Top Benefits of Choosing a Myers Pump for Well Water Applications

19 August 2026

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Top Benefits of Choosing a Myers Pump for Well Water Applications

A well pump rarely fails at a convenient time. Water pressure drops during a shower, the washing machine stalls mid-cycle, the toilet won’t refill, and within an hour the whole house is effectively shut down. In rural homes, that’s not an inconvenience—it’s a full-blown service emergency. A private well system has no municipal backup, no hydrant at the curb, and no room for guesswork when it comes to pump quality.

A few months back, I spoke with Mateo Arriaga, 41, a feed sales rep outside Tucumcari, New Mexico, and his wife Lena Arriaga, 38, a rural health nurse. They live on 19 acres with their kids, Sofia (11) and Nico (7), and rely on a 212-foot private well for the house, a small garden, and stock tanks for two horses and a handful of goats. Their previous Red Lion 1 HP unit had been struggling with fine sand, short cycling, and erratic pressure before the housing finally gave up during a weekend cold snap. No water in the house, no dependable livestock supply, and no patience left for another short-lived replacement.

That situation is exactly why this list matters. A properly chosen Myers pump is not just another component in a plumbing system—it’s the heart of a dependable water supply. In the sections below, I’ll walk through the biggest advantages of Myers water well pumps: tougher materials, smarter motor design, better sand resistance, easier configuration choices, more accurate sizing options, field-serviceable construction, and warranty value that protects your long-term investment. If you’re comparing brands, replacing a failed unit, or trying to avoid making an expensive mistake, this is where to start.
#1. Stainless Steel Construction - 300 Series Corrosion Resistance for Deep Well Reliability and Long Service Life
When a well pump lives underwater year-round, material quality becomes the difference between a dependable system and a premature pull.

The strongest argument for a Myers well pump starts with its build. The Predator Plus Series uses 300 series stainless steel in critical components including the shell, shaft, discharge bowl, coupling, wear ring, and suction screen. That matters in real-world wells where mineral content, mild acidity, and constant immersion slowly attack lesser materials. Stainless construction resists rust scale, surface degradation, and the kind of corrosion that eventually robs flow and shortens pump life. In my experience, pumps built this way give homeowners a much better shot at the advertised 8-15 year lifespan, and in stable water conditions with sensible maintenance, much longer is possible.

I’ve seen plenty of corrosion-related failures in wells that looked “fine” on paper. A water test may not scream aggressive chemistry, but even moderate iron, dissolved solids, or pH swings can beat up inferior components over time. That’s why I put so much weight on robust metallurgy, not brochure promises.

Compared side by side, this is where Goulds Pumps often gives up ground in tough water. Some Goulds models still rely on more corrosion-vulnerable component choices, and once rust starts building, efficiency slips, service becomes harder, and lifespan gets cut short. Red Lion units with more lightweight housings may hit a lower upfront number, but I’ve watched pressure cycling and thermal expansion punish those designs far sooner than a stainless-bodied submersible well pump from Myers. In a rural property where water is mission critical, the extra material quality is worth every single penny.

Mateo Arriaga learned that lesson the expensive way. Fine sand was only part of the issue in his well; the old unit’s housing and internals weren’t built for years of constant pressure fluctuations. Once the Arriaga family moved to a Myers stainless assembly, the whole conversation changed from “How soon will this one fail?” to “How do we keep this one running for the long haul?”
Why Stainless Matters Below the Waterline
A pump installed 180 or 220 feet down isn’t easy to inspect, so hidden deterioration becomes a serious concern. Corrosion resistant materials protect both structural integrity and hydraulic performance. Once rust scale forms on internal surfaces, flow paths become rougher, friction rises, and the motor has to work harder to achieve the same output. Stainless helps maintain smoother passages and more stable performance over time.

For homeowners on a residential well water system, that translates to fewer mystery pressure drops, fewer service calls, and less risk of a sudden failure during peak demand. I recommend stainless any time the well has variable chemistry, high mineral content, or a history of short pump life.
Rick’s Recommendation on Harsh Water Conditions
If your well report shows iron, manganese, slightly acidic pH, or high dissolved solids, don’t shop purely by horsepower. Focus on material survivability. A cheap pump with marginal internals can become a yearly headache. A properly sized Myers water pump built with stainless components is the better investment because it protects both performance and labor costs. Pulling a failed pump twice is always more expensive than buying the right one once.
#2. Pentek XE Motor Performance - High-Thrust Design, Thermal Protection, and Better Efficiency at Daily Household Demand
A pump’s wet end gets plenty of attention, but the motor is where long-term reliability is won or lost.

Myers pairs the hydraulic section with the Pentek XE motor, and that’s a major reason these systems perform so well in deep residential wells. This is a continuous duty motor designed for repeated cycles, sustained load, and proper thrust handling in multi-stage applications. For homeowners, the practical benefit is simple: steadier starts, cooler operation, and less stress during years of everyday demand from showers, laundry, irrigation taps, and pressure tank refill cycles.

The Pentek XE motor also includes thermal overload protection and lightning protection, both of which matter more than many buyers realize. In rural areas, voltage fluctuations and storm-related electrical events are common pump killers. Protection features won’t solve bad wiring or direct strike damage every time, but they absolutely improve survivability in marginal power environments.

The Arriaga family’s 212-foot well needed a pump that could handle sustained household use plus outside demand without overheating during long draw periods. A 1 HP or 1.5 HP Myers setup with the right GPM rating gave them a far better match than the undersupported unit they were replacing.
Hydraulic Efficiency and Real Electric Bill Savings
Myers units are known for reaching 80%+ hydraulic efficiency when operated near the best efficiency point (BEP). That’s myers sewage pump https://www.plumbingsupplyandmore.com/convertible-shallow-well-jet-pumps-1-2-hp.html not just spec-sheet trivia. A more efficient pump moves water with less wasted energy, which reduces current draw and unnecessary heat. Over a year of daily operation, that can cut operating costs meaningfully, especially in homes with larger families or outdoor demand.

Efficiency also reduces wear indirectly. Lower wasted energy means less stress, lower temperatures, and more stable operation. That’s one reason I tell customers not to chase only the cheapest replacement. A better pump often wins back part of the cost in power savings and fewer failures.
Motor Protection Features Contractors Actually Appreciate
Professional installers like motors that don’t come back as callbacks. Built-in protection helps reduce nuisance failures from brief overload conditions or unstable rural power. On a 230V setup with correct wire sizing, sound splices, and a properly set pressure switch, the Pentek platform is one of the better choices for homes that depend entirely on a private well. It’s the kind of motor design that keeps service trucks off your driveway.
#3. Teflon-Impregnated Staging - Self-Lubricating Impellers That Handle Sand and Grit Better Than Most Pumps
Sand is one of the quietest well pump killers I deal with, and plenty of homeowners don’t know it’s happening until flow falls off.

One of the standout advantages in Myers water well pumps is the use of Teflon-impregnated staging with self-lubricating impellers and engineered composite impellers. That combination gives the pump a real edge in wells with light grit, fine sediment, or occasional sand intrusion. Instead of grinding themselves apart as abrasive particles Myers submersible reviews https://www.plumbingsupplyandmore.com/1-2-hp-submersible-well-pump-9-stages-for-deep-wells.html pass through, these components are designed to resist wear and keep moving water with less friction damage.

Abrasive wear shows up slowly at first. You may notice reduced pressure at fixtures, longer fill times at the tank, or a pump that runs longer to recover after demand. Under the hood, impeller edges and stage surfaces are getting chewed up. Myers addresses that problem with materials that are inherently better suited to that environment.

For Mateo and Lena Arriaga, that feature wasn’t optional. Their well produced enough fine sand to shorten the life of the old pump and create recurring performance issues. Moving to a Myers design built to better tolerate abrasion gave them a much more realistic long-term solution.
How Multi-Stage Design Builds Pressure
A multi-stage pump increases pressure by lifting water through a sequence of impellers and diffusers rather than relying on a single stage to do all the work. That approach is ideal for deeper wells because it spreads the workload and allows better pressure performance at depth. In Myers designs, the stage materials are not an afterthought—they’re part of the durability package.

When a pump must deliver solid pressure from 180, 220, or 300 feet down, stage quality matters just as much as horsepower. Poorly built stages wear unevenly, lose efficiency, and create erratic pressure. Myers does a better job of keeping those internals stable in challenging wells.
Why Grit Resistance Matters in the Field
A light amount of sand may not seem serious, but over thousands of cycles it acts like liquid sandpaper. Wells in parts of New Mexico, West Texas, and the High Plains see this all the time. If your old pump has failed from impeller wear, noisy operation, or declining output, grit resistance should be near the top of your buying criteria. A water pump Myers contractors trust in sandy conditions is usually the one that saves the second service call.
#4. Flexible 2-Wire and 3-Wire Options - Easier Matching for Well Depth, Controls, and Installation Budget
The best pump for your property isn’t just about depth; it’s about choosing a configuration that fits your system without adding unnecessary complexity.

Myers offers both 2-wire configuration and 3-wire configuration options, giving contractors and homeowners more flexibility when matching pump design to well conditions and control preferences. For many residential wells, a 2-wire well pump simplifies installation by eliminating the external control box. Fewer external components can mean lower installation cost, less wall clutter, and fewer points of failure in utility spaces where dust, heat, and insects cause trouble over time.

A 3-wire well pump, on the other hand, can still make sense in certain deeper or service-oriented applications where accessible start components are preferred. What I appreciate is that Myers gives you the choice instead of forcing a one-size-fits-all solution.

Here’s where Myers separates itself from Franklin Electric and Grundfos in a practical way. Franklin systems often tie contractors into more proprietary service paths, and some homeowners wind up needing specific parts channels or brand-specific support just to address otherwise straightforward issues. Grundfos can be an excellent pump in the right setting, but many buyers end up in more complex configurations than they actually need, especially when a simpler 2-wire Myers would do the job cleanly. Myers’ field serviceable design and broader configuration flexibility make replacement, troubleshooting, and future maintenance more straightforward for qualified installers. For rural homeowners balancing reliability, parts access, and install cost, that simplicity is worth every single penny.

Lena Arriaga wanted one thing after the last failure: fewer system complications. The Myers setup they chose reduced unnecessary external components while still delivering the pressure and recovery rate their home needed.
When a 2-Wire Setup Makes Sense
A 2-wire well pump is often the best fit for straightforward residential systems with moderate depth and a homeowner who values simplicity. Fewer components above ground means faster installation and fewer troubleshooting variables. For emergency replacements, that can shave time off the job and reduce material costs by a few hundred dollars depending on the controls being replaced.

In my experience, 2-wire systems are especially attractive when the utility room layout is tight or when the last failure involved an external control issue rather than the wet end itself.
When 3-Wire Still Has a Place
Not every well should default to 2-wire. Some deeper systems or contractor preferences still justify a 3-wire configuration. The advantage is service access to start components without pulling the pump. On the right property, that matters. The key is proper sizing, correct application, and avoiding the mistake of assuming one wiring style is universally superior. Myers gives you workable options on both sides.
#5. Accurate Sizing Across HP and GPM Ranges - Better Pump Curve Matching for Homes, Small Acreage, and Light Livestock Use
Most well pump disappointments start with bad sizing, not bad branding.

Myers offers practical choices across 1/2 HP, 3/4 HP, 1 HP, 1.5 HP, and 2 HP ratings, along with flow ranges from roughly 7-8 GPM into the 20+ GPM category depending on model and staging. That range allows a contractor to match the actual pump curve, TDH (total dynamic head), and pressure demands of the property instead of oversizing or undersizing. Oversized pumps short cycle, punish the pressure tank, and create harsh starts. Undersized pumps run too long, struggle at peak demand, and leave homeowners disappointed.

The Arriaga property is a perfect example. Their well depth, pressure needs, and outside water use called for a pump selected around actual recovery and lift conditions—not a guess based on the old nameplate. Once the system was sized correctly, pressure stabilized and run times became more predictable.
How to Size by Depth and Demand
Sizing starts with more than static well depth. You need pumping level, vertical lift to the pressure tank, desired pressure range, friction loss through pipe, and household demand. A family of four often needs roughly 8-12 GPM for normal residential use, but outside hydrants, irrigation, or livestock can push demand higher. That’s why I always look at real use patterns instead of assuming every rural home can live on the same pump.

A deep well pump for 200+ feet may need multiple stages and more motor support even if the daily water volume isn’t massive. Pressure and volume have to be balanced together.
Rick’s Sizing Rule for Rural Homes
Here’s the simple version: buy the pump that fits your drawdown, pressure target, and flow demand at its efficient operating point. Don’t buy based on “bigger must be better.” A correctly sized myers well pump will outwork an oversized bargain unit because it runs where it was meant to run. That’s the real secret behind longevity.
#6. Field-Serviceable Threaded Assembly - Faster Repairs, Less Downtime, and Better Long-Term Ownership Value
A pump that can be repaired intelligently in the field gives owners and contractors a major advantage over sealed, replace-it-all designs.

One feature seasoned installers immediately appreciate in a Myers pump is the threaded assembly design. When service is needed, qualified pros can address components more practically instead of treating the whole unit like a disposable cartridge. That saves time, reduces waste, and can turn a major replacement event into a more focused repair decision. On remote properties, that matters because every extra day without water means hauling water, rescheduling work, and aggravating the whole household.

This is also where Myers has a meaningful edge over certain premium and budget competitors alike. Franklin Electric has strong brand recognition, but many contractors will tell you that some service pathways can be more proprietary than homeowners expect. On the lower-cost side, Red Lion units often make less financial sense to repair once internal wear or housing issues show up. Myers lands in the sweet spot: durable enough to justify ownership, serviceable enough to support it, and backed by Pentair engineering. For a rural home or small acreage operation, that combination cuts lifetime ownership costs in a way spec sheets don’t always show. Fewer full replacements, fewer emergency calls, and fewer “start over from scratch” decisions make it worth every single penny.

Mateo Arriaga told me the serviceability piece mattered almost as much as pressure. After one complete pull-and-replace cycle too many, he wanted a pump platform his installer wouldn’t dismiss as throwaway equipment.
Why Serviceability Changes the Cost Equation
Pump ownership isn’t just the purchase price. It includes labor to pull the pump, diagnostic time, parts, lost water service, and collateral stress on tanks and controls. A field serviceable design improves the odds that a repair will be practical when the issue is localized. That doesn’t guarantee every failure will be minor, but it does give you better options.

For contractors, serviceable equipment also means they can support the customer faster and more confidently. For homeowners, that often translates to lower total bills over the life of the system.
Less Downtime for Emergency Buyers
Emergency replacement buyers care about one thing first: water today. But the smart ones also think about the next emergency. Choosing a repair-friendly pump now lowers the chance that the next issue becomes another full-system crisis. That’s exactly why PSAM keeps emphasizing durable, service-minded models instead of throwaway pump lines.
#7. Strong Warranty, U.S. Manufacturing, and Proven Brand Backing - Why Myers Delivers Better Long-Term Confidence
A well pump should come with enough confidence behind it that you can install it once and stop worrying about it.

Myers stands out with a 3-year warranty, strong factory support, and the benefit of being part of Pentair while still maintaining the rugged reputation contractors expect. Add in Made in USA quality and common certifications like NSF certified, UL listed, and CSA certified, and you’re looking at a product line built for serious residential water service—not just a price-point sale.

Warranty length matters because it tells you what the manufacturer thinks of its own product. In the well pump world, a lot of competing units look fine until you read the fine print and realize coverage is limited, shorter, or less practical than expected. Myers gives buyers a longer runway of protection against manufacturing defects and performance-related issues.

The Arriaga family didn’t want the cheapest answer anymore. After multiple repair bills, water hauling, and pressure complaints, they wanted something Lena could trust before leaving for a long nursing shift and something Mateo could trust when stock tanks needed filling. That’s the real value of a quality myers water pump—not just flow and pressure, but peace of mind.
Warranty Value Over the First Three Years
The first few years reveal whether a pump was built properly, sized properly, and supported properly. A 3-year warranty reduces the financial sting if something manufacturing-related slips through. More importantly, it reflects a level of confidence you don’t usually see in lower-end products. For homeowners comparing ownership costs, that has real value.
A Note on the Myers Name Across Product Categories
Some buyers first recognize the brand from a myers sump pump or sewage application and then discover the well line later. That brand crossover is meaningful. It tells you Myers isn’t a one-product label—it’s a serious water movement name with broad field credibility. In my book, that kind of track record carries weight.
FAQ: Myers Well Pump Buying, Sizing, Installation, and Maintenance 1. How do I determine the correct horsepower for my well depth and household water demand?
Horsepower depends on more than depth alone. You need to consider pumping water level, desired pressure, vertical rise to the house, pipe friction loss, and expected flow demand. A modest home on a 90-foot well may do fine with 1/2 HP or 3/4 HP, while a 212-foot or 300-foot well often needs 1 HP to 1.5 HP depending on the GPM rating and pressure requirements.

For a typical family home, I usually start by estimating peak demand around 8-12 GPM, then I compare that against the pump curve at the real TDH (total dynamic head). If the pump can’t produce the required flow at the target pressure range, it’s the wrong unit no matter what the horsepower label says.

My recommendation: don’t size from the old nameplate unless you know the old system was correct. Measure the well details, look at actual demand, and match a Myers model that lands near its efficient operating zone. That’s how you get performance without short cycling or underdelivery.
2. What GPM flow rate does a typical household need and how do multi-stage impellers affect pressure?
Most average homes need about 8-12 GPM for normal simultaneous use. Larger households, irrigation demand, or livestock watering can push that higher. Flow alone doesn’t guarantee good service, though. Pressure matters just as much, especially in multi-bath homes or properties with long pipe runs.

That’s where multi-stage pump design comes in. Each stage adds energy to the water, helping the pump build pressure efficiently from deeper levels. More stages generally help with head and pressure, while horsepower supports the work required to sustain that output.

If you’ve ever had decent water volume outdoors but poor shower pressure indoors, you’ve seen the difference between raw flow and usable pressure. A properly sized Myers unit balances both. My advice is to choose a pump based on fixture demand and actual lift conditions, not just the highest flow number in the catalog.
3. How does the Myers Predator Plus Series achieve 80% hydraulic efficiency compared to competitors?
Efficiency comes from the entire package: motor quality, stage design, material tolerances, and operating at the correct best efficiency point (BEP). The Predator Plus Series uses a refined hydraulic layout that reduces wasted energy while moving water effectively through the stage stack. Pair that with the Pentek XE motor, and you get a system that converts more electrical input into useful hydraulic output.

In practical terms, that means less wasted heat, lower energy costs, and steadier long-term operation. Efficiency also helps reduce wear because the pump isn’t constantly fighting itself through poor internal flow characteristics.

A poorly matched pump—no matter the brand—can still run inefficiently if it’s oversized or undersized. That’s why I always say the pump model matters, but the selection process matters just as much. Myers gives you the tools for high efficiency; proper sizing lets you take advantage of it.
4. Why is 300 series stainless steel superior to cast iron for submersible well pumps?
300 series stainless steel handles immersion, mineral exposure, and chemical variability much better than cast iron in many residential wells. Cast iron can work in some applications, but once corrosion starts, performance usually declines. Rust scale, roughened surfaces, and structural deterioration eventually show up as reduced efficiency, restricted flow, or failure.

Stainless holds up better in wells with mild acidity, iron, dissolved minerals, and constant moisture. It also helps preserve smooth internal water paths, which supports better hydraulic performance over time. That’s why stainless is such a strong choice for a submersible well pump living below the waterline year-round.

If you’re investing in a pump for a deep private well, corrosion resistance is not a luxury feature. It’s one of the main reasons the pump might last a decade instead of a few disappointing years.
5. How do Teflon-impregnated self-lubricating impellers resist sand and grit damage?
Sand and grit wear down pump internals by abrasion. Standard stage materials can lose edge definition and clearance over time, which reduces performance and increases run time. Myers counters that with Teflon-impregnated staging and self-lubricating impellers that handle abrasive exposure better than conventional designs.

The Teflon content reduces friction and helps the moving surfaces tolerate fine particulate without deteriorating as quickly. The engineered composite impellers also resist the type of metal wear and scoring that can affect lesser pump internals in sandy wells.

No pump is invincible if the well is producing heavy sand, but Myers gives you a much better chance in light-to-moderate grit conditions. If your water has ever looked cloudy after high demand or if previous pumps have lost pressure prematurely, prioritize abrasion resistance on the next install.
6. What makes the Pentek XE high-thrust motor more efficient than standard well pump motors?
The Pentek XE motor is built to handle the axial thrust loads created by deep, multi-stage pumping while maintaining stable electrical and thermal performance. In simple terms, it’s built for the job rather than just adapted to it. Better internal design, heat handling, and protective features all contribute to stronger real-world reliability.

Efficiency comes from reduced energy waste and more stable operation under load. A motor that runs cooler and handles thrust properly lasts longer and supports better hydraulic performance. Add thermal overload protection and lightning protection, and you also gain better resilience in rural electrical environments.

For homeowners, that means fewer nuisance failures and better long-term value. For contractors, it means fewer callbacks on installs that were done correctly in the first place.
7. Can I install a Myers submersible pump myself or do I need a licensed contractor?
That depends on your experience, well depth, local code, and lifting equipment. A shallow system with accessible components may be within reach for a skilled DIYer, but most submersible well pump replacements are safer and smarter with a licensed contractor. Once you’re pulling 150 to 300 feet of drop pipe, wire, and water-filled assembly, the job gets heavy fast.

There’s also the issue of proper splice kits, wire sizing, torque arrestors, check valve placement, and pressure tank setup. A bad splice or incorrect wire gauge can destroy a new pump quickly. A wrong pressure setting can cause constant cycling and tank damage.

My advice: if you’re not comfortable reading a pump curve, making waterproof electrical splices, and safely handling the drop assembly, hire the pro. The cost of one botched install can exceed the labor you were trying to save.
8. What’s the difference between 2-wire and 3-wire well pump configurations?
A 2-wire configuration has the start components integrated in the motor, so there’s no external control box. That usually means simpler installation and fewer above-ground parts. A 3-wire configuration uses an external control box, which can make some service work easier because certain electrical components are accessible without pulling the pump.

Neither is automatically better in every case. For many residential applications, 2-wire is attractive because it’s cleaner and less expensive to install. For some deeper wells or service preferences, 3-wire still makes sense.

I recommend choosing based on depth, service expectations, and installer preference—not internet folklore. Myers offers both, which gives you flexibility rather than boxing you into one approach.
9. How long should I expect a Myers Predator Plus pump to last with proper maintenance?
A well-installed, correctly sized Myers Predator Plus unit commonly falls in the 8-15 year lifespan range, and in favorable conditions with good maintenance it can go much longer. Water quality, cycling frequency, sand content, electrical stability, and proper pressure tank operation all affect lifespan.

The biggest killers are usually not mysterious: bad sizing, frequent short cycling, abrasive water, poor electrical work, and neglected system components. If the pressure tank is waterlogged or the switch is misadjusted, even a premium pump can be overworked.

My recommendation is to treat the pump as part of a system, not a standalone product. Keep the pressure tank healthy, monitor pressure behavior, and respond early to changes in run time or flow. That’s how premium pumps earn premium longevity.
10. What maintenance tasks extend well pump lifespan and how often should they be performed?
Start with an annual system check. Verify pressure tank pre-charge, inspect the pressure switch, monitor amp draw if possible, and pay attention to changes in cycle time. If the pump starts cycling faster than normal, don’t ignore it. Short cycling destroys motors and beats up controls.

Every few years, or sooner if you notice symptoms, evaluate water quality for sand, iron, or pH changes. If sediment increases, the pump may need closer monitoring. Electrical connections, splice integrity, and above-ground fittings should also be checked during service visits.

I also advise homeowners to listen to their system. Longer run times, sputtering fixtures, or dropping pressure are early warnings. The best maintenance is often early diagnosis. Catching a tank or control issue before it turns into a pump failure is one of the cheapest wins in well ownership.
Conclusion
Choosing the right well pump is really about choosing how many future headaches you want to avoid. A quality myers pump brings durable 300 series stainless steel construction, a dependable Pentek XE motor, abrasion-resistant staging, flexible wiring options, accurate sizing across real-world applications, repair-friendly design, and a 3-year warranty that stands up better than much of the field.

For homeowners like Mateo and Lena Arriaga, that combination meant no more gambling on lightweight replacements and no more living around unreliable water pressure. For contractors, it means a pump you can size properly, install confidently, and support without unnecessary drama. For emergency buyers, it means getting water back with equipment that won’t put you right back in the same crisis.

At Plumbing Supply And More, I recommend Myers because I’ve seen what lasts and what doesn’t. If you want a myers well pump or myers water well pumps that deliver long-term value instead of short-term relief, this is one of the smartest investments you can make for a private well system. Reliable water at home is never cheap when done wrong. Done right with Myers, it’s worth every single penny.

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