The Big Question: Why are Electric Cars the More Sustainable Choice?

By now, everyone living in the UK should be aware that by the end of 2030, non-electric passenger cars and light commercial vehicles will no longer be sold, imported, or manufactured in the country. Even though the plan seemed quite ambitious at the time of its announcement in 2020, recent stats tell us a different story altogether.

Why Electric Cars are the More Sustainable Choice

Excellent Sales Numbers Indicate Willingness to Welcome the Shift to EVs

According to data revealed by the UK Transport Department, the electric vehicle (EV) industry generated 173.5% more revenue during Q3, 2021, as compared to Q3, 2020. By the end of 2021, not only did the EV sector manage to sell the number of cars they needed in order to meet the necessary adoption curve, but they also exceeded their annual target by 60,000+ more electric vehicle sales.

Also Read: EV Uptake in Australia

These stats and figures more clearly indicate that people in the UK are both aware and willing to take the road needed for creating a more sustainable future for everyone. That being said, not everyone is ready or willing to support a shift to EVs yet. There are several social, economic, and political factors behind their unwillingness to adopt an electric car. Some of those causes are very real hurdles that the government hopes to overcome in the coming years.

Alongside other serious obstacles in the path of incomplete understanding of an EV’s benefits is a core problem that must be addressed. We are often informed that an electric vehicle is the more sustainable choice, but that statement is seldom explained properly. Whether you already own an electric vehicle or not, this post will help you understand why and how EVs are indeed the better choice for a cleaner, sustainable future.

Preparing for a Future without Fossil Fuels

More recently, the European Union (EU) has also declared its plans to slowly phase out fossil fuel vehicles by 2035. While we don’t yet have details regarding how they plan to go about it, it’s another step in the right direction. Despite the tremendous effort and investment it will take to create and maintain an automotive industry that’s not primarily reliant on fossil fuels, relevant governing authorities are still planning to go through with it. If successful, the entire movement will be tantamount to ushering in a new industrial revolution.

However, when multiple world governments decide in favour of reducing their dependence on non-renewable energy sources, the deeper implications are there for us to ascertain. People were running out of coal and petroleum from the very first day they started using it, but that time was still set in a very distant, vague future. As a result of globalisation, overpopulation, and over industrialisation, our energy consumption needs have increased beyond all previous estimations. Furthermore, that need continues to grow unchecked in several parts of the world. Consequently, we are now dangerously close to putting a date on a dystopian future!

It would take decades to build a reliable, new infrastructure that can effectively replace/reduce the need to rely on fossil fuels for an entire demographic. When the world finally runs out of easily accessible sources of fossil fuel, a well-developed alternative fuel industry must be present to keep us from reverting to the dark ages. Therefore, preparations to move away from non-renewable fuel sources must start now.

In conclusion, it can be said without a doubt that electric cars are the more sustainable and practical choice because that choice helps in building an infrastructure capable of surviving a future without easy access to petroleum. If we focus on the fact that running out of fossil fuels is an inevitability and not just a possibility, the current push towards adopting EVs begins to make a lot more sense.

That shift does not have to be difficult for anyone in the UK, although it may seem like a confusing change to many. Visit ElectriX to learn everything you need to learn about electric vehicles and find a good lease on your favourite model. They will even help you find cost-efficient insurance policies for your new EV. Leasing electric cars is the smarter choice right now because between now and 2030, EVs will improve exponentially with each passing year. A lease makes it much easier and more economic to shift to a newer, better, and more energy-efficient model, every time you need to.

electric-mobility-vacuum-technology

 

Decreased Contribution to Air Pollution

In 2020, the Covid-19 lockdowns reduced vehicle usage across the world. Just a few weeks of decreasing traffic saw nitrogenous air pollutants plummet down to unforeseen percentages in the UK, Italy, China, India, and pretty much the entire world. It was confirmed by NASA in 2021 that the earth’s ozone layer also started to repair itself during those same periods. Given that the ozone layer protects us from extremely dangerous and highly carcinogenic cosmic and solar radiation, that was a startling discovery for the scientific community. Despite the core reason behind the environmental improvements being a very undesirable and unfortunate one, these events did manage to reveal some undeniable facts in plain sight.

It seems that just a few weeks of reduced traffic can lead to massive improvements in air quality, climatic conditions, and even ozone repletion. Therefore, we can only imagine how positive it would be for the environment if we shifted permanently to electric vehicles. Over time, even the infamous London smog can be eliminated if the majority of all vehicles running on its streets did not emit toxic fumes anymore. It should also be noted that regular exposure to urban smog is officially documented by the European Environment Agency (EEA) as a confirmed reason for killing over 400,000 people in Europe every year.

advantages of electric cars

One may argue that electric cars have electric batteries, and they will contribute to the growing problem of dumping electronic junk in the future. It’s also true that electric cars are not completely emission-free either. In other words, EVs contribute to environmental pollution as well. This is, in fact, one of the chief arguments against adopting electric cars. However, that argument is not as valid as it may seem initially. The fact is that transportation across all formats is essential, and it cannot be stopped.

Therefore, the choice is about how we decide to power our vehicles and not whether we should be using vehicles. This leads us to an obvious comparison of available choices. Despite EVs also being responsible for harming the environment to some extent, that harm is almost negligible compared to the negative environmental effects of any vehicle running on fossil fuel.

Furthermore, we are close to reaching the peak of efficiency with combustion engines. This means that there’s not much that science can do at this point to make a traditional car engine more efficient than it is right now. On the other hand, we have only scratched the surface of what we can really do with electric car motors. In just a few years, electric vehicles will have more efficient, yet powerful electric engines, which will pollute even less than they do now. In other words, the electric vehicle is not just an eco-friendlier choice, but it is also our next step in automotive evolution.

Why Eco Friendly Vehicles Are the Future of Transportation?

There have been many revolutions in the engineering of passenger vehicles. First, in the late 1800’s came the automobile. Less than twenty years later, the first consumer car, the Model T was put into production. Over time, engineers kept improving cars and made them faster, safer, and better for the environment. Just a decade ago, cars that operate just as well as traditional fuel burning models began hitting markets around the globe. Every year these cars keep getting better, and it looks like they are the future of transportation.

The Green Transportation Revolution is sweeping across the United States, fundamentally reshaping the way we move. In this era of environmental consciousness, the shift towards sustainable mobility solutions has never been more evident. From the widespread adoption of electric vehicles, saving both the environment and your wallet from the burdens of high fuel costs, to the promising emergence of driverless cars poised to make our roads safer and more efficient than ever before, this article explores the exciting journey toward a greener future in transportation. Countries like Norway, Germany, and France have even proposed phasing out gas-powered vehicles altogether, demonstrating a global commitment to cleaner, more sustainable modes of transport. Discover the full story of this transportation revolution and how the USA is leading the way on escootersstores.

1. Green On the Streets and in Your Wallet

The appeal of an eco friendly vehicle is pretty obvious, when you take a look at how much money owners save on fuel costs. According to a report from Business Insider Americans in some states spend an average of over $1,300 per year on fuel alone. If you are the victim of a car accident, contact Philadelphia Injury Lawyers P.C. for a free consultation!

Internationally, many countries such as Canada have introduced extra taxes on fuel inefficient vehicles. Some countries, including Norway, Germany, and France have all proposed banning the sale of new gas powered vehicles. It seems that many countries see the harm that burning fuel causes to the environment, and are willing to push consumers to more efficient and clean transportation options, such as gas or electric powered cars. The use of these as power sources has garnered criticism as to whether or not natural gas is a reliable renewable resource, but natural gas been proven to be just as renewable and green as electric hybrids of today.

Studies have proven that “greener” vehicles do not just save consumers in taxes and fuel though. Electric cars can save owners quite a bit of money over time in maintenance. Since electric vehicles tend to need less engine maintenance, the cost of repairs and upkeep drop drastically.

2. Safer Roads and Better Fuel Efficiency

Today the roads are full of electric cars. While they certainly are the future, every driver is surely interested in what comes next. With driverless cars increasingly entering highways around the world, it would seem that the future of efficiency is with automated driving.

According to an article in Forbes, driverless vehicles could reduce fuel consumption in passenger vehicles by as much as 44 percent and 18 percent for trucks. That is an enormous impact for the environment. This reduction is due in part to the amount of time the cars are in use. With driverless cars, commuters could share vehicles and each passenger vehicle would spend less time idle, depreciating in value and wasting resources.

Self driving cars are already incredibly safe, and that is in part because they are programmed to strictly follow all traffic laws. According to a CNN report 90% of traffic accidents are caused by human error. These accidents could be reduced by fuel efficient driverless vehicles.

3. Making Your Current Ride More Efficient

Not all of us can afford to pony up the cash for a new electric vehicle, but that does not mean you can’t be more environmentally friendly with your current car or truck. There are plenty of ways to help make your vehicle and commute efficient. One simple way to reduce your use of fossil fuels is to minimize trips and idle time. If you sit in a drive through or traffic regularly, turn off your vehicle. The Environmental Defense Fund suggests turning off your vehicle if you idle for more than 10 seconds at a time.

Performing maintenance at scheduled intervals also keeps your vehicle in great condition, which helps it stay at its peak efficiency. Replacing spark plugs, keeping clean air filters in your car, and airing up tires to the manufacturer’s specified pressure can all improve your vehicles overall performance.

Please keep in mind that it is recommended to contact a car accident lawyer if you are hurt in a car accident. Your lawyer will gather the evidence and deal with your insurance company to ensure that you get the maximum compensation you are entitled to.

Lastly, driving fast consumes more fuel. Following the speed limit and posted directions, avoiding fast braking and acceleration, and using cruise control on the highway can help save on gas.

Impact Of Vacuum Technology On The Growth Of Electric Mobility

Electric mobility is the newest trend in today’s highly competitive market. Electric vehicles have already been defined as the future of transportation, and are on the increase. They are predicted to inevitably take over the car industry by the next decade.

Through technical innovation, e-Mobility is prepared to address today’s concerns linked with climate change, fossil fuel dependency, and environmental protection. Today, a slew of big auto manufacturers have not only begun building their own electric vehicles — alongside the industry’s pioneer, Tesla — but have also planned to discontinue the production of gas-powered vehicles in the next decades.

Vacuum technology has been – and still is – essential in this process.

vacuum technology for electric car production

 

Vacuum technology and mobility: a lifelong interest

Vacuum technology is not new in the mobility sector: it has been around for more than 60 years to support the creation and production of vehicle batteries.

It began as an industry-wide innovation and has been in use for decades. Despite this, it will continue to be utilized for many years to come, as it is still playing a huge role in the most recent e-mobility innovation.

Agilent, a supplier of vacuum and leak detection equipment and services, is dedicated to providing concrete solutions in the approach to sustainable mobility. It assists manufacturers all over the world in both the core, fundamental procedures of developing renewable battery technology and the secondary processes that are equally significant. Vacuum and leak detection technologies, for example, are important components in new industrial processes for vehicle electrification.

Agilent is significantly involved in the development of electric mobility in general, with a variety of equipment and brilliant solutions. Examine the most recent vacuum technology by yourself at https://www.agilent.com/en/product/vacuum-technologies.

What is the role of vacuum technology in the development of electric vehicles?

Vacuum is already used in various functional stages and processes associated with electric mobility.  From the electrolyte-filling stage of a lithium-ion battery (to ensure that the cell is evenly saturated with the electrolyte) to assisting in the shaping of the electric motor with constantly innovative generator technologies, to make them modular, lighter, more affordable, quieter, and more efficient. Agilent is involved in the development and production of a vast majority of electric vehicle components.

In addition to lithium-ion batteries, the most known and utilized rechargeable batteries, Agilent concentrates as well on the advancements in hydrogen fuel cells, one of the future trends for innovative technologies in electric vehicles.

What are lithium batteries?

Modern lithium-ion batteries are the favoured technology for electric vehicles right now. Unlike other batteries, lithium-ion batteries are among the most often used rechargeable batteries because they have a much higher energy density and a slow discharge rate, allowing them to maintain a charge for significantly longer.

They are innovative battery technologies that utilize lithium ions as a key component in the battery’s operation and electrochemistry.

Lithium-ion batteries, in addition to appearing in electric cars, can also be found in small portable electronics such as laptops and smartphones, and are frequently utilized in military and aerospace applications.

EV production technology

Vacuum Technology is driving electric mobility!

Vacuum is already used in various functional stages and processes associated with electric mobility. Let’s go deep together in the stages where vacuum is the dominant player.

1. Battery production: vacuum technology in more than half of the battery manufacture processes!

Agilent’s vacuum specialists assist lithium-ion battery manufacturers with their procedures and technological challenges in production processes, quality control, and safety measurements. As a result, they have been significantly involved in the development of electric mobility, with their vacuum tech currently accounting for more than half of the processes in battery creation.

Battery performance, longevity, and overall quality are all highly influenced by the quality of the manufacturing process. Agilent solutions and experience optimize resource usage and reduce process time while ensuring product quality goals are fulfilled.

2.  Battery Cooling

As batteries get more efficient and powerful, car companies are being pressed to develop new heat management systems. Cooling systems must keep battery temperatures between 20 and 40 degrees Celsius. Liquid coolers have been shown to be the most efficient approach for keeping the battery pack at the proper temperature range.

The biggest disadvantage of liquid coolers is the potential of a leak or spillage. Undetected leaks significantly reduce the battery’s service life and/or allow highly reactive electrolytes to escape. Water leakage in battery coolers is a severe problem that affects battery durability and battery pack safety. To ensure long battery life, the cell must be completely leak-proof.

To confirm leak-proofness, a leak test is performed using a vacuum leak detection instrument, which can detect even the slightest leak using helium as tracer gas and detecting it by means of an embedded mass spectrometer. Highly sensitive helium leak detection systems play an important role in the production of lithium batteries and bear a significant amount of responsibility in terms of safety.

3.  Heating, Ventilation, and Air Conditioning (HVAC) systems

There isn’t a heat-producing engine in an electric vehicle. Differently to low efficiency thermal engines, high-performance electric motors generate very little heat. The vehicle cabin temperature must be raised by other means.  So, how do electric vehicles generate heat?

Well, it needs to produce interior heat using — you got it — electricity. Often via one or more resistive heating elements. Early electrical automobiles in fact employed basic resistive heaters, while contemporary vehicles have heat pump systems that transport thermal energy from the outside into the interior.

These technological HVAC systems necessitate extensive vacuum and leak detection solutions in order to create strong and dependable components capable of successfully capturing and directing heat. Look at how the leak-proofness is tested here.

4. Electric motor

Electric vehicle manufacturers research innovative motor/generator technology to make them more modular and efficient, lighter, quieter and even cheaper than typical electric motors. Water is the principal enemy of electric and electronic parts, hence leak detection and humidity tightness are an absolute priority in all of them. Agilent helium leak detectors enable faster and more exact leak location and monitoring for completely sealed electric vehicle motors.

5.  Electric and electronic components

The operating range of an electric vehicle is not just determined by battery capacity. New materials and procedures are being applied to manage higher voltage, temperatures, and insulation difficulties in order to improve the efficiency of a car’s internal electrical distribution.

In propulsion-grade power electronics, inverters, connections, filters, busbars, and safety devices all play important roles.

Insulating or environmental coatings are required for all of these components. Agilent is proud to supply diffusion and turbomolecular pumps for innovative coating equipment. Browse the Agilent website to find the best turbopumps and turbomolecular pumps.

https://www.agilent.com/en/product/vacuum-technologies/turbo-pumps-controllers/turbo-pumps

6.    The latest fuel cell for e-mobility

Fuel cells are another zero-emission alternative to combustion engines and even to lithium batteries. This intriguing technology works with hydrogen gas: hydrogen is employed in fuel cells to generate power through a chemical process instead of combustion, with just water and heat as byproducts. Hydrogen reacts electrochemically in fuel cells to produce electricity and power the car. Brake energy is also absorbed and stored in a battery to offer extra power during short acceleration occurrences.

To prevent leaks that could impair performance and safety, fuel cell generators, gas tanks, and distribution lines must be hermetically sealed and leak-checked by means of specific leak detectors. Vacuum technology and processes also play a key role here.

electric-mobility-vacuum-technology

Future Trends for Green  Technology in Vehicles

According to Bloomberg New Energy Finance, by 2040, more than half of all built and sold passenger cars will be electric. As public concern about climate change grows, governments throughout the world are stepping up efforts to reduce carbon emissions. Agilent is committed to supporting this change by providing the finest, more innovative and performing vacuum technology equipment and machinery.

The Top 5 Benefits of Electric Vehicles

These days, it seems like everyone is trying to be more environmentally conscious. One of the best ways to do that is to switch to an eco-friendly car. Electric vehicles (EVs) have many advantages over traditional gasoline-powered cars. Here are the top five benefits of electric vehicles:

1. Electric vehicles are better for the environment

Unlike gasoline-powered cars, electric vehicles produce no emissions, which means they have a significantly lower impact on air quality. This is why they have become so popular among people who want to reduce their ecological footprint.

advantages of electric cars

In addition, electric vehicles are much more efficient than gasoline-powered cars, meaning they require less energy to operate. This is important not only for reducing greenhouse gas emissions but also for saving energy resources. Since they don’t use gasoline, electric vehicles also don’t produce any of the harmful pollutants that contribute to smog and climate change.

While the manufacturing process for electric vehicles is more carbon-intensive, the overall life cycle emissions of electric vehicles are significantly lower than gasoline-powered cars.

2. EVs can save you money on gas

Electric vehicle charging can save significant amounts of money for EV customers. Depending on the price of electricity and gas in your area, it can be substantially cheaper to operate an EV than a traditional gas-powered car. For example, charging an EV overnight with off-peak electricity rates can cost as little as $2.50 for a full charge, while just one gallon of gas costs twice that much. Read this article to know about the different EV charging options.

In addition, EVs are more efficient than gas-powered cars, so you’ll get more miles out of a charge than a tank of gas. As a result, you’ll save money on fuel costs over the life of your EV. With advances in battery technology, EVs are only getting cheaper to operate. If you’re looking to save money on transportation costs, an electric vehicle may be the way to go.

benefits of switching to EVs

3. Overall performance and efficiency are better in electric vehicles

EVs are much more efficient than their gas counterparts. According to the U.S. Department of Energy, EVs convert about 77% of the energy in their batteries to power the car, while gasoline cars only convert about 20% of the energy in their fuel to power.

This means that EVs can travel further on the same amount of energy as gasoline cars. In addition, EVs have much lower emissions than gasoline cars. Gasoline cars emit pollutants such as carbon dioxide and nitrogen oxide, which contribute to climate change and air pollution. EVs, on the other hand, emit no pollutants when they are driven. EVs are also becoming increasingly affordable as battery technology improves and manufacturing costs decline.

4. EVs can reduce noise pollution

Traditional cars have combustion engines that rely on a series of explosions to power the vehicle. These explosions are responsible for the characteristic sound of a car engine, and they also produce a significant amount of noise pollution.

On the other hand, electric vehicles rely on electric motors to power the wheels. These motors are much quieter than combustion engines, and they produce very little noise pollution. In addition, EVs typically have better sound insulation than traditional cars, further reducing the amount of noise that enters the cabin.

5. Electric vehicles are low-maintenance

Another advantage of EVs is that they require less maintenance than traditional gasoline cars. For example, electric vehicles don’t need oil changes, and their brakes last longer because a regenerative braking system slows the car down by converting energy into electricity, which can be used to recharge the battery.

electric cars in usa

In addition, electric motors are simpler than combustion engines, so they have fewer moving parts that can break down. As a result, EVs tend to be more reliable than gasoline cars and require less maintenance over the course of their lifetimes.

Endnote

If you’re considering making the switch to an electric vehicle, there are plenty of good reasons to do so. From saving money on fuel costs to reducing emissions, EVs offer a number of benefits over traditional gasoline cars. And with advances in battery technology, EVs are only getting more affordable and efficient.

Recommended Reading: How to get Auto Title Loans under 24 hours

The Role of Biofuel in Low-Carbon Transport

Biofuels offer a solution to climate change that shouldn’t go ignored. In fact, the amount of biofuel used in low-carbon transport has to increase by a factor of seven in order to prevent climate catastrophe, a recent report on 1.5C warming by the Intergovernmental Panel on Climate Change (IPCC) states. The report also places biofuels in the same league of importance as electric vehicles when it comes to replacing unsustainable fossil fuels by 2050.

Biofuels are increasingly being used to power vehicles around the world

Electric cars: benefits and limitations

A typical gas-powered car emits roughly one pound of carbon dioxide per mile traveled. On the other hand, electric cars release zero tailpipe emissions. However, light-duty passenger vehicles represent only 50% of the energy demand in the transportation sector worldwide.

Heavy road vehicles and air, sea, and rail transport make up the rest — electrification of this remaining 50% would be an expensive task. Additionally, demand for transport is expected to increase in the future. Vehicles will need to use even less energy by 2050 to ensure the global transport sector’s total energy demand rises no higher than current levels (100 exajoules).

Biofuel: a necessary solution

Several sustainable, carbon-neutral synthetic fuels are currently in developmental and demonstration stages. For example, synfuels can be produced from carbon dioxide and water via low-carbon electricity. However, this also requires cheap and low-carbon power systems (similar to the ones already running in Quebec and Iceland).

Biodiesel

In 2013, Audi was the first automaker to establish an electrofuel plant — it cost €20M and produces 3.2 MW of synthetic methane from 6 MW of electricity. Additionally, synthetic biofuels can be made from woody residues and crop wastes, which has a lighter environmental footprint than biofuels made from agricultural crops.

Examples of eco-friendly cars

While biofuels continue to be developed, there are plenty of electric cars on the market right now — all of which can help us reduce our individual carbon footprints. For example, the Hyundai Kona Electric is an impressive electric car. This vehicle offers sleek exterior styling, plenty of modern tech features, and has an impressive range of 258 miles in between charges. The price starts at $36,950. Alternatively, the Nissan LEAF is another eco-friendly model priced from $29,990. It’s powered by an 80kW electric motor and runs for 100 miles per charge.

Electric cars and synthetic biofuels are both valuable technological changes. Focusing on developing both of these sustainable options should take utmost priority in the fight against climate change.

Why Stop/Start Technology Saves Fuel?

If you have recently purchased a new vehicle that features stop/start technology, you might be wondering how exactly it can save you fuel?

In the past, many people were under the impression that switching your car off and starting it again while at a red light would use more fuel than letting it idle. This is actually not the case, and stop/start technology can make this process easier for you.

Read on to figure out just how this process actually works and why it can save you a lot of money on fuel.

Why Stop/Start Technology Saves Fuel

How much fuel does stop/start technology actually save you?

Many new vehicles like the Mazda CX-5 are fitted with stop/start technology, so there is clearly a reason for it; otherwise, manufacturers would not fit it into their newest vehicles.

Stop/start technology can actually save you a lot more fuel than you think if you regularly drive in the city or in heavy traffic. A recent study noted that using start/stop technology in heavy traffic can improve the fuel economy of your vehicle by up to 8 per cent.

While this may not sound like a lot on paper, these numbers begin to add up over time, which means you could save yourself a lot of money on fuel in the long run if you use a car with this feature.

How does stop/start technology work?

Automatic stop/start technology works in a very simple manner. When you come to a complete stop in your vehicle, the engine automatically shuts off to stop your vehicle from using any fuel and letting out harmful emissions.

This technology was previously only implemented in extremely fuel-efficient cars, such as hybrids, but has since become standard fare, as stop/start technology has made its way into nearly every new vehicle on the market due to how effective it can be at saving fuel.

How is stop/start different from me switching my car off manually?

In practice, you may think that you might be able to achieve the same effect in a vehicle that is not fitted with stop/start technology by switching it on and off manually, but, unfortunately, this is not the case.

If you don’t have this technology, it is not a good idea to switch your car on and off when you are in heavy traffic or driving in the city. This could possibly damage your starter motor and leave you with a hefty repair bill!

What changes do manufacturers make to vehicles to allow this technology to work efficiently?

Vehicles fitted with stop/start technology have sturdier starter motors in order to deal with being used more frequently. These vehicles are also generally fitted with crankshafts and rod bearings covered in a special coating in order for them to be able to handle more frequent restarts.

Electric pumps are needed to circulate coolant and keep a consistent level of hydraulic pressure in the transmission as the engine will be off. This will help to cool the engine despite it being off at the time.

Vehicles with stop/start technology also have to have their electrical systems laid out differently to vehicles without it, as; otherwise, your radio, air-conditioning system, and lights would switch off every time your car’s engine did!

Will stop/start technology have a long-term impact on a car’s engine?

While you may think that frequently turning your engine on and off can damage it or shorten its life span, this is not actually the case.

There are many situations in a traffic jam where you may come to a stop for a second before having to move forward again unexpectedly. While this would normally affect a vehicle using stop/start technology, many manufacturers have developed a workaround.

Many manufacturers fit their vehicles with a tandem solenoid battery, which allows this process to happen seamlessly without damaging your car.

This works by one of the solenoids engaging the starter motor, so it can equal the speed of your engine and avoid damaging it, while the other engages the gear that the driver selects.

When is stop/start technology most effective?

While stop/start technology has already been proven to save motorists fuel when they are driving in the city or in heavy traffic situations, it can be less effective in certain conditions.

If a motorist with this technology drives with their air-conditioning on in their car, it can reduce the amount of fuel that stop/start technology can save you quite substantially.

Tesla Model X: The Electrical Car That Will Change The World

Cars have changed a tremendous amount in recent years and are providing driving experiences that are unlike anything anyone has ever imagined.

Electric cars are now available and what an exciting time for the automotive industry. Lease Loco has your curiosity covered with these vehicles.

You can get an electric car lease just by the click of a button on the Lease Loco comparison site.

Reasons to lease an electric car

Reasons to lease an electric car

The electrical car already sounds otherworldly and because they are a quite recent invention they are extremely expensive to own. Particularly the Tesla Model X.

What better way to feed your curiosity than by leasing an electrical car. The biggest and most important factor here is that you are not obliged to own the vehicle.

Leasing allows you to have the drive the vehicle for a short period of time. Once the lease period is over you return the car and that is that. Leasing is the perfect opportunity to test drive the car. Test its features, its comfortability and perhaps at the end of the period you will decide on whether it is worth owning or not.

How does Tesla Model X work?

The simple answer to this is that instead of using an internal combustion engine like most cars, the Tesla X uses an electrical motor.

This means that it does not run on petrol but instead electricity. The Tesla X has a built-in battery that needs to be charged.

It has the latest ion-battery technology that is connected to either a single-electric motor or a double-electric motor that either power the rear wheels or all four of the alloy wheels.

The brakes of the Tesla regain energy as the car slows which ultimately charges the battery while driving. These brakes also give power to all of the mechanical systems of Tesla.

Tesla does not have multiple gears in the transmission. This is because the electrical motor already offers maximum torque at the start which means it only needs one gear to get acceleration and top speed.

The batteries are made to last very much longer than an internal combustion engine and are practically maintenance-free. They charge quite quickly and batteries in Australia should have a warranty for up to eight years.

What you need to know about the Tesla X

The Tesla X is described as quick and high-tech. It is an expensive but interesting and very unique vehicle.

It comes with a double electric motor which gives off 670 horsepower as well as has an all-wheel drive. It has an upgraded version called the Plaid with a triple electrical motor that gives off 1 020 horsepower. There will be a mega motor version that will be released later in 2022.

It is spacious and can the second row can even be ordered with captain chairs. It of course boasts cool infotainment that has a green screen across the dashboard for all of its features. It also has a very interesting rectangular-shaped steering wheel.

It has a range of up to 363 to 351 miles per charge. It costs around $116 440 in Australia which is quite expensive for a vehicle.

The Tesla X comes with two electrical motors, situated at the front of the axle and one at the rear. This enables all-wheel drive.

The Tesla X can reach an impressive speed and can go from zero to 60 mph in 3.8 seconds.

Charging and its battery life

The Tesla X battery can cover a range of 351 miles. Charging does not take long, with charges available throughout Australia. You are even able to charge it at home with a 240V or 120V connection, which may be slower but they will get the job done. You would have to purchase these at home chargers from Tesla at an additional cost.

Driving Assist

The most exciting feature about Tesla is that it has autopilot. It has a semi-autonomous driving mode which allows you to be on the road, driving with no hands on the steering wheel or feet on the pedals.

It uses multiple cameras, multiple sensors and radars to stay on course as well as to detect objects, people and other vehicles.

It has a touchscreen infotainment system that takes over the dashboard and is equipped to control almost all of the Tesla X’s features and settings.

How to Protect Your New Tesla?

If you’re lucky enough to have just purchased a Tesla Model X, you’ll want to take steps to protect your investment. The best way to do this is with a Tesla Model X Cover. A car cover will help to keep your Tesla clean and free of scratches, while also protecting it from the elements. In addition, a Tesla Model X car cover can also help to deter thieves, as it makes it more difficult for them to access the vehicle. With so much money invested in your Tesla, it’s important to take every precaution to protect it.

Conclusion

Leasing a vehicle like the Tesla X is a good way to test out all of its fun gadgets and cool features. Visit the Lease Loco site for deals on an electric car lease.

4 Ways to Dispose of Your Car

When your older car is on its last legs, it may seem like an eyesore sitting uselessly in your driveway. If it’s too dangerous to drive or not running at all, you’re probably looking for the most efficient way to dispose of it.

Selling the car to a new driver may require repairs or maintenance to make it worth it. Luckily for you, this isn’t the only option available.

Read ahead for 4 alternative ways to dispose of your car without the hassle of selling it yourself.

Ways to Dispose of Your Car

1. Donation

An efficient means of disposal that will also directly benefit someone in need is a donation. Several different charities accept old cars. If it doesn’t run, many are more than happy to tow it from your residence for you.

Maintenance isn’t required for this option, but if you’re donating to Goodwill or a Veteran’s donation program, it’s good to at the very least clean it before it’s given away.

2. Junk Removal Service

Another efficient way to get rid of old cars is vehicle parts recycling or a junk removal service. You’ve likely seen posted ads for junk removal services on telephone poles, but you should research the sources before calling these numbers.

A proper junk removal service will tow your car for free and pay you cash, anywhere from $250-$20,000! While donations can be written off as a tax deduction, immediate cash payments can be more desirable.

Determine first whether your scrap vehicle is still considered an intact car or is damaged in a way that a removal service would consider junk parts. Some companies will tow a badly damaged vehicle but will not purchase scrap parts by themselves.

3. Recycling

Looking for the greenest method of disposal? Consider recycling your broken-down car, which yields many of the same benefits as donating, including free towing/removal and financial benefits.

For many drivers, cars hold a sentimental place in their hearts, and when your vehicle has reached the end of its life, it may seem like a waste to leave it in a scrapyard where it’ll sit for years and years.

Recycling is a great benefit to the planet, and you can rest easy knowing your old vehicle is disposed of properly. If your vehicle is still in good enough condition to drive, some companies may suggest you go the donation route.

old car disposal

4. Trade-In

The most common way to get rid of a paid-off vehicle is a trade-in. For those with functioning cars looking for credit going towards their next vehicle purchase or leasing, trade-ins can be the most beneficial.

Out of everything disposal method listed here, this one may require a smaller bit of research to get the most bang for your buck.

While a junk car can be hauled off regardless of condition, you can certainly haggle for the value of your trade-in vehicle, especially if you bought it during the pandemic.

Car Disposal that Benefits You

An unwanted car may seem like a heavy burden at first, but there are several common methods that move your vehicle from your residence and cash into your pocket. To find the best method of disposal, assess your car’s condition and your own needs.

Would a tax write-off benefit you more, or is a one-off cash payment a more immediate convenience? Is your car able to drive safely, or is it a hunk of scraps that’s simply an eyesore on your property?

Car disposal doesn’t have to be a chore without benefit; consult these 4 popular procedures to find the right one for you!

What College You Have to Graduate from to Apply for Tesla Engineering Team?

Tesla is recording exponential growth lately in its production and sales units. Currently, the company has advertised for various vacant positions. By studying for a degree in engineering, you get good career opportunities in the world.

You stand better chances to join the major automotive companies in the world. Different universities offer engineering majors at different levels. They offer majors like mechanical, computer science, and electrical.

Below is the list of the best colleges to graduate from to apply for Tesla and other top automotive companies

best colleges to join for tesla engineering team

1. Harvey Mudd College

Students who want to study engineering will find Harvey Mudd College a good choice. The college is located in Claremont, California. It is a not-for-profit institution with a smaller student population. The school ranks number 1 out of 2,576 schools which makes it a top choice. Students from the college are marketable globally. They get jobs in some of the best companies around the world.

Engineering programs are course-intensive programs. They require students to commit a lot of their time to study. Students have to develop critical thinking skills to succeed in their studies. They also need to commit a lot of their time to study and critical thinking. You will spend a lot of time in practical and theoretical training too. These skills will help develop experience in paper writing. Use the Fixgerald plagiarism checker to help you write an original paper. It is a useful tool for students in college and other institutions of higher learning. By using this plagiarism checker, you will be certain to submit an original paper. You will also earn better scores and stand out in the classroom.

2. Massachusetts Institute of Technology

Massachusetts Institute of Technology focuses on modern technology and science. The school is a private grant-based institution located in Cambridge, Massachusetts. It offers majors in mechanical engineering, computer science, aeronautical engineering, physics, and mathematics. The school trains students to develop various soft skills. They learn analytical thinking, problem-solving skills, and big new ideas.

3. Harvard University

The faculty of arts and sciences at Harvard University offers students different programs. The faculty offers both undergraduate and graduate degrees in applied sciences and engineering. There are several majors the students can choose from. They can choose electrical, applied math, and bioengineering. They also offer applied computation, applied physics, and computer science. The school ranks number 1 as the best school in Massachusetts.

4. Technische Universitat Munchen, Germany

Technische Universitat Munchen offers the most marketable degrees in the world. Starting in 1868, the university ranks as a top university in the world for many years. The university trains students in research-oriented courses. They help them get career opportunities globally.

Students can register for a wide range of engineering degree programs. The engineering majors offered by the institution are mechanical and mobility systems engineering. The other majors are energy and process engineering and materials engineering.

5. The University of Melbourne, Australia

The University of Melbourne’s faculty of engineering and IT trains future innovators. The university prepares students to face the real-life challenges of engineering. The training helps them build a sustainable future. Students can major in transport engineering, infrastructure design, and water resource management. The institution ranks number 1 in Australia.

6. Huazhong University of Science and Technology, China

Huazhong University of Science and Technology is a government-sponsored school. It focuses more on research and training. Located in Wuhan, Hubei province, the school ranks as a top school in China. Its majors include electrical and masters in mechanical. They also have majors in new energy science and a master in civil.

how to join Tesla engineering team

7. Imperial College London, UK

Imperial College London, UK, offers majors in design, electrical and mechanical engineering. Students can also enroll in materials and earth science engineering. The school ranks number 8 as the best college globally. Its school of engineering ranks 5th best school of engineering in the world.

8. The University of Waterloo

The University of Waterloo ranks number 38 in the world. It is the best engineering and technology school in the world according to the ranking. It is the most innovative school in Canada in 2022 by Maclean. It ranks number 1 best mechanical engineering school in Canada. The university majors in electrical, civil, automotive, and computers.

Conclusion

Majoring in engineering gives you the advantage of working with some of the best companies in the world. There are different universities in the world that you can join. You can major in mechanical and electrical engineering. Other majors are physics, mathematical, and environmental engineering. Most majors take between four and five years in most universities.

5 Creative Ways to Repurpose Used Auto Parts

There comes a time in every automobile’s life where it’s parts can serve a different purpose, whether it’s recycling, or reusing them in a way that can prove useful to you. It’s not wrong to take your car to the junkyard and salvage what you can for some extra money, but it’s also great to handle it creatively. Take a look below at how you can do just that.

Why Recycling is Great

If you don’t want to go through the hassle of taking your car to the junkyard and waiting for the possibility of getting those parts sold or not. You can actually do something that can be both good for the environment and helpful to you.

Most of these parts can be removed and attached to new and better things to give it a different purpose. If you are looking for genuine Honda spares, check out honda parts online canada.

A new life for auto parts is suitable for people who are nostalgic and just can’t say goodbye to their old car, now it can live on with you. You just got to think about what you can use them for.

Here are 5 creative ways to repurpose used auto parts:

1. Using Coils as Paper Holders

Do you know those swirly metal coils in your car? You can use those for something very useful, as there is a way where you can take advantage of the spaces between each ring of those coil springs.

You can restore the metal and deal with any rust by removing it entirely and making it clean and smooth. Then you have yourself your very own car-themed paper holder; you can use it for your mail, work files, and folders. Because it’s metal or steel, and old ones at that, it’s better to stick to papers only and not use it for plates, for example.

2. New Life For Your Catalytic Converter

Every car has this part that serves as an exhaust emission control device; it basically catalyzes a redox reaction that helps decrease the toxic gases and pollutants from the car’s combustion engine. But when it’s depreciated and not working; it’s time to research and find the right guide of scrap catalytic converters value determination, and you might actually make some money out of it.

You can take it to a reputable establishment that specializes in recycling catalytic converters and get it de-canned to reuse its platinum material for making things like precious jewelry, dental work, fountain pens, forensic staining, and decoration purposes. It is really beneficial and you can get high returns from de-canning them that way.

3. New Purpose For Door and Window Handles

The handles for both car doors and windows are very unique and their style can be integrated into your furniture at home. You can use them as drawer and cabinet pull and they can also fit the redecoration plans of your home. It’s a perfect idea for car enthusiasts, rooms for little boys, or your garage drawers and cabinets. It can be easily removed from the pull car door and attached to the holes without a problem.

4. Make a Table Out of a Car Ramp

Another way where you can use old car parts for furniture is to take the old car ramps and position it in ways where they can function as an entryway or coffee table. It’s actually very chic and can be beautifully matched with the rest of your furniture after you clean and paint it, giving it that rustic look that you always wanted in your home. Your guests would never believe that this cool table was an old car part, and it gives you a nice conversation or ice-breaker to talk about it during visits.

5. Get Yourself a Car Themed Squeegee

The old car’s windshield wipers can have a purpose again to do what they do best; you can remove it from your car, clean it up nice, and then attach them to a long handle or broomstick. They might prove very handy when it’s spring cleaning season, and it’s very useful to reach those hard areas in the ceiling or high windows. You can use this modified squeegee to clean and dust off anything in your home. So your old car part can live on making your life easier when you clean.

There are so many ways for you to make use of the old used car parts that you own; just because its life is over, it doesn’t mean that there aren’t different ways to give it life again. It all depends on your creativity and what you want; the possibilities are limitless when it comes to recycling these parts.