学进去-教育应平等而普惠
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类型:阅读选择
难度系数:0.85
所属科目:高中英语

If you hate being cold but don’t want to raise your heating bill, then keep reading. Swedish engineer Mr. Oscar Karlsson has provided the perfect solution—a super heater called Hotix Pro.

What makes it so special?

This invention makes it more efficient for people worldwide to heat their homes at low cost. However, what’s really special about Hotix Pro is that it’s been made with the average consumers in mind. One of the amazing features it has is the programmable timer tailored to suit your needs. Also, the remote controller makes it super easy to stay cozy and adjust the temperature.

What do you love about Hotix Pro?

Quick Heating Speed: Little time is needed to warm up the room as long as you plug it in.

Portable (便携式的) & Lightweight: Easily carried from room to room.

Overheat Protection: Built with you and your family’s safety in mind.

Super Quiet: You won’t even hear it when it’s on, but you will definitely FEEL the difference.

How do you get a Hotix Pro?

You can order a Hotix Pro from the supplier’s website. It costs $126 originally but now is on special offer. Order now and you can get a 50% discount (only $52 each when you buy two).

5 Star Reviews★★★★★

This amazing little heater is perfect! It is small but works effectively to heat the room, saving on the precious fuel. This little heater has a timer and a fan with some safety features for customers’ peace of mind. Moreover, I’m a light sleeper extremely sensitive to noise, but with a Hotix Pro, I have perfect sleep at night.

—Sarah

1.What is the most special feature of Hotix Pro?
A.If uses much less energy.B.It has a customer-centered design.
C.It operates in a lower noise level.D.It heats a whole room quickly.
2.How much should one pay to buy two Hotix Pros at a time now?
A.$252.B.$115.C.$126.D.$104.
3.Why does the author refer to Sarah’s review?
A.To show Hotix Pro’s high performance.B.To prove Hotix Pro’s popularity.
C.To explain the design of Hotix Pro.D.To convey Sarah’s amazement.
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y = sin x, x∈R, y∈[–1,1],周期为2π,函数图像以 x = (π/2) + kπ 为对称轴
y = arcsin x, x∈[–1,1], y∈[–π/2,π/2]
sin x = 0 ←→ arcsin x = 0
sin x = 1/2 ←→ arcsin x = π/6
sin x = √2/2 ←→ arcsin x = π/4
sin x = 1 ←→ arcsin x = π/2

用户名称
2019-09-19

y = sin x, x∈R, y∈[–1,1],周期为2π,函数图像以 x = (π/2) + kπ 为对称轴
y = arcsin x, x∈[–1,1], y∈[–π/2,π/2]
sin x = 0 ←→ arcsin x = 0
sin x = 1/2 ←→ arcsin x = π/6
sin x = √2/2 ←→ arcsin x = π/4
sin x = 1 ←→ arcsin x = π/2

用户名称
2019-09-19
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