How much energy must be absorbed by 20.0 g of water to increase its temperature from 283.0 K to 303.0 K? (Cp of H2O = 4.184 J/g °C)

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Answer 1
The answer is b I did this 2 week ago

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relative velocity. of airplanes a and b are moving southwest with speed , and north?west with speed , respectively, what is the relative velocity of b with respect to a?

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The velocity of the an object in relation to another observer is referred to as its relative velocity. It is the pace at which the relative positions of two objects change over time.

What is relative velocity used for?

When compared to another observer, an object's relative velocity is its speed. It is the pace at which the relative position with one thing in relation to another object changes over time.

Give an example of relative velocity.

It combines an object's direction and speed. However, when we discuss relative velocity, it indicates that we're talking about velocity of one item in relation to another. And what exactly is relative velocity? An object's relative velocity is its speed in relation to another object, B.

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what is the magnitude of the weight, w , that can be supported by the right side of the jack for the given difference in elevation, 2.4 ft as shown?

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The magnitude of the weight that can be supported by the right side of the jack can be calculated using the equation:

w = (force) * (distance)

where force is equal to the weight density of the material times its volume and distance is equal to the difference in elevation.

Since weight is equal to mass times acceleration due to gravity, we can write:

w = m * g

where m is the mass and g is the acceleration due to gravity, 9.8 m/s^2.

So the weight that can be supported by the jack can be calculated as follows:

w = m * g

w = (density * volume * g) * (distance)

w = (density * volume * 9.8 m/s^2) * (2.4 ft)

Here, we need to know the density of the material and its volume in order to calculate the weight that can be supported by the jack. Since this information is not provided, it is not possible to calculate the weight without additional information.

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The moon goes through a cycle of phases. This occurs because as the moon orbits Earth, different parts of the side of the moon illuminated by the sun face toward Earth. Select all of the correct statements from the following list.
a. Since a full moon occurs when the moon is on the opposite side of Earth as the sun, it is only visible at night.
b. Quarter phases occur between the new and full phases.
c. The moon orbits eastward around Earth once every 29.53 days.
d. The moon's phase changes because the moon rotates, causing differing parts of the side illuminated by the sun to face Earth.
e. Lunar eclipses happen infrequently—usually once every few years or so.
f. During the new phase, no sunlight reaches the side of the moon facing Earth.
g. The lunar phase changes as the moon passes in and out of Earth's shadow.

Answers

No sunlight hits the portion of the moon that faces Earth during the new phase. Between new and complete phases are quarter phases.

What is Earth called?

Contrary to widespread opinion, Earth lacks a globally recognized name. A common misunderstanding of the earth's natural scientific name is "Terra."

What is planet Earth?

Our own planet, Earth, is a world unto itself. Earth, the fourth from the sun, is the only planet in the known cosmos where the presence of life has been established. With a 3,959-mile radius, Earth is the fifth-largest planet within our solar system and the only one whose surface is known to have liquid water.

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Describe the behaviour of light that enables magnifying lenses and conttact lenses to bend light rayd

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The nature of light  that enable enables magnifying lenses and contact lenses to bend light ray is called refraction.

What is refraction ?

Refraction is an optical phenomenon causing the light ray to bend from its straight way at the edge of objects. When light passing from one medium to the other of different density, light ray will bend at the boundary of the mediums.

The measurement of this bending of light is called refractive index of the medium. Refractive index of a medium is the ratio of the speed of light in the medium to the speed of light in air.

Magnifying lenses and contact lenses bend the light ray and make the image more closer than they appear because, bending of light makes light rays seemed to be coming from the upper plane above the original.

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the photo shows an invention from the second industrial revolution. a man holds a device up near his mouth. there is a small aperture on one end of the device near the man's mouth. this aperture is attached to a cylinder on a small platform. two wire lead from the platform out of the picture. which invention does the photo show?

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A new or original device, technique, composition, concept, or process is defined as an innovation. The photo show the invention of telephone.

What is invention?

A new or original device, technique, composition, concept, or process is defined as an innovation. An innovation might be an enhancement to an equipment, product, or process that increases efficiency or reduces costs. It might even be a whole new notion. It is possible to patent a concept if it is distinct enough, either as a stand-alone innovation or as a society has developed over the work of others.

The photo shows an invention from the second industrial revolution. a man holds a device up near his mouth. there is a small aperture on one end of the device near the man's mouth. this aperture is attached to a cylinder on a small platform. two wire lead from the platform out of the picture. The photo show the invention of telephone.

Therefore,  the photo show the invention of telephone.

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it is raining, and there is practically no wind. while driving through the rain, you speed up. what happens to the angle of the rain relative to the horizontal that you observe from inside the car?

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As you speed up while driving through the rain, the angle of the rain relative to the horizontal that you observe from inside the car will become more perpendicular. This is because the raindrops are being deflected by your car's movement, making them appear to be coming straight down.

Why is the angle of rain relative to Horizontal?

When you're driving through the rain, the raindrops are initially hitting the windshield of your car at an angle. If you speed up, the velocity of your car increases, and this increases the deflection of the raindrops as they hit your windshield. The result is that the angle at which the raindrops hit the windshield appears to be more perpendicular, making it appear as though the rain is falling straight down. This is simply an optical illusion caused by the increased deflection of the raindrops due to your car's movement.

It's important to note that the actual angle of the rain relative to the horizontal hasn't changed. Rather, it's just the angle that you perceive from inside the car that has changed due to the increased deflection of the raindrops caused by your car's movement.

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how many g's of acceleration does the astronaut experience when the device is rotating at top speed? each 9.80 m/s2 m / s 2 of acceleration is 1 g.

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The number of g's of acceleration that the astronaut experiences when the device is rotating at top speed cannot be determined from the information given. The information provided only defines that each 9.80 m/s^2 of acceleration is equivalent to 1 g, but the actual acceleration experienced by the astronaut is not specified.

While on the moon, astronauts endure microgravity, but they also experience hypergravity (up to 3.2 g) during takeoff. The strongest gravitational forces, up to 9 g, are felt by their Earth-based friends, jet pilots. The time required for a growth to change its tangential velocity is 1.3 seconds. Due to the fact that it starts at rest, the initial velocity is zero.

Discover the tangential velocities at the start and end. If you're having problems, find the angular velocity and acceleration, then multiply those values by the radius. Your acceleration will be determined by the velocity change throughout the passage of time.

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consider a battery with an internal resistance of 4.0 ohms connected to a 16-ohm and a 20- ohm resistor in series. the current in the 20-ohm resistor is 0.3 amperes. what is the emf of the battery?

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The emf of the battery is 12 Volt. The result is obtained by using the formula for electromotive force.

How to find the electromotive force (emf)?

Electromotive force can be expressed as

E = V + Ir

E = I (R + r)

Where

V = potential differenceI = currentR = load resistancer = internal resistance

A battery with an internal resistance of 4.0 ohms connected to a 16-ohm and a 20- ohm resistor in series. The current in the 20-ohm resistor is 0.3 amperes. Find the emf of the battery!

We have R₁ = 16 Ω and R₂ = 20 Ω in series. The total load resistance is

R = R₁ + R₂

R = 16 + 20

R = 36 Ω

The current along the series circuit is the same. So, we have I = 0.3 A.

The electromotive force will be

E = I (R + r)

E = 0.3 (36 + 4.0)

E = 0.3 (40)

E = 12 Volt

Hence, the battery has the electromotive force of 12 Volt.

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What can occur when air rises in a low pressure system?

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When air rises in a low-pressure system, it can lead to the formation of clouds and precipitation, such as rain or snow. The rising air also cools and condenses, releasing latent heat, which can further contribute to the development of the storm.

What happens in a low-pressure system?

A low-pressure system is a weather pattern characterized by a region of lower atmospheric pressure compared to the surrounding areas. It is often associated with unsettled and stormy weather.

How are clouds formed?

Clouds are formed when moist air rises and cools, causing water vapour to condense into tiny water droplets or ice crystals. This process occurs when the temperature of the air decreases, either because it is rising, or because it is mixing with cooler air.

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four charged particles are moving directly above or below a horizontal current-carrying conductor at the instant shown above. the signs of the charges and direction of motion of the charges are indicated in the figure. particle a is moving horizontally out of the page, particle b is moving vertically upward, particle c is moving horizontally into the page, and particle d is moving horizontally to the right. which two charged particles will not experience a magnetic force at this instant? select two answers. responses

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Particle A and Particle D will not experience a magnetic force at this instant when four charged particles are moving directly above or below a horizontal current-carrying conductor.

A charged particle goes in a straight line if its velocity is parallel to the magnetic field and there is no net force acting on it. According to Fleming's Left Hand Rule, the magnetic field will be upward because the magnetic force is directed northward. If a charged particle moves parallel to the magnetic field, there won't be any force acting on it as it passes through the field. When the magnetic field and velocity are in the same direction, the magnetic force, which is proportional to their cross product, is zero.

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what magnitude charge creates a 1.0 n/c n / c electric field at a point 1.0 m m away? express your answer in nanocoulombs.

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By using Coulomb's law, we can find the electric field at a point-

E = kQ / r²

where E is the electric field, k is the Coulomb constant (9 x 10^9 Nm²/C²), Q is the magnitude of the charge creating the field, and r is the distance from the charge.

Given- the electric field is 1 N/C and the distance is 1 m, we can solve for Q:

Q = Er² / k

Q = (1 N/C) * (1 m)² / (9 x 10^9 Nm²/C²)

Q = 1.11 x 10^-9 C

Converting to nanocoulombs:

Q = 1.11 x 10^-9 C * (10^9 nC/C) = 1.11 nC

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does this mean that positive charges create positive fields and negative charges create negative fields?

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Yes, that is correct because, Positive charges create positive electric fields, and negative charges create negative electric fields.

The force of the field is determined by the magnitude of the charge and the distance from the charge. Electric fields generated by a positive charge will repel other positive charges, and attract negative charges, while electric fields generated by a negative charge will repel other negative charges, and attract positive charges.

Electric fields are a physical field that surrounds electrically charged particles and exerts force on all other charged particles in the vicinity. The electric field is defined as the electric force per unit charge. It is measured in volts per meter (V/m) and is calculated by dividing the electric force by the charge of the particle.

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7. is gravity force an attractive or repulsive force? is gravity force a weaker force or stronger force (in terms of its strength)?

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Gravity is an attractive force, meaning that it pulls objects towards each other. It is considered a relatively weak force compared to other forces in the universe, but its strength is proportional to the mass of the objects involved and the distance between them. Over large distances and for massive objects, gravity can be a very strong force.

What causes the attractive force of gravity?

The attractive force of gravity is caused by the masses of objects and the distance between them. According to Newton's law of universal gravitation, the strength of the gravity force between two objects is proportional to the product of their masses and inversely proportional to the square of the distance between them. The greater the masses of the objects and the closer they are to each other, the stronger the attractive force of gravity will be between them. This fundamental principle helps to explain why objects are pulled towards each other, creating the attractive force of gravity.

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ball a is thrown upward with a velocity of 19.6 m/s. two seconds later ball b is thrown upward with a velocity of 9.8 m/s. which ball is first to return to the thrower's hand?

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Both balls return to the thrower's hand at the same time.

To determine which ball returns first to the thrower's hand, we need to find the time it takes for each ball to reach its maximum height and then fall back down to the thrower's hand.

Let's consider ball A first. The initial vertical velocity of ball A is 19.6 m/s and the acceleration due to gravity is -9.8 m/s².

Using the equation of motion:

v = u+ (a × t)

where h is the height, v is the final velocity, u is the initial velocity, t is time, and a is acceleration,

we can find the time it takes for ball A to reach its maximum height:

v = 0 m/s (∵ at max. ht velocity becomes zero)

u = 19.6 m/s

a = -9.8 m/s²

∴ 0 = 19.6 + (-9.8 × t)

∴ t = 2 sec

So, ball A reaches its maximum height 2 seconds after being thrown, and comes back down 2 seconds later i.e., 4 seconds after being thrown.

Next, let's consider ball B. The initial vertical velocity of ball B is 9.8 m/s and the acceleration due to gravity is -9.8 m/s^2. We can find the time it takes for ball B to reach its maximum height,

Using the same equation of motion:

v = u+ (a × t)

where h is the height, v is the final velocity, u is the initial velocity, t is time, and a is acceleration,

we can find the time it takes for ball B to reach its maximum height:

v = 0 m/s (∵ at max. ht velocity becomes zero)

u = 9.8 m/s

a = -9.8 m/s²

∴ 0 = 9.8 + (-9.8 × t)

∴ t = 1 sec

So, ball B reaches its maximum height 1 second after being thrown, and comes back down 1 second later i.e., 2 seconds after being thrown.

∵ ball B was thrown 2 seconds after ball A. the actual total time taken by ball B to reach back to the thrower's hand is (2+2)= 4 seconds.

So, both balls fall back to the thrower's hand at the same time which is 4 seconds after ball A is thrown.

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Answer:

Both balls return to the thrower's hand simultaneously.

EXPLANATION:

To decide which ball returns to the thrower's hand first, we must calculate the time it takes each ball to reach its greatest height and then fall back down to the thrower's hand.

Let's start with ball A. Ball A has an initial vertical velocity of 19.6 m/s and a gravitational acceleration of -9.8 m/s2.

Using the motion equation:

v = u+ (a × t)

where h denotes height, v denotes ultimate velocity, u denotes starting velocity, t denotes time, and a denotes acceleration,

We can calculate how long it takes ball A to reach its maximum height:

v = 0 m/s (the maximum velocity is zero)

u = 19.6 m/s

a = -9.8 m/s²

∴ 0 = 19.6 + (-9.8 × t)

∴ t = 2 sec

So, ball A achieves its maximum height 2 seconds after being thrown and returns to earth 2 seconds later, or 4 seconds later.

Let's go on to ball B. Ball B has an initial vertical velocity of 9.8 m/s and a gravitational acceleration of -9.8 m/s2. We can calculate the time required for ball B to reach its maximum height.

Using the same equation of motion as before:

v = u+ (a × t)

where h denotes height, v denotes ultimate velocity, u denotes starting velocity, t denotes time, and a denotes acceleration,

We can calculate how long it takes for ball B to reach its maximum height:

v = 0 m/s (the maximum velocity is zero)

u = 9.8 m/s

a = -9.8 m/s²

∴ 0 = 9.8 + (-9.8 × t)

∴ t = 1 sec

So, ball B achieves its maximum height one second after being thrown and returns to earth one second later, or two seconds later.

Ball B was launched two seconds after ball A. Ball B's actual total time to return to the thrower's hand is (2+2)= 4 seconds.

As a result, both balls return to the thrower's hand at the same moment, 4 seconds after ball A is thrown.

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what are the different kinds of twilight we experience each day?

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There are three types of twilight which are defined based on the position of the sun below the horizon and the amount of light in the sky are civil twilight, nautical twilight, and astronomical twilight. The exact timing of the different types of twilight can vary depending on the observer's location, latitude, and the time of year.

What is twilight?

Twilight is the period of time each day when the sun is below the horizon but there is still some natural light in the sky. This occurs just before sunrise and merely after sunset.

When does nautical twilight happen?

Nautical twilight occurs when the sun is between 6 and 12 degrees below the horizon. During nautical twilight, the sky is not bright enough for outdoor activities but is bright enough for navigation at sea.

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what force besides gravity controls the orbit of a planet or moon?

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the answer is inertia

Explanation:

Inertia. The physical law that states that objects in motion have a tendency to remain in motion also plays a role in keeping the planets in orbit.

a 190-pound man has a total foot imprint area of 72 in2. determine the pressure exerted by this man on the ground if he stands on both feet.\

Answers

The man on the ground would be applying 2,625 psi of pressure (pounds per square inch).

To determine this, divide the man's weight (190 lbs) by the total area of his footprint (72 in2).

190 ÷ 72 = 2,625 psi

Pressure: The amount of force delivered perpendicularly to an object's surface in relation to its area is known as pressure. Its abbreviation is "p" or "P." The IUPAC suggests using a lower-case p when referring to pressure. However, many people use the capital P. The appropriate use of P vs. p relies on the field in which one is employed, the proximity of other symbols denoting quantities like power and momentum, as well as writing style.

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wave x travels eastward with frequency f and amplitude a. wave y, traveling in the same medium, interacts with wave x and produces a standing wave. which statement about wave y is correct?

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The statements correct about wave x travels eastward with frequency f and amplitude a. And wave y, traveling in the same medium, interacts with wave x and produces a standing wave is wave Y must have a frequency of f, an amplitude of A, and be traveling westward (option 4)

When waves of the same frequency and amplitude moving in opposite directions collide, standing waves are produced.

It has areas (known as nodes) where the amplitude is always zero and areas (known as antinodes) where the amplitude changes a great deal. The distance between two consecutive nodes or antinodes can be used to calculate the length of a standing wave.

The question is incomplete, it should be:

Wave x travels eastward with frequency f and amplitude a, wave y, traveling in the same medium, interacts with wave x and produces a standing wave. Which statement about wave y is correct?

The question is incomplete, it should be:

(1) wave Y must have a frequency of f, an amplitude of A, and be traveling eastward.

(2) wave Y must have a frequency of 2f, an amplitude of 3A, and be traveling eastward.

(3) wave Y must have a frequency of 3f, an amplitude of 2A, and be traveling westward.

(4) wave Y must have a frequency of f, an amplitude of A, and be traveling westward.

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which of the six numbered features represents emission lines?

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The first line represents the emission lines of the spectrum.

In the electromagnetic spectrum, a line pattern is observed. This line pattern is something that is unique for every element and it is represented by the dip in the energy gap of the electrons revolving in the atoms.

Here, in the graph pattern attached, out of the six numbered lines, the line number one represents the emission lines because the electron are releasing their energy and going back to there own ground state level.

This emission when seen on the screen, it will be observed a unique pattern of the bright lines for that particular element.

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If a ball is thrown straight up into the air with an initial velocity of 50 ft/s, it height in feet after t second is given by y=50t-16t^2. Find the average velocity for the time period begining when t=1 and lasting (i) 0.1 seconds (ii) 0.01 seconds (iii) 0.001 seconds. Finally based on the above results, guess what the instantaneous velocity of the ball is when t=1.

Answers

The instantaneous velocity of the ball when t=1 is approximately 18 ft/s. The change in location divided by the change in time gives the average velocity during a time period.

What is velocity, exactly?

A particle or object's movement with respect to time is expressed vectorially as velocity. The meter per second (m/s) is the accepted unit of velocity magnitude (also known as speed). Alternately, the magnitude of velocity can be expressed in centimeters per second (cm/s).

(i) For t=1 to t=1.1 seconds:

y = 50t - 16[tex]t^{2}[/tex]

Change in position: y(1.1) - y(1)

= 50(1.1) - 16[tex](1)^{2}[/tex] - (50(1) - 16[tex](1)^{2}[/tex])

= 35.64 - 34

=1.64

Change in time: 1.1 - 1 = 0.1

Average velocity = Change in position / Change in time

= 1.64 / 0.1

= 16.4 ft/s

(ii) For t=1 to t=1.01 seconds:

y = 50t - 16[tex]t^{2}[/tex]

Change in position: y(1.01) - y(1)

= 50(1.01) - 16[tex](1.01)^{2}[/tex] - (50(1) - 16[tex](1)^{2}[/tex])

= 50.5 - 16.32- 50 - 16

= 34.18 - 34

= 0.18

Change in time: 1.01 - 1 = 0.01

Average velocity = Change in position / Change in time

= 0.18 / 0.01

= 18 ft/s

(iii) For t=1 to t=1.001 seconds:

y = 50t - 16[tex]t^{2}[/tex]

Change in position: y(1.001) - y(1)

= 50(1.001) - 16[tex](1.01)^{2}[/tex] - (50(1) - 16[tex](1)^{2}[/tex]

= 50.05 - 16.032 -50 - 16

= 34.018 -34

=0.018

Change in time: 1.001 - 1 = 0.001

Average velocity = Change in position / Change in time

= 0.018/ 0.001

= 18 ft/s

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when white light passes from the air into a different medium such as glass, it: a. is reflected backwards b. is refracted (bent) c. is dispersed into different colors d. more than one of the above e. is doppler shifted

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When white light moves from air into a different material, such as glass, it is refracted (bent) due to a change in speed produced by the difference in refractive index.

The explanation for the above answer is

Refraction is the bending of light as it travels through different media. White light slows down and bends when it transitions from the medium of air to another one, such as glass. Because glass has a higher refractive index than air, light penetrates glass at a different speed than it would outside of it.

As a result, at the point where the air and the glass meet, the light is refracted or twisted. Snell's law describes how the angle of incidence and the difference in refractive indices affect how much bending occurs. The functioning of lenses and prisms is based on the phenomenon of refraction, which is essential for many optical systems.

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a 1000-kg car traveling with a speed of 25 m/s skids to a stop. the car experiences an 8000 n force of friction. determine the stopping distance of the car

Answers

The required stopping distance of the car when mass, speed and force experienced are given is calculated to be 39.1 m.

The car's mass is said to be 1000 kg.

The speed of the car is calculated to be 25 m/s.

The car experiences 8000 N of frictional force.

We need to find out the stopping distance of the car.

Initially, the car's height is 0, so the potential energy of the car is zero.

Kinetic energy of the car is 1/2 × 1000 × 25² = 312500 J.

Finally, potential energy of the car is 0 and kinetic energy of the car is zero.

The work done is,

W = F d cos 180° = -8000 d

From the principle of conservation of energy,

TME i + W ext = TME f

where,

TME i is total mechanical energy initial

TME f is total mechanical energy final

W ext is work done external

After placing the values into the equation above,

312500 + (-8000 d) = 0

8000 d = 312500

d = 39.1 m

Thus, the stopping distance of the car is 39.1 m.

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which formula (assuming the signs are correct) would be used to find current i if power p and voltage v are given?

Answers

Formula that would be used to find current i if power p and voltage v are P = V * I

I = P/V

Energy flow or conversion rate is measured in units of time as ower. One joule per second, or one watt, is the definition of power in the International System of Units.

Voltage is the variation in electric potential between two places. It is sometimes referred to as electric pressure, electric tension, or potential difference. The work required to transport a test charge between two places in a static electric field correlates to this.

The rate at which electrons move across a conductor is called electric current. The ampere is the SI unit for electrical current. A substance's molecular structure contains tiny particles called electrons. These electrons can be held firmly at times or loosely at other times.

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a ball is thrown vertically upward from a height of feet with an initial velocity of feet per second. how high will the ball go?

Answers

The ball will go for a maximum height of roughly 62.25 feet.

Given that the acceleration due to gravity is 32 feet per squared second, we can integrate it with respect to t to calculate the velocity equation.

  a(t) = -32 ft/s²
  v(t) = ∫a(t) dt = ∫-32dt = -32t + C

The given initial velocity is 60 ft, so:

  v(t) = -32t + C
  v(0) = -32(0) + C
     C = 60

Thus, the formula for v(t) in this case is -32t + 60.

Since velocity is always 0 (zero) at maximum height, you can calculate the time needed for the ball to reach maximum height:

  v(t) = -32t + 60
    0 = -32t + 60
     t = 1.875 s

Put the time aside to calculate the formula for the distance equation.

  s(t) = ∫v(t) dt = ∫(-32t + 60)dt = -16t² + 60t + C

Now, since we have the initial distance/height at 6 feet, we can calculate the C for the formula above. Remember that the initial time is 0.

  s(t) = -16t² + 60t + C
  s(0) = -16(0)² + 60(0) + C
     6 = C

Thus, the calculation for distance is s(t) = -16t² + 60t + 6

Since we already found out the time needed to reach maximum height earlier, we can plug the number into the formula above:

        s(t) = -16t² + 60t + 6
s (1.875) = -16(1.875)² + 60(1.875) + 6

              ≈ 62.25 feet.

Your question seems incomplete. The completed version is as follows:

A ball is thrown vertically upward from a height of 6 feet with an initial velocity of 60 feet per second. How high will the ball go?HINT: The acceleration due to gravity is 32 feet per squared second

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6. an aluminum cube has sides of length 1.80 m. what is the resistance between two opposite faces of the cube?

Answers

the resistance between two opposite faces of the cube is 1.53×10−8Ω.

What do you mean by resistance between two opposiye faces of cube?

Along the 'face' diagonal, between two vertices. = 3 R 4 is the equivalent resistance between two vertices along the face diagonal.

Resistance R is provided by:

R = ρl/A

Where r denotes resistivity, l the length parallel to which current flows, and A the area through which current flows

In this instance,

[tex]R = pl/(l^2) = p/l ([/tex] (taking side of cube as l) (taking side of cube as l)

We know that by dividing the cube into 27 smaller cubes, the volume of the cubes eventually equals the initial volume of the cube.

(essentially, mass conservation, but density cancellation on both sides)

[tex]l^3 = 27a^3l^3 = 27a^3[/tex] (a is the side of one tiny cube) (a is the side of one small cube)

a = l/3

As a result, resistance across two opposed faces of a tiny cube is as follows:

r = (a)/a2 =/a = 3/l = 3R

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5) choose the best answer. using the knowledge about the moon phases, how many spring and neap tides occur each month on average?

Answers

Instead, the phrase refers to the idea of the tide "springing forth." Regardless of the season, spring tides happen twice each lunar month.

What moon phases correspond to the neap and spring tides?

When the Moon is full or new, when the Sun, Moon, and Earth are in alignment, spring tides always occur. Neap tides happen at the first and final quarter phases of the Moon, when the Moon is perpendicular to the Sun due to its orbit around Earth.

Most coastal areas have two high tides and two low tides each day, however other localities only experience one high tide and one low tide each day. Usually, the highs and lows aren't equal.

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which property of electromagnetic waves is least useful when identifying the objects emitting them?
A. Amplitude
B. Frequency
C. Speed
D. Wavelength

Answers

A. Amplitude of electromagnetic waves is the least useful when identifying the objects emitting them because the amplitude does not provide information about the nature or type of the object emitting the waves. It only provides information about the strength or intensity of the wave, which is not unique to a specific object.
Amplitude. That is correct

A 5 kg mass has 100 J of potential energy with respect tothe ground. Approximately how high above the ground is
the mass?

Answers

The height of the 5kg mass object with respect to the ground is 2.04m.

How to calculate height?

Potential energy refers to the energy possessed by an object because of its position (in a gravitational or electric field), or its condition (as a stretched or compressed spring, as a chemical reactant, or by having rest mass).

Potential energy = mass × height × acceleration due to gravity

According to this question, a 5kg mass has 100 J of potential energy with respect to the ground. The height can be calculated as follows:

100J = 5kg × 9.81 × h

100 = 49.05h

h = 2.04m

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a car making a 100-km journey travels 40 km/h for the first 50 km. how fast must it go during the second 50 km to average 50 km/h?

Answers

For a 100-km journey, the average speed must be 100/2 = 50 km/h. The average velocity is 66.66 km/h.

Given: - Total Distance = 100 km

              Average velocity = 50 km/h

Now Average Velocity = Total Distance / Total Time

                                      => 100 / T1 + T2 = 50 km/h

                                      => 100 / (50/40) + (50/v) = 50

                                      => 2 = (50/40) + (50/v)

                                      => v =4/3 x 50

                                      => 200/3 km/h

                                      => 66.66 km/h

Average speed is a measure of the overall rate of motion of an object over a certain time period. It is calculated by dividing the total distance traveled by the time taken to cover that distance. It is expressed in units such as meters per second, miles per hour, or kilometers per hour. Average speed is different from instant speed, which is the speed of an object at a particular moment in time.

Average speed is commonly used in physics, transportation, and sports to determine the performance of an object or system. For example, in transportation, the average speed of a car can be calculated by dividing the total distance traveled by the time it took to cover that distance. In sports, the average speed of a runner or swimmer can be determined by measuring the distance covered and the time taken to complete the race.

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how much heat energy is absorbed by a 5 kg mass of heat capacity 2.1 kj/(kg-deg c) that is warmed from -3 to -1 deg c? 1 x10^5 j 21 kw 21,000 kg-m^2/sec^2 -2.1*10^4 j/sec 2.1 x 10^4 watts 105,000 watts

Answers

The 5 kilogramme mass therefore absorbs 21 kJ of heat energy. The other alternatives don't correspond to this outcome.

The amount of heat energy absorbed by an object can be calculated using the equation:

Q = m * c * ΔT

where Q is the heat energy absorbed, m is the mass of the object, c is the heat capacity, and ΔT is the change in temperature.

In this case, the mass of the object is 5 kg, the heat capacity is 2.1 kJ/(kg-°C), and the change in temperature is -3°C to -1°C, so:

Q = 5 kg * 2.1 kJ/(kg-°C) * ( -1°C - (-3°C) )

= -5 * 2.1 * 2 = -21 kJ

So, 21 kJ of heat energy is absorbed by the 5 kg mass. None of the other options match this result.

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