Answer:
Below
Explanation:
Series resistances are additive: V = IR = (8.8)(1 + 15+23) = 343.2 v
A star is 230 light years away. The light we see tonight from that star left it
A. one year ago.
B. 2.3 years ago.
C. 23 years ago.
D. 230 years ago.
E. the time depends on which part of the sky the star is in.
It is 230 lightyears away to a star. The star that emits the light we observe tonight has been gone for 230 years.
Describe a light year.An annual light-year calculates distance rather than duration (as the name might imply). The distance a light beam covers in one year on Earth is one light-year, or around 6 trillion miles (9.7 trillion kilometers).
The light we see now left the star 230 years ago since it takes light roughly 230 millennia to travel from the star to us.
Astronomers sometimes talk about the "lookback time" while seeing distant celestial objects as a result. The more out and deeper in time i can observe an item, the older that light we perceive from it.
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two identical resistors are connected in series across the terminals of an ideal battery with a voltage v and a current i flows through the circuit. if one of the resistors is removed from the circuit and the remaining one connected across the terminals of the battery, how much current would flow through the circuit?
if one of the resistors is removed from the circuit and the remaining one is connected across the terminals of the battery, the current flowing through the circuit would be twice as much as when both resistors were connected in series.
The equivalent resistance of the circuit is equal to double the resistance of each resistor when two identical resistors are connected in series across the terminals of a battery.
Ohm's law determines the amount of current flowing through the circuit:
I = V / R
When I is the current, V is the battery's voltage, and R is the circuit's equivalent resistance.
Let R represent each resistor's resistance. When both resistors are connected, the circuit's equivalent resistance is 2R.
Calculations for the circuit's current flow are as follows:
I = V / (2R) (2R)
The equivalent resistance of the circuit is R, or the resistance of a single resistor, when one of the resistors is removed.
Comparing the two equations for I, we can see that the current flowing through the circuit is doubled when one of the resistors is removed.
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A cannon of mass 1500 kg fires a 10-kg shell with a velocity of 200m/s at an angle of 45° Above the horizontal. Find the recoil velocity of the cannon across the level ground.
The recoil velocity of the cannon across the level ground is 0.94 m/s.
What is velocity?The rate at which a body's displacement changes in relation to time is known as its velocity. Velocity is a vector quantity with both magnitude and direction. SI unit of velocity is meter/second.
Mass of the cannon = 1500 kg
Mass of the shell = 10 kg
Velocity of the shell = 200 m/s
Hence, the recoil velocity of the canon is = (10 × 200)/1500 cos45 °m/s
= 0.94 m/s
Hence, the recoil velocity of the cannon across the level ground. is 0.94 m/s.
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Under electrostatic conditions, an electric field intersects the surface of a conductor at a right angle. A. True B. False
Under electrostatic conditions, an electric field intersects the surface of a conductor at a right angle. (TRUE)
Definition of the electric fieldAn electric field is an electric quantity associated with any point in space when a charge is present in any form. The electric field originates from the electric force generated by an electric charge, both positive and negative charges. Thus, the electric field can be interpreted as an area where there is the influence of an electric force from one or more electric charges.
The electric field is visualized or depicted as an arrow line towards or away from the charge. The direction of the heat of the electric field lines from the positive charge is towards the outside of the charge. Meanwhile, the direction of the arrow of the electric field line from the negative charge points inward to the charge. This shows that electricity flows from positive charges to negative charges.
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if a digital multi-meter measures the electric potential of a circuit element to be 2.04 volts, then the least count of the voltmeter is assumed to be
The least count of the digital multi-meter measuring the electric potential of a circuit element is 0.01.
The least count of any device is that minimum reading above zero that the device can measure.
Here, the digital multi-meter measures the electric potential of a circuit element to be 2.04 Volts.
Now, what we can see from here is that the digital multi-meter can measure upto two decimals after the main reading. It means the smallest reading that it can measure is 0.01 Volts.
So, the least count of the digital multi-meter is found to be 0.01.
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Deena made a chart to summarize features of a velocity vs. time graph for objects with constant acceleration and objects with constant velocity.
Which best describes Deena’s error?
The line for constant velocity is not horizontal; it is diagonal and slopes downward.
The area of the rectangle and the triangle under the line should be added together for constant acceleration
Find acceleration by finding the area of the rectangle above the line.
Find velocity by calculating the slope of the line.
The error is like that Instead of being level, the line for constant velocity is diagonal and slopes downhill.
How can this graph be formulated?A horizontal line on the acceleration graph indicates constant acceleration. The slope of the velocity graph is the acceleration. For the velocity graph, constant acceleration Equals constant slope = straight line. The position graph exhibits a constant slope while the velocity is constant. It begins below the origin and is a straight line that slopes upward. The displacement is the region under the velocity graph's curve.
So, The error is like that Instead of being level, the line for constant velocity is diagonal and slopes downhill.
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a ball is thrown straight up from ground level. it passes a 2-m-high window. the bottom of the window is 7.5 m off the ground. the time that elapses from when the ball passes the bottom of the window on the way up, to when it passes the top of the window on the way back down is 1.3 s.
So the initial velocity of the ball was 19.66 m/s.
What happens when ball is thrown straight up from ground?When a ball is thrown straight up from the ground, it follows a parabolic path due to the force of gravity acting on it. The force of gravity causes the ball to accelerate downwards, and as it gains speed, it moves away from the ground.
What happens when the ball reaches its highest point?At the highest point of its trajectory, the vertical velocity of the ball is zero, and from that point on, it begins to slow down and fall back towards the ground. As the ball falls, it gains speed and its velocity becomes negative.
The maximum height of the ball will be v0 = 19.66 m/s
h = 7.5 + 2 = 9.5 m
9.5 = v0 * 1.3 - (1/2) * 9.8 * [tex](1.3)^{2}[/tex]
v0 = 19.66 m/s
So the initial velocity of the ball was 19.66 m/s.
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2. a race car is moving with 53 km/h and starts accelerating at a rate of 3.4 m/s2. after traveling 40 seconds at that acceleration rate, the driver applies the brakes and changes the acceleration to 4.6 m/s2. how far the car travels to its complete stop after the breaks were applied?
The car travels approximately 150.65 meter distance to completely stop after applying the breaks.
First we need to consider both its initial velocity and its acceleration. initial velocity is 53km/h and acceleration is 3.4 m/s². If we convert velocity into m/s, 53km/h = 53×5/18 = 14.72 m/s.
So by the end of 40 seconds the final velocity will be 14.722 + (3.4 x 40) = 95.02 m/s . Now we know initial velocity = 14.72 m/s and final velocity = 95.02 m/s.
When the driver applies the brakes, it changes the acceleration to 4.6 m/s². So now acceleration is -4.6 m/s².
The distance that the car travels can be calculated using the equation for average velocity:
distance = (initial velocity + final velocity) / 2 × t
where t is the time taken for car to completely rest.
We know, velocity final= Velocity initial + a × t . So if velocity final is zero and solving for t,
0 = 95.022 - 4.6t
t = 95.022 / 4.6 = 20.67 seconds
Finally, we can use the equation for average velocity to determine the distance traveled:
d = (14.722 + 0) / 2 × 20.67 = 150.65 meters
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a rock is dropped at the same time a rock is thrown downward in the grand canyon the acceleration of both rocks are?
Acceleration of both the rocks are the same.
An object that is moving only because of the action of gravity is said to be free falling and its motion is described by Newton's second law of motion.
A rock is dropped. It will freely fall under gravity with acceleration value g, that is called acceleration due to gravity.
At the same time a rock is thrown downward in the grand canyon, the acceleration of this rock will be the acceleration due to gravity. As the canyon is not accelerating the rock will fall on it own under the influence of gravity.
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What happens to the freezing point when a nonvolatile solute is added to a pure solvent?
Every time a non-volatile solute is added to a pure solvent, a solution's vapour pressure decreases.
What is nonvolatile solute in a solvent?A nonvolatile solute is a material that is difficult to evaporate. Additionally, when dissolved in the solvent, it does not raise its vapor pressure of a solution. Nonvolatile liquids have a high melting point and a low vapor pressure as traits.
Is sugar an inert solute?Volatile substances are ethanol and pentane, while nonvolatile ones include sodium chloride and sugar. As comparison to a vapor pressure of the pure solvent, the presence of a solute results in a colloquial property known as the "reduction of a vapor pressure of the solution."
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A constant volume gas thermometer is used to measure the normal temperature during an experiment.If the gas pressure at 270kelvin is 220mmHg and 270mmHg at 373kelvin.What is the room temperature if the gas thermometer records a pressure of 234mmHg
The room temperature if the gas thermometer records a pressure of 234mmHg is 248.84 K.
What will be the temperature at 234 mmHg?
The temperature of reading of the thermometer is calculated by applying interpolation method.
220 mmHg --------> 270 K
234 mmHg ----------> x
270 mmHg ------------ > 373 K
Now solve for x,
( 234 - 220 ) / ( 270 - 220 ) = ( x - 270 ) / ( 373 - 270 )
0.28 = ( x - 220 ) / 103
103 ( 0.28 ) = x - 220
x = 248.84 K
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you travel 30 miles west of your home and then turn around and start going back home. after traveling 10 miles east, what is your displacement from your home?
In this case, you traveled 30 miles west and 10 miles east, so your displacement from your home is 20 miles to the west. The direction of the displacement is the same as the direction of the final position, which is to the west, away from your home.
Displacement is a vector quantity that represents the change in position of an object relative to its starting point.
You travelled in west = 30 miles
You travelled in east = 10 miles back
Displacement = 30 - 10 = 20 miles in west direction
It is calculated as the final position minus the initial position, and it measures the distance and direction of an object's change in position. Displacement can be expressed in any unit of length, such as meters, feet, or miles. It is an important concept in physics and engineering, as it provides a way to quantify the change in position of an object over time. Displacement is related to other physical quantities such as velocity, acceleration, and time, and it is an essential component of many equations used to describe the motion of objects in physics. Displacement is also an important concept in everyday life, as it is used to describe the position of objects and the change in their positions over time.
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work against friction results in an increase in blank , which is a type of energy change that takes place. multiple choice question. temperature kinetic energy potential energy
Work against friction results in an increase in kinetic energy, which is a type of energy change that takes place.
When work is done against friction, it requires energy to overcome the resistance of the friction. This results in an increase in kinetic energy, which is the energy associated with the movement of an object. The increase in kinetic energy causes the object to move faster or with more force, which is an example of a type of energy change that takes place due to work done against friction.
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Answer: temperature
Explanation:
work against friction results in an increase in temperature. temperature is a manifestation of the kinetic energy of the particles making up an object
a car sitting at a red light begins to accelerate at 2 m/s^2 when the light turns green. it continues with this acceleration until it reaches a speed of 20m/s. it then travels at this speed for another few minutes. how far does the car travel in the first 30 seconds after the light changes to green.
The total distance covered by car which accelerate at 2 m/s² in first 30 sec after the light changes to green is found to be 500m.
How does velocity impact acceleration?A travelling item accelerates when its velocity changes. Take into consideration that velocity is a calculation that accounts for both direction and speed. This means that a change in velocity might be either a change in the speed or a change in the direction of motion of an object.
What changes in acceleration occur throughout time?acceleration: the rate at which the speed and direction of a moving body vary over time. A point or object heading straight ahead is accelerated whenever it accelerates or decelerates.
[tex]a= 2 m/s^2; v_f = 20m/svi=0 since it starts from restvf = vi + at;20 = 0 + 2 \times tt = 10secs= vi\times t+ 1/2 a t^2s = 1/2 x 2 x 10^2 = 100m[/tex]
Total time the car traveled = 30 sec
First 10 sec, the distance traveled is 100m
For next 20 sec, the distance traveled = v x t
= 20 x 20 = 400m
The total distance covered in first 30 sec is 400+100= 500m
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a small sphere of mass m 5 7.50 g and charge q1 5 32.0 nc is attached to the end of a string and hangs vertically as in figure p15.4. a second charge of equal mass and charge q2 5 258.0 nc is located below the first charge a distance d 5 2.00 cm below the first charge as in figure p15.4. (a) find the tension in the string. (b) if the string can withstand a maximum tension of 0.180 n, what is the smallest value d can have before the string breaks?
The tension in the string is 0.115 N and the smallest value of d before the string breaks is 1.25 cm.
The tension (T) in the string can be calculated by considering the forces acting on the upper sphere, which includes the gravitational force (mg) and the electrical force (Fe) from the lower sphere. The equation for T is
[tex]T = mg + (d^2 * k * |q1| * |q2|)[/tex]
where d is the distance between the two spheres, k is Coulomb's constant, and |q1| and |q2| are the magnitudes of charges on the spheres. Substituting the given values, T = 0.115 N.
To find the smallest value of d, the equation
[tex](d^2 * k * |q1| * |q2|) = T_{max} - mg[/tex]
is used, where [tex]T_{max}[/tex]is the maximum tension the string can withstand. Solving for d, d = 1.25 cm.
Complete question:
A small sphere of mass m = 7.50g and charge q1 = 32.0nC is attached to the end of a string and hangs vertically as in Figure. A second charge of equal mass and charge q2 = −58.0nC is located below the first charge a distance d = 2.00cm below the first charge as in Figure.
(a) Find the tension in the string.
(b) If the string can withstand a maximum tension of 0.180N, what is the smallest value d can have before the string breaks?
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a 36 n force is required to push the block up the incline with constant velocity. what is the weight of the block?
Answer:
The weight of the block can be calculated using the equation of force balance, which states that the sum of all forces acting on an object is equal to zero.
Given that a 36 N force is required to push the block up the incline with constant velocity, we can assume that the only other force acting on the block is its weight, which is acting downwards. Therefore, we have:
36 N - the weight of block = 0
So, the weight of the block is 36 N.
please help me out with this physics problem!!
match each question with the right image
1. All elastic potential
2. Elastic + gravitational potential
3. All kinetic
The first image is has All elastic potential energy. The second image has Elastic + gravitational potential energy. The third image has All kinetic energy.
What is potential energy?Potential energy is the energy stored by an item as a result of its location relative to other objects, internal tensions, electric charge, or other reasons. Potential energy is stored energy that is affected by the relative location of various components in a system. When a spring is squeezed or extended, its potential energy increases. A steel ball has higher potential energy when lifted above ground than when it falls to Earth. Potential energy is defined as energy that is stored or conserved in an item or material. This stored energy is determined by the object's or substance's location, arrangement, or condition. Consider it to be energy with the 'potential' to accomplish work.
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two tubes are connected to two water reservoirs and open to the atmosphere as shown below. the area of the base of the tube on the right is three times that of the tube on the left. the height of the water is the same for both cases. the relation between the pressures p1 and p2 at the base of the tubes is: . . . .
The pressure p1 & p2 just at bottom of the tube are inversely proportional: p2 = p1. As seen below, a U-tube manometer connected to two air tanks at various pressures is filled with water.
What is the tube pressure law?Pressure & volume are inversely related for an ideal gas with a fixed mass maintained at a fixed temperature. Boyle's law, another gas law, states that there is an inverse relationship between a gas's pressure and volume. When the temperatures is held constant, pressure decreases as volume increases and vice versa.
How is pressure in a tubes measured?Using a piezometer tube, often known as a "pressure measuring tube," is the easiest way to gauge a fluid's pressure in a pipe. This is a tube that holds a fluid under pressure and allows the fluid to raise to a lengths that correspond to the fluid's excess pressure over the area around it.
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what types of distances are typically listed in astronomical units (au)? distances to stars distances between galaxies distances in the solar system the diameter of the universe the diameter of the milky way galaxy
The correct option is B, Distances in the solar system types of distances are typically listed in astronomical units (AU).
The astronomical unit (symbol: au, or au or AU) is a unit of the period, roughly the distance from Earth to the sun, and about equal to 150 million kilometers (ninety-three million miles) or 8. three light-mins. The actual distance from Earth to the solar varies by means of approximately three% as Earth orbits the solar, from a most (aphelion) to a minimum (perihelion) and back once more as soon as each year. The astronomical unit became at first conceived as the common of Earth's aphelion and perihelion; but, the grounds that 2012 it's been described as exactly 149597870700 m (see below for several conversions).
The astronomical unit is used normally for measuring distances in the solar system or around other stars. it's also a fundamental factor within the definition of another unit of astronomical length, the parsec.
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Complete Question: -
What types of distances are typically listed in astronomical units (AU)?
A. distances between galaxies
B. distances in the solar system
C. the diameter of the universe
D. distances to stars
E. the diameter of the Milky Way Galaxy
a 1800 kg sports car accelerates from rest to 32.0 m/s in 5.20 s. what is the average power output of the automobile engine?
The average horsepower of today's vehicles, when taken into account for each new model, ranges from 200 to 250.
What is a motor's maximum power?The ratio of a motor's speed to torque determines its power. The speed that produces the most power is around halfway between the loaded speed. No torque at highest speed. and the stagnant condition. highest torque with no speed. The power output in watt is about equal to 9.57 x (torque) x (rpm).We are given : mass of sports car, m = 1000 kg. car accelerates from rest to final speed v = 95 km/h = 95×518 =26.39 m/s.
What is the engine's specific power?One way to gauge an engine's performance in a car or power plant is by looking at its power rating or power-to-weight ratio. Its definition is its output of power divided only by mass, usually expressed in units as W/kg or hp/lb.
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the work done by the motor of a conveyor belt changed over time due to heating and changes in internal friction. the work can be expressed as:
The work done by a conveyor belt motor can be expressed as the product of the force applied by the motor and the distance over which the force is applied.
W=Fd is the equation for work done by a constant force. In this equation, W represents the work done (measured in units of energy such as joules), F is the force applied (measured in units of force such as newtons), and d is the distance over which the force is applied (measured in units of length such as meters).
This equation states that the work done is equal to the product of the force applied and the distance over which it is applied. This equation applies to a wide range of physical systems, including conveyor belts, and is a basic equation used in physics and engineering.
However, over time, the work done by the motor can change due to a variety of factors such as internal friction and heating. As internal friction increases, the force required to move the belt increases, resulting in a decrease in the work done by the motor.
Additionally, as the motor heats up, its efficiency may decrease, leading to a reduction in the work done by the motor. Additionally, if the load on the conveyor belt changes, the work done by the motor will also change. These changes in work done by the motor can be monitored and compensated for through the use of sensors and control systems that monitor the conveyor belt's performance and adjust the motor's output as needed.
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Calculate the force applied (in newtons) if a pressure of 1000Pa is acting on an area of 85m2.
Answer:
11 65/85N
Explanation:
P = F/A
=> 1000Pa = F/85m^2
=> F = 1000/85 N
=> F = 11 65/85N
imagine a charge in the center of a conducting, hollow sphere. there is no net charge on the sphere, and the sphere is not connected to ground. what will happen if the charge is moved a little away from the center?
If a charge is placed in the center of a conducting, hollow sphere and is then moved a little away from the center, the electrons in the sphere will rearrange themselves to neutralize the external charge and restore the overall neutrality of the sphere.
This rearrangement will cause an induced surface charge on the inner surface of the sphere, with a positive charge facing the external charge and a negative charge facing away from it.
Since the sphere is not connected to ground, it cannot discharge the induced surface charge, and the electric field within the sphere will change. The electric field lines will no longer be radial, but will instead be curved around the external charge, with the field pointing away from the positive surface charge and towards the negative surface charge.
In other words, the presence of the external charge will cause the electric field within the sphere to be distorted, leading to a change in the distribution of electric charge on the inner surface of the sphere. The sphere will remain neutral overall, but the surface charge distribution will change in response to the presence of the external charge.
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a point particle with charge q is somewhere outside a gaussian surface in the form of a cube, very close to the center of one side. the net electric flux through the cube is
Even if the Gaussian surface's radius is doubled, the electric flux that is projected outside of the system won't change. This is so because the charge contained by the surface is the only factor that affects electric flux.
When a point charge Q is at the centre of a cube, what happens?Since the charge is located in the cube's centre, the cube's electric flux lines spread out equally from each side. As a result, q is the same as the electric flux coming out of the cube.
Which of the following claims about a Gaussian surface is accurate?According to Gauss' Law, the total electric field flux across every simply linked closed surface is equal to the entire charge enclosed by that surface, divided by the material's electric permittivity.
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T/F vapor density is a type of physical data contained on a msds.
The statement is true because "Gas density is a kind of physical data given over an MSDS (Safety Data Sheets)".
Why is density important?The density of a place refers to the quantity of things—which may include people, pets, trees, or objects—there are in it. Combine the amount of items by the area's length to determine density. A country's population density is calculated by dividing its total population by its area, expressed in sq miles or miles.
Describe density with an example.Due to differences in density, two identically sized cubes constructed of different materials will typically not weigh the same when compared when weighed. Additionally, it implies that a massive Styrofoam cube might weigh the same.
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all energy eventually becomes ______, which is disordered energy that results from the random movements of molecules.
Heat, the disordered energy that originates from the irrational motion of molecules, is the final state of all energy.
What are energy and its measure?Energy is the capability to accomplish labor. The amount of labor an organism's stored energy is capable of performing after it is expended. energy is a scalar quantity. The term "joule" refers to the SI unit of energy. The quantity of energy required to do one photon of activity is one joule.
What is the simplest definition of energy?Scientists refer to energy as the ability to work. Modernity is feasible because people have learned how to transfer information from one media to another and then use it to complete tasks.
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8. compare the representations of water, sound, and light waves. describe the similarities and differences with images from the simulation to support your ideas.
Some of the similarities and differences between the representations of water, sound, and light waves are as follows:
Similarities:
Wavefronts, which are lines that depict the position of the wave at a specific point in time, may be used to depict all three types of waves.They all possess the wave qualities of wavelength, frequency, and amplitude, which govern how the wave will behave.They all move through a medium, like air, water, or solids, and the characteristics of that medium affect how quickly they move.Differences:
The environment in which the wave travels: sound waves travel through solids or air, and light waves can travel in a vacuum. Water waves travel in water.In terms of how quickly they move, light waves are the quickest, with sound waves moving at a slower rate than both.The wave's kind: Sound waves are longitudinal waves, which implies they travel parallel to the direction of the wave, whereas water waves flow perpendicular to the wave's direction. Transverse and longitudinal electromagnetic waves make up light waves.These are a few examples of how light, sound, and water waves are each represented differently and similarly.
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nasa launches a rocket at seconds. its height, in meters above sea-level, as a function of time is given by . assuming that the rocket will splash down into the ocean, at what time does splashdown occur? the rocket splashes down after seconds. how high above sea-level does the rocket get at its peak? the rocket peaks at meters above sea-level.
The rocket will splash down into the ocean at the time of 68.92 sec and the rocket get at its peak till 5946.6m.
(a) When h(t) = 0, the rock crashes down. Use the quadratic formula to find t after setting h(t) = 0.
0 = − [tex]4.9t^2[/tex]+ 334t + 255
t = -0.75, 68.92
Time cannot be negative, so disregard the negative response.
t = 68.92 sec
(b) When the trajectory's slope is zero, the rock is at its highest point. The objective is to determine when the slope of this trajectory—which is also the tangent line—is zero. To accomplish this, set h'(t) to 0 and take the derivative of h(t).
h'(t) = -9.8t + 334
0 = -9.8t + 334
t = 34.08 sec
Utilize this moment to determine the ball's height, h(t), so that h (34.08 sec).
h(t) = − [tex]4.9\times 34.08^2[/tex] + 334(34.08) + 255
h(t) = 5946.6m
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rubbing two objects together may cause large number of electrons to be transferred from one object to the other. t/f
It is true that when two items are rubbed together, a significant amount of electrons can be transmitted from one object to the other.
What are electrons?Unattached or attached to an atom, an electron is a negatively charged subatomic particle (not bound). One of the three main types of particles inside an atom, along with protons and neutrons, is an electron that is linked to the atom. An atom's nucleus is made up of electrons, protons, and neutrons. Subatomic particles known as electrons have a -1 magnitude elementary charge. The magnitude of an electron's charge is equivalent to that of a proton (but has an opposite sign). Because of this, electrically neutral atoms and molecules need to contain an equal number of protons and electrons.
Can we destroy electron?Never can an electron exist on its own. It can also obtain its charge from other particles, or a positron can be produced simultaneously. In a similar vein, an electron cannot be annihilated without producing a new, oppositely charged particle that is also equally charged. The electron cannot ever be destroyed when it is isolated. For the purpose of creating cross-platform desktop apps with HTML, CSS, and JavaScript, GitHub has created the open source library known as Electron.
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how is it possible to be accelerating and traveling at a constant speed
Speed is the measure of velocity's magnitude. It is possible for an object moving at a steady velocity to change direction. This indicates that even though an object is moving at a constant pace, it may be accelerating.
Which definition of acceleration is the most basic?Acceleration is the rate during which velocity varies. Acceleration often indicates a change in speed, but not necessarily. An item that follows a circular course while maintaining a constant speed is still moving forward as the vector of its motion is shifting.
What causes a speedup?An object's motion is altered by a net force; the larger the positive force, so greater the acceleration. To accelerate at the same rate as less massive objects, higher net forces are needed.
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