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Every 4 years or 60,000 miles

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15y ago
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Q: When to change a cambelts on MG ZR 160?
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What are the torque settings for a mg zr 160 51 plate k-series head?

Torque settings stage 1. 20 newton metres stage2. +180 degrees stage3. +180 degrees tightening order 9 5 1 3 7 10 6 2 4 8 bolts 7&8 are flywheel side of engine Mike 2


Does it matter if you have a zr on one tire and not the other tires?

Yes, it matters. Preferably each axle should have the same tires EXACTLY.


What is a good cheap camera?

Canon ZR 930 is what I have its a fantastic camera great quality and you could probably find it somewhere for under 200.


What elements are found in pumice?

The elements Al, Ba, Ca, Ce, Co, Cr, Cs, Dy, Eu, Fe, Hf, K, La, Lu, Mn, Na, Nd, Rb, Sb, Sc, Sm, Ta, Tb, Th, Ti, U, V, Yb, Zn and Zr were determined found in16 samples of pumice lumps from excavations. There are possibly more elements that have not been found.


What is ceramic made of and how is ceramic made?

Chemical formation of ceramicsAbstractTechnical non-oxide ceramic materials are fabricated according to conventional powder processing methods, which involves heat-treatment at temperatures up to 1700-2100 °C and addition of metal oxides for the purpose of enhanced densification. Since the investigations of Verbeek et al. and Yajima et al. in the mid-1970s, a new method has been available to produce advanced ceramics at significantly lower temperatures (800-1500 °C) by the polymer pyrolysis of appropriate organometallic precursors. The work presented in this paper focuses on the synthesis and characterization of advanced ceramic fibres, bulk materials and powders based on the binary, ternary and quaternary systems Si---N, Si---C---N and Si---E---C---N. Herein E refers to B, Al, Ti, P or Zr. In particular, the cross-linking and pyrolysis behaviour of polysilazanes, polysilanes and polysilylcarbodiimides has been analysed by chemical analysis, FTIR, TGA, XRD, analytical TEM and mass spectrometry. Additionally, the crystallization behaviour of the pyrolysed amorphous intermediates into multiphase ceramic materials has been characterized. Since the partitioning of boron containing ternary and quaternary systems has been shifted to extraordinarily high temperatures (1700 °C), a novel class of metastable, amorphous high-temperature materials could be generated, which is not available using conventional techniques. The study of the oxidation behaviour of dense polysilazane derived Si---C---N bulk materials revealed corrosion resistance in pure oxygen up to 1600 °C.