/tex].....4)

equ 3 becomes,

ω² = [tex]\frac{g_{h}}{(R+h)}[/tex]

Putting all values in equation,

ω² = 9.8 ÷ 385

ω² = 0.025454

ω = 0.1595 ≅ 0.16 rad/s

let,

ω = 2πn

n= ω ÷ 2π

n = 0.02547 rev/s

n= 0.02547*60 = 1.52 rev/min

Hence 1.52 rev/min is needed for space station at artificial gravity of 9.8 m/s

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Would the pressure at the bottom of a 3-feet-deep holding tank be different if the tank held motor oil instead of water? Motor oil is less dense than water.

Answers

Yes it would be less pressure due to the oil
Yes, the pressure at the bottom of a 3-feet-deep holding tank would be different if the tank held motor oil instead of water, even if the volume of the liquid and the height of the tank remained the same. This is because the pressure at the bottom of a liquid is directly proportional to the density of the liquid.

Motor oil is less dense than water, which means that for the same volume, it has less mass than water. Therefore, it would exert less pressure on the bottom of the tank than water would. Specifically, the pressure at the bottom of the tank would be equal to the weight of the liquid above it, divided by the area of the bottom of the tank. Since motor oil weighs less than water, it would exert less pressure on the bottom of the tank than water would.

It's worth noting that the difference in pressure between the two liquids may not be very significant, especially for a relatively shallow tank like the one described in the question. However, the difference in pressure would still exist, and it would depend on the specific densities of the two liquids involved.

PLEASE HELP

How is it possible for a tree to survive if the inner part is missing?

Answers

It is not possible for a tree to survive if the entire inner part, including the heartwood and sapwood, is missing. The inner part of a tree is vital to its survival and health, as it is responsible for transporting water, nutrients, and sugars between the roots and the leaves.

However, it is possible for a tree to survive if only part of the inner part is missing. Trees have a remarkable ability to compartmentalize damage and decay, which means that they can wall off or isolate injured or infected parts of the tree to prevent the spread of damage to the rest of the tree.

For example, if a branch is broken off or a section of the trunk is damaged, the tree will form a boundary around the damaged area and begin to grow new wood to replace the damaged wood. This process is called compartmentalization and helps the tree to limit the damage and prevent the spread of decay.

It's worth noting that the extent to which a tree can survive damage to its inner part depends on the severity and location of the damage, as well as the overall health of the tree. Severe damage to the inner part of the tree, such as from girdling or extensive decay, can weaken the tree and make it more susceptible to further damage or disease. In some cases, such damage may even be fatal to the tree.

a. Make a drawing of the electric field lines around a positive charge, then make a second drawing of the electric field lines around a negative charge. (1 point)

Answers

A drawing of the electric field lines around a positive charge, then make a second drawing of the electric field lines around a negative charge is mentioned below.

What is electric field ?

According to mathematics, the electric field is described as a vector field that may be connected to each point in space and represents the force per unit charge that is applied to a positive test charge that is at rest at that location. Either the electric charge or time-varying magnetic fields can produce an electric field.

What is electric charge ?

The physical quality of matter—its electric charge—is what causes it to feel a force when exposed to an electromagnetic field. Protons and electrons, the two types of charge carriers, typically carry positive and negative electric charges. Charges moving through a system produce energy.

Therefore, A drawing of the electric field lines around a positive charge, then make a second drawing of the electric field lines around a negative charge is mentioned above.

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What type of wave is:
a) Light
b) Sound

Answers

Answer:

Explanation:

a) transverse

b)longitudinal waves

The natural abundance of boron-11 is 80.1%. If you have 7,000 boron atoms, how many of them are the boron-11 isotope?

Answers

Answer:

If the natural abundance of boron-11 is 80.1%, then the natural abundance of boron-10, the other stable isotope of boron, is 100% - 80.1% = 19.9%.

To determine how many of the 7,000 boron atoms are the boron-11 isotope, we can use the following steps:

Calculate the number of boron-10 atoms:

19.9% x 7,000 = 1,393

Calculate the number of boron-11 atoms:

80.1% x 7,000 = 5,607

Therefore, out of 7,000 boron atoms, 5,607 are the boron-11 isotope.

Explanation:

A young ice skater with mass 40.0 kg
has fallen and is sliding on the frictionless ice of a skating rink with a speed of 16.0 m/s
.
A) What is the magnitude of her linear momentum when she has this speed?
B) What is her kinetic energy?
C) What constant net horizontal force must be applied to the skater to bring her to rest in 4.00 s?

Answers

The skater's linear momentum has a value of 640 kg/m/s. Kinetic energy of the skater is 5120 J. The skater needs to be subjected to a steady net horizontal force of 160 N in order to come to rest in 4.00 seconds.

What is a momentum's magnitude?

The sum of the mass and the instantaneous speed determines the size of the momentum.

The following equations can be used to calculate the skater's linear momentum:

p = mv

p = (40.0 kg)(16.0 m/s) = 640 kg·m/s

As a result, the skater's linear momentum is 640 kg/m/s in magnitude.

B) The skater's kinetic energy is given by:

K = (1/2)mv^2

Substituting the given values, we get:

K = (1/2)(40.0 kg)(16.0 m/s)^2

= 5120 J

Therefore, the skater's kinetic energy is 5120 J.

C) We need to provide a steady net horizontal force that is opposite in direction and of similar size to the skater's starting momentum in order to bring the skater to rest in 4.00 seconds. Applying the average force equation:

F = Δp/Δt

F = (-640 kg·m/s)/(4.00 s) = -160 N

In order to bring the skater to rest in 4.00 seconds, a steady net horizontal force of 160 N must be delivered to her in the opposite direction of her beginning motion.

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A coil of wire lies flat on a horizontal surface. The coil is carrying current in an anticlockwise sense when the coil is viewed from above. For the points inside the coil, determine the direction of the magnetic field caused by this current. Explain your answer with the aid of labelled diagram.​

Answers

When current flows through a coil of wire, it generates a magnetic field. The direction of the magnetic field can be determined using the right-hand rule. If you point your right thumb in the direction of the current flow, your fingers will curl in the direction of the magnetic field.

What is the current flow about?

In this case, the current is flowing in an anticlockwise sense when viewed from above. Using the right-hand rule, the direction of the magnetic field inside the coil can be determined to be perpendicular to the plane of the coil, and in a clockwise direction when viewed from above.

The diagram below shows the coil of wire lying flat on a horizontal surface with the direction of the magnetic field labelled:

        +-----+-----+-----+-----+-----+

        |                                 |

        |                                 |

        |                                 |

        +    X                    X    +

        |                                 |

        |                                 |

        |                                 |

        +-----+-----+-----+-----+-----+

Therefore, In this diagram, the X's represent the direction of the magnetic field lines inside the coil. As you can see, the magnetic field lines are oriented perpendicular to the plane of the coil and in a clockwise direction when viewed from above.

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# Calculate the radius of water drop which look just remain suspendat in an electric-ff- eld of 300 viem and charged with one election-​

Answers

The radius of a water droplet suspended in an electric field can be calculated using the following formula:

r = (3qE/4πρg)^(1/2)

where r is the radius of the droplet, q is the charge on the droplet, E is the strength of the electric field, ρ is the density of the droplet material (assumed to be that of water, which is 1000 kg/m^3), and g is the acceleration due to gravity.

What is the radius of water drop which look just remain suspendat in an electric-ff- eld of 300 viem and charged with one election?

In this case, q = -1.602 × 10^-19 C (the charge on an electron), E = 300 V/m, ρ = 1000 kg/m^3, and g = 9.81 m/s^2.

Plugging in these values, we get:

r = (3(-1.602 × 10^-19 C)(300 V/m)/(4π(1000 kg/m^3)(9.81 m/s^2)))^(1/2)

= 1.83 × 10^-5 m

Therefore, the radius of the water droplet is approximately 1.83 × 10^-5 meters.

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Which describes how chemical changes are different from physical changes? (2 points) Group of answer choices Chemical changes can be measured, but physical changes cannot. Chemical changes release energy, but physical changes absorb energy. Chemical changes involve the formation of a new substance. Chemical changes cannot be caused by oxygen.

Answers

Answer: Both Chemical and physical changes can be measured, chemical changes can be caused by oxygen since its very reactive. Physical Change: There is no addition or deduction of energy during the physical change, but the energy required for completion of change is released when the change is reversed. Chemical Change: Energy like light, pressure, heat energy is required for chemical changes. When physical or chemical changes occur, they are generally accompanied by a transfer of energy. The law of conservation of energy states that in any physical or chemical process, energy is neither created nor destroyed.

Explanation:

The diameter of the asteroid Vesta is of the diameter of the planet Mercury. Mercury has a diameter of 5000 km. Calculate the diameter of Vesta. Show your working.​

Answers

Answer:

5000 km

Explanation:

Sure, to calculate the diameter of Vesta, we can use the fact that Vesta's diameter is equal to the diameter of Mercury, which is 5000 km.

Therefore, the diameter of Vesta is also 5000 km.

We can show the working by using the following formula:

Diameter of Vesta = Diameter of Mercury

Diameter of Vesta = 5000 km

What is one direct way in which children impact their own acculturation?

Answers

Answer: The direct way that children affect their own acculturation is by peer watching and engagement.

Answer:One direct way in which children impact their own acculturation is through language acquisition. Children who are exposed to a new culture and language at a young age have the opportunity to learn and adopt the new language and cultural norms more easily than adults. As children interact with peers and adults in the new culture and use the new language, they develop their own sense of identity and acculturation, which can be different from that of their parents or other family members. Children may also participate in cultural activities or events, such as holidays or festivals, which further shape their understanding and experience of the new culture. Overall, children can actively participate in and shape their own acculturation process through language acquisition and cultural experiences.

Explanation:

How much kinetic energy does a 2.50kg ball traveling at 2.00m/s have?

Answers

Answer:

Explanation:

The formula for kinetic energy is K = 1/2mv^2, where K is kinetic energy, m is mass, and v is velocity.

Substituting the given values:

K = 1/2(2.50 kg)(2.00 m/s)^2

K = 1/2(2.50 kg)(4.00 m^2/s^2)

K = 5.00 J

Therefore, the 2.50kg ball traveling at 2.00m/s has 5.00 J of kinetic energy.

A 500 g object is dropped from a height of 2 meters. What is its kinetic energy just before it hits the ground?

Answers

Answer: 9.8 J

Explanation:

Since the gravitational potential energy of the object is mgh or mass*acceleration due to gravity*initial height, its [tex]U_{g}[/tex] is 9.8 J. Due to the Law of Conservation of Energy, its kinetic energy will also be 9.8 J. This can be seen in the equation [tex]KE_{i}+ PE_{i}= KE_{f} + PE_{f}[/tex]. Since there is no initial kinetic energy and no final potential energy, its initial potential energy is equal to its final kinetic energy.

Answer:

9.81 joules.

Step by step solved:

The kinetic energy (KE) of an object is given by the formula:

KE = 1/2 * m * v^2

where m is the mass of the object and v is its velocity.

When an object is dropped from rest, it gains speed as it falls due to the force of gravity. The velocity of a falling object can be calculated using the formula:

v = √(2gh)

where g is the acceleration due to gravity (9.81 m/s^2) and h is the height from which the object is dropped.

In this problem, the mass of the object is 500 g or 0.5 kg, and the height from which it is dropped is 2 meters. Using the formula for velocity, we get:

v = √(2gh) = √(2 x 9.81 m/s^2 x 2 m) = √(39.24) = 6.27 m/s

Now that we know the velocity of the object just before it hits the ground, we can calculate its kinetic energy using the formula:

KE = 1/2 * m * v^2 = 1/2 * 0.5 kg * (6.27 m/s)^2 = 9.81 J

Therefore, the kinetic energy of the 500 g object just before it hits the ground is 9.81 joules.

Two resistors of resistances 3Ω and 6Ω are connected in parallel across a battery having voltage of 12V. Determine (a) the total circuit resistance and (b) the current flowing in the 3 resistor

Answers

1) The total resistance is 2 ohms

The current is 4 A

What is the resistance in parallel?

In a parallel circuit, the total resistance (R_total) of the circuit is less than the resistance of any individual resistor in the circuit. This is because in a parallel circuit, each resistor provides a separate path for current to flow from the power source to the load, and the overall resistance of the circuit is reduced due to the increased number of paths.

For the resistors in parallel;

1/RT = 1/3 + 1/6

Rt = 2 ohms

In the 3 ohm resistor;

Current = 12 V/3 Ohm

= 4 A

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The index of refraction of quartz is 1.46. What is the velocity of light in quartz?

Answers

Answer:

Approximately [tex]2.05 \times 10^{8}\; {\rm m\cdot s^{-1}}[/tex].

Explanation:

The refractive index [tex]n[/tex] of a material is the ratio between the speed of light in vacuum [tex]c[/tex] and the speed of light [tex]v[/tex] in that material. In other words:

[tex]\begin{aligned}n &= \frac{c}{v}\end{aligned}[/tex].

The speed of light in vacuum is [tex]c \approx 3.00 \times 10^{8}\; {\rm m\cdot s^{-1}}[/tex].

It is given that the refractive index is [tex]n = 1.46[/tex]. Rearrange this equation to find [tex]v[/tex], the speed of light in this material:

[tex]\begin{aligned}v &= \frac{c}{n} \\ &\approx \frac{3.00 \times 10^{8}\; {\rm m\cdot s^{-1}}}{1.46} \approx 2.05 \times 10^{8}\; {\rm m\cdot s^{-1}}\end{aligned}[/tex].

An object starts at position 12 on a horizontal line with a reference point of 0. What is the position of the object if moves 14 units to the left? ​

Answers

If the object starts at position 12 on a horizontal line with a reference point of 0, then its initial position relative to the reference point is:

Initial position = Reference point + Object's position = 0 + 12 = 12

If the object then moves 14 units to the left, its new position relative to the reference point is:

New position = Initial position - Distance moved to the left = 12 - 14 = -2

Therefore, the position of the object is -2 units from the reference point, which means that it has moved 2 units to the left of the reference point.

From the foot of a vertical cliff 28.8 m high, a stone was projected vertically upwards so as just to reach the top. Find its velocity of projection. One second after the first stone was projected, another stone was allowed to fall from rest from the top of the cliff. The stones passed one another after a further seconds at a height h m above the ground. Calculate the value of t and of h. (C)​

Answers

The velocity of projection of a stone following projectile motion which is projected vertically upwards from the foot of a vertical cliff 28.8n high so as to just reach the top is 23.75 m/s

What is projectile motion?

When something (a projectile) is launched towards the surface of the Earth and moves along a curved path only under the influence of gravity, it experiences projectile motion (in particular, the effects of air resistance are passive and assumed to be negligible). Galileo showed that although this curved path can also be a straight line when thrown immediately above, it is a parabola in this case.

Gravity is the sole force acting on the item that is mathematically relevant; it acts downward and accelerates the thing towards the mass of the Earth. Due to the object's inertia, the horizontal velocity component of its motion does not require any external force.

According to the equation,

H = [tex]\frac{u^{2} }{2g}[/tex]

where,

H is the maximum height,

u is the velocity of projection and,

g is the acceleration due to gravity.

substituting the values and solving for u,

velocity of projection = 23.75 m/s

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Consider the image below. If the stream velocity is 1.75 meters per second, what is the discharge in cubic meters per second?

Answers

The stream's velocity is 1.75 metres per second, and the discharge is 16.8 cubic metres per second.

How do you determine a stream's discharge?

Discharge has units of feet3/sec or cubic ft per second if length and duration are measured in feet and seconds, respectively (cfs). The cross-sectional area is calculated as Depth times Width. Due to the velocity reduction caused by friction at the channel's edges, the channel's form is crucial.

The cross-sectional area of the stream must be multiplied by the stream velocity in order to determine discharge.

The cross-sectional area of the image is:

A = (8 m) x (1.2 m) = 9.6 m²

1.75 metres per second is listed as the stream velocity.

So the discharge Q is:

Q = A x V

= (9.6 m²) x (1.75 m/s)

= 16.8 m³/s.

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10. A frequency of the first harmonic is 587 Hz (pitch of D5) is sounded out by a vibrating guitar
string. The speed of the wave is 600 m/sec. Find the length of the string.

Answers

The answer to that question is 5

I = 1/2MR^2 is rolling with a translational speed v along a horizontal surface without slipping. The work required to stop the disk is
A. 1/2 mv^2
B. 1/2mv^2 + 1/2Iw^2
C. 1/2Iw^2
D. 1/2mv^2 - 1/2Iw^2

Answers

Answer:

B. 1/2mv^2 + 1/2Iw^2

Explanation:

If a cube that has a length, height, and width of 4 cm is broken down into 8 cubes of equal size, what is the surface area of the 8 new cubes?

Answers

The surface area of the 8 new cubes would be 96 cm².

What is surface area?

Surface area is the total area of the exposed surface of a three-dimensional object, such as a cube, cylinder, or sphere. It is measured in square units, such as square inches, square feet, or square meters. Surface area is an important concept in geometry, trigonometry, and calculus. It is used in many areas of science, such as chemistry, physics, and engineering. Surface area is also important in everyday life, from home construction and remodeling to sports and recreation. For example, it is used to calculate the size of an area needed to paint a room, the amount of material needed to cover a swimming pool, or the dimensions of a soccer field.


This is because the surface area of a cube is equal to 6 times the length of one side of the cube squared. In this example, the length of one side of the 8 cubes is equal to 4 cm divided by 2 (since the cube was broken down into 8 cubes), which is equal to 2 cm. Therefore, the surface area of each of the 8 cubes would be 6 times 2 cm squared, which is equal to 12 cm².and the total surface area of the 8 cubes would be 12 cm^2 multiplied by 8, which is equal to 96 cm².

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A 2,600 kg SUV traveling west at 15 m/s collides head on with a 1,300 kg four door sedan traveling east at 20 m/s. Determine the speed and direction of the two cars immediately after impact if they lock together​.

Answers

Answer:

Explanation:

From  Law of conservation of momentum,

m1u1+m2u2 = m1v1+m2v2 [Law of conservation of momentum]

m1 = 2600kg

u1 = 15m/s

m2 = 1300kg

u2 = -20m/s  [as it is moving in opposite direction]

here, after impact, cars lock with each other so v (final velocity) is the same for both cars, i.e., v1 = v2

(2600)(15)+(1300)(-20) = (2600)v1+(1300)v2

39000-26000 = (2600+1300)v1  [as v1 = v2]

v1 = 13000/3900

v1 = 3.33 m/s

Here, m1v1 = 2600x3.33 = 8658kgm/s

m2v2 = 1300x3.33 = 4329kgm/s

As final momentum of car 1 is higher than that of car 2, both cars will move in direction of car1, that is, west direction.

3. A shaft of 100 mm diameter rotates at 120 rad/s in a bearing 150 mm long. If the dial clearance is 0-2 mm and the absolute viscosity of the lubricant is 20 kg/ms find the power loss in the bearing.

Answers

The power loss in the bearing is 1.36 W shaft of 100 mm diameter rotates at 120 rad/s in a bearing 150 mm long.

What is viscosity?

The viscosity of a fluid is a measure of its resistance to flow. A fluid with a high viscosity resists movement because its molecular structure causes a lot of internal friction.

The viscosity of a fluid is a measure of its resistance to flow. A fluid with a high viscosity resists movement because its molecular structure causes a lot of internal friction.

To calculate the power loss in the bearing, we can use the formula:

P = F × V

To calculate the frictional force, we can use the formula:

F = μ × A × P

Where μ is the coefficient of friction, A is the area of the bearing, and P is the pressure of the lubricant.

First, we need to calculate the pressure of the lubricant:

P = μ × Viscosity × (V/D)

Where D is the diameter of the shaft.

P = (0.02) × 20 × (120/0.1) = 480 N/[tex]m^2[/tex]

Next, we can calculate the area of the bearing:

A = π × (D/2)^2 × L

Where L is the length of the bearing.

A = π × (0.1/2)^2 × 0.15 = 0.001178 [tex]m^2[/tex]

Now we can calculate the frictional force:

F = μ × A × P = (0.02) × 0.001178 × 480 = 0.0113 N

Finally, we can calculate the power loss:

P = F × V = 0.0113 × 120 = 1.36 W

Therefore, the power loss in the bearing is 1.36 W.

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